考虑动力增加系数的夹层混凝土板在爆炸荷载作用下结构性能预测

M. Hanifehzadeh, M. R. Mousavi
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引用次数: 12

摘要

采用钢-混凝土-钢(SCS)防护墙可以显著提高土建结构在冲击波和爆炸荷载作用下的安全性。本文采用数值模拟的方法,模拟了近场爆炸荷载作用下SCS墙体的响应。本文从最大损伤和最大变形两方面评价了受近场爆炸载荷作用的常规SCS板及其结构性能。采用ABAQUS\EXPLICIT有限元程序包和内置的混凝土损伤塑性本构公式进行了数值模拟。研究了不同加载条件下的最大变形、塑性应变和破坏模式。本研究的目的是预测不同爆炸装药下SCS面板的结构响应,并根据混凝土强度和板厚确定最佳配置。在研究的第二部分,提出了两种由波纹金属板和混凝土芯组成的新型夹层结构,并与传统的防护墙进行了比较。使用优化程序确定每个结构部件的最佳参数。根据这项研究,与传统墙体相比,使用拟议的墙体结构将获得更好的性能,而额外的制造成本微不足道。
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PREDICTING THE STRUCTURAL PERFORMANCE OF SANDWICH CONCRETE PANELS SUBJECTED TO BLAST LOAD CONSIDERING DYNAMIC INCREASE FACTOR
The safety of the civil structures could be significantly improved against shock waves and blast loads by using steel concrete steel (SCS) protective walls. A numerical study has been performed to simulate the response of SCS wall subjected to a near-field blast load. A conventional SCS panel subjected to near-field blast load and its structural performance is evaluated in terms of maximum damage and deformation. The simulations performed using ABAQUS\EXPLICIT finite element package and built-in concrete damage plasticity concrete constitutive formulation. The maximum deformation, plastic strain, and failure mode under different loading scenarios have been investigated. The aim of this study is predicting the structural response of the SCS panel with different blast charge and identification of optimum configuration in terms of concrete strength and plate thickness. In the second part of the study, two novel sandwich configurations consisting of a corrugated metal sheet and the concrete core are proposed and compared with the conventional protective walls. The optimum parameters for each structural component are identified using an optimization procedure. Based on this study, using the proposed wall configuration will results in superior performance compared to the conventional walls while the extra cost of fabrication is insignificant.
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