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  HomeContents of Chinese Journal of Mechanical Engineering 2007 No.4TOOL WEAR AND FRACUTRE IN HIGH SPEED MILLING ALUMINUM ALLOY 7050-T7451

TOOL WEAR AND FRACUTRE IN HIGH SPEED MILLING ALUMINUM ALLOY 7050-T7451

 

WAN Yi1  AI Xing1  LIU Zhanqiang1  SONG Liangyu2

(1. College of Mechanical Engineering, Shandong University, Jinan 250061;

2. Numerical Control Machining Division, Chengdu Aircraft Corporation, Chengdu 610092 )

 

Abstract: Wear and fracture mechanisms are revealed in high- speed milling aluminium alloy 7050-T7451 based on experimental and theoretical research. A new method is presented to reveal crack initiation of cutting tool by impulse laser simulation. The different roles of milling forces and thermal stress in tool failure are studied. The results prove that crack initiation is caused by thermal stress while is expanded by thermal and mechanical stresses in high speed milling aluminium alloy 7050-T7451. Failure mechanisms are investigated and adhesive and diffusion are main wear mechanisms. To decrease the impact of mechanical stress on milling tools, measures are presented that stability of machining system should be tested and cutting parameters should be optimized, which have been employed in workshop and the fact prove that tool breakage decrease remarkably.

Key words: High-speed milling Tool wear Aluminum alloy Failure mechanism

CLC No: TG506

国家自然科学基金(50435020)及山东省自然科学基金(Y2003F06)资助项目. Received 20060413, received in revised form 20061221

 
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