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纳米胶体射流抛光技术综述 被引量:4

Review of Nanoparticle Colloid Jet Machining Technology
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摘要 纳米胶体射流抛光技术是一种超光滑表面加工方法,加工范围广,具有广泛的应用前景。本文回顾了纳米胶体射流抛光技术的提出以及目前的研究现状,最后对其今后的发展进行了简单展望。 Nanoparticle colloid jet machining is a a new kind of ultra-precision machining technology, Based on the advantages of wide processing range, this technology is a promising manufacturing technology. In this paper, the causes and current state of the research of Nanoparticle colloid jet machining was introduced and the prospect and advice on the development of this technology in future were proposed.
出处 《航空科学技术》 2013年第3期65-67,共3页 Aeronautical Science & Technology
基金 航空科学基金(2009ZE77008)项目资助
关键词 纳米胶体射流抛光 超光滑表面 无损加工 Nanoparticle colloid jet machining, ultra-smooth surface, non-damage machining
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参考文献11

  • 1高宏刚,曹健林,朱镛,陈创天.超光滑表面及其制造技术的发展[J].物理,2000,29(10):610-614. 被引量:43
  • 2李宝贵,熊昌友,李成贵,张庆荣.超光滑表面加工方法[J].制造技术与机床,2006(6):60-62. 被引量:4
  • 3Kubota A, Mimura H, Inagaki K. Effect of particle morphology on removal rate and surface topography in elastic emission machining[J]. Journal of the electrochemical society, 2006,153(9):874 878.
  • 4Y Y M, Yamauchi K, Endo K.Elastic emission machining[J]. Precision Engineering, 1987,9(3):123- 128.
  • 5Fahnle O W, van Brug H, Frankena H J. Fluid jet polishing of optical surfaces[J]. Applied optics, 1998, 37(28):6771-6773.
  • 6杨佩旋,王成勇,廖艳培,袁慧.微磨料浆体射流抛光技术[J].金刚石与磨料磨具工程,2008,28(3):19-25. 被引量:6
  • 7Song X, Zhang Y, Zhang F. Experimental Investigation on Polishing of Ultra Smooth Surface in Nanoparticle Colloid Jet Machining[J]. Proceedings of SPIE, 2009:7282.
  • 8Song X Z, Zhang Y, Zhang F H. Study on Removal Mechanism of Nanoparticle Colloid Jet Machining[J]. Advanced Materials Research, 2008,53- 54:363 368.
  • 9Zhang F, Song X, Zhang Y, et al. Figuring of an ultra-smooth surface in nanoparticle colloid jet machining[J]. Journal of Micromechanics and Micro engineering, 2009,19:1 -6.
  • 10Zhang F H, Song X Z, Zhang Y, et al. Polishing of ultra smooth surface with nanoparticle colloid jet[J]. Key Engineering Materials, 2009,404:143-148.

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