Premature Failure of a Deburring Drum Initiated by Fatigue at a Stress Concentration Caused by a Sharp Corner at a Bolt Hole

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Abstract

Several deburring drums that fractured were filled with abrasive, water, and small parts, such as roller bearing rollers, and rotated on their axis at 36 rpm. Cracks were discovered very early in the service lives of these high-chromium white iron cast structures. All of the fractures were through bolt holes in the mounting flange. The holes had a sharp edge and exhibited uneven wear on the inside diameter. In operation, the mounting bolts were frequently found to be loose and in at least one case broken off. A 25x scanning electron microscopy (SEM) fractograph from near this fracture-initiation area showed fatigue striations. No casting or metallurgical structural defects were found that could explain the failures. This evidence supports the conclusion that cracking was a result of the stress-concentration site at the bolt holes where a fatigue-initiated fracture occurred. Recommendations included that the radii be increased at the sharp corners and that lock-wiring be used to secure against bolt loosening.
螺栓孔尖角引起的应力集中疲劳导致去毛刺鼓过早失效
几个破裂的去毛刺桶被填充了磨料、水和小部件(如滚子轴承滚子),并以36rpm的速度在其轴上旋转。这些高铬白口铸铁在使用寿命中很早就发现了裂纹。所有的骨折都是通过安装法兰上的螺栓孔造成的。孔边缘锋利,内径磨损不均匀。在操作中,经常发现安装螺栓松动,至少有一次断裂。在断口起始区附近的25倍扫描电镜断口形貌显示出疲劳条纹。没有发现铸造或冶金组织缺陷可以解释失效。这一证据支持这样的结论,即裂纹是疲劳引发断裂的螺栓孔应力集中部位的结果。建议包括在尖角处增加半径,并使用锁线来防止螺栓松动。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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