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Advanced damper with high stiffness and high hysteresis damping based on negative structural stiffness

机译:基于负结构刚度的具有高刚度和高滞后阻尼的高级阻尼器

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摘要

High structural damping combined with high stiffness is achieved by negative stiffness elements. Negative incremental structural stiffness occurs when a column with flat ends is subjected to snap-through buckling. Large hysteresis (i.e., high damping) can be achieved provided the ends of the column undergo tilting from flat to edge contact. The column configuration provides high structural stiffness. Stable axial dampers with initial modulus similar to that of the parent material and with enhanced damping were designed built and tested. Effective damping of approximately two and stiffness-damping product of approximately 200 GPa were achieved in such dampers consisting of stainless steel columns. This is a significant improvement for this figure of merit (i.e., the stiffness-damping product), which generally cannot exceed 0.6 GPa for currently used damping systems.
机译:负刚度元件可实现高结构阻尼和高刚度。当具有平端的立柱受到卡扣变形时,会出现负增量结构刚度。只要柱子的端部从平直接触到边缘接触倾斜,就可以实现大的滞后作用(即高阻尼)。立柱配置可提供较高的结构刚度。设计并测试了稳定的轴向阻尼器,其初始模量与母材的初始模量相似,并具有增强的阻尼。在这种由不锈钢柱组成的减振器中,实现了约2的有效阻尼和约200 GPa的刚度阻尼乘积。对于该品质因数(即,刚度阻尼乘积)而言,这是显着的改进,对于当前使用的阻尼系统而言,其通常不能超过0.6GPa。

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