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Surface integrity after internal load oriented multistage contact deep rolling

机译:内部载荷型多级接触深层轧制后表面完整性

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Mechanical treatment by deep rolling generates an improvement of the surface integrity by inducing compressive residual stress, strain hardening as well as a reduction of the surface roughness. The resulting material modification is based on the plastic deformation of surface and subsurface layers caused by the movement of a deep rolling tool across the workpiece surface under defined conditions in terms of rolling force, ball diameter and number of contacts. A correlation between the process parameters and the surface integrity to predict the modification in the workpiece is of limited validity. It is more useful to consider the internal load during the mechanical treatment in form of stress fields occurring during the process. This paper shows an approach to describe the internal load based on the hertzian stress in combination with the elastic model considering the multiple contacts in a deep rolling process. A defined variation of process parameters regarding the internal loads and the number of contacts was performed. It is shown that the correlation between internal loads and material modification (process signature) offers a good approximation to describe the surface integrity of workpieces after multistage contact in deep rolling processes. The description of material modification based on equivalent stress depth profiles enables the prediction of maximum of compressive residual stress after multistage deep rolling.
机译:通过诱导压缩残余应力,应变硬化以及表面粗糙度的降低,通过深轧机械处理产生表面完整性的改善。所得到的材料改性基于表面和地下层的塑性变形,由在轧制力,球直径和触点的定义条件下在限定条件下穿过工件表面的移动引起的表面和地下层引起的。过程参数与表面完整性之间的相关性,以预测工件中的修改是有限的有效性。考虑在该过程中发生的应力场的形式的机械处理期间的内部负荷更有用。本文显示了一种方法来描述基于赫斯峰应力的内部载荷与考虑到深轧机过程中的多个触点的弹性模型相结合。执行关于内部负载和触点的数量的过程参数的限定变化。结果表明,内部负载和材料改性(过程签名)之间的相关性提供了良好的近似,以描述在深轧机过程中多级接触后工件的表面完整性。基于等效应力深度分布的材料改性的描述使得在多级深度轧制后的压缩残余应力的最大值能够预测。

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