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Influence of high speed on crack propagation path in thin rim gears

机译:高速对薄轮辋裂纹扩展路径的影响

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Thin rim gears need accurate design as cracks nucleated at the tooth root fillet may propagate in a safe way (through the tooth) or in catastrophic way (through the rim). Crack propagation direction is mainly influenced by both wheel geometry parameters and crack initiation point. For specific geometry configurations, crack propagation path may be influenced also by other parameters such as the centrifugal load. For this reason, in this work the effect of the centrifugal load (proportional to wheel speed), related to the bending one, has been investigated. The stress field at the tooth root fillet and near the crack has been considered to evaluate the crack initiation point and to explain the propagation direction. This research activity has been carried out by means of numerical models (traditional 2D and 3D finite elements and extended finite elements (XFEM)). Results show that both crack initiation point and crack propagation path are strongly influenced by the centrifugal load entity; this effect is mainly evident in the uncertainty zone of the backup ratio.
机译:薄轮辋齿轮需要精确的设计,因为在齿根圆角处成核的裂纹可能以安全的方式(通过牙齿)或灾难性的方式(通过轮辋)传播。裂纹扩展方向主要受车轮几何参数和裂纹起始点的影响。对于特定的几何构型,裂纹扩展路径也可能受到其他参数(例如离心载荷)的影响。因此,在这项工作中,已经研究了与弯曲弯矩有关的离心负载(与车轮速度成比例)的影响。已经考虑了齿根圆角处和裂纹附近的应力场,以评估裂纹的起始点并解释传播方向。这项研究活动是通过数值模型(传统的2D和3D有限元和扩展有限元(XFEM))进行的。结果表明,裂纹的起始点和裂纹的传播路径都受到离心载荷实体的强烈影响。这种影响主要在备用比率的不确定区域中明显。

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