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Hao Tong,Yong Li.- Kinetic properties of metals and amorphous media.- Monte-Carlo analysis in kinetic theory.- Kinetic study of shock waves..This third revised edition features978-1-4419-3052-1978-0-387-21775-8Series ISSN 0938-037Xgain631 发表于 2025-3-27 07:55:50
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Hao Tong,Yong Liedge the fact that much of the inspiration without which this book would not have been possible, originated from what I learned from several outstanding teacher978-94-010-5602-1978-94-011-3612-9Series ISSN 0168-1222 Series E-ISSN 2365-6425河潭 发表于 2025-3-27 17:13:54
he readers understand the concepts, theories, and methods easily and provide practical operation guidance for engineering applications in industrial machining processes and machine tools.978-981-19-3126-0978-981-19-3124-6节约 发表于 2025-3-27 21:10:03
Design and Test of Pulsed Power Supply,ontrollable pulsewidth and peak voltage. The key novelty lies in a cascaded circuit with two triodes working in the state of ultra-fast avalanche conduction, where pF capacitors are applied to adjusting the pulsewidth and pulsed energy precisely. Performance tests verified that a single pulse of 5 nAffectation 发表于 2025-3-28 00:47:14
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Precision Fabrication and Measurement of Micro Tool Electrode,rection of wire-guide arc. Furthermore, a hybrid fabrication process is presented by combining the TF-WEDG method and a reverse-copying method of self-drilled holes for complementary advantages of high accuracy and high efficiency. In addition, an on-machine fabrication method of flat-shaped tool el雪上轻舟飞过 发表于 2025-3-28 09:33:20
Vibration-Assisted SS-3D Micro EDM,ical 3D micro cavities are machined successfully by using the process of vibration-assisted SS-3D micro EDM. The occurring frequency of favorable discharge gap increases obviously during the machining process assisted with high-frequency vibration, so that the machining stability and the effective dLOPE 发表于 2025-3-28 14:02:04
Algorithms to Reduce Depth Errors,d algorithms. Typical 3D micro cavities <800 μm can be automatically machined. The machining accuracy of micro surfaces and edges is obviously improved. The depth errors can be controlled within 2 μm, and the material removal rate (MRR) reaches 2.0 × 10. μm./s with a tool electrode of .80 μm and its