Study on grinding of SiCp/Al composites by micro-textured monolayer brazed diamond wheel

被引:0
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作者
Kai-jiang Li
Yan-ling Liao
Yu-mei Zhou
Feng-lin Zhang
Jiang-wen Liu
Shi-xiong Wu
Hong-qun Tang
Xiao-yi Pan
机构
[1] Guangdong University of Technology,School of Mechanical and Electronic Engineering
[2] Guangdong Polytechnic Normal University,School of Mechatronic Engineering
[3] Zhongkai University of Agriculture and Engineering,School of Mechanical and Electronic Engineering
[4] National Engineering Research Center for Special Mineral Material,Guangxi Key Laboratory of Superhard Material
[5] China Nonferrous Metal (Guilin) Geology and Mining Co.,State Key Laboratory of Featured Metal Materials and Life
[6] Ltd,cycle Safety for Composite Structures, School of Resources, Environment and Materials
[7] Guangxi University,undefined
关键词
SiCp/Al composites; Monolayer brazed diamond wheel; Micro-texture; Grinding force; Grinding temperature; Surface integrity;
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中图分类号
学科分类号
摘要
It is difficult to machine with high machining efficiency and surface integrity for SiCp/Al composite, especially for those with a high volume fraction of SiC. Here, we present monolayer brazed diamond grinding wheels that contain different micro-textures ablated by pulse laser. The dry grinding characteristics of SiCp/Al composites with 70 vol.% SiC using the wheels with different micro-textures were investigated. The influence of micro-textures on the grinding force, grinding temperature, and surface integrity was examined. The results indicated that micro-textures on diamond grits can induce cleavages and form more micro-cutting edges in grinding of SiCp/Al. The wheel contains both micro-grooves and micro-hole and owns the lowest grinding force, grinding temperature, and surface integrity. The micro-textured wheel produces smaller grinding chips and less fracture, crushing, and pull-out of SiC particle on the ground surface of SiCp/Al composites than other wheels.
引用
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页码:4607 / 4615
页数:8
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