Influence of process parameters on surface topography in ultrasonic vibration- assisted end grinding of SiCp/Al composites
作者: Wei ZhengMing ZhouLi Zhou
作者单位: 1Harbin Institute of Technology
刊名: The International Journal of Advanced Manufacturing Technology, 2017, Vol.91 (5-8), pp.2347-2358
来源数据库: Springer Journal
DOI: 10.1007/s00170-016-9931-3
关键词: Ultrasonic vibration-assisted end grindingSurface topographySiCp/Al composites3D surface roughness3D surface fractal dimension
英文摘要: The surface quality in ultrasonic vibration-assisted end grinding of SiCp/Al composites is important as it influences the performance of the finished surface to a great extent. This paper presents a comprehensive analysis to characterize the machined surface topography with 3D surface roughness ( S q, S sk, and S tr) and 3D surface dimension D s. The results show that the main factors influencing surface roughness S q is the spindle speed and followed by vibration amplitude, cutting depth, and feed rate. Surface fractal dimension D s represents the ability of space filling of the machined surface and shows a weak-negative correlation with surface roughness S q. Compared with S q, D s is more...
原始语种摘要: The surface quality in ultrasonic vibration-assisted end grinding of SiCp/Al composites is important as it influences the performance of the finished surface to a great extent. This paper presents a comprehensive analysis to characterize the machined surface topography with 3D surface roughness ( S q, S sk, and S tr) and 3D surface dimension D s. The results show that the main factors influencing surface roughness S q is the spindle speed and followed by vibration amplitude, cutting depth, and feed rate. Surface fractal dimension D s represents the ability of space filling of the machined surface and shows a weak-negative correlation with surface roughness S q. Compared with S q, D s is more...
全文获取路径: Springer  (合作)
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关键词翻译
关键词翻译
  • grinding 
  • vibration 振荡
  • fractal 分形
  • assisted 辅助的
  • surface 
  • ultrasonic 超音波的
  • topography 地形学
  • composites 菊科植物
  • parameters 参数
  • dimension 测定