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Surface integrity and fatigue behaviour of electric discharged machined and milled austenitic stainless steel

机译:电气放电加工和研磨奥氏体不锈钢的表面完整性和疲劳行为

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Machining of austenitic stainless steels can result in different surface integrities and different machining process parameters will have a great impact on the component fatigue life. Understanding how machining processes affect the cyclic behaviour and microstructure are of outmost importance in order to improve existing and new life estimation models. Milling and electrical discharge machining (EDM) have been used to manufacture rectangular four-point bend fatigue test samples; subjected to high cycle fatigue. Before fatigue testing, surface integrity characterisation of the two surface conditions was conducted using scanning electron microscopy, surface roughness, residual stress profiles, and hardness profiles. Differences in cyclic behaviour were observed between the two surface conditions by the fatigue testing. The milled samples exhibited a fatigue limit. EDM samples did not show the same behaviour due to ratcheting. Recrystallized nano sized grains were identified at the severely plastically deformed surface of the milled samples. Large amounts of bent mechanical twins were observed similar to 5 mu m below the surface. Grain shearing and subsequent grain rotation from milling bent the mechanical twins. EDM samples showed much less plastic deformation at the surface. Surface tensile residual stresses of similar to 500 MPa and similar to 200 MPa for the milled and EDM samples respectively were measured. (C) 2017 Elsevier Inc. All rights reserved.
机译:奥氏体不锈钢的加工可导致不同的表面完整性,不同的加工过程参数将对元件疲劳寿命产生很大影响。了解加工过程如何影响循环行为和微观结构,以改善现有和新的寿命估算模型。铣削和电气放电加工(EDM)已被用于制造矩形四点弯曲疲劳试验样品;经受高循环疲劳。在疲劳测试之前,使用扫描电子显微镜,表面粗糙度,残余应力分布和硬度轮廓进行两个表面条件的表面完整性表征。通过疲劳测试在两个表面状况之间观察到循环行为的差异。研磨的样品表现出疲劳极限。 EDM样本由于棘轮而没有显示相同的行为。在研磨样品的严重塑性变形表面处鉴定重结晶的纳米尺寸晶粒。观察到大量的弯曲机械双胞胎在表面以下50μm。从铣削弯曲机械双胞胎的粒子剪切和随后的晶粒旋转。 EDM样品在表面上显示了更少的塑性变形。测量相似的表面拉伸残余应力和用于研磨和EDM样品的200MPa类似的200MPa。 (c)2017年Elsevier Inc.保留所有权利。

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