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An efficient three-dimensional dynamic contact model for cylindrical gear pairs with distributed tooth flank errors

机译:具有分布齿侧误差的圆柱齿轮对的有效三维动态接触型号

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摘要

Coupled loaded tooth contact analysis (LTCA) model and lumped-parameters model, an efficient three-dimensional dynamic contact model for cylindrical gear pairs with distributed tooth flank errors is established. The solution scheme of the proposed model is constructed using a combination of the loaded tooth contact algorithm and the Newmark integration method. The dynamic load distributions at different input speeds can be determined, and the dynamic time-dependent mesh stiffness and dynamic composite mesh error are proposed and calculated. The proposed model is validated by comparing the obtained numerical results with the experimental results from the published works, and has much higher efficiency compared with three-dimensional dynamic contact finite element method. The effects of helix angle, mesh damping, distributed tooth flank errors and output torque on the vibration behaviors and dynamic load distributions of cylindrical gear pairs under different working conditions are investigated and discussed. The proposed model can also be used to predict the vibration behaviors and the instantaneous three-dimensional dynamic contact state of cylindrical gear pairs with different distribution forms of tooth flank errors and various tooth surface modifications. (C) 2020 Elsevier Ltd. All rights reserved.
机译:耦合负载牙齿接触分析(LTCA)模型和集成参数模型,建立了具有分布式牙齿侧翼误差的圆柱齿轮对的有效三维动态接触模型。使用加载的牙齿接触算法和纽马克集成方法的组合构建了所提出的模型的解决方案方案。可以确定不同输入速度的动态负载分布,提出并计算动态时间依赖网格刚度和动态复合网格误差。通过将获得的数值结果与来自已发布的作品的实验结果进行比较,通过比较了所得的数值结果来验证所提出的模型,与三维动态接触有限元方法相比具有更高的效率。研究了螺旋角,网状阻尼,分布齿侧误差和输出扭矩对不同工作条件下的振动行为和圆柱齿轮对动态负载分布的影响。所提出的模型还可用于预测具有不同分布形式的牙齿侧面误差和各种齿面修改的柱齿轮对的振动行为和瞬时三维动态接触状态。 (c)2020 elestvier有限公司保留所有权利。

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