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Effect of non-proportional damping and spectrally-varying properties of passive or active mounts on powertrain motions.

机译:被动或主动安装座的非比例阻尼和频谱变化特性对动力总成运动的影响。

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摘要

This study analytically examines the effects of non-proportional damping and spectrally varying mount properties on the dynamics of a six-degree of freedom automotive powertrain (engine-gearbox) system. The effect of coupling between powertrain motions is of particular interest and an emphasis is placed on the torque roll axis decoupling. One shortcoming of the existing theories and design methods is that they ignore non-proportional viscous damping in their formulations. To overcome this deficiency, the analytical problem for a non-proportionally damped linear system is first formulated while recognizing that significant damping may be possible with passive (such as hydraulic) or adaptive (or smart) mounts. Complex mode method is employed and the torque roll axis decoupling paradigm is re-examined given mount rate ratios, mount locations and orientation angles as key design parameters. A necessary axiom for a mode in the torque roll axis direction is derived provided two eigenvalue problems, in terms of stiffness and damping matrices, are concurrently satisfied.;Second, the influence of spectrally varying mount properties (including stiffness and damping) on the dynamics of powertrain motions is analytically examined. To overcome the deficiencies (limited to only the frequency domain analysis) in direct inversion method, two methods are developed by employing transfer function (in Laplace domain) and analogous mechanical formulations, respectively. Those analytical models are verified by comparing the frequency responses with numerical results obtained by the direct inversion method based on Voigt type mount model. Eigensolutions and transient responses of a spectrally varying mounting system are also predicted based on these models. Based on complex eigenstructure, new coupling indices, including spectral modal kinetic energy fractions, are defined for each method. Given spectral variance in the mount properties, a simple roll mode decoupling scheme is suggested. An axiom for torque roll axis decoupling is also provided by employing direct and adjoint eigenvalue problems.;Third, dynamics of the powertrain with active and passive mounts is analyzed from the system perspective. An analytical model for actuator displacement type active mounts is first developed in the form of transfer function that relates the transmitted force through the active mount of interest to both driving point motion and active displacement terms. It is incorporated into a mounting system to develop 6-degree of freedom rigid body active mounting system model in time and frequency domain. Eigenstructure and multi-dimensional dynamics (especially motion coupling) from those mounting systems adopting active mounts are studied.
机译:这项研究分析性地研究了非比例阻尼和频谱变化的安装特性对六自由度汽车动力总成(发动机-变速箱)系统动力学的影响。动力传动系统运动之间的耦合作用特别令人关注,并且重点放在扭矩侧倾轴解耦上。现有理论和设计方法的缺点之一是它们在其配方中忽略了非比例粘性阻尼。为了克服这一缺陷,首先提出了非比例阻尼线性系统的分析问题,同时认识到被动(例如液压)或自适应(或智能)安装​​座可能会产生很大的阻尼。采用复数模式方法,并以给定的安装率比率,安装位置和定向角度作为关键设计参数,重新检查了扭矩侧倾轴解耦范例。假设同时满足两个特征值问题(在刚度和阻尼矩阵方面),就得出了在转矩滚动轴方向上的模式的必要公理;第二,频谱变化的安装特性(包括刚度和阻尼)对动力学的影响动力总成运动的分析。为了克服直接反演方法中的不足(仅限于频域分析),分别采用传递函数(在拉普拉斯域中)和类似的机械公式开发了两种方法。通过将频率响应与基于Voigt型安装模型的直接反演方法获得的数值结果进行比较,验证了这些分析模型。基于这些模型,还可以预测光谱变化的安装系统的本征解和瞬态响应。基于复杂的本征结构,为每种方法定义了新的耦合指数,包括光谱模态动能分数。给定安装特性的光谱差异,建议采用简单的滚动模式去耦方案。通过采用直接和伴随特征值问题,还提供了扭矩侧倾轴解耦的公理。第三,从系统角度分析了带有主动和被动支座的动力总成动力学。首先以传递函数的形式开发用于执行器位移型主动式安装座的分析模型,该模型将通过感兴趣的主动式安装座传递的力与驱动点运动和主动位移项相关联。它被并入安装系统中,以在时域和频域中开发6自由度刚体主动安装系统模型。研究了那些采用主动安装的安装系统的本征结构和多维动力学(尤其是运动耦合)。

著录项

  • 作者

    Park, Jae-Yeol.;

  • 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 2008
  • 页码 171 p.
  • 总页数 171
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 机械、仪表工业;
  • 关键词

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