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Fatigue failure analysis of roll steel pins from a chain assembly: Fracture mechanism and numerical modeling

机译:链组装辊钢销的疲劳失效分析:断裂机制和数值模拟

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The current study is focused on the investigation of the failure case history pertaining to the inservice fractured steel pins of a chain assembly installed in a continuous cold drawing machine. The findings of the present investigation showed that the pins failed due to multiple-origin rotating bending fatigue under low applied load, due to the application of tensile and/or bending stresses, initiated from the pin circumference. The multiple-crack initiation is consistent to severe stress concentration conditions, as imposed by the low fillet radius attributed to the original pin design. No microstructural abnormalities were detected, that could have been correlated to the principal cause of failure. In the context of the present evaluation, analytical methods such as visual inspection, optical microscopy, SEM fractography and microhardness testing were utilized. Moreover, a finite element analysis of the assembled chain was performed in order to investigate the stress distribution during the operation of the chain and to formulate a sound quantitative approach which will assist in better understanding of chain/pin loading conditions. The primarily insufficient component design resulted in high stress concentration factors interacted with the soft annealed material used for the component and caused fatigue under the presence of fluctuating stresses.
机译:目前的研究专注于调查与安装在连续冷绘制机中的链组件的钢板骨折钢销有关的故障案例历史。本研究的发现表明,由于施加拉伸和/或弯曲应力,从销圆周发起的伸缩和/或弯曲应力,引脚由于在低施加的载荷下旋转弯曲疲劳而导致引脚失效。多裂纹启动与严重的应力浓缩条件一致,其由归因于原始引脚设计的低圆角半径施加。没有检测到微观结构异常,这可能与失败的主要原因有关。在本评价的背景下,利用了视觉检查,光学显微镜,SEM Fractography和微硬度测试的分析方法。此外,进行了组装链的有限元分析,以便研究链条操作期间的应力分布,并配制声音定量方法,以便更好地理解链/销加载条件。主要不足的组分设计导致高应力集中因子与用于组分的软退火材料相互作用,并在存在波动应力的存在下引起的疲劳。

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