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Cyclic Performance of a Piston Based Self-Centering Bracing System

机译:基于活塞的自定心支撑系统的循环性能

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The major difficulties faced with traditional structural bracing systems against seismic loading include compression buckling and permanent residual deformation under seismic loading. Once buckling occurs, the strength and stiffness of a brace gets significantly reduced and the stiffness degrades rapidly in subsequent load cycles. A significant number of researches have been conducted in resolving this issue and various ideas have been proposed and developed for the industry, e.g. buckling restrained brace, cast steel yielding fuse, SCED, MANSIDE, and RHDB braces, etc. Unfortunately, most of these solutions are expensive and complicated to construct. Authors here have proposed a novel approach in addressing this issue using a modification of a device commonly seen in mechanical systems, which is a cylinder-piston assembly. In this system, stiffness and re-centering are contributed by shape memory alloy ties. This study investigates the behavior of this innovative Piston Based Self-Centering (PBSC) bracing system in finite element environment. Utilizing this assembly, a brace member is able to carry large magnitude of tensile and compression loading without buckling. Furthermore, this brace is able to re-center after large nonlinear deformation. This paper presents the results of the analytical investigation carried out in ABAQUS software using finite element method. The load deformation hysteresis was determined and a flag shaped hysteresis was achieved, which indicates good re-centering capability of the proposed system.
机译:传统结构支撑系统对抗地震载荷面临的主要困难包括抗震载荷下的压缩屈曲和永久性变形。一旦发生屈曲,支撑的强度和刚度明显减小,并且在随后的载荷循环中迅速降低。在解决这个问题时,已经进行了大量的研究,并为行业提出并开发了各种想法,例如,屈曲受限制的支撑,铸钢产生保险丝,SCED,Manside和RHDB括号等,遗憾的是,大多数这些解决方案都是昂贵且复杂的构建。这里的作者提出了一种使用在机械系统中常见的设备的修改来解决这个问题的新方法,该方法是汽缸 - 活塞组件。在该系统中,刚度和重定位由形状记忆合金领带贡献。本研究调查了这种创新的活塞基自定心(PBSC)支撑系统在有限元环境中的行为。利用该组件,支架构件能够承载大量的拉伸和压缩负载而不会屈曲。此外,这种支架能够在大型非线性变形后重新中心。本文采用了使用有限元方法在ABAQUS软件中进行的分析调查结果。确定负载变形滞后,实现了标志形滞后,这表明了所提出的系统的良好重心能力。

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