影响α铁疲劳行为的几个因素

D. Lloyd, A. P. Greenough
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引用次数: 2

摘要

摘要:通过对α-铁退火后的金属施加不同的应力,或用冷轧、热轧或蠕变变形的材料制作试样,对位错亚结构与疲劳裂纹形核和扩展速率的关系进行了初步研究。与在几千次循环中逐渐增加应力相比,在第一次循环中对退火金属施加全部应力大大缩短了断裂寿命,并大大改变了透射电子显微镜所显示的位错亚结构和试样表面观察到的滑移带的性质。在某些情况下,当疲劳断裂发生时,冷轧或热轧材料的屈服点仍在下降。蠕变后残留的表面裂纹是降低后续疲劳寿命的重要因素。在蠕变过程中产生的亚结构和空洞似乎都不影响疲劳裂纹的形核。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Some Factors that Influence the Fatigue Behaviour of Alpha-Iron
AbstractA preliminary study has been made of the relationship between dislocation substructure and the rate of nucleation and propagation of the fatigue crack in α-iron, by applying the stress to the annealed metal in different ways, or by making specimens from material that had been cold worked, hot rolled, or deformed by creep. Applying the full stress to the annealed metal at the first cycle, as compared with gradually building up the stress over a few thousand cycles, greatly reduced the life to fracture and considerably changed both the dislocation substructure, as revealed by transmission electron microscopy, and the nature of the slip-bands observed on the specimen surface. In some cases the yield point of the cold-worked or hot-rolled material was still falling when fatigue fracture occurred. Surface cracking remaining after creep was the significant factor reducing subsequent fatigue life. Neither the substructure nor the voids produced during creep seemed to influence fatigue-crack nucleation or...
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