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Failure Analysis of a Diesel Engine Gear System Consisting of Camshaft and Crankshaft Gears

机译:凸轮轴和曲轴齿轮组成的柴油机齿轮系统的故障分析

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A failure investigation was conducted on a diesel engine gear system consisting of a driven camshaft and drive crankshaft gears that were used in a truck. The gears are made from a nitrided 42CrMo steel. Adjacent teeth fracture and plastic deformation regions appeared on the gears after a 400 h run test of the gear system. Fractography indicates that fatigue fracture is the dominant failure mechanism for the gear teeth. Although the appearance of needle-like nitrides in the nitrided layer and the narrow depth of the compound layer may decrease the fatigue strength of the camshaft gear, these do not suffice to lead to the premature fracture of the gear teeth. Geometrical analysis of the gears was performed and compared with an analysis of unfailed gears that had experienced a run test for 1800 h. The comparison reveals that the small fillet radius at the root area of the camshaft gear concentrated the stresses and is mainly responsible for fatigue fracture of the teeth. The camshaft gear is the component that initiated trouble in the gear system. The appearance of severe plastic deformation on the gear faces is caused by the fractured teeth crushing the teeth faces and being embedded in the grooves between teeth.
机译:对由卡车使用的从动凸轮轴齿轮和驱动曲轴齿轮组成的柴油机齿轮系统进行了故障调查。齿轮由氮化的42CrMo钢制成。在齿轮系统进行了400小时的运行测试后,齿轮上出现了相邻的齿断裂和塑性变形区域。分形显示疲劳断裂是齿轮齿的主要失效机理。尽管在氮化层中出现针状氮化物和化合物层的狭窄深度可能会降低凸轮轴齿轮的疲劳强度,但这些不足以导致齿轮齿过早断裂。进行了齿轮的几何分析,并与经历了1800小时的运行测试的未失效齿轮进行了分析。比较表明,凸轮轴齿轮根部区域的小圆角半径集中了应力,这主要是造成齿疲劳断裂的原因。凸轮轴齿轮是引起齿轮系统故障的组件。齿轮表面出现严重的塑性变形是由于断裂的齿压碎了齿面并嵌入齿之间的凹槽中引起的。

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