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Static and dynamic tooth loading in spur and helical geared systems - experiments and code validation

机译:静态和动态齿装在刺刺和螺旋齿轮系统中 - 实验和代码验证

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The primary objective of this study is to validate a specific finite element code aimed at simulated dynamic tooth loading in geared rotor systems. Experiments have been conducted on a high-precision single stage spur and helical gear reducer with flexible shafts mounted on hydrostatic or hydrodynamic bearings. The numerical model is based on classical elements (shaft, lumped stiffnesses,...) and on an original gear element which accounts for non-linear time-varying mesh stiffness, gear errors and tooth shape modifications. External and parametric excitations are derived from the instantaneous contact conditions between the mating flanks by using an iterative contact algorithm inserted in a time-step integration scheme. In a first step, experimental and numerical results at low speeds are compared and it is demonstrated that the proposed tooth mesh interface model is valid. Comparisons are then extended to dynamic fillet stresses on both spur and helical gears between 50-6000 rpm on pinion shaft. Despite a localized problem in the case of spur gears with one particular bearing arrangement, the broad agreement between the experimental and numerical response curves proves that the model is representative of the dynamic behavior of geared systems.
机译:主要目的本研究的是验证旨在面向转子系统模拟动态齿装载一个特定的有限元程序。实验已经上高精度的单级正齿轮及斜齿轮减速器进行与挠性轴地安装在流体静力或流体动力轴承。所述数值模型(轴,集总的刚度,...)和占非线性时变啮合刚度,齿轮误差和齿形状的修改的原始齿轮元件上基于经典元素。外部和参数激励是通过使用插入在时间步长积分方案的迭代接触算法从配合面之间的瞬时接触条件的。在第一步骤中,在低速下的实验和数值计算结果进行比较,则表明,所提出的网格齿接口模型是有效的。然后比较被扩展到两个正和50-6000转上的小齿轮轴之间的螺旋齿轮动态圆角应力。尽管在正齿轮与一个特定轴承装置的情况下的局部问题,实验和数值响应曲线之间的广泛的协议证明,该模型代表齿轮系统的动态行为的。

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