Basic Study on Deformation Evaluation of Steel Wire Mesh for Rational Gabion Structure Design

H. Nakazawa, T. Nishi, H. Kurihara, D. Suetsugu, T. Hara
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引用次数: 1

Abstract

Gabion structures are used in a variety of ways in Japan and around the world because they allow for the creation of simple structures at highly reasonable construction costs and completion periods. Previous earthquake damage surveys have shown that, in many cases, gabion structures did not collapse even though deformation was allowed, and have demonstrated that the wire mesh used in their construction has a high confinement effect on the stones filling the gabion. Despite this, gabions have not been actively utilized, nor have they been used to construct permanent structures in Japan because the design and construction of such structures are based on experience, and a standardized design method has not been developed. Hence, in order to facilitate development a design method for gabion-based structures, we must first go back to the basics and establish a detailed explanation of the wire mesh deformation mechanism of such structures. In this study, we performed tensile tests on wire meshes of different shapes in order to determine their strength and deformation characteristics and then conducted numerical analyses using the results obtained. The tensile tests revealed that deformation characteristics differed depending on the mesh shape and tensile direction. We also showed that the direction in which the tension acts and the mesh nodes are important, and that the test results could be reproduced via numerical analysis with the finite element method by using beam elements.
合理格宾网结构设计中钢丝网变形评估的基础研究
格宾网结构在日本和世界各地以各种方式使用,因为它们允许以非常合理的建设成本和完工周期创建简单的结构。以前的地震破坏调查表明,在许多情况下,格宾笼结构即使允许变形也不会倒塌,并且已经证明在其建造中使用的金属丝网对填充格宾笼的石头具有很高的约束作用。尽管如此,在日本,格宾笼并没有被积极地利用,也没有被用于建造永久性结构,因为这种结构的设计和建造是基于经验的,并且没有形成标准化的设计方法。因此,为了便于开发格宾网结构的设计方法,我们必须首先回到基础上来,对格宾网结构的钢丝网变形机理进行详细的解释。在本研究中,我们对不同形状的钢丝网进行了拉伸试验,以确定其强度和变形特性,并根据所得结果进行了数值分析。拉伸试验表明,变形特性随网格形状和拉伸方向的不同而不同。结果表明,张力作用的方向和网格节点是重要的,试验结果可以通过采用梁单元的有限元方法进行数值分析。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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