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含气率对钛合金TC4混气电解加工特性的影响 被引量:3

Influence of Air Concentration Proportion on Gas-mixed Electrochemical Machining of Titanium Alloy TC4
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摘要 针对钛合金TC4材料在不同含气率下的混气电解加工特性,设计了一种可调节含气率的气液混合装置,利用钛合金TC4台阶面毛坯进行对比实验,研究含气率对钛合金TC4混气电解加工的整平能力、加工表面质量及杂散腐蚀的影响。结果表明:相比于常规电解加工技术,混气电解加工可显著提高钛合金TC4的加工整平比,大幅减少杂散腐蚀,且含气率越大,整平比越高,杂散腐蚀程度越低;但含气率的增大会使材料去除率下降,且混气电解加工钛合金TC4的表面质量低于常规电解加工。 With regard to gas-mixed electrochemical machining characteristic of titanium alloy TC4 material under different air concentration proportion,a kind of gas-liquid mixture device with the function of adjusting air concentration proportion was designed to conduct comparative experiment using stepped workpiece of titanium alloy TC4. Meanwhile,the influences on the levelling ability,surface quality and stray corrosion of this material were explored when air concentration proportion was changing. Experimental results show that the levelling ability is strongly enhanced andstray corrosion is significantly reduced with the improvement of air concentration proportion in gas-mixed electrochemical machining compared with conventional one ,although the material remove rate and surface quality are both declined.
作者 秦鹏 徐正扬 周耀武 侯成 朱荻 QIN Peng XU Zhengyang ZHOU Yaowu HOU Cheng ZHU Di(College of Mechanical and Electrical Engineering, Nanjing University of Aeronautics and Astronautics,Nanjing 210016,China)
出处 《电加工与模具》 2017年第2期33-39,共7页 Electromachining & Mould
基金 国防基础科研计划资助项目 江苏省重点研发计划资助项目(BE2015160) 中央高校基本科研业务费专项资金资助项目(NE2014104) 江苏省普通高校研究生科研创新计划资助项目(KYLX15_0289)
关键词 混气电解加工 含气率 钛合金TC4 特性分析 gas -mixed electrochemical TC4 characteristic analysis machining air concentration proportion titanium alloy
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  • 1李志永,朱荻.基于叶片电解加工电场和流场特性的阴极设计及工艺试验研究[J].中国机械工程,2006,17(14):1463-1466. 被引量:9
  • 2李翰如.电介值物理导论[M].成都:成都科技大学出版社,1990..
  • 3鲁米扬采夫E.M.金属电解加工工艺[M].刘友轩,译.北京:国防工业出版社,1989.
  • 4刘今起.在电解加工条件下钛合金的阳极特性[J].航空制造技术,1990,(3):10-15.
  • 5Landolt D,Chauvy and Zinger P F.Electrochemical micromachining,polishing and surface structuring of metals:fundamental aspects and new developments[J].Electrochimica Acta,2003,48(3):288-298.
  • 6Fu Y C, Xu H J,Xu J H. Optimization Design of Grinding Wheel Topography for High Efficiency Grinding[J]. Journal of Materials Processing Tech- nology, 2002,129 : 118-122.
  • 7Rowe W IS,Bell W F,Brough D. Optimization Stud ies in High Removal Rate Centreless Grinding[J]. Annals of the CIRP,1986,35(1) :235-238.
  • 8Kunieda M,Furuoya S.Improvement of EDMefficiency by supplying oxygen gas into gap[].CIRP Annals.1991
  • 9Koji Akamatsu,Atsushi Taneda.The latest technologies for die-sinking EDMs[].Mitsubishi Electric Advance.1997
  • 10Biing Hwa Yan,Hsien Chung Tsai,Fuang Yuan Huang.The effect in EDM of a dielectric of urea solution in water on modifying the surface of titanium[].International Journal of Machine Tools &Manufacture.2005

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