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The effect of nitriding, severe shot peening and their combination on the fatigue behavior and micro-structure of a low-alloy steel

机译:渗氮,强喷丸处理及其组合对低合金钢疲劳性能和组织的影响

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摘要

Fatigue strength of mechanical components can be greatly enhanced by generating compressive residual stress, increasing the hardness and reducing the grain size. It is well known that while the use of mechanical treatments is able to generate an effective field of compressive residual stresses and, if severe parameters are used, to cause grain refinement, thermochemical treatments are able to increase the surface hardness. This justifies the interest in developing combined treatments, able to achieve all the just mentioned factors. In this study, the effect of combination of severe shot peening and nitriding on the fatigue limit of a low-alloy steel is investigated. Severe shot peening was conducted by using particular processing parameters to obtain ultra-fineano-structured surface layers. Micro-structural observation, micro-hardness, surface roughness and XRD measurement of residual stress were performed on single and hybrid surface treated specimens including nitrided, severely shot peened, nitrided plus severely shot peened and severely shot peened plus nitrided specimens. The fatigue limit of all series was experimentally determined and compared with the as-received specimens. Severe shot peening and Nitriding improved the fatigue limit by 11.6% and 51.3% respectively. Combination of severe shot peening and nitriding improved hardening, residual stress and nitrogen diffusion with respect to the single treatment. Nevertheless, it could not guarantee further improvement in the fatigue limit as compared with the nitrided smooth specimens. The results are critically assessed by considering the local fatigue limit concept.
机译:通过产生压缩残余应力,增加硬度和减小晶粒尺寸,可以大大提高机械部件的疲劳强度。众所周知,尽管使用机械处理能够产生有效的压缩残余应力场,并且如果使用严格的参数来引起晶粒细化,则热化学处理能够增加表面硬度。这证明了对开发能够实现所有上述因素的联合治疗的兴趣。在这项研究中,研究了强喷丸和渗氮相结合对低合金钢疲劳极限的影响。通过使用特定的加工参数进行严重的喷丸硬化处理,以获得超细/纳米结构的表面层。对单个和混合表面处理过的试样进行了微结构观察,显微硬度,表面粗糙度和残余应力的XRD测量,包括氮化,重喷丸,氮化加重喷丸,重喷丸加氮化的试样。实验确定了所有系列的疲劳极限,并将其与收到的试样进行了比较。严重的喷丸处理和渗氮处理分别将疲劳极限提高了11.6%和51.3%。严格的喷丸处理和渗氮相结合,相对于单一处理,改善了硬化,残余应力和氮扩散。然而,与渗氮的光滑试样相比,它不能保证疲劳极限的进一步提高。通过考虑局部疲劳极限概念对结果进行严格评估。

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