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Analysis of Thermal Characteristic of Spur/Helica Gear Transmission

机译:浇口/螺旋齿轮变速器热特性分析

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摘要

Gear drives are widely used in mechanical driving devices, and the heating problem o f gear has been paid much attention. The tooth surface temperature field of spur/helical gear is compared and thermal characteristic of spur/helical gear is studied in this paper. The calculation formula of frictional heat flux and convective heat transfer coefficient, which considers different surfaces of gear tooth, is derived. The frictional heat flux of the helical gear is different from that of the spur gear, and the calculation method is different. The finite element parametric model for thermal analysis is built and it realizes the automatic parametric modeling, loading, and generation of temperature field by ANSYS parametric design language (APDL) program. The influence of different parameters on gear temperature rise is analyzed and the distribution of the three-dimensional (3D) temperature field of spur/ helical is obtained. The simulation analysis and experiment are compared to validate the accuracy of thermal analysis results. The research result reveals the distribution law of the 3D temperature field of spur/helical gear transmission at different working parameters. It provides theoretical guidance for gear antiscuffing capability and gear optimization design.
机译:齿轮驱动器广泛应用于机械驱动装置,加热问题O F齿轮的注意力很大。比较Spur /螺旋齿轮的齿面温度场,并在本文中进行了刺激/螺旋齿轮的热特性。衍生摩擦热通量和对流传热系数的计算公式,其考虑齿轮齿的不同表面。螺旋齿轮的摩擦热通量与正齿轮的热通量不同,并且计算方法不同。构建了用于热分析的有限元参数模型,它通过ANSYS参数设计语言(APDL)程序实现了自动参数建模,加载和生成温度场。分析了不同参数对齿轮升温的影响,获得了旋螺/螺旋的三维(3D)温度场的分布。比较仿真分析和实验,以验证热分析结果的准确性。研究结果揭示了不同工作参数在不同工作参数下的3D温度场的分布定律。它为齿轮防风机和齿轮优化设计提供了理论指导。

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