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Fatigue scatter reduction through deep cryogenic treatment on the 18NiCrMo5 carburized steel

机译:通过深低温处理对18NiCrMo5渗碳钢进行疲劳分散

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After analysing in a previous work the effects of the deep cryogenic treatment (DCT) on the static mechanical properties of the 18NiCrMo5 carburized steel, its influence on the fatigue behaviour of this material is investigated through stair-case experimental testing followed by SEM fractographic observations. The aim of the study is the comparison between different sequences of DCT and tempering to be performed after a conventional carburization. Two levels of the soaking time parameter are considered for the case of the pre-tempering DCT in order to analyse its influence. A careful statistical analysis of the experimental data is performed and the SNP curves are plotted using the Maximum Likelihood method. A substantial effect on the fatigue behaviour is noticed for all the cryotreated groups, with a general remarkable reduction in data scatter, which is in agreement with the DCT induced carbides segregation largely reported by literature. While in the case of the pre-tempering DCT the improvement is counterbalanced by some other changes, perhaps involving the residual stress state, leading to a general loss in fatigue life, the post-tempering DCT revealed no side effects giving a more reliable and durable material behaviour.
机译:在先前的工作中分析了深低温处理(DCT)对18NiCrMo5渗碳钢的静态力学性能的影响之后,通过楼梯实验测试和SEM断层扫描观察了其对这种材料的疲劳行为的影响。研究的目的是比较DCT的不同顺序和常规渗碳后要进行的回火之间的比较。对于预调温DCT,考虑了两个级别的均热时间参数,以分析其影响。对实验数据进行仔细的统计分析,并使用最大似然法绘制SNP曲线。观察到所有冷冻处理组的疲劳行为都有实质性影响,数据散布普遍显着降低,这与文献中大量报道的DCT诱导的碳化物偏析是一致的。在回火DCT的情况下,其他一些变化(可能涉及残余应力状态)会抵消这种改进,从而导致疲劳寿命的普遍损失,而回火DCT则没有副作用,因此更可靠,更耐用物质行为。

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