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1.


   
    Advances in Shape Memory Materials [[electronic resource] :] : in Commemoration of the Retirement of Professor Hisaaki Tobushi / / ed. Sun, Qingping. [et al.]. - 1st ed. 2017. - [S. l. : s. n.]. - X, 241 p. - Б. ц.
    Зміст:
1 Fabrication and output power characteristics of heat engines using tape-shaped SMA element --
2 One-dimensional phase transformation model and its application to damping enhancement analysis --
3 A review on experimental investigations of rate sensitivity of deformation behavior in Fe-based shape memory alloys --
4 Shape memory effect and superelasticity of textured NiTi alloy wire --
5 Development of the technology teaching materials using Ti-Ni shape memory alloy --
6 A review of shape memory polymers thermos-mechanical modeling. Analysis in the frequency domain --
7 Computational study of stretching rate effects on pattern formation in NiTi thin strips --
8 Mechanical properties of shape memory alloys and polymers – A review on the study by Prof. Tobushi --
9 Fatigue property and enhancement of fatigue life of TiNi shape memory alloys - An overview --
10 Intelligent shape memory actuators --
11 Structural and magnetic properties of magnetic shape memory alloys on Ni-Mn-Co-in self-standing films --
12 Simultaneous measurement of continuum strain field and intermittent martensite band nucleation in single crystal Ni-Mn-Ga foils --
13 Thermomechanical coupling and localization effects examined in shape memory alloys and polymers by fast and sensitive infrared camera --
14 Anomalous Properties of TiNi processed by severe plastic deformation --
15 Grain size effects on Young’s modulus and hardness of nanocrystalline NiTi shape memory alloy --
16 Grain size effects on wear resistance of nanocrystalline NiTi shape memory alloy --
17 Experimental study of critical stresses of Fe-28Mn-6Si-5Cr SMA under various temperature conditions --
18 Cyclic compressive responses of NiTi shape memory alloy—effects of loading frequency.
Рубрики: Materials science.
   Engineering design.

   Energy storage.

   Robotics.

   Automation.

   Characterization and Evaluation of Materials.

   Engineering Design.

   Energy Storage.

   Robotics and Automation.

Анотація: This book is devoted to the development of the shape memory materials and their applications. It covers many aspects of smart materials. It also describes the method on how we can obtain not only large recovery strains but also high recovery stress, energy storage and energy dissipation in applications. This volume treats the mechanical properties of shape memory alloys, shape memory polymers and the constitutive equations of the materials which are necessary to design the shape memory elements in applications. It also deals with the fatigue properties of materials, the method to design the shape memory elements, and the shape memory composites. The authors are international experts on shape memory alloys and shape memory polymers in the metallurgical, chemical, mechanical and engineering fields. The book will be of interest to graduate students, engineers, scientists and designers who are working in the field of electric and mechanical engineering, industries, medical engineering, aerospace engineering, robots, automatic machines, clothes and recycling for research, design and manufacturing.

Перейти: https://doi.org/10.1007/978-3-319-53306-3

Дод.точки доступу:
Sun, Qingping. \ed.\; Matsui, Ryosuke. \ed.\; Takeda, Kohei. \ed.\; Pieczyska, Elzbieta A. \ed.\; SpringerLink (Online service)
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2.


    Toulouevski, Yuri N.
    Fuel Arc Furnace (FAF) for Effective Scrap Melting [[electronic resource] :] : from EAF to FAF / / Yuri N. Toulouevski, Zinurov, Ilyaz Y. ; . - 1st ed. 2017. - [S. l. : s. n.]. - IX, 94 p. 23 illus. - Б. ц.
    Зміст:
The history of furnaces with scrap preheating and flat bath Advantages of these furnaces --
Disadvantages of furnaces with scrap preheating and flat bath Advantages of these furnaces --
Causes of these disadvantages and methods eliminating them --
Fuel Arc Furnace (FAF).
Рубрики: Metals.
   Engineering design.

   Chemical engineering.

   Energy efficiency.

   Metallic Materials.

   Engineering Design.

   Industrial Chemistry/Chemical Engineering.

   Energy Efficiency.

Анотація: This book presents a new electric arc furnace process and discusses potential for developing a steelmaking aggregate of the new generation, namely the Fuel Arc Furnace based on existing shaft furnaces. It also reviews the history of developing various types of furnaces with the scrap preheating and flat bath advantages of these furnaces, identifying their disadvantages and presenting methods of eliminating them.

Перейти: https://doi.org/10.1007/978-981-10-5885-1

Дод.точки доступу:
Zinurov, Ilyaz Y.; Toulouevski, Yuri N. \.\; SpringerLink (Online service)
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3.


    Milewski, John O.
    Additive Manufacturing of Metals [[electronic resource] :] : from Fundamental Technology to Rocket Nozzles, Medical Implants, and Custom Jewelry / / John O. Milewski ; . - 1st ed. 2017. - [S. l. : s. n.]. - XXVI, 343 p. 151 illus., 100 illus. in color. - Б. ц.
    Зміст:
Preface --
Acknowledgements --
List of Acronyms --
About the Author --
AM Road Map and Hitchhiker’s Guide --
Chapter 1: Envision --
Chapter 2: Additive Manufacturing Metal, The Art of the Possible --
Chapter 3: On the Road to AM --
Chapter 4: Understanding Metal for Additive Manufacturing --
Chapter 5: Lasers, Electron Beams, Plasma Arcs --
Chapter 6: Computers, Solid Models, and Robots --
Chapter 7: Origins of 3D Metal Printing --
Chapter 8: Current System Configurations --
Chapter 9: Inspiration to 3D Design --
Chapter 10: Process Development --
Chapter 11: Building, Post Processing, and Inspecting --
Chapter 12: Trends in AM, Government, Industry, Research, Business --
Professional Society and Organization Links --
Glossary --
Bibliography --
AM Machine and Service Resource Links --
Appendix A: Safety in Configuring a 3D Metal Printing Shop --
Appendix B: Exercises in Metal Fusion --
Appendix C: OpenSCAD Programming Example --
Appendix D: 3D Printer Control Code Example --
Appendix E: Building an Arc-Based 3D Shape Welding System --
Appendix F: Exercises in 3D Printing --
Appendix G: Score Chart of AM Skills --
Index.
Рубрики: Metals.
   Engineering design.

   Lasers.

   Photonics.

   Manufactures.

   Nanotechnology.

   Metallic Materials.

   Engineering Design.

   Optics, Lasers, Photonics, Optical Devices.

   Manufacturing, Machines, Tools, Processes.

   Nanotechnology.

Анотація: This engaging volume presents the exciting new technology of additive manufacturing (AM) of metal objects for a broad audience of academic and industry researchers, manufacturing professionals, undergraduate and graduate students, hobbyists, and artists. Innovative applications ranging from rocket nozzles to custom jewelry to medical implants illustrate a new world of freedom in design and fabrication, creating objects otherwise not possible by conventional means. The author describes the various methods and advanced metals used to create high value components, enabling readers to choose which process is best for them. Of particular interest is how harnessing the power of lasers, electron beams, and electric arcs, as directed by advanced computer models, robots, and 3D printing systems, can create otherwise unattainable objects. A timeline depicting the evolution of metalworking, accelerated by the computer and information age, ties AM metal technology to the rapid evolution of global technology trends. Charts, diagrams, and illustrations complement the text to describe the diverse set of technologies brought together in the AM processing of metal. Extensive listing of terms, definitions, and acronyms provides the reader with a quick reference guide to the language of AM metal processing. The book directs the reader to a wealth of internet sites providing further reading and resources, such as vendors and service providers, to jump start those interested in taking the first steps to establishing AM metal capability on whatever scale. The appendix provides hands-on example exercises for those ready to engage in experiential self-directed learning. Provides a solid introduction to the fundamental technologies utilized in AM metal processing, ranging from 3D computer models to lasers, electron beams, and computer controlled AM machines Offers the reader a guide to speaking the language of AM metal, with links to additional reading, references, resources, and service providers Illustrates how a new generation of designers and engineers are thinking outside the box to create the future of manufacturing through innovative applications and the use of advanced materials.

Перейти: https://doi.org/10.1007/978-3-319-58205-4

Дод.точки доступу:
Milewski, John O. \.\; SpringerLink (Online service)
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4.


   
    TRIZ – The Theory of Inventive Problem Solving [[electronic resource] :] : current Research and Trends in French Academic Institutions / / ed. Cavallucci, Denis. - 1st ed. 2017. - [S. l. : s. n.]. - XIV, 284 p. 144 illus., 63 illus. in color. - Б. ц.
    Зміст:
Finding Innovative Technical Solutions in Patents through Improved Evolution Trends --
Automated extraction of knowledge useful to populate Inventive Design Ontology from Patents --
Modelling Industrial Design Contribution to Innovative Product or Service Design Process in a highly Constrained Environment --
Teaching Competence for Organising Problem-Centred Teaching-Learning Process --
Problem Graph for warehousing design --
Key indicators of inventive performance for characterizing design activities in R&Ds; Application in technological design --
Optimization methods for inventive design --
Contribution to formalizing links between Invention and Optimization in Inventive Design Method --
Collaboration framework for TRIZ based Open Computer Aided Innovation --
System Dynamics Modeling and TRIZ: a practical approach for inventive problem-solving --
Conceptual framework of an intelligent system to support creative workshops.
Рубрики: Computers.
   Management.

   Industrial management.

   Engineering design.

   Software engineering.

   Models and Principles.

   Innovation/Technology Management.

   Engineering Design.

   Software Engineering.

Анотація: It has been two decades since the TRIZ theory originating in Russia spread across the world. Every continent adopted it in a different manner – sometimes by glorifying its potential and its perspectives (the American way); sometimes by viewing it with mistrust and suspicion (the European way); and sometimes by adopting it as-is, without questioning it further (the Asian way). However, none of these models of adoption truly succeeded. Today, an assessment of TRIZ practices in education, industry and research is necessary. TRIZ has expanded to many different scientific disciplines and has allowed young researchers to reexamine the state of research in their field. To this end, a call was sent out to all known francophone research laboratories producing regular research about TRIZ. Eleven of them agreed to send one or more of their postdoctoral researchers to present their work during a seminar, regardless of the maturity or completeness of their efforts. It was followed by this book project, presenting one chapter for every current thesis in order to reveal the breadth, the richness and the perspectives that research about the TRIZ theory could offer our society. The topics dealt with e.g. the development of new methods inspired by TRIZ, educational practices, and measuring team impact. The work presented here is generally intended for engineers, educators at all levels, industrialists, managers, researchers and political representatives. Offering a snapshot of various types of research conducted within the field of TRIZ in France, it represents a unique resource.

Перейти: https://doi.org/10.1007/978-3-319-56593-4

Дод.точки доступу:
Cavallucci, Denis. \ed.\; SpringerLink (Online service)
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5.


   
    Research Challenges in Modeling and Simulation for Engineering Complex Systems [[electronic resource] /] : монография / ed. Fujimoto, Richard. [et al.]. - 1st ed. 2017. - [S. l. : s. n.]. - XX, 119 p. 9 illus. - Б. ц.
    Зміст:
Introduction --
Applications --
Conceptual Modeling --
Computational Challenges in Modeling and Simulation --
Uncertainty in M&S --
Model Reuse, Composition and Adaptation.
Рубрики: Computer simulation.
   Engineering design.

   Simulation and Modeling.

   Engineering Design.

Анотація: This illuminating text/reference presents a review of the key aspects of the modeling and simulation (M&S) life cycle, and examines the challenges of M&S in different application areas. The authoritative work offers valuable perspectives on the future of research in M&S, and its role in engineering complex systems. Topics and features: Reviews the challenges of M&S for urban infrastructure, healthcare delivery, automated vehicle manufacturing, deep space missions, and acquisitions enterprise Outlines research issues relating to conceptual modeling, covering the development of explicit and unambiguous models, communication and decision-making, and architecture and services Considers key computational challenges in the execution of simulation models, in order to best exploit emerging computing platforms and technologies Examines efforts to understand and manage uncertainty inherent in M&S processes, and how these can be unified under a consistent theoretical and philosophical foundation Discusses the reuse of models and simulations to accelerate the simulation model development process This thought-provoking volume offers important insights for all researchers involved in modeling and simulation across the full spectrum of disciplines and applications, defining a common research agenda to support the entire M&S research community. Dr. Richard Fujimoto is a Professor in the School of Computational Science and Engineering at Georgia Institute of Technology, Atlanta, GA, USA. Dr. Conrad Bock is a Computer Scientist in the Systems Engineering Group under the Systems Integration Division (SID) of the Engineering Lab (EL) at the National Institute of Standards and Technology (NIST), Gaithersburg, MD, USA. Dr. Wei Chen is the Wilson-Cook Professor in Engineering Design and the Director of the Integrated Design Automation Laboratory (IDEAL) at Northwestern University, Evanston, IL, USA. Dr. Ernest Page is a Chief Engineer at The MITRE Corporation, McLean, VA, USA. Dr. Jitesh H. Panchal is an Associate Professor in the School of Mechanical Engineering at Purdue University, West Lafayette, IN, USA.

Перейти: https://doi.org/10.1007/978-3-319-58544-4

Дод.точки доступу:
Fujimoto, Richard. \ed.\; Bock, Conrad. \ed.\; Chen, Wei. \ed.\; Page, Ernest. \ed.\; Panchal, Jitesh H. \ed.\; SpringerLink (Online service)
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6.


   
    Guide to Simulation-Based Disciplines [[electronic resource] :] : advancing Our Computational Future / / ed.: Mittal, Saurabh., Durak, Umut., Oren, Tuncer. - 1st ed. 2017. - [S. l. : s. n.]. - XIX, 370 p. 86 illus., 57 illus. in color. - Б. ц.
    Зміст:
Part I: Background --
The Evolution of Simulation and its Contributions to Many Disciplines --
The Modeling and Simulation (M&S) Technology Landscape --
Part II: Engineering and Architecture --
Simulation-Based Engineering --
Simulation-Based Systems Engineering --
Simulation-Based Cyber-Physical Systems and the Internet of Things --
Simulation-Based Complex Adaptive Systems --
Simulation-Based Software Engineering --
Simulation-Based Architecture --
Part III: Natural Sciences --
Simulation-Based Science: Toward Cognitive Generative Architectures for Simulation-Driven Discovery --
Systems Design, Modeling and Simulation in Medicine --
Part IV: Social Sciences and Management --
Flipping Coins and Coding Turtles: The Evolution of M&S in the Social Sciences --
Simulation-Based Enterprise Management: Model Driven from Business Process to Simulation --
Part V: Learning, Education and Training --
Simulation-Based Learning and Education --
Simulation-Based Military Training --
Epilogue.
Рубрики: Computer simulation.
   Application software.

   Engineering design.

   Bioinformatics .

   Computational biology .

   Simulation and Modeling.

   Computer Appl. in Social and Behavioral Sciences.

   Engineering Design.

   Computer Appl. in Life Sciences.

Анотація: This invaluable text/reference reviews the state of the art in simulation-based approaches across a wide range of different disciplines, and provides evidence of using simulation-based approaches to advance these disciplines. Highlighting the benefits that simulation can bring to any field, the volume presents case studies by the leading experts from such diverse domains as the life sciences, engineering, architecture, arts, and social sciences. Topics and features: Includes review questions at the end of every chapter Provides a broad overview of the evolution of the concept of simulation, stressing its importance across numerous sectors and disciplines Addresses the role of simulation in engineering design, and emphasizes the benefits of integrating simulation into the systems engineering paradigm Explains the relation of simulation with Cyber-Physical Systems and the Internet of Things, and describes a simulation infrastructure for complex adaptive systems Investigates how simulation is used in the Software Design Life Cycle to assess complex solutions, and examines the use of simulation in architectural design Reviews the function and purpose of simulation within the context of the scientific method, and its contribution to healthcare and health education training Discusses the position of simulation in research in the social sciences, and describes the simulation of service systems for simulation-based enterprise management Describes the role of simulation in learning and education, as well as in in military training With its near-exhaustive coverage of disciplines, this comprehensive collection is essential reading for all researchers, practitioners and students seeking insights into the use of various modeling paradigms and the need for robust simulation infrastructure to advance their field into a computational future.

Перейти: https://doi.org/10.1007/978-3-319-61264-5

Дод.точки доступу:
Mittal, Saurabh. \ed.\; Durak, Umut. \ed.\; Oren, Tuncer. \ed.\; SpringerLink (Online service)
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7.


    Huang, Yu.
    Hazard Analysis of Seismic Soil Liquefaction [[electronic resource] /] : монография / Yu. Huang, Yu, Miao. ; . - 1st ed. 2017. - [S. l. : s. n.]. - XX, 165 p. 112 illus., 87 illus. in color. - Б. ц.
    Зміст:
Introduction --
Macroscopic Characteristics of Seismic Liquefaction --
Liquefaction Potential Evaluation Based on In situ Testing --
Laboratory Experimental Study on Dynamic Characteristics of Liquefiable Soil --
Physical Model Testing for Dynamic Characteristics of Seismic Soil Liquefaction --
Numerical Simulation for Deformation of Liquefiable Soils --
Comprehensive Evaluation for Liquefaction Damage During Earthquakes.
Рубрики: Geotechnical engineering.
   Engineering design.

   Civil engineering.

   Soil science.

   Soil conservation.

   Geotechnical Engineering & Applied Earth Sciences.

   Engineering Design.

   Civil Engineering.

   Soil Science & Conservation.

Анотація: This book presents comprehensive hazard analysis methods for seismic soil liquefaction, providing an update on soil liquefaction by systematically reviewing the phenomenon’s occurrence since the beginning of this century. It also puts forward a range of advanced research methods including in-situ tests, laboratory studies, physical model tests, numerical simulation, and performance-based assessment. Recent seismic liquefaction-related damage to soils and foundations demonstrate the increasing need for the comprehensive hazard analysis of seismic soil liquefaction in order to mitigate this damage and protect human lives. As such the book addresses the comprehensive hazard analysis of seismic soil liquefaction, including factors such as macroscopic characteristics, evaluating the liquefaction potential, dynamic characteristics and deformation processes, providing reliable evaluation results for liquefaction potential and deformation in the context of risk assessment.

Перейти: https://doi.org/10.1007/978-981-10-4379-6

Дод.точки доступу:
Yu, Miao.; Huang, Yu. \.\; SpringerLink (Online service)
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8.


   
    ICoSI 2014 [[electronic resource] :] : proceedings of the 2nd International Conference on Sustainable Innovation / / ed. Taufik, T. [et al.]. - 1st ed. 2017. - [S. l. : s. n.]. - XI, 497 p. 138 illus., 97 illus. in color. - Б. ц.
    Зміст:
Application of Organic Fertilizer and PGPR to Increase Rice Yield And Quality --
Clustering of High Yielding and Early Maturing Soybean Genotypes --
Combination of Blue, Red, White and Ultraviolet Lights for Increasing Carotenoids and Biomass of Microalga Chlorella Zofingiensis Donz --
Cyperus Rotundus L. Extracts As Botanical Fungicides to Control Soybean Rust Disease --
Development of Breakfast Meals from Local Taro Using Extrusion for Food Security --
A Model Of Increasing Sme Performance By Cluster Model (Case Study In Sme’s In Kecamatan Cibinong, Kabupaten Bogor) --
Clustering Residents Based on Perceptions Towards Tourism Growth in Yogyakarta, Indonesia --
Community Involvement in Poverty Alleviation Program in Urban Areas - A Study on Communication Network.-  Embedding Accountability Throughout the Innovation Process in the Green Economy - The Need for an Innovative Approach --
Empowerment of People in Achieving Poverty Eradication In Indonesia --
2-D And 3-D Sub-Surface Liquefaction Potential Profiling Using Tomography Surface Waves Method --
An Analysis of Biogas Productivity With Fixed Dome Type for Supporting Household-Base Energy In Nongkojajar, East Java-Indonesia --
Analysis of Different Activation Function Using Extreme Learning Machine in Daily Groundwater Level Modeling of Tidal Lowland Area --
Analysis the Microstructure of Barium M- Hexaferrite Particles Coated by Pani Conducting Material with in Situ Polymerization Process --
Business Oriented Technological System Analysis (Botsa) at Eindhoven University of Technology; an Innovative Learning Method to Foster Entrepreneurship.
Рубрики: Sustainable development.
   Water-supply.

   Engineering design.

   Environmental engineering.

   Biotechnology.

   Management.

   Industrial management.

   Sustainable Development.

   Water Industry/Water Technologies.

   Engineering Design.

   Environmental Engineering/Biotechnology.

   Innovation/Technology Management.

Анотація: The 2nd International Conference on Sustainable Innovation emphasizes on natural resources technology and management to support the sustainability of mankind. The main theme of ICoSI 2014 “Technology and innovation challenges in natural resources  and built environment management for humanity and sustainability ” reflects the needs of immediate action from scientists with different fields and different geographical background to face the global issue on world’s change.

Перейти: https://doi.org/10.1007/978-981-287-661-4

Дод.точки доступу:
Taufik, T. \ed.\; Prabasari, Indira. \ed.\; Rineksane, Innaka Ageng. \ed.\; Yaya, Rizal. \ed.\; Widowati, Retno. \ed.\; Putra Rosyidi, Sri Atmaja. \ed.\; Riyadi, Slamet. \ed.\; Harsanto, Puji. \ed.\; SpringerLink (Online service)
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9.


   
    Sustainability Through Innovation in Product Life Cycle Design [[electronic resource] /] : монография / ed. Matsumoto, Mitsutaka. [et al.]. - 1st ed. 2017. - [S. l. : s. n.]. - XV, 1031 p. 424 illus., 318 illus. in color. - Б. ц.
    Зміст:
Investigating types of information from WEEE take-back systems in order to promote Design for Recovery --
A Framework for Sustainable Product Development --
Reducing conflicts of interest in Eco-Design – the relation of innovation management and Eco-Design in the automotive sector --
Computer-Aided Design for Semi-Destructive Disassembly --
Potential of Common Methods to Integrate Sustainability Requirements in the Product Development Process - a Case Study --
Perspectives on Sustainable Product Design Methodology Focused on Local Communities --
Proposal of a Design Method for Local Oriented Manufacturing in Developing Countries 1st report: Problem description and knowledge representation --
Environment-community-human-oriented (ECHO) design - a context-appropriate design-thinking process for well-being of individuals, communities, and the local environment --
Persuasive Design Aid for Products Leading to LOHAS Considering User Type --
Preliminary Research on the Perception and Implementation of Sustainable Supply Chain in Indonesian Companies --
Analysis of User Needs for Solar Cooker Acceptance --
Sustainable Renewable Energy Financing: Case Study of Kenya --
Oil and Gas industry's role on the transition to a low-carbon future in Thailand --
Material recovery and environmental impact by informal e-waste recycling site in the Philippines --
Actors and System Maps – A Methodology for Developing Product/Service Systems --
PSS without PSS Design - Possible Causes, Effects and Solutions --
A method of selecting customer-oriented service and delivery modes in designing environmentally benign product service systems --
Design for Remanufacturing and Circular Business Models --
Development of Low-Carbon Society Businesses in Japan --
What is 'value' and how can we capture it from the product value chain? --
How Japanese companies can contribute to water sustainability --
Analysis of Disassembly Characteristics and PSS Proposal by Component Reuse of Mobile Phones --
Seller-Buyer Matching for Promoting Product Reuse Using Distanced-Based User-Grouping --
User model in the life cycle simulation of mechanical parts based on Prospect theory --
Research on Corporate Social Responsibility Advertising Design --
Systems Approach to Resource Efficient and Cleaner Production Solutions: Method & Implementation --
Integrated Production and Transportation Scheduling for Low-Carbon Supply Chains --
Usage of a Digital Eco-Factory for a Printed-Circuit Assembly Line --
A Negotiation Model for Closed-Loop Supply Chains with Consideration for Economically Collecting Reusable Products --
Concept Proposal and Feasibility Study of Remote Recycling - Separation Characteristics and Cost-Profit Analysis- --
Simulation-based uncertainty quantification in end-of-life operations for strategic development of urban mines --
The potential of additive manufacturing technology for realizing a sustainable society --
Bio-Degradable Mechatronic Products by Additive Manufacturing --
The Monitoring of Three-Dimensional Printer Filament Feeding Process using an Acoustic Emission Sensor --
Selective volume fusing method for cellular structure integration --
Recovery of Metals from E-waste Mediated by Molten CRT Lead Glass --
Rethinking the Ecodesign Policy Mix in Europe --
Global Initiative on UPCYCLE Carbon Footprint Certification and Label Systems for Creative Waste Management and Greenhouse Gas Reduction --
Sustainable energy strategy primarily involving renewable resources in Japan --
Participatory design as a tool for effective sustainable energy transitions --
A Fuzzy Monte Carlo Simulation Technique for Sustainable Society Scenario (3S) Simulator --
The minerals-energy nexus - past, present and future --
Estimation of reduction in CO2 emissions by using ICT throughout Japan --
The Role of Industrial Design in Effective Post-Disaster Management --
Undergraduate Students Designing Environmental Concern Products - A Case Study in Design Education --
The future of design for sustainable behaviour, revisited --
From Eco to Sustainable Innovation: approach and methodology to guide design initiative into the innovation world --
State of the Art of Open Innovation and Design for Sustainability --
An Analysis of the Ecodesign Scientific Network 1994-2014 --
Recent Developments in Ocean Energy and Offshore Wind: Financial Challenges and Environmental Misconceptions --
Renewable Energy Policy Efficacy and Sustainability: The role of equity in improving energy policy outcomes --
Study on the Diffusion of NGVs in Japan and Other Nations using the Bass Model --
Key Success Factors of Green Innovation for Transforming Traditional Industries --
Postmodern Dynamics of Innovation and Knowledge in the Context of Sustainable Energy Development --
Analysis modeling for electricity consumption in communication buildings --
Research on Evaluation Index System and Comprehensive Evaluation of Typical Eco-industrial Parks --
The Need to Go Beyond “Green University” Ideas to Involve the Community at Naresuan University, Thailand --
Sustainability Assessment of High-rise and High-Density Urban Structures --
Analysis of the Energy Consumption of Building Automation Systems --
User Adapting System Design for Improved Energy Efficiency During the Use Phase of Products: Case Study of an Occupancy-Driven, SelfLearning Thermostat --
A fully renewable DC Microgrid with autonomous power distribution algorithm --
Sustainability Indicators – Overview, Synthesis and future Research Directions --
Strategy Planning Before Urban Mining: Exploring the Targets --
Evaluation of Resource Efficiency of Electrical and Electronic Equipment --
Regionalized Input-Output Life Cycle Sustainability Assessment: Food Production Case Study --
Spatiotemporal tools for regional low-carbon development: linking LCA and GIS to assess clusters of GHG emissions from cocoa farming in Peru --
Potential for Greenhouse Gases Mitigation at a Typical Roughage Production System in the Japanese Dairy System --
Batik Life Cycle Assessment Analysis (LCA) for Improving Batik Small and Medium Enterprises (SMEs) Sustainable Production in Surakarta, Indonesia --
Eco-design and Life Cycle Assessment of Japanese Tableware from Palm-Melamine Bio-Composites --
Consumer’s Lifestyle and Its Impact on Eco-Product Aesthetics. .
Рубрики: Waste management.
   Environmental economics.

   Engineering design.

   Waste Management/Waste Technology.

   Environmental Economics.

   Engineering Design.

Анотація: This book consists of chapters based on selected papers presented at the EcoDesign2015 symposium (9th International Symposium on Environmentally Conscious Design and Inverse Manufacturing). The symposium, taking place in Tokyo in December 2015, has been leading the research and practices of eco-design of products and product-related services since it was first held in 1999. The proceedings of EcoDesign2011 were also published by Springer. Eco-design of products and product-related services (or product life cycle design) are indispensable to realize the circular economy and to increase resource efficiencies of our society. This book covers the state of the art of the research and the practices in eco-design, which are necessary in both developed and developing countries. The chapters of the book, all of which were peer-reviewed, have been contributed by authors from around the world, especially from East Asia, Europe, and Southeast Asia. The features of the book include (1) coverage of the latest topics in the field, e.g., global eco-design management, data usage in eco-design, and social perspectives in eco-design; (2) an increased number of authors from Southeast Asian countries, with a greater emphasis on eco-design in emerging economies; (3) high-quality manuscripts, with the number of chapters less than half of that of the previous book.

Перейти: https://doi.org/10.1007/978-981-10-0471-1

Дод.точки доступу:
Matsumoto, Mitsutaka. \ed.\; Masui, Keijiro. \ed.\; Fukushige, Shinichi. \ed.\; Kondoh, Shinsuke. \ed.\; SpringerLink (Online service)
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10.


   
    Fast Reactor System Design [[electronic resource] /] : монография / ed. Kasahara, Naoto. - 1st ed. 2017. - [S. l. : s. n.]. - XIII, 298 p. 208 illus., 5 illus. in color. - Б. ц.
    Зміст:
Designing a New Reactor --
Purpose and History of Fast Reactors --
Plant Concepts and Mechanisms --
Policy of Safety Assurance --
Mindset Required to Ensure Structural Integrity --
System Conceptual Design --
Core and Fuel Design --
Plant Component Design --
Maintenance --
Actual Monju design.
Рубрики: Nuclear energy.
   Engineering design.

   Quality control.

   Reliability.

   Industrial safety.

   Thermodynamics.

   Heat engineering.

   Heat transfer.

   Mass transfer.

   Mechanics.

   Mechanics, Applied.

   Nuclear Energy.

   Nuclear Energy.

   Engineering Design.

   Quality Control, Reliability, Safety and Risk.

   Engineering Thermodynamics, Heat and Mass Transfer.

   Solid Mechanics.

Анотація: This book describes the fast reactor (FR), a type of new reactor for nuclear plants, currently under research and development. The book targets young researchers and engineers who will be charged with commercializing this new type of reactor to lead to the development of new components and systems for improved plant reliability and economy. This volume also helps readers to understand the methods of integrating the power plant in its entirety, from the reactor core to all of the various systems and components, and teaches the way of thinking that forms the background of these methods. This background includes the various organizational and management issues that are encountered as projects move forward and will be explored in great detail based on actual design and construction experience with Japan’s prototype FR, Monju. .

Перейти: https://doi.org/10.1007/978-981-10-2821-2

Дод.точки доступу:
Kasahara, Naoto. \ed.\; SpringerLink (Online service)
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11.


   
    Smart Energy Grid Design for Island Countries [[electronic resource] :] : challenges and Opportunities / / ed.: Islam, F.M. Rabiul., Mamun, Kabir Al., Amanullah, Maung Than Oo. - 1st ed. 2017. - [S. l. : s. n.]. - XI, 465 p. 301 illus., 218 illus. in color. - Б. ц.
    Зміст:
Green and Clean Energy Sources for Island countries --
Present and Future Grid scenario of Electric network in Island community --
Technical Prospect of Future Micro Energy Grid in Islands --
Performance Evaluation for Solar Energy in Island --
Offshore Wind power generation --
Low Cost Hydro Energy Technology for Island Country --
Design Ocean/ Wave Energy Generator; --
Power Flow Analysis and Fault Calculation --
Maintenance and Reliability of Island Electric Network --
Energy Grid Management and Optimization --
Economic Analysis --
Forecasting of Renewable Energy Sources --
Smart Technology Integration --
Case Studies.
Рубрики: Renewable energy resources.
   Engineering design.

   Environmental engineering.

   Biotechnology.

   Climate change.

   Renewable and Green Energy.

   Engineering Design.

   Environmental Engineering/Biotechnology.

   Climate Change/Climate Change Impacts.

Анотація: This book identifies the challenges, solutions, and opportunities offered by smart energy grids (SEGs) with regard to the storage and regulation of diversified energy sources such as photovoltaic, wind, and ocean energy. It provides a detailed analysis of the stability and availability of renewable sources, and assesses relevant socioeconomic structures. The book also presents case studies to maximize readers’ understanding of energy grid management and optimization. Moreover, it offers guidelines on the design, implementation, and maintenance of the (SEG) for island countries.

Перейти: https://doi.org/10.1007/978-3-319-50197-0

Дод.точки доступу:
Islam, F.M. Rabiul. \ed.\; Mamun, Kabir Al. \ed.\; Amanullah, Maung Than Oo. \ed.\; SpringerLink (Online service)
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12.


    Nitsche, M.
    Practical Column Design Guide [[electronic resource] /] : монография / M. Nitsche, Gbadamosi, R. ; . - 1st ed. 2017. - [S. l. : s. n.]. - XIII, 397 p. 237 illus., 1 illus. in color. - Б. ц.
    Зміст:
Planning of Distillation- and Absorption Columns --
Phase Equilibria - Bubble- and Dew Points - Flash Calculations - Activity Coefficients.- Fractionation of Binary Mixtures --
Calculation of Multicomponents-Fractionation Plants.- Extractive- and Aceotropic Distillation.- Discontinuous batch Distillation.- Steam Distillation.- Absorption- and Stripping Columns.- Fluiddynamic Dimensioning of Trays and Tray Efficiency.- Fluiddynamic Design of Random Packings / Structured Packings and Determination of the HTU-/HETP-Values.- Demister Design.
Рубрики: Engineering design.
   Thermodynamics.

   Heat engineering.

   Heat transfer.

   Mass transfer.

   Chemical engineering.

   Engineering Design.

   Engineering Thermodynamics, Heat and Mass Transfer.

   Industrial Chemistry/Chemical Engineering.

Анотація: This book highlights the aspects that need to be considered when designing distillation columns in practice. It discusses the influencing parameters as well as the equations governing them, and presents several numerical examples. The book is intended both for experienced designers and for those who are new to the subject.

Перейти: https://doi.org/10.1007/978-3-319-51688-2

Дод.точки доступу:
Gbadamosi, R.; Nitsche, M. \.\; SpringerLink (Online service)
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13.


    Kan, Jeff WT.
    Quantitative Methods for Studying Design Protocols [[electronic resource] /] : монография / Jeff WT. Kan, Gero, John S. ; . - 1st ed. 2017. - [S. l. : s. n.]. - IX, 180 p. 110 illus., 55 illus. in color. - Б. ц.
    Зміст:
Preface --
1 Introduction --
2 Background --
3 Theoretical Framework --
4 Ontologically-Based Studies of Design Protocols --
5 Pilot Study of Statistical and Entropic description of linkographs --
6 Entropic Measurement and Design Outcome --
7 Conclusions --
References --
Appendix A.
Рубрики: Engineering design.
   Engineering Design.

Анотація: This book is aimed at researchers and students who would like to engage in and deepen their understanding of design cognition research. The book presents new approaches for analyzing design thinking and proposes methods of measuring design processes. These methods seek to quantify design issues and design processes that are defined based on notions from the Function-Behavior-Structure (FBS) design ontology and from linkography. A linkograph is a network of linked design moves or segments. FBS ontology concepts have been used in both design theory and design thinking research and have yielded numerous results. Linkography is one of the most influential and elegant design cognition research methods. In this book Kan and Gero provide novel and state-of-the-art methods of analyzing design protocols that offer insights into design cognition by integrating segmentation with linkography by assigning FBS-based codes to design moves or segments and treating links as FBS transformation processes. They propose and test information entropy as a means to capture the information carried by a linkograph and correlate it with the design outcomes.

Перейти: https://doi.org/10.1007/978-94-024-0984-0

Дод.точки доступу:
Gero, John S.; Kan, Jeff WT. \.\; SpringerLink (Online service)
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14.


    Ito, Yoshimi.
    Theory and Practice in Machining Systems [[electronic resource] /] : монография / Yoshimi. Ito, Matsumura, Takashi. ; . - 1st ed. 2017. - [S. l. : s. n.]. - XII, 292 p. 278 illus., 163 illus. in color. - Б. ц.
    Зміст:
PART I  Fundamentals --
1  Metal Processing Technology in General – Importance of Hierarchical Classification.-PART II  Determinants for Functional and Performance Specifications in Machining Space --
2  Choosing Guide in Form-generating Movement and New Approaches to Machining Technology – Correlation Diagramme among Machining Method - Tools- Attachments - Machine kinds --
3  Raw Materials for Work, Engineering Materials and Swarf Discharge --
4  Structural Body Components Closely Allocated around Machining Space - Core for User-oriented Platform System.-5  Work and Tool Holding Devices – Chuck, Centre, Mandrel and Tool Holder --
6  In-process and On-the-machine Measurement.-7  “ Platform Concept ”, Its Application and Modular Tooling System.-PART III  Practice and Theory at Machining Point.-8  Various Machining Methods and Tools in General --
9  Mechanisms for Metal Cutting and Grinding Including Cutting and Grinding tools.-1 0  Numerical Simulation for Metal Cutting and Grinding.-APPENDIXES.
Рубрики: Manufactures.
   Engineering design.

   Machinery.

   Applied mathematics.

   Engineering mathematics.

   Manufacturing, Machines, Tools, Processes.

   Engineering Design.

   Machinery and Machine Elements.

   Mathematical and Computational Engineering.

Анотація: This book describes machining technology from a wider perspective by considering it within the machining space. Machining technology is one of the metal removal activities that occur at the machining point within the machining space. The machining space consists of structural configuration entities, e.g., the main spindle, the turret head and attachments such the chuck and mandrel, and also the form-generating movement of the machine tool itself. The book describes fundamental topics, including the form-generating movement of the machine tool and the important roles of the attachments, before moving on to consider the supply of raw materials into the machining space, and the discharge of swarf from it, and then machining technology itself. Building on the latest research findings “Theory and Practice in Machining System” discusses current challenges in machining. Thus, with the inclusion of introductory and advanced topics, the book can be used as a guide and survey of machining technology for students and also as the basis for the planning of future research by professors and researchers in universities and scientific institutions. Professional engineers can use the book as a signpost to technical developments that will be applied in industry in coming years.

Перейти: https://doi.org/10.1007/978-3-319-53901-0

Дод.точки доступу:
Matsumura, Takashi.; Ito, Yoshimi. \.\; SpringerLink (Online service)
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15.


    Yang, Li.
    Additive Manufacturing of Metals: The Technology, Materials, Design and Production [[electronic resource] /] : монография / Li. Yang, Hsu, Keng. [et al.] ; . - 1st ed. 2017. - [S. l. : s. n.]. - VII, 168 p. 154 illus., 106 illus. in color. - Б. ц.
    Зміст:
Introduction to Additive Manufacturing --
Additive Manufacturing Process Chain --
Microstructure, Mechanical Properties and Design Considerations for Additive Manufacturing --
Electron Beam Melting --
Design for Additive Manufacturing-Draft --
Additive Manufacturing Quality Inspection --
Additive Manufacturing Supply Chain.
Рубрики: Manufactures.
   Metals.

   Engineering design.

   Industrial organization.

   Manufacturing, Machines, Tools, Processes.

   Metallic Materials.

   Engineering Design.

   Industrial Organization.

Анотація: This book offers a unique guide to the three-dimensional (3D) printing of metals. It covers various aspects of additive, subtractive, and joining processes used to form three-dimensional parts with applications ranging from prototyping to production. Examining a variety of manufacturing technologies and their ability to produce both prototypes and functional production-quality parts, the individual chapters address metal components and discuss some of the important research challenges associated with the use of these technologies. As well as exploring the latest technologies currently under development, the book features unique sections on electron beam melting technology, material lifting, and the importance this science has in the engineering context. Presenting unique real-life case studies from industry, this book is also the first to offer the perspective of engineers who work in the field of aerospace and transportation systems, and who design components and manufacturing networks. Written by the leading experts in this field at universities and in industry, it provides a comprehensive textbook for students and an invaluable guide for practitioners.

Перейти: https://doi.org/10.1007/978-3-319-55128-9

Дод.точки доступу:
Hsu, Keng.; Baughman, Brian.; Godfrey, Donald.; Medina, Francisco.; Menon, Mamballykalathil.; Wiener, Soeren.; Yang, Li. \.\; SpringerLink (Online service)
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16.


   
    Advances in Neuroergonomics and Cognitive Engineering [[electronic resource] :] : proceedings of the AHFE 2016 International Conference on Neuroergonomics and Cognitive Engineering, July 27-31, 2016, Walt Disney World®, Florida, USA / / ed.: Hale, Kelly S., Stanney, Kay M. - 1st ed. 2017. - [S. l. : s. n.]. - XII, 445 p. 141 illus., 88 illus. in color. - Б. ц.
    Зміст:
Influencing Design with Cognitive Engineering and Neuroergonomics --
Cognitive Computing --
Physiological Monitoring and Interaction --
Theoretical Advances in Cognitive Engineering and Neuroergonomics --
Assessing Cognition and Performance. .
Рубрики: Computational intelligence.
   User interfaces (Computer systems).

   Neurosciences.

   Engineering design.

   Industrial psychology.

   Computational Intelligence.

   User Interfaces and Human Computer Interaction.

   Neurosciences.

   Engineering Design.

   Industrial and Organizational Psychology.

Анотація: This book offers a broad perspective on the field of cognitive engineering and neuroergonomics. It covers emerging practices and future trends towards the harmonious integration of human operators with computational systems. The book reports on novel theoretical findings on mental workload and stress, activity theory, human reliability, error and risk, and neuroergonomic measures alike, together with a wealth of cutting-edge applications. It describes key advances in the understanding of cognitive processes, including mechanisms of perception, memory, reasoning, and motor response, giving a special emphasis to their role in the interactions between humans and the other elements of a computer-based system. Based on the AHFE’s main track on Neuroergonomics and Cognitive Engineering, held on July 27-31, 2016 in Walt Disney World®, Florida, USA, the book provides readers with a comprehensive view of the current challenges in cognitive computing and factors influencing human performance.

Перейти: https://doi.org/10.1007/978-3-319-41691-5

Дод.точки доступу:
Hale, Kelly S. \ed.\; Stanney, Kay M. \ed.\; SpringerLink (Online service)
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17.


    Iordache, Octavian.
    Implementing Polytope Projects for Smart Systems [[electronic resource] /] : монография / Octavian. Iordache ; . - 1st ed. 2017. - [S. l. : s. n.]. - XXI, 185 p. 139 illus. in color. - Б. ц.
    Зміст:
Introduction --
Processes Synthesis --
Molecules and Networks --
Conditioned Walks --
Assembling and Configuring --
Devices and Technologies --
Concepts and Knowledge --
Industrial Systems --
Polytope Perspectives --
Appendices --
Index. .
Рубрики: Computational intelligence.
   Manufactures.

   Engineering design.

   Control engineering.

   Computational Intelligence.

   Manufacturing, Machines, Tools, Processes.

   Engineering Design.

   Control and Systems Theory.

Анотація: This book presents a domain of extreme industrial and scientific interest: the study of smart systems and structures. It presents polytope projects as comprehensive physical and cognitive architectures that support the investigation, fabrication and implementation of smart systems and structures. These systems feature multifunctional components that can perform sensing, control, and actuation. In light of the fact that devices, tools, methodologies and organizations based on electronics and information technology for automation, specific to the third industrial revolution, are increasingly reaching their limits, it is essential that smart systems be implemented in industry. Polytope projects facilitate the utilization of smart systems and structures as key elements of the fourth industrial revolution. The book begins by presenting polytope projects as a reference architecture for cyber-physical systems and smart systems, before addressing industrial process synthesis in Chapter 2. Flow-sheet trees, cyclic separations and smart configurations for multi-component separations are discussed here. In turn, Chapter 3 highlights periodic features for drug delivery systems and networks of chemical reactions, while Chapter 4 applies conditioned random walks to polymers and smart materials structures. Chapter 5 examines self-assembly and self-reconfiguration at different scales from molecular to micro systems. Smart devices and technologies are the focus of chapter 6. Modular micro reactor systems and timed automata are examined in selected case studies. Chapter 7 focuses on inferential engineering designs, concept-knowledge, relational concept analysis and model driven architecture, while Chapter 8 puts the spotlight on smart manufacturing, industry 4.0, reference architectures and models for new product development and testing. Lastly, Chapter 9 highlights the polytope projects methodology and the prospects for smart systems and structures. Focusing on process engineering and mathematical modeling for the fourth industrial revolution, the book offers a unique resource for engineers, scientists and entrepreneurs working in chemical, biochemical, pharmaceutical, materials science or systems chemistry, students in various domains of production and engineering, and applied mathematicians. .

Перейти: https://doi.org/10.1007/978-3-319-52551-8

Дод.точки доступу:
Iordache, Octavian. \.\; SpringerLink (Online service)
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18.


   
    Micro-Manufacturing Technologies and Their Applications [[electronic resource] :] : a Theoretical and Practical Guide / / ed.: Fassi, Irene., Shipley, David. - 1st ed. 2017. - [S. l. : s. n.]. - XII, 296 p. 192 illus., 11 illus. in color. - Б. ц.
    Зміст:
Introduction to Miniaturisation --
Micro-injection Moulding --
Micro-Additive Manufacturing Technology --
Manufacturing Technology: Micro-machining --
Micro-waterjet Trchnology --
Micro-Electro-Discharge Machining (µ-EDM) --
Moulded Interconnect Devices --
Micro-Scale Geometry Measurement --
Micro-assembly --
Market analysis, technological foresight, and business models for micro-manufacturing.
Рубрики: Manufactures.
   Nanotechnology.

   Engineering design.

   Manufacturing, Machines, Tools, Processes.

   Nanotechnology and Microengineering.

   Nanotechnology.

   Engineering Design.

Анотація: This book provides in-depth theoretical and practical information on recent advances in micro-manufacturing technologies and processes, covering such topics as micro-injection moulding, micro-cutting, micro-EDM, micro-assembly, micro-additive manufacturing, moulded interconnected devices, and microscale metrology. It is designed to provide complementary material for the related e-learning platform on micro-manufacturing developed within the framework of the Leonardo da Vinci project 2013-3748/542424: MIMAN-T: Micro-Manufacturing Training System for SMEs. The book is mainly addressed to technicians and prospective professionals in the sector and will serve as an easily usable tool to facilitate the translation of micro-manufacturing technologies into tangible industrial benefits. Numerous examples are included to assist readers in learning and implementing the described technologies. In addition, an individual chapter is devoted to technological foresight, addressing market analysis and business models for micro-manufacturers.

Перейти: https://doi.org/10.1007/978-3-319-39651-4

Дод.точки доступу:
Fassi, Irene. \ed.\; Shipley, David. \ed.\; SpringerLink (Online service)
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19.


   
    Advances on Mechanics, Design Engineering and Manufacturing [[electronic resource] :] : proceedings of the International Joint Conference on Mechanics, Design Engineering & Advanced Manufacturing (JCM 2016), 14-16 September, 2016, Catania, Italy / / ed. Eynard, Benoit. [et al.]. - 1st ed. 2017. - [S. l. : s. n.]. - XXIII, 1245 p. 710 illus., 350 illus. in color. - Б. ц.
    Зміст:
Knowledge Based Engineering --
Industrial Design and Ergonomics --
Image Processing and Analysis.
Рубрики: Engineering design.
   Computer-aided engineering.

   Manufactures.

   Structural materials.

   Engineering Design.

   Computer-Aided Engineering (CAD, CAE) and Design.

   Manufacturing, Machines, Tools, Processes.

   Structural Materials.

Анотація: This book gathers papers presented at the International Joint Conference on Mechanics, Design Engineering and Advanced Manufacturing (JCM 2016), held on 14-16 September, 2016, in Catania, Italy. It reports on cutting-edge topics in product design and manufacturing, such as industrial methods for integrated product and process design; innovative design; and computer-aided design. Further topics covered include virtual simulation and reverse engineering; additive manufacturing; product manufacturing; engineering methods in medicine and education; representation techniques; and nautical, aeronautics and aerospace design and modeling. The book is divided into eight main sections, reflecting the focus and primary themes of the conference. The contributions presented here will not only provide researchers, engineers and experts in a range of industrial engineering subfields with extensive information to support their daily work; they are also intended to stimulate new research directions, advanced applications of the methods discussed, and future interdisciplinary collaborations.

Перейти: https://doi.org/10.1007/978-3-319-45781-9

Дод.точки доступу:
Eynard, Benoit. \ed.\; Nigrelli, Vincenzo. \ed.\; Oliveri, Salvatore Massimo. \ed.\; Peris-Fajarnes, Guillermo. \ed.\; Rizzuti, Sergio. \ed.\; SpringerLink (Online service)
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20.


    Rossi, Cesare.
    Ancient Engineers' Inventions [[electronic resource] :] : precursors of the Present / / Cesare. Rossi, Russo, Flavio. ; . - 2nd ed. 2017. - [S. l. : s. n.]. - XVII, 420 p. 300 illus., 116 illus. in color. - Б. ц.
    Зміст:
Premise: Representing and Measuring the Environment --
A premise: it all started with a drawing --
I.1 Elevations, Plan and Sections --
I.2 Protohistoric Drafting machine for the clay tablets engraving --
I.3 Examples of planimetries from the IV millennium B.C. to the I century A.D. --
I.4 Ancient Units --
1. Measuring Mass --
Introduction --
1.1 The balance scale --
1.2 The steelyard balance --
Observations --
2 Measuring Distance and Slope --
Introduction --
2.1 Jacob’s staff --
2.2 Range finders --
2.3 The Astrolabe --
2.4 The dioptre by Heron --
2.5 The ancient odometers --
Observations --
Measuring a building height by an astrolabe --
Measuring the distances by the groma and by the surveyor’s cross --
3 Measuring Time --
Introduction --
3.1 The sundial --
3.2 Water clocks --
Observations --
4 Orientation --
Introduction --
4.1 The Sundial Compass --
4.2 The Chinese South-Pointing Chariot Sundial Compass --
4.3 The Windrose and the Magnetic Compass --
5 Ancient Computation Devices --
Introduction --
5.1 The Abacus --
5.2 The Mesolabio --
5.3 The Mechanism of Antikitera --
Observations --
6 The Natural Energy Used In Antiquity --
Introduction --
6.1 Energy from man --
6.2 Energy from animals --
6.3 The capstan --
6.4 The treadwheel --
6.5 Rough evaluation of the power from a wind motor --
6.6 Rough evaluation of the power from a waterwheel --
7 Wind Motors --
Introduction --
7.1 The wind mills --
7.2 Wings on the sea: the sails --
7.3.3 The Flettner rotor --
Observations --
8 Hydraulic Motors --
Introduction --
8.1 Water wheels with vertical axis --
8.2 Water wheels with horizontal axis --
8.3 The floating mill --
8.4 Water wheels in the Middle Ages and the Renaissance --
Observations --
9 Refrigeration and Heating --
9.1 Air Cooling with Wind Towers --
9.2 The production of ice --
9.3 Nero’s Sherbet --
9.3 Wheat Pits --
9.4 Heating and Thermal Baths --
9.5 Energy Saving: the Sun Chimney Heating and Thermal Baths --
10 The Production Of Water --
10.1 The Air Well --
10.2 The Dew Basin --
10.3 The Qanat --
10.4 Distillation --
11 Lifting Water --
Introduction --
11.1 The early devices --
11.2 The Archimedes’ screw --
11.3 Norias --
11.4 Pumps --
Observations --
12 Adduction and Distribution of Water --
Introduction --
12.1 Open ducts --
12.2 Penstocks --
12.3 The great cisterns --
12.4 Water distribution systems --
12.5 Pipes --
12.6 Valves --
12.7 Hydraulic mining --
Observations --
13 Underwater Activities --
Introduction --
13.1 Scuba divers --
13.2 Diving bell --
14 Transports --
Introduction --
14.1 Roman charts --
14.2 Railed cargo --
14.3 The rails of Pompei --
14.4 Ancient self-propelled vehicles --
14.5 Early ball bearings --
14.6 Transport on water --
14.7 Cableways --
14.10 The dawn of the flight in the antiquity --
Observations --
15 Telecommunications --
Introduction --
15.1 Acoustic --
15.2 Carrier pigeons --
15.3 Optical telecommunication systems --
15.4 Lighthouses --
15.5 The water telegraph --
Observations --
16 Medicine and Health --
Introduction --
16.1 Medical Assistance provided to Legionnaires --
16.2 Reconstructive Plastic Surgery --
16.3 Early Penicillin --
16.4 The Beginning of Biological Warfare --
17 Secondary Motors --
Introduction --
17.1 Cranes and tackle --
17.2 Gravity driven elevators --
17.3 Siege towers --
17.4 The trebuchet --
17.5 Flexion elastic motors --
17.6 Torsion elastic motors --
17.7 Throwing machines operated by torsion motors --
17.8 Mechanics of the throwing machines --
17.9 Pneumatic motors --
17.10 Small spring motors --
17.11 Ancient steam engines --
Observations --
18 Spinnind and Weaving --
Introduction --
18.1 The dawn of spinning and weaving --
18.2 The spinning wheel --
18.3 The mechanical spinning --
18.4 The automatic weaving --
Observations --
19 Some Applications of Fire --
Introduction --
19.1 Fire ignition --
19.1.2 Optical flints --
19.2 Marine fire – the Roman candle --
19.3 Wind lanterns --
19.4 Fire for warming --
19.5 Fire for warfare --
19.6 The protection from fire: asbestos --
20 Automata (Towards automation and robots) --
Introduction --
20.1 The Hellenistic Age --
20.2 The Middle Ages --
20.3 The Renaissance --
20.4 The XVIII Century --
20.5 The XIX Century --
20.6 Automata of the Far East --
20.7 Between the two millenniums --
Observations --
21 Some Ancient Building Techniques --
Introduction --
21.1 Stone buildings --
21.2 Concrete Buildings --
21.3 Considerations on the polygonal work --
21.4 Earthquake-resistant buildings with wooden ribs --
21.5 Seismic isolators --
21.6 Consideration on ancient concrete --
Subject Index. .
Рубрики: Engineering design.
   Machinery.

   Technology—History.

   Archaeology.

   History.

   Engineering Design.

   Machinery and Machine Elements.

   History of Technology.

   Archaeology.

   History of Science.

Анотація: This book describes the inventions and designs of ancient engineers who are the precursors of the present. The period ranges mainly from 300 B.C. to 1600 A.D. with several exceptions. Many of the oldest inventions are documented by archaeological finds, often very little known, mainly from Pompeii, Herculaneum and Stabiae and reveal a surprising modernity in their conception. Most of the inventions presented in the first four parts of the book were conceived up to the late Roman Empire and may be considered as milestones, each in their respective field. The fifth part concentrates on more recent centuries. The sixth part deals with some building construction techniques. Generally, for each of the presented inventions, three elements of research and reference are provided: written documents (the classics), iconic references (coins, bas-reliefs, etc.) and archaeological findings. The authors did not write this book for engineers only; hence they describe all the devices without assuming wide technical knowledge. The authors’ main aim is to try to communicate their enthusiasm for the inventions and the inventors of the past and to contribute to the fascinating study of the History of Engineering. This second edition includes new topics and chapters that are of special interest to engineers.

Перейти: https://doi.org/10.1007/978-3-319-44476-5

Дод.точки доступу:
Russo, Flavio.; Rossi, Cesare. \.\; SpringerLink (Online service)
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(Асоціація ЕБНІТ)