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The rapid advancement in chemical vapour deposition (CVD) technology has reached many fields of application, including thin film coating, microelectronics and communications. Chemical Vapour Deposition: An Integrated Engineering Design for Advanced Materials focuses on the application of this technology to engineering coatings and, in particular, to the manufacture of high performance materials, such as fibre reinforced ceramic composite materials, for structural applications at high temperatures. While previous discourses on CVD have had a tendency to focus solely on electronics, this book aims to provide a thorough exploration of the design and applications of advanced materials, and their manufacture in engineering. It addresses a wide range of topics related to CVD theories and applications. From physical fundamentals and principles, to optimisation of processing parameters and other current practices, this book is designed to guide readers through the development of both high performance materials and the design of CVD systems to manufacture such materials. Chemical Vapour Deposition: An Integrated Engineering Design for Advanced Materials introduces integrated design and manufacture of advanced materials to researchers, industrial practitioners, postgraduates and senior undergraduate students. It also features a large body of appendices to provide references for further study. The Engineering Materials and Processes series focuses on all forms of materials and the processes used to synthesise and formulate them as they relate to the various engineering disciplines. The series deals with a diverse range of materials: ceramics; metals (ferrous and non-ferrous); semiconductors; composites, polymers, biomimetics etc. Each monograph in the series is written by a specialist and demonstrates how enhancements in materials and the processes associated with them can improve performance in the field of engineering in which they are used.
Chemical vapor deposition. --- Coating processes. --- Chemical vapor deposition --- Coating processes --- Industrial & Management Engineering --- Mechanical Engineering --- Engineering & Applied Sciences --- Surface coating processes --- CVD (Chemical vapor deposition) --- Deposition, Chemical vapor --- Vapor deposition, Chemical --- Engineering. --- Industrial engineering. --- Materials science. --- Operating Procedures, Materials Treatment. --- Materials Science, general. --- Coatings --- Surfaces (Technology) --- Vapor-plating
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The rapid advancement in chemical vapour deposition (CVD) technology has reached many fields of application, including thin film coating, microelectronics and communications. Chemical Vapour Deposition: An Integrated Engineering Design for Advanced Materials focuses on the application of this technology to engineering coatings and, in particular, to the manufacture of high performance materials, such as fibre reinforced ceramic composite materials, for structural applications at high temperatures. While previous discourses on CVD have had a tendency to focus solely on electronics, this book aims to provide a thorough exploration of the design and applications of advanced materials, and their manufacture in engineering. It addresses a wide range of topics related to CVD theories and applications. From physical fundamentals and principles, to optimisation of processing parameters and other current practices, this book is designed to guide readers through the development of both high performance materials and the design of CVD systems to manufacture such materials. Chemical Vapour Deposition: An Integrated Engineering Design for Advanced Materials introduces integrated design and manufacture of advanced materials to researchers, industrial practitioners, postgraduates and senior undergraduate students. It also features a large body of appendices to provide references for further study. The Engineering Materials and Processes series focuses on all forms of materials and the processes used to synthesise and formulate them as they relate to the various engineering disciplines. The series deals with a diverse range of materials: ceramics; metals (ferrous and non-ferrous); semiconductors; composites, polymers, biomimetics etc. Each monograph in the series is written by a specialist and demonstrates how enhancements in materials and the processes associated with them can improve performance in the field of engineering in which they are used.
Materials sciences --- Applied physical engineering --- Plant and equipment --- Production management --- materiaalkennis --- fabrieken --- coating --- productie --- machines
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The globalisation of manufacturing industries leads to a thirst for rapid advancements in technological development and expertise in the fields of advanced design and manufacturing. In this scenario, both industry and academia have an urgent need to equip themselves of the latest knowledge and trends relating to design and manufacture. Advanced Design and Manufacture to Gain a Competitive Edge collects together papers from the 2008 International Conference on Advanced Design and Manufacture (ICADAM). This conference solicits both cutting edge fundamental research and recent industrial application papers, with a goal towards bringing together from all over the world design and manufacture practitioners from academia, government organisations and industry. Recent advancements, emerging trends and new challenges in the fields of design and manufacturing are covered, with a particular focus on the understanding of the impact of distributed team-based design and manufacture on research and industrial practices for global companies. The proceedings of ICADAM 2008 is divided into two volumes: Global Design to Gain a Competitive Edge: An Holistic and Collaborative Design Approach based on Computational Tools and Advanced Design and Manufacture to Gain a Competitive Edge: New Manufacturing Techniques and their Role in Improving Enterprise Performance.
Engineering design --- Manufacturing processes --- Manufactures. --- Engineering design. --- Computer aided design. --- Materials. --- Manufacturing, Machines, Tools, Processes. --- Engineering Design. --- Computer-Aided Engineering (CAD, CAE) and Design. --- Control, Robotics, Mechatronics. --- Materials Science, general. --- Engineering --- Engineering materials --- Industrial materials --- CAD (Computer-aided design) --- Computer-assisted design --- Computer-aided engineering --- Design --- Design, Engineering --- Industrial design --- Strains and stresses --- Manufactured goods --- Manufactured products --- Products --- Products, Manufactured --- Commercial products --- Manufacturing industries --- Materials --- Computer-aided engineering. --- Control engineering. --- Robotics. --- Mechatronics. --- Materials science. --- Material science --- Physical sciences --- Mechanical engineering --- Microelectronics --- Microelectromechanical systems --- Automation --- Machine theory --- Control engineering --- Control equipment --- Control theory --- Engineering instruments --- Programmable controllers --- CAE --- Data processing
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Materials sciences --- Plant and equipment --- Production management --- Programming --- Artificial intelligence. Robotics. Simulation. Graphics --- Computer. Automation --- materiaalkennis --- DFMA (design for manufacture and assembly) --- automatisering --- KI (kunstmatige intelligentie) --- machines --- CAD (computer aided design)
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The globalisation of manufacturing industries leads to a thirst for rapid advancements in technological development and expertise in the fields of advanced design and manufacturing. In this scenario, both industry and academia have an urgent need to equip themselves of the latest knowledge and trends relating to design and manufacture. Global Design to Gain a Competitive Edge collects together papers from the 2008 International Conference on Advanced Design and Manufacture (ICADAM). This conference solicits both cutting edge fundamental research and recent industrial application papers, with a goal towards bringing together from all over the world design and manufacture practitioners from academia, government organisations and industry. Recent advancements, emerging trends and new challenges in the fields of design and manufacturing are covered, with a particular focus on the understanding of the impact of distributed team-based design and manufacture on research and industrial practices for global companies. The proceedings of ICADAM 2008 is divided into two volumes: Global Design to Gain a Competitive Edge: An Holistic and Collaborative Design Approach based on Computational Tools and Advanced Design and Manufacture to Gain a Competitive Edge: New Manufacturing Techniques and their Role in Improving Enterprise Performance.
Engineering design --- Engineering graphics --- Graphics, Engineering --- Geometry, Descriptive --- Mechanical drawing --- Manufactures. --- Engineering design. --- Computer aided design. --- Materials. --- Manufacturing, Machines, Tools, Processes. --- Engineering Design. --- Computer-Aided Engineering (CAD, CAE) and Design. --- Control, Robotics, Mechatronics. --- Materials Science, general. --- Engineering --- Engineering materials --- Industrial materials --- Manufacturing processes --- CAD (Computer-aided design) --- Computer-assisted design --- Computer-aided engineering --- Design --- Design, Engineering --- Industrial design --- Strains and stresses --- Manufactured goods --- Manufactured products --- Products --- Products, Manufactured --- Commercial products --- Manufacturing industries --- Materials --- Computer-aided engineering. --- Control engineering. --- Robotics. --- Mechatronics. --- Materials science. --- Mechanical engineering --- Microelectronics --- Microelectromechanical systems --- Automation --- Machine theory --- Control engineering --- Control equipment --- Control theory --- Engineering instruments --- Programmable controllers --- CAE --- Material science --- Physical sciences --- Data processing
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This book presents the latest research on mechatronic systems engineering. By bringing together the most important papers from the 2018 Mechatronics Forum Conference ‘Reinventing Mechatronics,’ it outlines key trends in research and applications that will define mechatronics for the next 50 years. Mechatronics was established as an engineering discipline over 50 years ago, as the integration of electronics and information technology with mechanical design. Given major technological advances and the growth of systems-level concepts such as Cyber-Physical Systems and the Internet of Things, along with Cloud Technologies and Big Data, it’s now high time to reconsider the role of mechatronics, particularly within engineering design. Past and ongoing technological changes are impacting how systems are designed and configured in ways that could never have been envisaged when the field of mechatronics was first introduced. .
Mechatronics. --- Mechanical engineering --- Microelectronics --- Microelectromechanical systems --- Engineering design. --- Robotics. --- Automation. --- Manufactures. --- Engineering Design. --- Robotics and Automation. --- Manufacturing, Machines, Tools, Processes. --- Manufactured goods --- Manufactured products --- Products --- Products, Manufactured --- Commercial products --- Manufacturing industries --- Automatic factories --- Automatic production --- Computer control --- Engineering cybernetics --- Factories --- Industrial engineering --- Mechanization --- Assembly-line methods --- Automatic control --- Automatic machinery --- CAD/CAM systems --- Robotics --- Automation --- Machine theory --- Design, Engineering --- Engineering --- Industrial design --- Strains and stresses --- Design
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The globalisation of manufacturing industries leads to a thirst for rapid advancements in technological development and expertise in the fields of advanced design and manufacturing. In this scenario, both industry and academia have an urgent need to equip themselves of the latest knowledge and trends relating to design and manufacture. Advanced Design and Manufacture to Gain a Competitive Edge collects together papers from the 2008 International Conference on Advanced Design and Manufacture (ICADAM). This conference solicits both cutting edge fundamental research and recent industrial application papers, with a goal towards bringing together from all over the world design and manufacture practitioners from academia, government organisations and industry. Recent advancements, emerging trends and new challenges in the fields of design and manufacturing are covered, with a particular focus on the understanding of the impact of distributed team-based design and manufacture on research and industrial practices for global companies. The proceedings of ICADAM 2008 is divided into two volumes: Global Design to Gain a Competitive Edge: An Holistic and Collaborative Design Approach based on Computational Tools and Advanced Design and Manufacture to Gain a Competitive Edge: New Manufacturing Techniques and their Role in Improving Enterprise Performance.
Materials sciences --- Plant and equipment --- Production management --- Programming --- Artificial intelligence. Robotics. Simulation. Graphics --- Computer. Automation --- materiaalkennis --- DFMA (design for manufacture and assembly) --- automatisering --- KI (kunstmatige intelligentie) --- machines --- CAD (computer aided design)
Choose an application
The rapid advancement in chemical vapour deposition (CVD) technology has reached many fields of application, including thin film coating, microelectronics and communications. Chemical Vapour Deposition: An Integrated Engineering Design for Advanced Materials focuses on the application of this technology to engineering coatings and, in particular, to the manufacture of high performance materials, such as fibre reinforced ceramic composite materials, for structural applications at high temperatures. While previous discourses on CVD have had a tendency to focus solely on electronics, this book aims to provide a thorough exploration of the design and applications of advanced materials, and their manufacture in engineering. It addresses a wide range of topics related to CVD theories and applications. From physical fundamentals and principles, to optimisation of processing parameters and other current practices, this book is designed to guide readers through the development of both high performance materials and the design of CVD systems to manufacture such materials. Chemical Vapour Deposition: An Integrated Engineering Design for Advanced Materials introduces integrated design and manufacture of advanced materials to researchers, industrial practitioners, postgraduates and senior undergraduate students. It also features a large body of appendices to provide references for further study. The Engineering Materials and Processes series focuses on all forms of materials and the processes used to synthesise and formulate them as they relate to the various engineering disciplines. The series deals with a diverse range of materials: ceramics; metals (ferrous and non-ferrous); semiconductors; composites, polymers, biomimetics etc. Each monograph in the series is written by a specialist and demonstrates how enhancements in materials and the processes associated with them can improve performance in the field of engineering in which they are used.
Materials sciences --- Applied physical engineering --- Plant and equipment --- Production management --- materiaalkennis --- fabrieken --- coating --- productie --- machines
Choose an application
Materials sciences --- Plant and equipment --- Production management --- Programming --- Artificial intelligence. Robotics. Simulation. Graphics --- Computer. Automation --- materiaalkennis --- DFMA (design for manufacture and assembly) --- automatisering --- KI (kunstmatige intelligentie) --- machines --- CAD (computer aided design)
Choose an application
This book presents the latest research on mechatronic systems engineering. By bringing together the most important papers from the 2018 Mechatronics Forum Conference ‘Reinventing Mechatronics,’ it outlines key trends in research and applications that will define mechatronics for the next 50 years. Mechatronics was established as an engineering discipline over 50 years ago, as the integration of electronics and information technology with mechanical design. Given major technological advances and the growth of systems-level concepts such as Cyber-Physical Systems and the Internet of Things, along with Cloud Technologies and Big Data, it’s now high time to reconsider the role of mechatronics, particularly within engineering design. Past and ongoing technological changes are impacting how systems are designed and configured in ways that could never have been envisaged when the field of mechatronics was first introduced. .
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