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Finite element analysis of the effect of sequential cuts and tool-chip friction on residual stresses in a machined layer

机译:顺序切削和切屑摩擦对加工层残余应力影响的有限元分析

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A thermo-elastic-viscoplastic model using explicit finite element code Abaqus was developed to investigate the effect of sequential cuts and tool-chip friction on residual stresses in a machined layer. Chip formation, cutting forces and temperature were also examined in the sequential cuts. The affected layer from the first cut slightly changes the chip thickness, cutting forces, residual strain and temperature of the machined layer, but significantly affects the residual stress distribution produced by the second cut. Residual stress is sensitive to friction condition of the tool-chip interface. Simulation results offer an insight into residual stresses induced in sequential cuts. Based on simulation results, characteristics of residual stress distribution can be controlled by optimizing the second cut. (C) 2000 Elsevier Science Ltd. All rights reserved. [References: 30]
机译:建立了使用显式有限元代码Abaqus的热弹-粘塑性模型,以研究顺序切削和工具-切屑摩擦对加工层中残余应力的影响。在连续切削中还检查了切屑形成,切削力和温度。第一次切割产生的影响层会稍微改变切屑厚度,切削力,加工层的残余应变和温度,但会显着影响第二次切割产生的残余应力分布。残余应力对工具-芯片界面的摩擦状况敏感。仿真结果提供了对顺序切割中产生的残余应力的深入了解。根据仿真结果,可以通过优化第二次切削来控制残余应力分布的特征。 (C)2000 Elsevier ScienceLtd。保留所有权利。 [参考:30]

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