期刊文献+

热管铣刀散热基本结构关键参数优化 被引量:3

Optimization for Key Parameters of Heat Dissipation Structure in Heat-pipe Milling Cutter
下载PDF
导出
摘要 为给基本结构优化后的热管铣刀设定合理的结构参数,对热管铣刀的热流过程进行了优化分析,对与散热增量关系不明确的结构参数进行了深入讨论,并进行了该类参数与散热增量间的量化关系实验。首先建立热管铣刀结构参数与散热增量之间的关系评定实验平台,再通过系列正交试验获得各试验因子与散热增量之间的关系,并获得各因子的最佳取值,最后基于实验得到的各参数最佳值制造一把热管铣刀,并以此热管铣刀进行切削测温实验,进而验证正交试验结论的正确性。实验结果表明,相比结构参数未优化的热管铣刀,优化后切削区的温降达到50℃以上。 In order to set reasonable structural parameters after optimization to heat pipe cutter,the heat-flow in the radiating process of heat pipe cutter was discussed,and the unclear relationships among structural parameters and radiating increments were analysed and experimented to evaluate.An experimental platform was designed for evalutating the relationships among structural parameters and radiating increments in heat pipe cutter.Then,the relationships among experimental factors and radiating increments,and its optimal values were obtained through a series of orthogonal tests.Finally,the heat pipe cutter produced based on experimental optimal values was used in cutting temperature experiments to verify the conclusions of the orthogonal tests.Comparing with common heat pipe cutter,it is founded that the temperature of structural optimization heat pipe cutter on cutting zone can reduce 50℃.
出处 《中国机械工程》 EI CAS CSCD 北大核心 2014年第24期3282-3288,共7页 China Mechanical Engineering
基金 国家自然科学基金资助项目(50975092)
关键词 热管刀具 切削温度 参数优化 绿色切削 heat pipe cutter cutting temperature parameter optimization green machining
  • 相关文献

参考文献15

  • 1Judd R L, Mackenzie H S, Elbestawi M A. An In- vestigation of a Heat Pipe Cooling System for Use in Turning on a Lathe[J]. International Journal of Advanced Manufacturing Technology, 1995,10(6) : 357-366.
  • 2Kevin C Y, Liu Jie. CVD Diamond Tool Perform- ance in Metal Matrix Composite Machining[J]. Sur- face & Coatings Technology, 2005,200 (5) : 1872- 1878.
  • 3Noorul H A, Tamizharasan T. Investigation of the Effects of Cooling in Hard Turning Operations[J]. International Journal of Advanced Manufacturing Technology, 2006,30(9/10) : 808-816.
  • 4Chiou R Y,Lin Lu,Jim S,et al. Investigation of Dry Machining with Embedded Heat Pipe Cooling by Fi- nite Element Analysis and Experiments[J]. Interna- tional Journal of Advance Manufacture Technol, 2007,31(9/10) ,905-914.
  • 5Chiou R Y,Chen J S J, Lu L,et al. The Effect of an Embedded Heat Pipe in a Cutting Tool on Tempera- ture and Wear[C]//Proceedings of ASME Confer ence on Mechanical Engineering. Washington D C: The Heat Transfer Division, ASME, 2003 : 1-8.
  • 6梁良.面向绿色切削的热管刀具散热性能研究[D].广州:华南理工大学机械与汽车工程学院,2011:75—76.
  • 7梁良,全燕鸣.热管刀具的设计及散热性能测试[J].华南理工大学学报(自然科学版),2012,40(5):13-17. 被引量:5
  • 8Jen T C,Gutierrez G, Eapen S, et al. Investigation of Heat Pipe Cooling in Drilling Applications. Part I: Preliminary Numerical Analysis and Verification [J]. International Journal of Machine Tools & Man- ufacture 2002,42 (5) : 643-652.
  • 9Zhu Lin,Jen T C, Yin Chenglong, et al. Investigation of Heat Pipe Cooling in Drilling Applications. Part :Thermal, Structural Static, and Dynamic Analy- ses[C]//Proceedings of the ASME 2009 Interna- tional Mechanical Engineering Congress & Exposi- tion. Lake Buena Vista: American Society of Me- chanical Engineers,2009 : 2027-2034.
  • 10Zhu Lin,Jen T C,Yin C L,et al. Experimental An- alyses to Investigate the Feasibility and Effective- ness in Using Heat Pipe-embedded Drills[J]. The International Journal of Advanced Manufacturing Technology,2012,68(9/10/11/12) :861-868.

二级参考文献46

  • 1徐鸿钧,徐西鹏,许洪昌,张幼桢,董俊书.缓磨时工件烧伤过程的计算机仿真研究[J].南京航空航天大学学报,1994,26(5):642-650. 被引量:7
  • 2张伯霖,宋文佛,庄有土,李亮斌.用环形热管减少机床的热变形[J].机械工程学报,1995,31(3):32-38. 被引量:5
  • 3徐鸿钧,徐西鹏,许洪昌,张幼桢.缓磨时工件表层温度分布的计算机仿真研究[J].应用科学学报,1996,14(2):199-207. 被引量:5
  • 4全燕鸣,何振威,豆勇.碳钢高速车削中基于量热法的切削热分配[J].华南理工大学学报(自然科学版),2006,34(11):1-4. 被引量:9
  • 5中国科学技术情报研究所重庆分所.热管基础及其应用[M].四川:科学技术文献出版社重庆分社,1977:1-2.
  • 6王福军.计算流体动力学分析:CFD软件原理与应用[M].北京:清华大学出版社,2010.
  • 7Kopac J,Krajnik P.High-performance grinding—areview[J].Journal of Materials ProcessingTechnology,2006,175(1/3):278-284.
  • 8Oliveira J F G,Silva E J,Guo C,et al.Industrialchallenges in grinding[J].CIRP Annals-Manufacturing Technology,2009,58(2):663-680.
  • 9Bell A,Jin T,Stephenson D J.Burn thresholdprediction for high efficiency deep grinding[J].International Journal of Machine Tools&Manufacture,2011,51(6):433-438.
  • 10Andrew C,Howes T D,Pearce T R A.Creep-feedgrinding[M].London:Holt,Rinehart and Winston,1985.

共引文献20

同被引文献6

引证文献3

二级引证文献1

相关作者

内容加载中请稍等...

相关机构

内容加载中请稍等...

相关主题

内容加载中请稍等...

浏览历史

内容加载中请稍等...
;
使用帮助 返回顶部