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Mesh stiffness calculation of a spur gear pair with tooth profile modification and tooth root crack

机译:具有齿廓修正和齿根裂纹的正齿轮副的啮合刚度计算

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摘要

Gear tooth deviations are the main excitation sources for gear dynamic responses. However, it is seldom considered in the analytical mesh stiffness model except for some computational analysis like finite element method. To make up this gap, a general analytical mesh stiffness model is proposed in this paper to include the effect of the gear tooth errors. This proposed model establishes the relationship between the gear tooth errors and the total mesh stiffness, load sharing among different tooth pairs in mesh and loaded static transmission errors (LSTE). It is suitable for not only the gear pairs with low contact ratio (LCR), but also the gear pairs with high contact ratio (HCR). Two spur gear pair models, namely one with LCR between 1 and 2 and the other one with HCR between 2 and 3, are used to demonstrate the effectiveness of the proposed mesh stiffness model. Influences of the TPM, applied torque and gear tooth root crack on the mesh stiffness, load sharing and loaded static transmission errors are also investigated.
机译:轮齿偏差是齿轮动力响应的主要激励源。但是,除了诸如有限元法之类的一些计算分析之外,在分析网格刚度模型中很少考虑它。为了弥补这一差距,本文提出了一种通用的分析网格刚度模型,其中包括齿轮齿误差的影响。该模型建立了齿轮齿误差与总啮合刚度,啮合中不同齿对之间的载荷分配以及载荷静态传递误差(LSTE)之间的关系。它不仅适用于低接触比(LCR)的齿轮对,而且适用于高接触比(HCR)的齿轮对。两个正齿轮对模型,即一个LCR在1到2之间,另一个在HCR在2到3之间,用来证明所提出的啮合刚度模型的有效性。还研究了TPM,施加的扭矩和齿轮齿根裂纹对啮合刚度,载荷分配和载荷静态传递误差的影响。

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