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An Overview of Missile Impact Tests on Steel-Plate Composite (SQ Walls

机译:钢板复合材料(SQ墙)的导弹冲击试验概述

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Conventional reinforced concrete (RC) structures have historically been the choice for blast and impact resistant structures. Experimentally validated equations to calculate the required wall thickness of RC walls to prevent scabbing and perforation exist and are included in NEI 07-13 and DOE-STD-3014-2006. Steel-plate composite (SC) walls consist of a concrete core sandwiched between two steel faceplates, and have recently been incorporated into power plant designs in several countries. The steel faceplates serve as reinforcement and formwork, which allows for modularization of the design and accelerated construction. SC walls inherently prevent scabbing and, based on the available experimental database, Bruhl et al. (2015) provided a three-step process to design SC walls to resist projectile perforation. This method was designed to be conservative based on a database of experimental and numerical investigations. This paper introduces an experimental program that was designed to further evaluate local impact behavior of SC walls, and confirm the design method. Several test have been planned to investigate the influence of parameters such as the faceplate thickness & strength, tie bar diameter & spacing, and projectile diameter, weight and velocity. This paper provides an overview of the experimental program and results from an initial set of tests. These preliminary results suggest that the experimental approach is promising.
机译:传统的钢筋混凝土(RC)结构在历史上一直是抗爆炸和抗冲击结构的选择。 NEI 07-13和DOE-STD-3014-2006中包含了经过实验验证的方程式,用于计算所需的RC壁厚以防止刮擦和穿孔。钢板复合(SC)墙由夹在两个钢面板之间的混凝土芯组成,最近已在多个国家/地区用于电厂设计中。钢面板用作钢筋和模板,可实现设计的模块化和加速施工。 SC墙固有地可以防止刮伤,根据现有的实验数据库,Bruhl等人。 (2015年)提供了设计SC墙以抵抗弹丸穿孔的三步过程。该方法被设计为基于实验和数值研究数据库的保守方法。本文介绍了一个旨在进一步评估SC墙的局部冲击行为并确定设计方法的实验程序。已计划进行多项测试来研究诸如面板厚度和强度,拉杆直径和间距以及弹丸直径,重量和速度等参数的影响。本文提供了实验程序的概述以及一组初始测试的结果。这些初步结果表明该实验方法是有前途的。

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