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Multi-scale dynamics of mechanical systems with friction.

机译:带有摩擦的机械系统的多尺度动力学。

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摘要

Contact between rough surfaces occurs in numerous engineering systems and in many instances influences the macro behavior of the system. In many instances, the interaction between rough surfaces, affect the macro behavior of the system. Effective treatment of systems containing rough surface contact requires multiscale modeling and analysis approach. It is the goal of this research to develop simple methods for treating contact of rough surfaces so as to facilitate multiscale analysis of systems containing rough surface contact and friction.;This dissertation considers a multi-scale approach that includes interaction at nano-scale, micron-scale and accounting for their cumulative effect as to what we normally perceive to be the influence of contact surfaces and friction. In linking each scale to a higher scale this study employs statistical means to obtain cumulative effect of smaller-scale features. A mixed interactive/optimization technique is used to derive, in approximate closed form, equations for the contact load and real area of contact dependence on approach and parameters of rough surfaces. The equations so derived relate the normal and tangential components of contact load to displacement and surface parameters for three types of contact.;The nature of contact interaction that include elastic, elastic-plastic, visco-elastic, and visco-elasto-adhesive behavior are considered and equations relating the normal and tangential contact load to approach and relative sliding are obtained in approximate closed form. The approximate equations provide a tool for efficient calculation of contact force components, especially in surface optimization efforts where repetitive calculation of contact force components may be needed. The approximate equations also facilitate a multi-scale dynamic analysis wherein the effect of contact interaction can be readily included in a mechanical system model. Several dynamical problems involving mechanical systems with friction contact are presented and nonlinear dynamic analyses are employed to link the micron-scale properties of surface to the macro-scale properties of the mechanical system. These lead to, perhaps, the first derivation of contact frequency and damping in rough surface contact.
机译:粗糙表面之间的接触发生在许多工程系统中,并且在许多情况下会影响系统的宏观行为。在许多情况下,粗糙表面之间的相互作用会影响系统的宏观行为。有效处理包含粗糙表面接触的系统需要多尺度建模和分析方法。这项研究的目的是开发一种处理粗糙表面接触的简单方法,以便于对包含粗糙表面接触和摩擦的系统进行多尺度分析。本论文考虑了一种多尺度方法,其中包括纳米级,微米级的相互作用。缩放并考虑它们对我们通常认为是接触表面和摩擦的影响的累积影响。在将每个比例尺与较高比例尺联系起来时,本研究采用统计手段来获得较小比例尺特征的累积效应。使用混合交互式/优化技术以近似封闭的形式得出接触载荷和接触面积与粗糙表面进近和参数的相关性的方程。这样得出的方程将接触载荷的法向和切向分量与三种类型的接触的位移和表面参数相关联;包括弹性,弹塑性,粘弹性和粘弹黏附行为的接触相互作用的性质是考虑,并以近似闭合的形式获得了将法向和切向接触载荷与接近和相对滑动相关的方程式。近似方程式提供了一种用于有效计算接触力分量的工具,尤其是在可能需要重复计算接触力分量的表面优化工作中。近似方程还有助于进行多尺度动态分析,其中接触相互作用的影响可以轻松地包含在机械系统模型中。提出了涉及具有摩擦接触的机械系统的一些动力学问题,并采用非线性动力学分析将表面的微米尺度特性与机械系统的宏观尺度特性联系起来。这些可能导致接触频率的第一阶导数和粗糙表面接触的阻尼。

著录项

  • 作者

    Sepehri, Ali.;

  • 作者单位

    Southern Illinois University at Carbondale.;

  • 授予单位 Southern Illinois University at Carbondale.;
  • 学科 Engineering Automotive.;Engineering Mechanical.;Engineering Industrial.
  • 学位 Ph.D.
  • 年度 2010
  • 页码 438 p.
  • 总页数 438
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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