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2D and 3D milled surface roughness of high volume fraction Si Cp/Al composites 被引量:6

2D and 3D milled surface roughness of high volume fraction Si Cp/Al composites
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摘要 This paper presents a study on surface roughness generated by high speed milling of high volume fraction(65%) silicon carbide particlereinforced aluminum matrix(Si Cp/Al) composites.Typical 2D(Raand Rz) and 3D(Saand Sq) surface roughness parameters were selected to evaluate the influence of the milling parameters on the surface quality in comparison with aluminum alloy.The 3D topography of the milled surface was studied as well.The results indicate that 3D parameters(Saand Sq) are more capable to describe the influence of the milling parameters on the surface quality,and among them Sqis preferable due to its good sensitivity.Sqdecreases with milling speed and increases with feed rate.The influence of axial depth of cut(ADOC) is negligible. This paper presents a study on surface roughness generated by high speed milling of high volume fraction (65%) silicon carbide particle- reinforced aluminum matrix (SiCp/A1) composites. Typical 2D (Ra and Rz) and 3D (S, and Sq) surface roughness parameters were selected to evaluate the influence of the milling parameters on the surface quality in comparison with aluminum alloy. The 3D topography of the milled surface was studied as well. The results indicate that 3D parameters (Sa and Sq) are more capable to describe the influence of the milling parameters on the surface quality, and among them Sq is preferable due to its good sensitivity. Sq decreases with milling speed and increases with feed rate. The influence of axial depth of cut (ADOC) is negligible. Copyright ~ 2015, China Ordnance Society. Production and hosting by Elsevier B.V. All rights reserved.
出处 《Defence Technology(防务技术)》 SCIE EI CAS CSCD 2015年第2期104-109,共6页 Defence Technology
基金 supported by the National Key Projects of Science and Technology of China (Item No.:2012ZX04003051-3)
关键词 表面粗糙度参数 SIC颗粒 高速铣削 体积分数 复合材料 三维形貌 二维 中国兵工学会 High volume fraction SiCp/AI Surface roughness 2D 3D
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