Improper Fabrication Rotating Blades Results in Premature Failure

Fred W. Tatar
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Abstract

A number of rotating blades in a diffuser at a sugar beet processing plant fabricated from rectangular bars cut from rolled carbon-manganese steel plate fractured brittlely. However, apparently identical blades underwent significant plastic deformation without fracture. Inspection of both fractured and bent blades revealed similar preexisting cracks at the toes of bar attachment welds. Metallographic examination of the bent and the fractured bars revealed they had been cut parallel and transverse, respectively, to the rolling direction of the steel plate. Due to the combined effects of the low fracture toughness of the plate on planes parallel in the rolling direction, the presence of the preexisting cracks, and the relatively large section thickness of the bars, the bars whose lengths were transverse to the rolling direction fractured brittlely when subjected to impact loads. Had the poor transverse properties of thick-section plate been recognized, and all the bars properly cut with respect to the rolling direction, the premature fractures would not have occurred.
旋转叶片制造不当导致过早失效
甜菜加工厂的扩散器中若干旋转叶片发生脆性断裂,这些叶片是由轧制的碳-锰钢板切割成的矩形棒材制成的。然而,显然相同的叶片发生了明显的塑性变形而没有断裂。对断裂和弯曲叶片的检查显示,在棒材连接焊缝的脚趾处存在类似的预先存在的裂缝。对弯曲和断裂的棒材进行金相检查,发现它们分别与钢板轧制方向平行和横向切割。由于轧制方向平行平面上板的断裂韧性较低,预先存在的裂纹的存在,以及棒材截面厚度较大等综合作用,长度与轧制方向横向的棒材在冲击载荷作用下脆性断裂。如果认识到厚截面板的横向性能差,并根据轧制方向正确切割所有棒材,就不会发生过早断裂。
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