期刊文献+

面铣刀铣削过程粘结破损机理的研究 被引量:6

Research on Sticking Failure Mechanism in Milling Process
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摘要 针对铣削难加工材料时,刀具粘结破损严重的问题,以铣刀片的粘结破损试验为基础,通过对不同条件下的粘结破损的发生情况进行对比分析,探讨了铣削过程中粘结产生的原因,进而得出了粘结破损的产生机理.为粘结破损判据的研究奠定了理论基础,同时为三维复杂槽型铣刀片槽型的进一步优化重构提供了抗粘结破损的理论依据. This paper aims at the serious Sticking Failure problem while milling hard - cut materials. On the basis of the Sticking Failure experiment of mill cutter, it discusses the reasons by the sticking in the process of milling by contrasting the Sticking Failure in different circumstances, and then gets the Sticking Failure Mechanism, which provides the academic basis not only for the study of criterion of the Sticking Failure, but also for the further optimization and reconstruction of milling insert with 3D complex groove.
出处 《哈尔滨理工大学学报》 CAS 2005年第6期88-91,共4页 Journal of Harbin University of Science and Technology
基金 国家自然科学基金项目(50275042)
关键词 铣削 铣刀片 粘结破损 milling milling insert sticking failure
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参考文献3

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共引文献10

同被引文献35

  • 1李振加,顾祖慰.铣削过程刀具破损原因的探讨[J].机械工程学报,1993,29(4):93-96. 被引量:22
  • 2刘沙,张静秋.TiC涂层反应标准吉布斯自由能变化的计算及其绘图[J].稀有金属与硬质合金,2005,33(4):60-62. 被引量:4
  • 3孙宝军,谭光宇.硬质合金铣刀片粘结破损的研究[J].机械制造,2006,44(11):54-55. 被引量:2
  • 4冯鸣,陈永洁,倪兰.刀具破损机理国内外研究概况及发展趋势[J].硬质合金,2007,24(1):39-42. 被引量:13
  • 5P. Srinivasa Pal, T. N. Nagabuhshana, P. K. Ramakrishna Rao. Flank Wear Estimation in Face Milling Based on Radial Basis Function Neural Networks[ J]. Int J Adv Manuf Technol, 2002, 20: 241-247.
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  • 7Li Zhenjia, Cheng Yaonan, Wang Yubin. Research on Heating Density Function & Temperature Field Mathematical Model for Milling Insert with 3D Complex Greove[J]. Key Engineering Materials. 2007 (329) : 669 -674.
  • 8Li Zhenjia, Cheng Yaonan. Study on Force Density Function of Complex Three-Dimension Grooves Milling Inserts [ C ]. Progress of Machining Technology. 2004:458-462.
  • 9CHENG Yaonan, LI Zhenjia. Study on Force Density Function and Stress State of Cut-in Course of Complex Three-Dimension Groove Milling Insert [ C ]//Progress of Machining Technology, 2006 : 461 - 464.
  • 10LI Zhenjia, CHENG Yaonan. Research on Heating Density Function & Temperature Field Mathematical Model for Milling Insert with 3D Complex Groove [J]. Key Engineering Materials, 2006, 329 : 669 - 674.

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