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Transient solution of a thermoelastic instability problem using a reduced order model.

机译:使用降阶模型瞬态求解热弹性不稳定性问题。

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摘要

Above a certain critical speed, sliding systems with frictional heating such as brakes and clutches can exhibit thermoelastic instability (TEI) in which non-uniform perturbations develop in the pressure and temperature fields. A method is described in which the transient thermomechanical behavior of such systems is approximated by a reduced order model, describing few dominating perturbations or eigenfunctions. The goal is to construct a mathematical model of the system with modest number of degrees of freedom.; If a single dominant perturbation is used, an integral expression can be written for the evolution of the perturbation with time. A more accurate description involving several terms requires that the transient behavior be generated by a sequence of operations in which the sliding speed is piecewise constant. Both models are evaluated by comparison with direct numerical simulation and prove to give good accuracy with a dramatic reduction in computation time.; A method is also described for solving the unperturbed thermoelastic contact problem with frictional heating, which involves non-homogenous equations. A solution method is explored based on the concept of superimposing a steady state solution to an eigenfunction expansion of an equivalent homogenous problem. The difference between the initial temperature field and the steady state distribution acts as an initial disturbance that can grow yielding a non-uniform distribution in the temperature and contact pressure. This method was evaluated by comparison with direct numerical simulation and provides an excellent computational efficiency. A reduced order model, in which few dominating eigenfunctions are retained in the expansion series, gives an excellent approximation especially during the growth phase of a clutch or brake engagement when the sliding speed is above the critical speed.; The contact area may shift or change in size causing the thermoelastic contact problem to be non-linear. An approximate transient solution is described in which the contact area is treated as a piecewise constant in time. This is investigated in the context of a typical clutch problem for the maximum temperature reached by the system. A typical clutch system operates above the critical speed, causing reduction in the contact area and, therefore, high local contact. A parametric study is conducted for better clutch performance. Short stopping time is shown to result in higher temperature caused by the high rate of heat generation. The effect of a multiple clutch engagement cycles is explored, in which the temperature is found to decay to a uniform state between the engagements. Finally, the cooling fluid, found in wet clutch systems, plays an important role in preventing temperature accumulation between engagement cycles.
机译:在某个临界速度以上时,带有摩擦加热的滑动系统(例如制动器和离合器)会表现出热弹性不稳定性(TEI),其中在压力和温度场中会出现不均匀的扰动。描述了一种方法,其中这种系统的瞬态热机械行为通过降阶模型来近似,描述了很少的主要扰动或本征函数。目的是构建具有适度自由度的系统数学模型。如果使用单个显性扰动,则可以写一个积分表达式来表示扰动随时间的演变。涉及多个术语的更准确的描述要求瞬态行为是由一系列操作生成的,其中滑动速度是分段恒定的。通过与直接数值模拟的比较,对这两个模型进行了评估,并证明了它们具有良好的准确性,并且大大减少了计算时间。还描述了一种解决带有摩擦加热的无扰动热弹性接触问题的方法,该方法涉及非齐次方程。基于将稳态解与等效同构问题的本征函数展开叠加的概念,研究了一种解方法。初始温度场和稳态分布之间的差异充当初始扰动,该扰动可能会增大,从而导致温度和接触压力的分布不均匀。通过与直接数值模拟进行比较对该方法进行了评估,并提供了出色的计算效率。降序模型在扩展级数中保留了很少的主要特征函数,它给出了极好的近似值,尤其是在滑动速度高于临界速度时,在离合器或制动器接合的增长阶段。接触面积可能会移动或改变大小,从而导致热弹性接触问题变为非线性。描述了一种近似的瞬态解,其中将接触面积视为时间上的分段常数。在系统达到的最高温度的典型离合器问题中对此进行了研究。典型的离合器系统在临界转速以上运行,从而导致接触面积减小,并因此导致较高的局部接触。进行了参数研究以获得更好的离合器性能。停止时间短表明热量产生速率高导致温度升高。探索了多个离合器接合循环的效果,其中发现温度在接合之间衰减至均匀状态。最后,在湿式离合器系统中发现的冷却液在防止接合循环之间的温度积聚方面起着重要作用。

著录项

  • 作者单位

    University of Michigan.;

  • 授予单位 University of Michigan.;
  • 学科 Engineering Mechanical.
  • 学位 Ph.D.
  • 年度 2002
  • 页码 136 p.
  • 总页数 136
  • 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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