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A study of the frequency response of impact pairs with application to automotive gear rattle.

机译:冲击对的频率响应及其在汽车齿轮拨浪鼓中的应用研究。

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摘要

A torsional lumped parameter multi-degree-of-freedom model of an automotive manual transmission is developed and the corresponding nonlinear equations of motion are derived. The model consists of a set of nonlinear impact pairs coupled by linear springs. Each impact pair is defined by a semi-definite torsional system consisting of two inertia elements joined by a nonlinear clearance type elastic element and a linear energy dissipation element. The method of harmonic balance is used to develop approximate analytical solutions for the impact pair and to study the existence and stability of the solutions. Steady state frequency response predictions, for a single frequency excitation and primary resonance, compare extremely well with analog computer simulations. Potential problems are observed when numerical integration techniques are used to predict the steady state frequency response of the impact pair. The clearance nonlinearity is shown to be significantly different from the classic cubic nonlinearity. The method of harmonic balance is then applied successfully to a multi-degree-of-freedom system composed of three coupled impact pairs. Two special cases are studied in detail and again the frequency response predictions for a single frequency excitation match analog simulations very well. For one of the special cases it is shown that the nonlinear multi-degree-of-freedom system can be studied using a nonlinear single-degree-of-freedom model and for the other special case the nonlinear multi-degree-of-freedom system can be studied using a linear multi-degree-of-freedom model. Finally, a simplified nonlinear model of an automotive transmission is developed. This model is applied to the study of neutral and drive/cost rattle problems and approximate analytical solutions are developed which clearly explain the nonlinear behavior of the system. A set of design guidelines for reduced rattle are then formulated, which are consistent with the experimental observations given in the literature. This study has resolved many modeling issues related to clearance type nonlinear systems as well as geared systems with backlash.
机译:建立了汽车手动变速器的扭转集中参数多自由度模型,并推导了相应的非线性运动方程。该模型由一组线性弹簧耦合的非线性冲击对组成。每个冲击对由一个半确定扭转系统定义,该系统由两个惯性元件组成,两个惯性元件由非线性间隙型弹性元件和线性能量耗散元件连接。谐波平衡法用于为冲击对开发近似解析解,并研究该解的存在性和稳定性。对于单频激励和一次共振,稳态频率响应的预测与模拟计算机模拟的比较非常好。当使用数值积分技术预测冲击对的稳态频率响应时,会发现潜在的问题。间隙非线性被证明与经典三次非线性显着不同。然后,谐波平衡方法成功地应用于由三个耦合冲击对组成的多自由度系统。详细研究了两种特殊情况,并且再次很好地模拟了单个频率激励的频率响应预测与模拟仿真的匹配。对于其中一种特殊情况,表明可以使用非线性单自由度模型研究非线性多自由度系统,而对于另一种特殊情况,则表明可以使用非线性多自由度系统来研究非线性多自由度系统可以使用线性多自由度模型进行研究。最后,建立了汽车变速器的简化非线性模型。该模型适用于研究中性和驱动/成本问题,并开发了近似分析解决方案,可以清楚地解释系统的非线性行为。然后制定了一套减少拨浪鼓的设计准则,这与文献中给出的实验观察结果是一致的。这项研究解决了许多与游隙型非线性系统以及带齿隙的齿轮系统有关的建模问题。

著录项

  • 作者

    Comparin, Robert Joseph.;

  • 作者单位

    The Ohio State University.;

  • 授予单位 The Ohio State University.;
  • 学科 Engineering Mechanical.
  • 学位 Ph.D.
  • 年度 1988
  • 页码 282 p.
  • 总页数 282
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

  • 入库时间 2022-08-17 11:50:53

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