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Ti6Al4V切削锯齿形切屑绝热剪切带变形的表征 被引量:6

Deformation characterization of adiabatic shear band for Ti6Al4V serrated chips
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摘要 为了研究锯齿形切屑绝热剪切带带内的变形,通过分析锯齿形切屑的形成机理,以绝热剪切带带内剪切应变和剪切应变率来表征绝热剪切带的变形程度,建立绝热剪切带变形的解析模型并进行切削Ti6Al4V实验,收集切削实验获得的切屑.运用建立的绝热剪切带变形解析模型,分析不同切削速度下Ti6Al4V锯齿形切屑绝热剪切带的变形情况,结果表明:在实验条件切削速度范围内(30~200 m/min),随着切削速度的提高,切屑绝热剪切带的变形程度增加,绝热剪切带宽度及间距减小. In order to research the deformation inside adiabatic shear band for serrated chips, the deformation degree of adiabatic shear band was characterized with the shear strain and shear strain rate through analyzing the formation mechanism of serrated chips, and an analytical model for the deformation of adiabatic shear band was established. In addition, the cutting test for Ti6A14V was carded out, and the chips obtained in the cutting test were collected. Through adopting the established analytical model for the deformation of adiabatic shear band, the deformation situation of adiabatic shear band for Ti6A14V serrated chips with different cutting speed was analyzed. The results show that within the cutting speed ranged from 30 m/min to 200 m/min, the deformation degree of adiabatic shear band of chips increases with increasing the cutting speed, and both width and spacing of adiabatic shear band decrease.
出处 《沈阳工业大学学报》 EI CAS 北大核心 2013年第2期181-186,共6页 Journal of Shenyang University of Technology
基金 国家重点基础研究发展计划资助项目(2009CB724401) 高档数控机床与基础制造装备科技重大专项(2010ZX04017-041) 国家自然科学基金资助项目(50935003 U1201245)
关键词 切削 锯齿形切屑 绝热剪切带 切屑变形 TI6AL4V合金 绝热剪切带变形 绝热剪切带宽度 绝热剪切带间距 cutting serrated chip adiabatic shear band chip deformation Ti6A14V deformation ofadiabatic shear band width of adiabatic shear band spacing of adiabatic shear band
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参考文献17

  • 1Puerta V J D, Bolle B, Chewier P, et al. Metallurgical study on chips obtained by high speed machining of a Ti-6 wt. % Al-4 wt. % V alloy [ J ]. Materials Science and Engineering A,2007,452/453 ( 15 ) :469 - 474.
  • 2Xie J Q, Bayoumi A E, Zbib H M. Analytical and ex- perimental study of shear localization in chip forma- tion in orthogonal machining [J ]. Journal of Materials Engineering and Performance, 1995,4 ( 1 ) :32 - 39.
  • 3Sun S, Brandt M, Dargusch M S. Characteristics of cutting forces and chip formation in machining of tita- nium alloys [ J ]. International Journal of Machine Tools and Manufacture, 2009,49 (7/8) .561 - 568.
  • 4范依航,郑敏利,杨树财,张为,石文勇.高效切削钛合金时刀具磨损试验分析[J].沈阳工业大学学报,2011,33(2):166-171. 被引量:9
  • 5Lemaire J C, Backofen W A. Adiabatic instability in the orthogonal cutting of steel [ J ]. Metallurgical and Materials Transactions B, 1972,3 ( 2 ) :481 - 485.
  • 6Denkena B ,Amor R B ,Leon-Garcia L D,et al. Mate- rial specific definition of the high speed cutting range [ J ]. International Journal of Machining and Machina- bility of Materials ,2007,2(2) :176 - 185.
  • 7Su G,Liu Z. An experimental study on influences of material brittleness on chip morphology [ J ]. Interna- tional Journal of Advanced Manufacturing Technolo- gy ,2010,51 (1/2/3/4) :87 - 92.
  • 8苏国胜,刘战强,杜劲,杨奇彪.锯齿形切屑变形表征与其形态演化研究[J].农业机械学报,2010,41(11):223-227. 被引量:3
  • 9Pawade R S, Sonawane H A, Joshi S S. An analytical model to predict specific shear energy in high-speed turning of Inconel 718 [ J ]. International Journal of Machine Tools and Manufacture, 2009,49 ( 12/13 ) :979 -990.
  • 10杜劲,刘战强,杨奇彪,叶洪涛,庞继有.镍基粉末高温合金的铣削加工[J].沈阳工业大学学报,2010,32(5):536-540. 被引量:2

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