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Finishing effects of spiral polishing method on micro lapping surface
Authors:Biing-Hwa Yan   Hsinn-Jyh Tzeng   Fuang Yuan Huang   Yan-Cherng Lin  Han-Ming Chow
Affiliation:aDepartment of Mechanical Engineering, National Central University, Chung-Li, Taiwan 32054, ROC;bDepartment of Mechanical Engineering, Southern Taiwan University of Technology, Tainan, Taiwan 71005, ROC;cDepartment of Mechanical Engineering, Nan Kai Institute of Technology, Nantou, Taiwan 54210, ROC
Abstract:This study presents a spiral polishing method and a device for micro-finishing purposes. This novel finishing process has wider application than traditional processes. This offers both automation and flexibility in final machining operations for deburring, polishing, and removing recast layers, thereby producing compressive residual stresses even in difficult to reach areas. Applying of this method can obtain a fine polished surface by removing tiny fragments via a micro lapping generated by transmission of an abrasive medium through a screw rod. The effect of the removal of the tiny fragments can be achieved due to the function of micro lapping. The method is not dependent on the size of the work-piece's application area in order to carry out the ultra precise process. The application of this research can be extended to various products of precision ball-bearing lead screw. The proposed method produces products with greater precision and more efficiently than traditional processes, in terms of processing precisions and the surface quality of products. These parameters used in achieving maximum material removal rate (MRR) and the lowest surface roughness (SR) are abrasive particle size, abrasive concentration, gap, revolution speed and machining time.
Keywords:Spiral polishing method   Micro-finishing   Material removal rate (MRR)   Surface roughness (SR)
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