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The objective of this collection was to bring together researchers from academia and industry, as well as end-users, in order to share ideas, problems and solutions related to the multifaceted aspects of Materials Engineering for Advanced Technologies. The result is an up-to-date handbook guide to the subject.
The volume contains selected, peer reviewed paper from 2012 2nd International Conference on Materials Engineering for Advanced Technologies (ICMEAT 2012), December 27-28, 2012, Xiamen, P.R. of China. The papers are grouped as follows: Chapter 1: Materials Engineering, Technologies and Processing; Chapter 2: Building Materials and Technology; Chapter 3: General Mechanical Engineering; Chapter 4: Mechatronics, Automation and Control; Chapter 5: Information and Computer Science.
Collection of selected, peer reviewed papers from the 2013 3rd International Conference on Materials Engineering for Advanced Technologies (ICMEAT 2013), December 31, 2013 - January 2, 2014, Brisbane, Australia. Volume is indexed by Thomson Reuters CPCI-S (WoS). The 53 papers are grouped as follows: Chapter 1: Applied Materials and Processing Technologies, Chapter 2: Advanced Engineering Solutions in Industry
Annotation Collection of selected, peer reviewed papers from the 2013 3rd International Conference on Materials Engineering for Advanced Technologies (ICMEAT 2013), December 31, 2013 - January 2, 2014, Brisbane, Australia. The 53 papers are grouped as follows: Chapter 1: Applied Materials and Processing Technologies, Chapter 2: Advanced Engineering Solutions in Industry.
This study begins with a review of carbon materials, emphasizing structure and chemical bonding in various forms of carbon. It then goes on to discuss advanced technologies for the manufacture and modification of carbon-based materials and their practical applications.
Collection of selected, peer reviewed papers from the 4th International Conference on Materials Science and Engineering (ICMSE2014), December 27-28, 2014, Jiujiang, China. The 71 papers are grouped as follows: Chapter 1: Materials Science and Technologies; Chapter 2: Nanomaterials and Technologies; Chapter 3: Metal Materials and Alloys; Chapter 4: Polymer Materials; Chapter 5: Composites and Construction Materials; Chapter 6: Physical Properties of Materials
This volume focuses on the fundamentals and advancements in micro and nanomanufacturing technologies applied in the biomedical and biochemical domain. The contents of this volume provide comprehensive coverage of the physical principles of advanced manufacturing technologies and the know-how of their applications in the fabrication of biomedical devices and systems. The book begins by documenting the journey of miniaturization and micro-and nano-fabrication. It then delves into the fundamentals of various advanced technologies such as micro-wire moulding, 3D printing, lithography, imprinting, direct laser machining, and laser-induced plasma-assisted machining. It also covers laser-based technologies which are a promising option due to their flexibility, ease in control and application, high precision, and availability. These technologies can be employed to process several materials such as glass, polymers: polycarbonate, polydimethylsiloxane, polymethylmethacrylate, and metals such as stainless steel, which are commonly used in the fabrication of biomedical devices, such as microfluidic technology, optical and fiber-optic sensors, and electro-chemical bio-sensors. It also discusses advancements in various MEMS/NEMS based technologies and their applications in energy conversion and storage devices. The chapters are written by experts from the fields of micro- and nano-manufacturing, materials engineering, nano-biotechnology, and end-users such as clinicians, engineers, academicians of interdisciplinary background. This book will be a useful guide for academia and industry alike.