基于应变损伤的传动轴低周疲劳研究

Investigate on low-cycle fatigue of shaft based on strain damage

  • 摘要: 某车辆在执行任务期间,变速箱内主传动轴多次发生断裂故障,裂纹从花键过渡曲线根部产生并扩展。通过分析发现,该轴在服役期间受到了较大的冲击扭矩,导致传动轴花键过渡部位出现塑性变形并形成应变损伤。根据Manson公式,结合有限元塑变分析,进行了基于应变损伤的低周疲劳寿命计算,得到其低周疲劳寿命为2 574次,与台架试验结果非常接近,研究为周期性冲击载荷下传动轴的低周疲劳失效分析提供了可行性的探索。

     

    Abstract: During the operation of a vehicle, a torsion shaft in the gearbox broke down several times, cracks are sprout and extended from the root of the spline transition curve. Through analysis, it is found that the shaft was shocked with a large impact load during serviee, which led to the spline transition part of the transmission shaft plastic deformation and strain damage. According to Manson formula, combined with the finite element plastic deformation analysis of the shaft, the low cycle fatigue life calculation based on strain damage was carried out, and the low cycle fatigue life was obtained to be 2 574 times, which was very close to the result of bench test. The study provided a feasible exploration for the low cycle fatigue failure analysis of the drive shaft under large impact shocks.

     

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