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Design of Transmission Accuracy of the Involute Cylindrical Gear-Worm Gear System under Large Temperature Difference Based on FE Method

机译:基于Fe方法的大温差异下渐开线圆柱齿轮蜗轮系统传输精度设计

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Involute cylindrical gear transmission and worm gear drives are mechanical devices widely used in transmission mode. The design of precision not only directly affects the accuracy of the transmission, but also affects the cost and machining process. Since the system works under large temperature difference, the deformation of the system would be very different from the common condition and the accuracy of every component will be influenced. In this paper, the finite element analysis method is adopted to the structural analysis of thermal deformation. The main factors affecting transmission error of the gear-worm system mainly considered in this paper are: center distance, tooth thickness variation, radial tooth-to-tooth composite variation, the bearing clearance and so on at the extreme temperature of -50°C & 70°C. The results can be used to calculate the backlash increment caused by the temperature difference. Eventually, with further inspection and gradual rectification, the design precision is obtained which not only meet the requirements of backlash but also make no stuck in the system.
机译:渐开线圆柱齿轮传动和蜗轮驱动器是广泛应用于传输模式的机械装置。精度设计不仅直接影响传输的准确性,而且影响成本和加工过程。由于系统在较大的温差下工作,因此系统的变形与常见条件非常不同,并且每个组件的精度都会受到影响。本文采用了有限元分析方法对热变形的结构分析。影响本文主要考虑的齿轮蜗杆系统传输误差的主要因素是:中心距离,齿厚度变化,径向齿对齿复合变化,轴承间隙等温度为-50°C &70°C。结果可用于计算由温差引起的间隙增量。最终,通过进一步检查和逐步整改,获得设计精度,不仅满足了反弹的要求,而且还没有卡在系统中。

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