Books by Keyword: Ultrasonic Vibration

Books

Edited by: Prof. Akihiko Fujiwara
Online since: October 2024
Description: This edition presents the compilation of research papers from the 8th International Conference on Materials Engineering and Nano Sciences (ICMENS 2024) and the 8th International Conference on Material Engineering and Manufacturing (ICMEM 2024), which were successfully held in Kwansei Gakuin University, Osaka, Japan, during March 22-25, 2024, to serve as a platform for experts, researchers, and practitioners from around the world to convene and exchange ideas and the latest advancements in materials science, mechanical engineering and construction. The book will be helpful to specialists in the mentioned branches of engineering practice.
Edited by: Julong Yuan, Ming Chen, Jun Wang, Libo Zhou and Binghai Lv
Online since: September 2013
Description: Volume is indexed by Thomson Reuters CPCI-S (WoS).
Abrasive machining is one kind of old technology, but it has a far-reaching impact on a broad spectrum of industries. In particular modern manufacturing, there is an ever increasing demand of advanced abrasive technology and other precision abrasive technology. The collection brings together both academic researchers and practitioners from around the world for interchange of the latest developments.
The 123 papers are grouped as follows:
1: Abrasive Jet Machining;
2: Abrasive Machining;
3: Advanced Cutting Technology;
4: Brittle Material Machining;
5: CMP and Silicon Wafer Processing;
6: Coolants and Cooling;
7: Design, Fabrication and Analysis of Devices for the Applications of Abrasive Technologies;
8: EDM, Ultrasonic Machining, and Laser Machining;
9: Finishing, Lapping and Polishing;
10: Glass Molding and Related Topics;
11: Grinding Wheel and Abrasive Grain Technologies;
12: In-Process Measurement and Monitoring, Metrology;
13: Machine Tools and Systems, Tooling Processing;
14: Micro/Nano-Machining;
15: Surface Integrity and Materials Characterization;
16: Tribology in Manufacturing;
17: Truing, Dressing and ELID.
Edited by: Bo Zhao, Yidu Zhang, Guanglin Wang, Hai Zhang, Jianbin Zhang and Feng Jiao
Online since: November 2010
Description: Volume is indexed by Thomson Reuters CPCI-S (WoS).
This collection of 110 peer-reviewed papers covers the topics of the History of Mechanical Technology, Mechanical Design and Mechanical Manufacture.
Edited by: Bo Zhao, Prof. Xi Peng Xu, Guang Qi Cai and Ren Ke Kang
Online since: September 2009
Description: Volume is indexed by Thomson Reuters CPCI-S (WoS).
This volume consists of a selection of papers, made from among more than 300 submitted by universities and industrial laboratories. All of the papers were subjected to peer-review by at least two expert referees. Selection for this volume depended upon the quality of the paper and its relevance to the thematic topic.
Edited by: Dongming Guo, Jun Wang, Zhenyuan Jia, Renke Kang, Hang Gao, and Xuyue Wang
Online since: August 2009
Description: This special volume comprises a collection of 139 papers chosen, from among 510 submissions from universities and industries all over the world, on the basis of their quality and relevance to the central topic. All of the papers were peer-reviewed by selected experts and mirror the latest developments in the field of materials manufacturing technology; ranging from the fundamentals, to new technologies and applications. The papers specifically cover the topics of advanced manufacturing technology and equipment, and manufacturing systems and automation.
Volume is indexed by Thomson Reuters CPCI-S (WoS).
Edited by: Julong Yuan, Shiming Ji, Donghui Wen and Ming Chen
Online since: May 2009
Description: Volume is indexed by Thomson Reuters CPCI-S (WoS).
This special volume presents the very latest findings and ideas in the field of ultra-precision machining.
Edited by: Tsunemoto Kuriyagawa, Libo Zhou, Jiwang Yan and Nobuhito Yoshihara
Online since: September 2008
Description: Volume is indexed by Thomson Reuters CPCI-S (WoS).
Abrasive technology concerns manufacturing processes that involve the use of abrasives in various forms. It has a long history; originating right from the first discovery of minerals. With increasingly stringent requirements for the production of high-precision and high surface-quality components, in applications such as silicon wafers for the semiconductor industry and optical lenses for the precision instrument industry, abrasive technology is becoming an increasingly important factor in precision manufacturing. An understanding of the mechanisms of abrasive technology ensures the soundness and integrity of current component manufacture, as well as leading to the development of new and effective techniques.
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