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Strength model for bending and pitting calculations of internal spur gears

机译:内部螺旋齿轮弯曲和点蚀计算的强度模型

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摘要

An enhanced model for strength calculations of internal spur gear pairs is presented. The load sharing among couples of teeth in simultaneous contact is determined from the meshing stiffness, whose value has been calculated at any point of the path of contact, considering bending, compressive, shear and Hertzian deflections. This curve of variation of the meshing stiffness has been expressed by means of an approximate accurate equation, as a function of the effective contact ratio exclusively, allowing to express the load at each couple of teeth in a closed form. The values of the bending and pitting stresses along the path of contact have been accordingly computed, as well as their nominal values and their corresponding determinant load conditions. An adapted formulation of the meshing stiffness curve for non-standard tooth dimensions-including reduced tooth height, frequently required to avoid secondary interference-has been also developed. Calculation methods for the nominal stresses for these non-standard internal gears have been presented as well. (C) 2018 The Authors. Published by Elsevier Ltd.
机译:提出了一种增强的内部正齿轮对强度计算模型。从啮合刚度确定在同时接触的齿耦合之间的负载分配,其值已经在接触路径的任何点计算,考虑弯曲,压缩,剪切和赫兹偏转。啮合刚度的变化曲线已经通过近似精确的等式表示,作为有效接触比仅是有效接触比的函数,允许以封闭的形式表达每种牙齿的负载。相应地,已经计算了沿接触路径的弯曲和凹陷应力的值,以及它们的标称值及其相应的确定性负载条件。对于非标准齿尺寸的啮合刚度曲线的改进的制剂 - 包括减少的齿高,通常需要避免次级干扰 - 已经被开发出来。已经介绍了这些非标准内齿轮标称应力的计算方法。 (c)2018作者。 elsevier有限公司出版

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