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Failure investigation of a crane gear damage

机译:起重机齿轮损坏的故障调查

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摘要

Spiral bevel gear, used in a crane drivetrain, experienced wear, damage and fracture during standard operation. Experimental and numerical procedures were combined to determine the origins of the failure. Experimental procedures consisted of visual examination of the gear, optical and electron microscopy of the teeth, analysis of chemical composition of the material, testing the mechanical properties of the material and hardness testing. Numerical procedures employed finite element analysis to determine stress, strain and contact stresses of the gear pair. Based on this, time-varying mesh stiffness is calculated for undamaged and damaged gear. Obtained results suggest that subsurface material inclusions, detected below gear surface, served as initiation points for cracks leading to failure mechanism that corresponds with tooth flank fracture. Excessive stress that provoked crack propagation was probably due to gear shafts misalignment resulting in teeth mismatch. Numerical analysis offered acceptable values of stress distributions, but extensive surface pressure in the region of the pitch line, generates the collapse of the ligament between subsurface crack tip and contact surface.
机译:螺旋锥齿轮,用于起重机动力传动系统,在标准操作期间经历磨损,损坏和骨折。合并实验和数值程序以确定失败的起源。实验程序包括齿轮的视觉检查,牙齿的光学和电子显微镜检查,材料的化学成分分析,测试材料的机械性能和硬度试验。数值程序采用有限元分析来确定齿轮对的应力,应变和接触应力。基于此,计算齿轮的齿轮的时变网刚度。获得的结果表明,在齿轮表面下方检测到的地下材料夹杂物,作为导致与牙齿侧面裂缝对应的失效机制的裂缝的起始点。激发裂纹传播的过度应力可能是由于齿轮轴未对准导致牙齿不匹配。数值分析提供了应力分布的可接受的值,但间距线的区域中的广泛表面压力,产生了地下裂纹尖端和接触表面之间的韧带的塌陷。

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