Advances in Machining and Manufacturing Technology XII

Advances in Machining and Manufacturing Technology XII

Description:

The volume tends to present to the readers the recent advances in the field of machining and advanced manufacturing technology. It is therefore valuable to production and research engineers, research students and academics in the field.
Volume is indexed by Thomson Reuters CPCI-S (WoS).
The 131 peer reviewed papers are grouped as follows:
Chapter 1: Theory and Technology of Cutting and Grinding;
Chapter 2: New Technologies of Tool;
Chapter 3: Precision and Ultra Precision Machining;
Chapter 4: Advanced Manufacturing Technology;
Chapter 5: Micro and Nano Technology;
Chapter 6: Mechanical Manufacturing Experiment and Detection Technology;
Chapter 7: Automation and Modern Manufacturing System

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Info:

Editors:
Xipeng Xu, Chuanzhen Huang, Dunwen Zuo and Ming Chen
THEMA:
PDT, PHV, TGM
BISAC:
TEC021000
Details:
Selected, peer reviewed papers from the 12th Conference on Machining & Advanced Manufacturing Technology, July 24- 27, 2013, Xiamen, China
Pages:
780
Year:
2014
ISBN-13 (softcover):
9783037858929
ISBN-13 (CD):
9783037955888
ISBN-13 (eBook):
9783038262732
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Review from Ringgold Inc., ProtoView: This volume collects 131 papers delivered during the July 2013 conference previously called Metal Cutting Conference of China Colleges and Universities. The Chinese researchers present new developments in cutting and grinding technologies, tools, precision machining, nanotechnology, mechanical manufacturing, detection technology, automation, and modern manufacturing systems. Four papers from Nanjing University of Aeronautics and Astronautics evaluate high-speed grinding of nickel alloys with a single diamond grain, milling of titanium matrix composites, and the wear behavior of cemented carbide tools coated with titanium alloy. Other topics include polishing cylindrical rollers with a double-sided lapping machine, rotary ultrasonic machining of sapphire, a particle filter algorithm for signal de-noising, and the prediction of drilling forces on cortical bone.