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Design of a variable stiffness bracing system: Mathematical modeling, fabrication, and dynamic analysis

机译:变刚度支撑系统的设计:数学建模,制造和动力分析

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This paper presents a new bracing system with variable stiffness springs; this adaptive structural control system is designed to protect buildings against severe vibration and ground movement. The developed variable stiffness bracing (VSB) system comprises four nonlinear steel leaf springs that provide nonlinear and variable stiffness capacity at different frame displacements. The inelastic actions of the VSB system's nonlinear leaf springs keep the energy dissipation characteristics and ductility of moment-resisting frames. At large vibration amplitudes, the VSB device restrains unallowably story drift. Therefore, frames display ductile performance. We developed a mathematical model to simulate the mechanical behavior of the system, including the stiffness nonlinearity of the springs. Moreover, we evaluated the efficiency of the VSB implementation in a single-degree-of-freedom system by dynamically analyzing different models: a moment-resisting frame, a conventional braced frame, and a frame using the VSB system. This article discusses and proves the effectiveness of the proposed system through numerical analysis. (C) 2015 The Authors. Published by Elsevier Ltd.
机译:本文提出了一种具有可变刚度弹簧的新型支撑系统。该自适应结构控制系统旨在保护建筑物免受剧烈振动和地面运动的影响。开发的可变刚度支撑(VSB)系统包括四个非线性钢板弹簧,它们在不同的框架位移下提供非线性和可变刚度能力。 VSB系统的非线性板簧的非弹性作用保持了抗弯框架的能量耗散特性和延展性。在较大的振幅下,VSB设备会抑制故事的漂移。因此,框架显示出韧性。我们开发了一个数学模型来模拟系统的机械行为,包括弹簧的刚度非线性。此外,我们通过动态分析不同的模型来评估VSB在单自由度系统中的实施效率:抗力矩框架,常规支撑框架和使用VSB系统的框架。本文通过数值分析讨论并证明了该系统的有效性。 (C)2015作者。由Elsevier Ltd.发布

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