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Column dampers with negative stiffness: High damping at small amplitude

机译:具有负刚度的立柱阻尼器:小振幅时的高阻尼

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High structural damping combined with high initial stiffness is achieved at small amplitude via negative stiffness elements. These elements consist of columns in the vicinity of the post-buckling transition between contact of flat surfaces and edges of the ends for which negative incremental structural stiffness occurs. The column configuration provides a high initial structural stiffness equal to the intrinsic stiffness of the column material. Columns of the polymers polymethyl methacrylate (PMMA) and polycarbonate were used. By tuning the pre-strain, a very high mechanical damping was achieved for small amplitude oscillations. The product of effective stiffness and effective damping as a figure of merit |Eeff|tanδeff of about 1.5 GPa was achieved for polymer column dampers in the linear domain and about 1.62 GPa in the small amplitude nonlinear domain. For most materials this value generally never exceeds 0.6 GPa.
机译:较高的结构阻尼和较高的初始刚度可通过负刚度元件以较小的幅度实现。这些元件由位于平面接触和端部边缘之间的屈曲后过渡附近的圆柱组成,因此会出现负增量结构刚度。柱配置可提供与柱材料的固有刚度相同的高初始结构刚度。使用了聚合物聚甲基丙烯酸甲酯(PMMA)和聚碳酸酯的色谱柱。通过调整预应变,对于小幅度的振荡实现了很高的机械阻尼。对于线性区域中的聚合物柱阻尼器而言,获得的有效刚度和有效阻尼的乘积| Eeff |tanδeff约为1.5 GPa,而在小振幅非线性域中则约为1.62 GPa。对于大多数材料,该值通常不会超过0.6 GPa。

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