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Improved analytical models for mesh stiffness and load sharing ratio of spur gears considering structure coupling effect

机译:考虑结构耦合效应的正齿轮啮合刚度和分担比的改进解析模型

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摘要

Due to the lack of efficient formulas, fillet foundation stiffness under double tooth engagement has long been a challenging problem for mesh stiffness calculation of spur gears by analytical method. Direct summation of the mesh stiffness of each meshing tooth pair overestimates the total mesh stiffness, which may lead to a large calculation error. An improved fillet foundation stiffness calculation method is proposed considering the structure coupling effect, namely, one gear body is shared by two meshing teeth simultaneously. On the basis of the proposed method, a mesh stiffness model and a load sharing model are analytically established. In the mesh stiffness model, fillet foundation stiffness correction factor is introduced to improve the calculation accuracy. Based on the minimum potential energy principle (MPEP), the load sharing ratio is determined by the proposed load sharing model. The accuracy of the proposed models is validated by comparing with finite element method (FEM).
机译:由于缺乏有效的公式,双齿啮合下的圆角基础刚度长期以来一直是通过解析法计算正齿轮啮合刚度的难题。每个啮合齿对的啮合刚度的直接求和会高估总啮合刚度,这可能会导致较大的计算误差。提出了一种考虑结构耦合效应的改进的圆角基础刚度计算方法,即一个齿轮体同时被两个啮合齿共享。在此方法的基础上,建立了网格刚度模型和载荷分担模型。在网格刚度模型中,引入了圆角基础刚度校正因子以提高计算精度。基于最小势能原理(MPEP),由所提出的负载分配模型确定负载分配率。通过与有限元方法(FEM)进行比较,验证了所提模型的准确性。

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  • 来源
    《Mechanical systems and signal processing》 |2018年第10期|331-347|共17页
  • 作者单位

    Hubei Key Laboratory of Advanced Technology for Automotive Components, Wuhan University of Technology,School of Automotive Engineering, Wuhan University of Technology,Hubei Collaborative Innovation Center for Automotive Components Technology, Wuhan University of Technology;

    School of Automotive Engineering, Wuhan University of Technology,Hubei Collaborative Innovation Center for Automotive Components Technology, Wuhan University of Technology;

    Hubei Key Laboratory of Advanced Technology for Automotive Components, Wuhan University of Technology,School of Automotive Engineering, Wuhan University of Technology,Hubei Collaborative Innovation Center for Automotive Components Technology, Wuhan University of Technology;

    Hubei Key Laboratory of Advanced Technology for Automotive Components, Wuhan University of Technology,School of Automotive Engineering, Wuhan University of Technology,Hubei Collaborative Innovation Center for Automotive Components Technology, Wuhan University of Technology;

    Hubei Key Laboratory of Advanced Technology for Automotive Components, Wuhan University of Technology,School of Automotive Engineering, Wuhan University of Technology,Hubei Collaborative Innovation Center for Automotive Components Technology, Wuhan University of Technology,State Key Laboratory of Digital Manufacturing Equipment and Technology of China, Huazhong University of Science and Technology;

    Hubei Key Laboratory of Advanced Technology for Automotive Components, Wuhan University of Technology,School of Automotive Engineering, Wuhan University of Technology,Hubei Collaborative Innovation Center for Automotive Components Technology, Wuhan University of Technology;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Spur gears; Mesh stiffness; Load sharing ratio; Fillet foundation stiffness; The minimum potential energy principle;

    机译:正齿轮;啮合刚度;载荷分配比;圆底基础刚度;最小势能原理;

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