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The effects of spur gear tooth spatial crack propagation on gear mesh stiffness

机译:正齿轮空间裂纹扩展对齿轮啮合刚度的影响

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摘要

Due to the presence of non-uniform load distribution, local non-homogeneity of material quality and potential misalignment of gear shafts and bearings, etc., spatial cracks may occur in the fillet region of spur gear teeth. These cracks will eventually propagate in three distinct directions either individually or simultaneously. These directions are the crack depth direction, the tooth width direction and the tooth profile direction. In this paper, an analytical investigation of the influence of spatial crack propagation on the time-varying Gear Mesh Stiffness (GMS) and also the Load Sharing Ratio (LSR) is presented. In order to quantitatively define the spatial crack propagation scenario, the involute spur gear tooth geometry cut with a typical double rounded rack is first determined using two parametric equations. The effects of some gear design parameters and initial crack locations on GMS and LSR are determined and compared with the results from previous papers that used Finite Element Analysis (FEA) in order to verify the proposed analytical model. Finally, a quasi-parabolic crack propagation scenario is assumed, in which 7 propagation cases and 3 typical crack growth paths on the tooth surface are investigated to determine their effect on the maximum reduction of GMS when compared to normal conditions. The results are important for the dynamic simulation of gear transmission behavior, and consequently helpful for the monitoring of gearbox working condition and detection of early crack damage that may exist in gear sets. (C) 2015 Elsevier Ltd. All rights reserved.
机译:由于存在不均匀的载荷分布,材料质量局部不均匀以及齿轮轴和轴承的潜在不对准等情况,正齿轮齿的圆角区域可能会出现空间裂纹。这些裂纹最终将单独或同时在三个不同的方向上传播。这些方向是裂纹深度方向,齿宽方向和齿廓方向。本文对空间裂纹扩展对时变齿轮啮合刚度(GMS)以及载荷分担比(LSR)的影响进行了分析研究。为了定量地定义空间裂纹的扩展情况,首先使用两个参数方程确定用典型的双圆齿条切割的渐开线正齿轮齿的几何形状。确定了一些齿轮设计参数和初始裂纹位置对GMS和LSR的影响,并将其与以前使用有限元分析(FEA)的论文的结果进行了比较,以验证所提出的分析模型。最后,假设准抛物线裂纹扩展方案,其中研究了7个扩展案例和3个典型的牙齿表面裂纹扩展路径,以确定它们与正常条件相比对GMS最大降低的影响。这些结果对于齿轮传动特性的动态仿真非常重要,因此对于监视齿轮箱的工作状态和检测齿轮组中可能存在的早期裂纹损伤也很有帮助。 (C)2015 Elsevier Ltd.保留所有权利。

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