4.2 Article

3D TENSEGRITY BRACES WITH SUPERELASTIC RESPONSE FOR SEISMIC CONTROL

出版社

BEGELL HOUSE INC

关键词

bracing systems; tensegrity structures; seismic control; buckling response; energy dissipation; shape-memory alloy; 3D printing; eco-friendly materials

资金

  1. Italian Ministry of University and Research PRIN [2017J4EAYB]

向作者/读者索取更多资源

Tensegrity structures have great potential as bracing devices for seismic control, as they can passively dissipate energy in structures subjected to severe deformations. Introducing pre-strain in superelastic cables can achieve a significant amount of equivalent viscous damping, improving the energy dissipation properties of the structure.
Tensegrity structures have recently shown great potential as bracing devices for seismic control due to their unique ability to passively dissipate energy in structures subjected to severe deformations. Indeed, behaving as nonlinear springs, they can dissipate a great amount of energy during mechanical loading-unloading cycles. Planar tensegrity D-bar systems composed of four bars forming a rhombus, internally stabilized through a set of two perpendicular shape-memory alloy cables, represent excellent candidates to act as braces for seismically resistant structures. However, although their tapered configuration maximizes in-plane buckling resistance with minimal mass, the out-of-plane buckling of such systems can compromise their overall structural efficiency, potentially engendering damage into adjacent nonstructural elements. In this paper, the efficiency of three-dimensional (3D) D-bar tensegrity structures under compressive loads is examined with the aim of proposing an advantageous design of D-bar-based bracing systems with optimized masses. We show that, by introducing a pre-strain in the superelastic cables, it is possible to achieve a wide shaped hysteresis, which yields to a significant amount of equivalent viscous damping (up to 30%). The presented numerical results on the energy dissipation properties of the examined structures, corroborated by experimental measurements of the buckling response, shed light on the research field of 3D tensegrity structures as efficient and lightweight bracing devices for seismic control.

作者

我是这篇论文的作者
点击您的名字以认领此论文并将其添加到您的个人资料中。

评论

主要评分

4.2
评分不足

次要评分

新颖性
-
重要性
-
科学严谨性
-
评价这篇论文

推荐

暂无数据
暂无数据