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Time/frequency analysis of contact-friction instabilities. Application to automotive brake squeal.

机译:接触摩擦不稳定性的时间/频率分析。应用于汽车制动尖叫。

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摘要

Robust design of silent brakes is a current industrial challenge. Braking systems enter in the more general context of unstable systems featuring contact friction interaction. Their simulation requires time integra- tion schemes usually not adapted to combination of large industrial models (over 600,000 DOF) and long simulations (over 150,000 time steps). The paper first discusses selection of the contact/friction model and adaptations of the integration scheme. The relation between the nominal steady state tangent modes and the system evolution over time is then evaluated. The time response shows a nearly periodic response that is analyzed as a limit cycle. It is shown that instantaneous dynamic stability predictions show stable/unstable transitions due to changes in the contact/friction state. These transitions are thought to give an understanding of the mechanism that limits levels for these self sustained vibrations. The concept is exploited to suggest novel ways to analyze complex modes.
机译:静音制动器的稳健设计是当前的工业挑战。制动系统进入具有接触摩擦相互作用的不稳定系统的更一般的背景。他们的仿真需要时间积分方案,这些方案通常不适用于大型工业模型(超过60万自由度)和长时间仿真(超过15万个时间步长)的组合。本文首先讨论了接触/摩擦模型的选择以及集成方案的改编。然后评估名义稳态切线模式与系统随时间的演化之间的关系。时间响应显示出接近周期性的响应,并被分析为极限循环。结果表明,由于接触/摩擦状态的变化,瞬时动态稳定性预测显示出稳定/不稳定的转变。这些过渡被认为可以理解限制这些自我持续振动的水平的机制。该概念被用来提出分析复杂模式的新颖方法。

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