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首页> 外文期刊>Journal of Mechanical Design >Optimum Gear Tooth Geometry for Minimum Fillet Stress Using BEM and Experimental Verification With Photoelasticity
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Optimum Gear Tooth Geometry for Minimum Fillet Stress Using BEM and Experimental Verification With Photoelasticity

机译:使用BEM的最小轮齿应力的最佳齿轮齿几何形状和光弹性实验验证

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摘要

This paper introduces the concept of nondimensional gear teeth to be used in gear stress minimization problems. The proposed method of modeling reduces the computational time significantly when compared to other existing methods by essentially reducing the total number of design variables. Instead of modeling the loaded gear tooth and running BEA to calculate the maximum root stress at every iterative step of the optimization procedure, the stress is calculated by interpolation of tabulated values, which were calculated previously by applying the BEM on nondimensional models corresponding to different combinations of the design parameters. The complex algorithm is used for the optimization and the root stresses of the optimum gears are compared with the stresses of the standard gears for the same transmitted torque. Reduction in stress up to 36.5% can be achieved in this way. This reduction in stress has been confirmed experimentally with two-dimensional photoelasticity.
机译:本文介绍了用于解决齿轮应力最小化问题的无尺寸齿轮齿的概念。与其他现有方法相比,通过实质上减少设计变量的总数,所提出的建模方法显着减少了计算时间。无需对加载的齿轮齿建模并运行BEA以在优化过程的每个迭代步骤中计算最大根应力,而是通过对表格值进行插值来计算应力,这些值是通过将BEM应用于对应于不同组合的无量纲模型而预先计算得出的设计参数。复杂的算法用于优化,并且在相同的传递扭矩下,将最佳齿轮的根应力与标准齿轮的应力进行比较。用这种方法可以将压力降低多达36.5%。通过二维光弹性实验已经证实了这种应力的减小。

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