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首页> 外文期刊>Proceedings of the Institution of Mechanical Engineers, Part C. Journal of mechanical engineering science >Optimizing involute gear design for maximum bending strength and equivalent pitting resistance
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Optimizing involute gear design for maximum bending strength and equivalent pitting resistance

机译:优化渐开线齿轮设计以获得最大的弯曲强度和等效的抗点蚀性

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摘要

Standard involute gear designs dominate high-power transmission applications because they combine sufficient bending strength with high pitting resistance, while retaining an adequate contact ratio. In this paper, a non-standard, optimal alternative involute gear design has been presented, which has the same pitting resistance as the standard involute gears but exhibits maximum resistance to bending. The optimization procedure is based on the complex algorithm, where the root stress, as calculated through tabulated boundary element analysis values, is the objective function and the active constraints include all of the kinematical, manufacturing and geometrical conditions, which must be satisfied by the optimal design, including the pitting resistance. The results indicate that optimal designs can achieve up to 8.5 per cent reduction of the fillet stress. Two-dimensional photoelasticity was used to verify the optimization results.
机译:标准渐开线齿轮设计在高功率传动应用中占主导地位,因为它们将足够的弯曲强度与很高的抗点蚀性能结合在一起,同时又保持了足够的接触比。在本文中,提出了一种非标准的,最佳的替代渐开线齿轮设计,该设计具有与标准渐开线齿轮相同的抗点蚀性,但具有最大的抗弯曲性。优化过程基于复杂的算法,其中通过列表化的边界元素分析值计算出的根应力是目标函数,而主动约束则包括所有运动学,制造和几何条件,而最优条件必须满足这些条件设计,包括耐点蚀性。结果表明,最佳设计可以使圆角应力降低多达8.5%。二维光弹性被用来验证优化结果。

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