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Design of asymmetric normal contact ratio spur gear drive through direct design to enhance the load carrying capacity

机译:通过直接设计来设计非对称法向接触比正齿轮传动,以提高承载能力

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摘要

Maximum fillet and contact stresses of asymmetric normal contact ratio spur gears designed by direct design method are evaluated based on the load sharing ratio, using finite element method. For a direct gear design, area of existence diagrams are developed for known input gear parameters such as number of teeth, coefficient of asymmetry, top land thickness coefficient and drive side contact ratio. A unique Ansys parametric design language code is developed to find the load sharing ratio, maximum fillet and contact stresses. The fillet stress is calculated in terms of non-dimensional stress. The influence of gear drive parameters such as drive and coast side pressure angles, top-land thickness coefficients, contact ratio, coefficient of asymmetry, gear ratio and teeth number on load carrying capacity has been studied extensively on non-dimensional fillet stress and maximum contact stress and compared with that of the conventionally designed gears. Through parametric study, suitable suggestions are made for the design of asymmetric gear drive for an enhanced load carrying capacity with constant contact ratio and constant drive side pressure angle separately. (C) 2015 Elsevier Ltd. All rights reserved.
机译:通过直接设计方法设计的非对称法向接触比正齿轮的最大圆角和接触应力,基于有限元法,基于载荷分担比进行评估。对于直接齿轮设计,针对已知的输入齿轮参数(例如齿数,不对称系数,顶面厚度系数和驱动侧接触比)开发存在区域图。开发了独特的Ansys参数设计语言代码,以查找载荷分配比,最大圆角和接触应力。圆角应力是根据无量纲应力计算的。齿轮驱动参数,如驱动和海岸侧压力角,顶面厚度系数,接触比,不对称系数,齿轮比和齿数对承载能力的影响已在无量纲圆角应力和最大接触方面进行了广泛研究应力,并与传统设计的齿轮相比。通过参数研究,为非对称齿轮传动的设计提出了适当的建议,以分别具有恒定的接触比和恒定的驱动侧压力角来提高承载能力。 (C)2015 Elsevier Ltd.保留所有权利。

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