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首页> 外文期刊>Structural Engineering and Mechanics >Introducing a new all steel accordion force limiting device for space structures
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Introducing a new all steel accordion force limiting device for space structures

机译:引进全新的空间结构钢手风琴压力限制装置

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摘要

A significant defect of space structures is the progressive collapse issue which may restrict their applicability. Force limiting devices (FLDs) have been designed to overcome this deficiency, though they don't operate efficiently in controlling the force displacement characteristics. To overcome this flaw, a new type of FLD is introduced in the present study. The "all steel accordion force limiting device" (AFLD) which consists of three main parts including cylindrical accordion solid core, tubular encasing and joint system is constructed and its behavior has been studied experimentally. To improve AFLD's behavior, Finite element analysis has been carried out by developing models in ABAQUS software. A comprehensive parametric study is done by considering the effective design parameters such as core material, accordion wave length and accordion inner diameter. From the results, it is found that AFLD can obtain a perfect control on the force-displacement characteristics as well as attaining the elastic-perfect plastic behavior. Obtaining higher levels of ultimate load carrying capacity, dissipated energy and ductility ratio can be encountered as the main privileges of this device. Ease of construction and erection are found to be further advantages of AFLD. Based on the obtained results, a procedure for predicting AFLD's behavior is offered.
机译:空间结构的显着缺陷是逐步崩溃问题,可能限制其适用性。旨在克服这种缺陷的力量限制装置(FLD),尽管它们不有效地控制力位移特性。为了克服这一缺陷,在本研究中介绍了一种新型FLD。构建了由三种主要部件组成的“所有钢手风琴压力限制装置”(AFLD)构建,包括圆柱形手风琴固体芯,管状包裹和联合系统,并通过实验研究了其行为。为了提高AFLD的行为,通过开发ABAQUS软件的模型进行了有限元分析。通过考虑诸如核心材料,手风琴波长和手风琴内径等有效设计参数来完成综合参数研究。从结果中,发现ADLD可以对力位移特性获得完美的控制,以及实现弹性完美的塑性行为。获得更高水平的最终载荷承载能力,可以遇到耗散能量和延展比作为该装置的主要特权。易于建造和勃起被发现是AFLD的进一步优势。根据所获得的结果,提供了预测ADLD行为的过程。

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