期刊文献+

工程陶瓷精密研磨技术 被引量:2

A STUDY OF PRECISION LAPPING TECHNOLOGY FOR ENGINEERING CERAMICS
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摘要 研究外圆柱表面和平面的新型研磨方法,并分析加工效率和表面粗糙度的主要影响因素当切削参数最佳时,表面粗糙度值大约为Ra0.016~0.021μm. This paper deals with the mechanism of new lapping method of cylindrical surface and face surface in precision machining of engineering ceramics. The main factors which affect the efficiency of the process and surface roughness have been analysed. When the cutting parameters of the process are appropriate, the final surface roughness value is about Ra 0. 016-0. 021 μm.
出处 《天津大学学报》 EI CAS CSCD 1996年第1期93-98,共6页 Journal of Tianjin University(Science and Technology)
基金 国家自然科学基金
关键词 工程陶瓷 精密加工 表面粗糙度 研磨 engineering ceramics, precision machining, mechanism, surface roughness
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参考文献4

  • 1周泽华,金属切削原理,1993年
  • 2赵万康,博士学位论文,1990年
  • 3姜文学,超精研抛技术,1988年
  • 4朱怀义,微细加工技术,1983年

同被引文献22

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  • 3Katsuhiko T, Hiroshi I, Kazuhiko O, et al. New-Technology Sili- con carbide (NT-SiC): demonstration of new material for large lightweight optical mirror. SPIE, 2005(5659): 138-146.
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  • 5Genzel Ch, Klaus M, Denks I, et al. Residual stress field in surfacetreated silicon carbide for space industry-comparison of biaxial and triaxial analysis using different X-Ray methods. Material Science and Engineering A, 2005, 390(1/2): 376-384.
  • 6Shih A J, Lee N L. Precision cylindrical face grinding. Precision Engineering, 1999, 23(3): 177-184.
  • 7Xu H H K, Jahanmir S. Simple technique for observing subsurface damage In machining of ceramics. Journal of The American Ce- ramic Society, 1994, 77(5): 1388-1390.
  • 8Zhang B, Zheng X L, Tokura H, et al. Grinding induced damage in ceramics. J. Mat. Pro. Tec., 2003, 132(1/2/3): 353-364.
  • 9Mahdi M, Zhang L C. Applied mechanics in grinding-V, thermal residual stresses. Int. J. Mach. Tool. Manufact, 1997, 37(5): 619-633.
  • 10Eigenmann B, Macherrauch E. Determination of inhomogeneous residual stress states in surface layers of machined engineering ce- ramics by synchrotron X-rays. Nuclear Instruments and Methods in Physics Research B, 1995, 97(1-4): 92-97.

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