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Influence of the microstructure of forged and machined parts on the residual stresses

机译:锻造件微观结构对残余应力的影响

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One of the first stages in component design is the choice of material, in particular the steel grade, together with the appropriate manufacturing process. The aim of the methodology proposed is to compare the geometrical and metallurgical qualities of steel parts throughout the manufacturing process. The axisymmetrical geometry of the parts was first of all defined for a typical manufacturing process, including forging and machining steps, starting from rolled blanks. Forming involves two elementary forging operations, corresponding to extrusion and upsetting. The forged parts are subsequently machined, by turning and drilling. Initially, only cold forging and finish turning processes were considered, for two low alloyed steel grades with different microstructure. An experimental investigation was conducted to determine the cutting conditions and particularly the influence of the cutting conditions on residual stresses in the axial and circumferential directions. As regard the cutting speed, only the tangential residual stresses show significant variations. Concerning the feed rate, a significant evolution is only observed on the longitudinal residual stresses.
机译:元件设计中的第一阶段之一是材料的选择,特别是钢级,以及适当的制造过程。提出方法的目的是在整个制造过程中比较钢部件的几何和冶金品质。零件的轴对称几何形状首先为典型的制造工艺定义,包括从卷起的坯料开始的锻造和加工步骤。形成涉及两个基本的锻造操作,对应于挤出和镦粗。随后通过转动和钻井加工锻造部件。最初,仅考虑了具有不同微观结构的两种低合金钢等级的冷锻和完成转动过程。进行实验研究以确定切割条件,特别是切割条件对轴向和圆周方向上的残余应力的影响。关于切割速度,只有切向残余应力显示出显着的变化。关于进料速率,仅在纵向残余应力上观察到显着的进化。

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