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Excitation Prediction by Dynamic Transmission Error under Sliding Friction in Helical Gear System 被引量:1

Excitation Prediction by Dynamic Transmission Error under Sliding Friction in Helical Gear System
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摘要 Monte Carlo method was adopted to calculate the meshing error considering the manufacture error and assembly error of the meshing point along the time-varying contact line for helical gear pair. The flexural-torsion-axis dynamic model coupled was established under the tooth friction force and solved by the perturbation method to compute real dynamic tooth load. The change laws of the friction force and friction torque were obtained in a meshing period. The transmission error formulation was analyzed to introduce meshing excitations. The maximum dynamic transmission error, the maximum meshing force and the maximum dynamic factor were calculated under different speeds, external loads and damping factors. The conclusions can provide theoretical basis for the gear design especially in tooth profile correction. Monte Carlo method was adopted to calculate the meshing error considering the manufacture error and assembly error of the meshing point along the time-varying contact line for helical gear pair. The flexural-torsion-axis dynamic model coupled was established under the tooth friction force and solved by the perturbation method to compute real dynamic tooth load. The change laws of the friction force and friction torque were obtained in a meshing period. The transmission error formulation was analyzed to introduce meshing excitations. The maximum dynamic transmission error, the maximum meshing force and the maximum dynamic factor were calculated under different speeds, external loads and damping factors. The conclusions can provide theoretical basis for the gear design especially in tooth profile correction.
出处 《Transactions of Tianjin University》 EI CAS 2013年第6期448-453,共6页 天津大学学报(英文版)
基金 Supported by National Basic Research Program of China("973"Program,No.2013CB632305)
关键词 helical gear time-varying contact line transmission error dynamic factor 传动误差 滑动摩擦 齿轮系统 预测 激发 蒙特卡洛方法 摩擦力矩 动力学模型
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