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首页> 外文期刊>International Journal of Precision Engineering and Manufacturing >Experimental Studies on Torsional Stiffness of Cycloid Gear Based on Machining Parameters of Tooth Surfaces
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Experimental Studies on Torsional Stiffness of Cycloid Gear Based on Machining Parameters of Tooth Surfaces

机译:基于齿面加工参数的摆线齿轮扭转刚度的实验研究

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摘要

Estimating the torsional stiffness has always been the primary issue in analyzing the dynamic characteristics of cycloid gears. The traditional method of obtaining torsional rigidity involves calculating the ratio of the input torque and rotation angle, treating the deformation of cycloid gear as a black box. In order to thoroughly understand the rotation angle caused by the local contact deformation of each cycloid pin gear, a Majumdar-Bhushan contact model and the finite element method are combined to express the normal contact stiffness. By multiplying the normal contact stiffness of each pin gear and the arm of normal contact force, the torsional stiffness of the cycloidal pin wheel system can be calculated. Experiments are conducted to establish the relationship between the torsional stiffness and roughness parameters of the machined tooth surface. The effect of input torque on the torsional stiffness has also been analyzed. This study formulates a relationship between the torsional stiffness and surface characteristics of cycloid gears, which can help improve their design and manufacture in the future.
机译:估计扭转刚度一直是分析摆线齿轮的动态特性的主要问题。获得扭转刚度的传统方法涉及计算输入扭矩和旋转角度的比率,将摆线齿轮变形为黑盒子。为了彻底地理解由每个摆线销齿轮的局部接触变形引起的旋转角度,组合Majumdar-Bhushan接触型号和有限元方法以表达正常接触刚度。通过将每个销齿轮的正常接触刚度乘以正常接触力的臂,可以计算摆线销轮系统的扭转刚度。进行实验以建立机加工齿面的扭转刚度和粗糙度参数之间的关系。还分析了输入扭矩对扭转刚度的影响。本研究制定了摆线齿轮扭转刚度和表面特性之间的关系,这有助于改善其未来的设计和制造。

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