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Assessment of low cycle fatigue improvement of machined AISI 316 stainless steel by brush hammering

机译:刷锤轧制加工AISI 316不锈钢的低循环疲劳改进评估

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摘要

The effects of wire brush hammering on low cycle fatigue behaviour of AISI 316 austenitic stainless steel has been investigated on turned samples through an experimental study combining strain controlled fatigue tests, scanning electron microscope examination and X-ray diffraction analysis. An increase in fatigue life by 266% was reported at an imposed strain amplitude of Δεt/2 = 0.2%. This improvement is limited to Δεt/2 ≤ 0.5%. It is found that wire brush hammering produces a surface texture that favours, under cyclic loading, nucleation of randomly dispersed short cracks of the order of 50 μm in length stabilized by a compressive residual stress field. In contrast, turned surface showed much longer unstable cracks of the order of 200 μm in length nucleated in the machining groves and propagated under the effect of a tensile residual stress field. It has also been established that wire brush hammering can be used as intermittent treatment to improve the residual fatigue life of components subjected to cyclic loading. The treatment is very efficient if it is performed at a fraction of service lifetime ni/Nr lower than 0.5.
机译:通过实验研究在组合应变控制疲劳试验,扫描电子显微镜检查和X射线衍射分析的实验研究中研究了钢丝刷锤锤锻炼对AISI 316奥氏体不锈钢的低循环疲劳行为的影响。报告疲劳寿命的增加以施加的应变幅度为Δεt/ 2 = 0.2%。这种改进限于Δεt/2≤0.5%。有发现钢丝刷锤在通过压缩残余应力场稳定的长度稳定的循环载荷下,在循环载荷,随机分散的短裂缝中核心的核心的核心造成的表面纹理。相反,转向表面在加工树叶中核肉中的长度为200μm的长度的更长的不稳定裂缝,并在拉伸残余应力场的效果下传播。还建立了线刷锤可用作间歇性治疗,以改善经受循环载荷的组分的残余疲劳寿命。如果在低于0.5的服务寿命NI / NR的一部分下进行,则处理非常有效。

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