THE INFLUENCE OF PREFORMED HOLES ON THE DYNAMIC RESPONSE OF BLAST LOADED ALUMINUM PLATES

O. Atoui, A. Moumen, Mouhamed Dhouibi, A. Maazoun, B. Belkassem, L. Pyl, D. Lecompte
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Abstract

In this paper, the dynamic response of Aluminum plates with predrilled holes subjected to different intensities of blast loading is studied both experimentally and numerically as to imitate the case where fragments strike and perforate the plates before the load pressure arrives. The blast loading is applied using an Explosive Driven Shock Tube (EDST) [10-12] which ensures a uniformly distributed blast wave on the test specimens. Experiments were carried out for different sizes, positions, and numbers of the predrilled holes in the plates positioned at the end extremity of the tube. Special focus is dedicated to investigate the influence of these parameters on the dynamic response and failure characteristics of plates via the Digital Image Correlation technique (DIC). Numerical simulations were performed in the finite element code LS-DYNA to recreate the plate deformation and the observed phenomena seen in the experiments.
预制孔对爆炸加载铝板动力响应的影响
本文通过实验和数值模拟两种方法研究了带预钻孔的铝板在不同强度爆炸载荷作用下的动力响应,以模拟在载荷压力到达之前破片撞击并穿孔铝板的情况。爆炸载荷采用炸药驱动激波管(EDST)[10-12],以确保爆炸冲击波在试件上均匀分布。实验进行了不同尺寸,位置和数量的预钻孔的板定位在末端的管。利用数字图像相关技术(DIC)研究了这些参数对板的动态响应和破坏特性的影响。在LS-DYNA有限元软件中进行了数值模拟,再现了板的变形和实验中观察到的现象。
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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