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Design method for long-life fatigue strength of metallic materials

机译:金属材料的长寿命疲劳强度设计方法

摘要

A long life fatigue strength design method for a metallic material is capable of allowing design of an optimum mechanical part according to a set service life by considering an increase in ODA (area affected by hydrogen observed blackish by a metallurgical microscope) size according to the assumed service life of the mechanical part. The method includes obtaining, from the results of a fatigue test, a functional relation between the number of stress cycles to failure and the size of a hydrogen affected area around an inclusion affected by trapped hydrogen. From the functional relation, equivalent defect sizes as the sizes of the inclusions after growth corresponding to the assumed number of cycles of working stress on the mechanical part using the metallic material are obtained, and the mechanical part is designed using the equivalent defect sizes in the calculation of a long life fatigue strength such as allowable stress, whereby a failure life design can be performed with the ODA size growth taken into account according to the assumed service life of the mechanical part.
机译:金属材料的长寿命疲劳强度设计方法能够根据设定的假设考虑ODA(金相显微镜观察到的发黑的氢影响的区域)的增加,从而根据设定的使用寿命设计最佳的机械零件。机械零件的使用寿命。该方法包括从疲劳测试的结果获得应力循环的次数到破坏与被夹杂的氢影响的夹杂物周围的氢影响区域的大小之间的函数关系。从函数关系中,获得等效缺陷尺寸,该缺陷尺寸为生长后夹杂物的尺寸,对应于使用金属材料的机械部件上假定的工作应力循环数,并使用等效缺陷尺寸设计机械部件。计算长寿命疲劳强度(如许用应力),从而可以根据机械零件的假定使用寿命考虑到ODA尺寸的增长来进行失效寿命设计。

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