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首页> 外文期刊>JSME International Journal. Series C, Mechanical Systems, Machine Elements and Manufacturing >Simultaneous Optimization of Tooth Flank Form of Involute Helical Gears in Terms of Both Vibration and Load Carrying Capacity
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Simultaneous Optimization of Tooth Flank Form of Involute Helical Gears in Terms of Both Vibration and Load Carrying Capacity

机译:从振动和承载能力两方面同时优化渐开线斜齿轮的齿面形式

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摘要

The alignment condition of automotive gears changes considerably during operation due to the deformation of shafts, bearings, and gear box by transmission of load. Under such conditions, the gears are required to satisfy not only reliability in strength and durability under maximum loading conditions, but also low vibrational characteristics under light loading conditions during the cruising of a car. In this report, the characteristics of the optimum tooth flank form of gears in terms of both vibration and load carrying capacity are clarified. The local optimum tooth flank form appears in each excitation valley, where the vibrational excitation is low and the actual contact ratio takes a specific value. The influence of the choice of different local optimum solutions on the vibrational performance of the optimized gears is investigated. The practical design algorithm for the optimum tooth flank form of a gear set in terms of both vibration and load carrying capacity is then proposed and its result is evaluated by field experience.
机译:由于轴,轴承和齿轮箱由于传递载荷而变形,因此汽车齿轮的对中条件在操作过程中会发生很大变化。在这样的条件下,要求齿轮不仅满足在最大载荷条件下强度和耐久性的可靠性,而且还要满足在汽车行驶期间在轻载荷条件下的低振动特性。在这份报告中,阐明了齿轮的最佳齿面形式在振动和承载能力方面的特性。局部最佳齿面形式出现在每个激励谷中,在这些激励谷中,振动激励很低,并且实际接触比取特定值。研究了选择不同的局部最优解对优化齿轮的振动性能的影响。提出了一种针对齿轮组的最佳齿面形式的振动和承载能力的实用设计算法,并通过现场经验对其结果进行了评估。

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