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Sequential multistage deep rolling under varied contact conditions

机译:各种接触条件下的序贯多级深轧

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It is possible to induce compressive residual stress, strain hardening and reduce the surface roughness by applying deep rolling to metallic surfaces. The resulting enhancement of surface integrity is based on the mechanical impact during the deep rolling process (internal material loads). For a single contact as well as multiple contacts with identical contact conditions, a good approximation for the correlation between the process parameters and the resulting material modification was achieved in previous works. By regarding the equivalent stresses, based on Hertzian equations, the modifications by means of the residual stresses were assessed. This paper shows an approach to describe the resulting material modification when using multiple contact stages in a deep rolling process under varied contact conditions. AISI 4140 is processed. For the generation of linear deep rolling tracks resulting from multistage deep rolling, the maximum internal material load is held constant also when varying the ball diameter between the different contacts. Three different levels of internal material loads are applied with two ball diameters and three different total numbers of contacts per linear track. The analysis of the material modifications is based on XRD measured residual stresses and geometrical track descriptions.
机译:通过将深轧施加到金属表面,可以诱导压缩残余应力,应变硬化,降低表面粗糙度。由此产生的表面完整性的增强基于深轧机过程中的机械冲击(内部材料负载)。对于单个接触以及具有相同接触条件的多个触点,在先前的作品中实现了处理参数与所得材料改性之间的相关性的良好近似。通过基于赫兹方程,评估借助于残留应力的等效应力。本文示出了一种方法来描述当在不同的接触条件下使用多个接触级时使用多个接触级时的材料改性。处理AISI 4140。对于由多级深轧制产生的线性深轧轨道的产生,当在不同触点之间改变球直径时,最大内部材料负载也保持恒定。使用两个球直径和每线性轨道的三个不同总数的三种不同水平的内部材料载荷。材料修改的分析基于XRD测量的残余应力和几何轨道描述。

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