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On the Analysis of the Effects of Thermal and Time Dependent Interface Pressure Distribution on Slip Motion for Sandwich Elastic Beams

机译:分析热和时间相关的界面压力分布对夹层弹性梁滑动运动的影响

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Slip motion with sandwich elastic beams has been exploited for dissipating noise and vibration energy in machines, aero- and hydro-dynamic structures. While most of the original work on the modelling and analysis of the mechanism assume an environment of uniform pressure at the interface, experiments to date have confirmed that this is rarely the case. There have however been recent attempts to relax the restriction of uniform interface pressure to allow for more realistic pressure profiles that are encountered in practice. Even such attempts did not consider thermal and time dependent non uniform interface pressure effects. By employing the laminated beam theory, this paper investigates the effects of temperature variation and time dependent modulation on the non uniform linear interface pressure profile on slip motions in the case of sandwich elastic beams. In particular, closed form analytical expressions and results for dynamic and interfacial slip responses are reported for design analysis.
机译:具有夹层弹性梁的滑移运动已被用于消散机器,空气动力学和流体力学结构中的噪声和振动能。虽然大多数有关机理建模和分析的原始工作都假设界面处的压力均匀,但迄今为止的实验已经证实这种情况很少见。然而,最近有尝试放松均匀界面压力的限制,以允许在实践中遇到更逼真的压力曲线。即使这样的尝试也没有考虑热和时间相关的非均匀界面压力效应。利用层合梁理论,研究了夹层弹性梁情况下温度变化和时变调制对非均匀线性界面压力分布对滑动运动的影响。尤其是,针对设计和分析报告了闭合形式的分析表达式以及动态和界面滑移响应的结果。

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