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Truck Diesel Engine Crankshaft Failure Analysis

机译:卡车柴油机曲轴故障分析

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摘要

A diesel engine crankshaft fractured in service after 76010 km of operation. The fracture took place on the first crankpin, and the fracture surface has a 45° inclination with respect to the axial. The results indicate that fatigue is the dominant failure mechanism of the crankshaft. It was observed that the fatigue crack initiated at the fillet region of the first crankpin-web. This crankpin is the one among the six crankpins which bear operational load. Absence of the induction hardening case in the fillet region decreased the fatigue strength and led to fatigue initiation and propagation in the weakened region. Although hard-rolling process was conducted in the fillet region, the depth of hard-rolling layer was insufficient to produce the desired residual compressive stress in the fillet region, and therefore the fillet could not offer resistance to the applied load. In addition, the presence of network-like ferrite in the microstructure facilitated the fatigue crack to be initiated and propagated.
机译:76010 km运转后,柴油发动机曲轴在使用中断裂。断裂发生在第一曲柄销上,并且断裂表面相对于轴向倾斜45°。结果表明,疲劳是曲轴的主要失效机理。观察到疲劳裂纹在第一曲柄销腹板的圆角区域开始。该曲柄销是六个承受工作负荷的曲柄销中的一个。圆角区域缺少感应淬火会降低疲劳强度,并导致在弱化区域引发疲劳并扩散。尽管在圆角区域中进行了硬质轧制工艺,但是硬质合金层的深度不足以在圆角区域中产生所需的残余压应力,因此,圆角无法提供对所施加载荷的抵抗力。另外,在显微组织中网状铁素体的存在促进了疲劳裂纹的产生和扩展。

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