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Computational model for the critical rotational speed of an HSK tool holder
Feng Pingfa ; Wu Zhijun ; Yu Dingwen ; Li Guanghui
2010-10-12 ; 2010-10-12
关键词Practical/ clamps cutting tools elasticity failure analysis plasticity/ computational model HSK tool holder critical rotational speed hollow short taper tool high speed cutting tools failure mode determination material properties clamping force elasticity theory plasticity theory centrifugal force pull force cutting force clamping system failure/ E1560 Production equipment E1020 Maintenance and reliability E2180A Elasticity (mechanical engineering) E2180B Plasticity (mechanical engineering)
中文摘要The hollow short taper (HSK) tool holder is one of the most important tool holders for high speed cutting. The stresses in an HSK tool holder during high speed cutting were analyzed to determine the failure modes based on the material properties and clamping force. Elasticity and plasticity theory were used to develop a computational model of the tool holder to determine the critical rotational speed as a function of the dimensions, interference, material properties, centrifugal force, pull force and cutting force. The study shows that insufficient clamping force is the main cause of clamping system failure at high rotational speeds. Analyses of the critical rotational speed not only ensures safe usage, but also provide important parameters to fully utilize the potential of the tool holder for high speed cutting.
语种中文
出版者Tsinghua University Press ; China
内容类型期刊论文
源URL[http://hdl.handle.net/123456789/80190]  
专题清华大学
推荐引用方式
GB/T 7714
Feng Pingfa,Wu Zhijun,Yu Dingwen,et al. Computational model for the critical rotational speed of an HSK tool holder[J],2010, 2010.
APA Feng Pingfa,Wu Zhijun,Yu Dingwen,&Li Guanghui.(2010).Computational model for the critical rotational speed of an HSK tool holder..
MLA Feng Pingfa,et al."Computational model for the critical rotational speed of an HSK tool holder".(2010).
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