Design Optimization of a Three-Stage Planetary Gear Reducer Using Genetic Algorithm

Yanbiao Feng, Wenming Zhang, Jue Yang, Z. Dong
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Abstract

The multi-stage reducer, especially the planetary gear reducer, usually serves in heavy-duty machinery such as shield tunneling machine, tracked excavator, mining truck and crusher. Those application areas require great load capacity, long life, and high geometrical mechanical performance, and the high ratio so on. This paper first presents a novel architecture of three-stage reducer. To achieve those objectives collectively, this paper presents an optimization methodology based on genetic algorithm (GA). The geometrical volume is set as objective function. The gear module, teeth number, and gear face width are chosen as design variables, taking the life, geometrical spacing, efficiency and load capacity, etc. as constraints. The optimization results are satisfactory and can help designer to employ novel architecture by fulfilling requirements.
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基于遗传算法的三级行星齿轮减速器设计优化
多级减速器,特别是行星齿轮减速器,通常用于盾构掘进机、履带式挖掘机、矿用卡车、破碎机等重型机械中。这些应用领域要求承载能力大、寿命长、几何力学性能高、比高等。本文首先提出了一种新型的三级减速器结构。为了实现这些目标,本文提出了一种基于遗传算法的优化方法。将几何体积设为目标函数。以齿轮的寿命、几何间距、效率和承载能力等为约束条件,选择齿轮模数、齿数和齿面宽度作为设计变量。优化结果令人满意,可以帮助设计者采用符合要求的新颖建筑。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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