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首页> 外文期刊>Journal of Failure Analysis and Prevention >Experimental and Simulative Failure Analysis of AISI 316L Stainless Steel Screw Shaft
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Experimental and Simulative Failure Analysis of AISI 316L Stainless Steel Screw Shaft

机译:AISI 316L不锈钢螺杆轴的实验性和模拟故障分析

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This paper presents a study on failure analysis of a screw shaft in a pure terephthalic acid screw conveyor after about 6-year operation. A series of characterization analysis were performed by careful visual observation, mechanical properties tests, chemical content examination, microstructural analysis and microchemical analysis of nonmetallic inclusions. Furthermore, the outer surface topography of the shaft at the fracture position was measured by three-dimensional scanning method. Finite element method considering surface topography was also employed to define the evolution of critical region. Results reveal that the serious stress concentration resulted from structure discontinuity including small radius at the transition and surface roughness was the main reason leading to the crack initiated and propagated, and the latter one was proved to be the biggest driving. To prevent the failure, better controls of surface state and structure size were strongly recommended.
机译:本文提出了在大约6年运行后纯对苯二甲酸螺旋输送机中螺杆轴的故障分析研究。 通过仔细视觉观察,机械性能试验,化学含量检查,微观结构分析和非金属夹杂物的微型化学分析来进行一系列表征分析。 此外,通过三维扫描方法测量骨折位置处的轴的外表面形貌。 考虑表面形貌的有限元方法也用于定义关键区域的演变。 结果表明,在过渡和表面粗糙度下包括小半径的结构不连续性引起的严重应力集中是导致裂纹发起和传播的主要原因,后者被证明是最大的驾驶。 为防止故障,强烈建议使用更好的表面状态和结构尺寸控制。

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