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Failure Analysis of Conveyor Chain Links: A Case Study

机译:输送链链路故障分析 - 以案例研究

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This case study is to investigate the causes of failure of chain system through characterization on the failure component. The failures that occur are relate to welding because this dipping latex industry used customized chain that have to be weld in joining with outer chain links. The analysis revealed that the weld defect such as crater leads the crack propagation and added with cyclic loading that cause the fatigue failure. The fatigue failure occurs due to this generated crack at the outer circumference of the weld within chain attachment and outer chain links plate. This type of defect also can be categories as designing-in defect. Fatigue crack propagation was evident by progressive beach marks and the scanning electron microscopy (SEM) analysis revealed the types of microstructure that resulting at heat affected zone (HAZ). Hardness testing by using Rockwell Tester found the different hardness profile at three areas that are weld metal, base metal and heat affected zone. The maximum hardness values were found at heat affected zone and weld metal. Finite element method (FEM) that is Ansys Workbench was used to review the different size of outer link plate thickness that affected to the stress distribution. It was found that stress can be minimized with increasing the plate thickness.
机译:本案例研究是通过对故障组分的表征来研究链系统的失效原因。发生的故障与焊接有关,因为这款浸渍乳胶工业使用的定制链必须焊接在与外链环连接中。该分析显示,诸如火山口的焊缝缺陷导致裂纹繁殖并添加循环载荷,导致疲劳失效。由于该焊缝的外圆周在链附接和外链连杆板内产生的裂缝发生疲劳失败。这种类型的缺陷也可以是设计缺陷的类别。通过渐进式海滩标记和扫描电子显微镜(SEM)分析显示疲劳裂纹繁殖揭示了导致热影响区域(HAZ)的微观结构类型。使用洛克韦尔测试仪的硬度测试发现了焊接金属,基础金属和热影响区域的三个区域的不同硬度曲线。在热影响区域和焊接金属时发现了最大硬度值。作为ANSYS工作台的有限元法(FEM)用于检查影响应力分布的外连杆板厚度的不同尺寸。发现可以随着板厚度最小化应力。

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