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Closed-form studies of a new hybrid damping technique using an active layer and hard-coated damping alloys

机译:使用活性层和硬质阻尼合金的新型混合阻尼技术的封闭式研究

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Hybrid damping of structural vibration using a combination of active and passive layers is found to have high application potential due to the requirement of a lower power supply and guaranteed stability. Use of hard-coating layers as a passive damping treatment is found to be industrially acceptable for turbine blades etc, due to the high damping capacity and large service temperature range. However, such damping materials also have high strain dependence. In a way that is similar to active constrained layer damping, by using an active material the strain in the passive damping can be controlled, and thereby the damping performance of the passive layer. This paper proposes a semi-analytical method to estimate structural damping in such a system and obtain the response of a smart hybridly damped system. The paper delves into the closed-form solution of all common boundary conditions of a vibrating beam, namely cantilever, hinged-hinged, free-free, hinged-free, and fixed-fixed beams. It also compares the damping performance of a beam with only a passive damping layer to that of beams comprising both active and passive damping layers.
机译:由于要求较低的电源和保证的稳定性,使用主动层和被动层的组合进行结构振动的混合阻尼具有较高的应用潜力。由于高的阻尼能力和较大的使用温度范围,使用硬涂层作为被动阻尼处理在涡轮机叶片等工业上已被接受。但是,这种阻尼材料也具有高应变依赖性。以类似于主动约束层阻尼的方式,通过使用活性材料,可以控制被动阻尼中的应变,从而可以控制被动层的阻尼性能。本文提出了一种半解析方法来估计这种系统中的结构阻尼并获得智能混合阻尼系统的响应。本文研究了振动梁所有常见边界条件的闭合形式解,即悬臂梁,铰链铰链梁,自由铰链梁,自由铰链梁和固定固定梁。它还将仅具有被动阻尼层的梁的阻尼性能与既包含主动阻尼层又包含被动阻尼层的梁的阻尼性能进行了比较。

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