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Title:Experimental investigation on the extrusion process of axial vibration with frequency and amplitude modulated for spline
Authors: Ma Pengju Cheng Xiang Xu Zhiyong Zheng Xuezhu Tian Jie Wang Jucun 
Unit: Beihang University China National South Aviation Industry Co. Xi'an Innovation Precision Instrument Research Institute 
KeyWords: splines axial vibration extrusion load-restraining Bauschinger effect forming force 
ClassificationCode:TH161;TG316
year,vol(issue):pagenumber:2017,42(4):96-102
Abstract:

The change rule of forming force and the load-restraining mechanism of vibration machining during the extrusion process of spline under low frequency vibration were studied. The measuring system of forming force was set up by the frequency modulation and vibration modulation extrusion machine developed by our research group. Therefore, the change of forming force was measured, and the measuring data were analyzed. The results show that the forming force is mainly related to the vibration amplitude, especially the retraction stroke. When the retraction stroke is large enough, the friction between mold and workpiece can make the workpiece yield by stretching, and the reverse extrusion is carried out immediately. However, the forming force is significantly reduced due to Bauschinger effect. In addition, the good lubrication conditions can effectively reduce the forming force due to the lubricant result in reducing the friction between material and mold when the mold backs off instantly away from the material deformation zone. The experimental results show that the forming force is reduced by 27% under the frequency of 10 Hz, the forward stroke of 1.38 mm and the retraction stroke of 0.67 mm for the extrusion of small modulus involute spline with the modulus of 0.47 and the teeth number of 36. Thus, the load-restraining effect is significant.

Funds:
高档数控机床与基础制造装备科技重大专项(2014ZX04001021)
AuthorIntro:
马鹏举(1961-),男,博士,副教授 E-mail:07931@buaa.edu.cn 通讯作者:程向(1991-),男,硕士研究生 E-mail:peterwinners@buaa.edu.cn
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