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Performance of a graphite wafer-reinforced viscoelastic composite layer for active-passive damping of plate vibration

机译:主动减振板振动的石墨晶片增强粘弹性复合层的性能

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In this work, an actively constrained viscoelastic layer over the surface of a substrate plate is supposed to be reinforced with a rectangular array of thin graphite-wafers, and the effects of the inclusions on the active-passive damping characteristics of the overall plate are investigated. The inclusions of graphite-wafers in the viscoelastic layer result in a 0-3 viscoelastic composite (VEC) layer. Its (VEC) stiffness and damping properties are distributed in a predefined manner for improved active-passive damping through all the transverse and in-plane strains of the viscoelastic phase. A finite element (FE) model of the overall plate is developed for its static and dynamic analyses. The static analysis reveals the mechanisms of active-passive damping. In the dynamic analysis, first, the damping in the plate is quantified for different sets of values of dimensions in the arrangement of graphite-wafers. These results suggest appropriate geometric configuration of the graphite-wafers for maximum enhancement of active-passive damping. So, the geometric configuration of 0-3 VEC layer is optimized, and finally the controlled frequency responses of the overall plate are presented. The results reveal significantly improved active-passive damping in the overall plate for the inclusions of graphite-wafers within the actively constrained viscoelastic layer in an optimal manner.
机译:在这项工作中,假设用矩形石墨薄片阵列来增强基板表面上的主动约束粘弹性层,并研究夹杂物对整个板的主动-被动阻尼特性的影响。 。粘弹性层中石墨晶片的夹杂物产生0-3粘弹性复合材料(VEC)层。它的(VEC)刚度和阻尼特性以预定义的方式分布,以改善在粘弹性相的所有横向和平面应变中的主动-被动阻尼。开发了整个板的有限元(FE)模型以进行静态和动态分析。静态分析揭示了主动-被动阻尼的机制。在动态分析中,首先,针对石墨晶片排列中的不同尺寸值集,对板中的阻尼进行量化。这些结果表明,为了最大程度地增强主动-被动阻尼,石墨晶片的几何形状适当。因此,优化了0-3 VEC层的几何构型,最后给出了整个平板的受控频率响应。结果显示,以最佳方式,在主动约束粘弹性层内包含石墨晶片的情况下,整个平板的主动-被动阻尼得到了显着改善。

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