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Fatigue damage in diameter-enlargement part formed by cyclic bending and axial compressive Load

机译:循环弯曲和轴向压缩载荷形成的扩径部分的疲劳损伤

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We proposed a new cold processing method to partially enlarge the diameter of a shaft with a combination of a cyclic bending load and an axial compressive load that is lower than the yield stress of sample material. We call this cold processing method a diameter-enlargement working method, and call this processed part a diameter-enlargement part. Key features of the processing method are chiefly as follows: the diameter enlargement deformation progresses easily under a low axial compressive load at room temperature; the processed part has little temperature increase, although the processing causes large plastic deformation. We have tested the influence of the processing conditions and the mechanical properties of the sample materials in terms of diameter enlargement deformation behavior. However, little is known about the fatigue damage condition in a diameter-enlargement part. Therefore, we carried out processing experiments to clarify crack generation conditions, and simulated working processing using finite element method in order to investigate behaviors of stress and strain during the processing. Furthermore, we evaluated low cycle fatigue damage in the processed part by using the Manson-Coffin expression. This paper clarified the mechanism of crack generation during the processing and evaluates the fatigue strength of the processed part.
机译:我们提出了一种新的冷加工方法,该方法通过结合周期性弯曲载荷和低于样品材料屈服应力的轴向压缩载荷来部分放大轴的直径。将该冷加工方法称为扩径加工方法,将该加工部称为扩径部。该加工方法的主要特征如下:在室温下,在低轴向压缩载荷下,直径扩大变形容易进行。尽管加工会引起较大的塑性变形,但加工后的零件几乎没有温度升高。我们已经测试了加工条件和样品材料的机械性能对直径扩大变形行为的影响。但是,对于扩径部中的疲劳损伤状况知之甚少。因此,我们进行了加工实验以弄清裂纹的产生条件,并使用有限元方法模拟了加工过程,以研究加工过程中的应力和应变行为。此外,我们使用Manson-Coffin表达式评估了加工零件中的低周疲劳损伤。阐明了加工过程中裂纹产生的机理,并评估了加工零件的疲劳强度。

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