典型文献
Analysis of bending mechanism in multi-scanning laser bend-ing process based on plastic strain development
文献摘要:
By using multi-pass straight-line scan strategies,a larger bending angle can be achieved.There is,however,a limited understand-ing of the variation in bending angle per pass during multi-pass under various process parameters.In multi-pass laser scanning,the bending angle cannot always linearly increase with scanning passes and this phenomenon can be observed mostly in low heat input.Strain hardening is the common explanation for this phenomenon.However,it could not explain why this bending angle reduction phenomenon occurs at low heat input scanning rather than at high heat input scanning.In this study,this phenomenon is discussed based on strain development in exper-iments and numerical simulation.The different growing mechanism of plastic strain is analyzed to reveal the effects of laser power and scan-ning velocity.Furthermore,the opposite bending trend that occurred at larger laser power is discussed in comparison to the plastic strain de-velopment.The study shows that relatively larger heat input below 6.7 J/mm can help to avoid the bending angle reduction phenomenon and the opposite bending trend is highly dependent on the larger laser power.For achieving the expected cumulative bending angle in multi-pass laser bending,it is recommended to decrease the scanning velocity at a relatively low laser power level while increase the scanning velocity at a high level of laser power.
文献关键词:
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作者姓名:
Wang Chao;Wu Chunbiao;Xu Benlian;Kim Jaewoong
作者机构:
School of Mechanical Engineering,Changshu Institute of Technology,Suzhou 215500 China;Electronic and Information engineering,Suzhou University of Science and Technology,Suzhou 215009 China;School of Mechanical Engineering,Yeungnam University,Kyongsan 712-749,South Korea
文献出处:
引用格式:
[1]Wang Chao;Wu Chunbiao;Xu Benlian;Kim Jaewoong-.Analysis of bending mechanism in multi-scanning laser bend-ing process based on plastic strain development)[J].中国焊接(英文版),2022(04):28-36
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Analysis,bending,mechanism,multi,scanning,laser,process,plastic,strain,development,By,using,straight,strategies,larger,angle,achieved,There,however,limited,understand,variation,during,various,parameters,In,cannot,always,linearly,increase,passes,this,phenomenon,observed,mostly,heat,input,Strain,hardening,common,explanation,However,could,explain,why,reduction,occurs,rather,than,study,discussed,exper,iments,numerical,simulation,different,growing,analyzed,reveal,effects,power,velocity,Furthermore,opposite,trend,that,occurred,comparison,shows,relatively,below,help,avoid,highly,dependent,For,achieving,expected,cumulative,recommended,decrease,level,while
AB值:
0.393752
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