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Adaptive Negative Stiffness: A New Structural Modification Approach for Seismic Protection

机译:自适应负刚度:一种新的地震保护结构改性方法

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Yielding can be emulated in a structural system by adding an adaptive "negative stiffness device" (NSD) and shifting the "yielding" away from the main structural system-leading to the new idea of "apparent weakening" that occurs ensuring structural stability at all displacement amplitudes. This is achieved through an adaptive negative stiffness system (ANSS), a combination of NSD and a viscous damper. By engaging the NSD at an appropriate displacement (apparent yield displacement that is well below the actual yield displacement of the structural system) the composite structure-device assembly behaves like a yielding structure. The combined NSD-structure system presented in this study has a re-centering mechanism thereby avoids permanent deformation in the composite structure-device assembly unless, the main structure itself yields. Essentially, a yielding-structure is "mimicked" without any, or with minimal permanent deformation or yielding in the main structure. As a result, the main structural system suffers less accelerations, less displacements and less base shear, while the ANSS "absorbs" them. This paper presents comprehensive details on development and study of the ANSS/NSD. Through numerical simulations, the effectiveness and the superior performance of the ANSS/NSD as compared to a structural system with supplemental passive dampers is presented. A companion paper presents the NSD and its mechanics in detail.
机译:通过添加自适应“负刚度装置”(NSD)并将“屈服”远离主结构系统移位,可以在结构系统中仿真 - 导致确保结构稳定性的“表观弱化”的新思想位移幅度。这通过自适应负刚度系统(ANS),NSD和粘性阻尼器的组合来实现。通过在适当的位移处接合NSD(表观产量位移,远低于结构系统的实际屈服位移),复合结构装置组件的表现类似于屈服。本研究中提供的组合NSD结构系统具有重定位机构,从而避免复合结构 - 装置组件中的永久变形,除非,主要结构本身产量。基本上,屈服结构是“模仿”而没有任何,或者具有最小的永久性变形或主要结构屈服。结果,主要的结构系统较少越来越少加速,较少的位移和较少的基础剪切,而ANSS“吸收”它们。本文提出了有关ANSS / NSD的开发和研究的全面细节。通过数值模拟,呈现了与具有补充无源阻尼器的结构系统相比的ANS / NSD的有效性和优异性能。伴侣纸详细介绍了NSD及其机制。

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