Prediction of UHPFRC panels thickness subjected to aircraft engine impact

Duc-Kien Thai , Seung-Eock Kim
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引用次数: 11

Abstract

In the practical design of nuclear building structures subjected to an aircraft crash, the structures are required to prevent scabbing and perforation. NEI 07-13 provided the formulas to predict the minimum reinforced concrete (RC) wall thickness to prevent the local damage caused by aircraft engine impact. However, these formulas may not be suitable for predicting the thickness of the ultra-high performance fiber reinforced concrete (UHPFRC) wall. In this study, the local damage of a UHPFRC wall caused by the impact of aircraft engine missile is investigated using a finite element program LS-DYNA. The structural components of the UHPFRC panel, aircraft engine model, and their contacts are fully modeled. The analysis results are verified with the test results. A parametric study with varying panel thickness, fiber type and content, and impact velocity is performed to investigate the local damage of the UHPFRC panel. Based on a comparison with the given formulas, the modified equations of Chang and Degen are proposed to predict the minimum wall thickness to prevent scabbing and perforation in the case in which the UHPFRC structure is used.

飞机发动机冲击下UHPFRC板厚预测
在飞机撞击核建筑结构的实际设计中,要求结构防止结痂和穿孔。NEI 07-13提供了预测钢筋混凝土(RC)最小壁厚的公式,以防止飞机发动机撞击造成的局部损伤。然而,这些公式可能不适用于超高性能纤维混凝土(UHPFRC)墙体厚度的预测。本文采用LS-DYNA有限元程序研究了飞机发动机导弹撞击对超高压frp壁的局部损伤。对UHPFRC面板的结构部件、飞机发动机模型及其接触面进行了全面建模。分析结果与试验结果进行了验证。对UHPFRC板的局部损伤进行了参数化研究,研究了不同板厚、纤维类型和含量以及冲击速度对UHPFRC板局部损伤的影响。通过与已有公式的比较,提出了Chang和Degen的修正方程来预测UHPFRC结构防止结痂和穿孔的最小壁厚。
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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