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NANOSCALE CUTTING OF MONOCRYSTALLINE SILICON USING MOLECULAR DYNAMICS SIMULATION 被引量:2
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作者 LI Xiaoping CAI Minbo RAHMAN Mustafizur 《Chinese Journal of Mechanical Engineering》 SCIE EI CAS CSCD 2007年第5期8-11,共4页
It has been found that the brittle material, monocrystalline silicon, can be machined in ductile mode in nanoscale cutting when the tool cutting edge radius is reduced to nanoscale and the undeformed chip thickness is... It has been found that the brittle material, monocrystalline silicon, can be machined in ductile mode in nanoscale cutting when the tool cutting edge radius is reduced to nanoscale and the undeformed chip thickness is smaller than the tool edge radius. In order to better understand the mechanism of ductile mode cutting of silicon, the molecular dynamics (MD) method is employed to simulate the nanoscale cutting of monocrystalline silicon. The simulated variation of the cutting forces with the tool cutting edge radius is compared with the cutting force results from experimental cutting tests and they show a good agreement. The results also indicate that there is silicon phase transformation from monocrystalline to amorphous in the chip formation zone that can be used to explain the cause of ductile mode cutting. Moreover, from the simulated stress results, the two necessary conditions of ductile mode cutting, the tool cutting edge radius are reduced to nanoscale and the undeformed chip thickness should be smaller than the tool cutting edge radius, have been explained. 展开更多
关键词 Ductile mode cutting Molecular dynamics phase transformation Force Stress
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Computer Aided Alloy Design of High Performance Prehardened Mold Steel for Plastic
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作者 何燕霖(Ph. D. +1 位作者 Candidate 李麟(Advisor) 《Journal of Shanghai University(English Edition)》 CAS 2005年第5期455-457,共3页
prehardened mold steel for plastic, Thermo-Calc & DICTRA software package, machinability, heat treatment technology, free cutting phase.
关键词 prehardened mold steel for plastic Thermo-Calc DICTRA software package MACHINABILITY heat treatment technology free cutting phase.
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