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Investigations on Steel Fibre Reinforced Cementitious Composite Panels under High Velocity Impact of Short Projectiles

机译:钢纤维增强水泥复合板在短孔钢纤维增强复合板的研究

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摘要

Response of steel fibre reinforced cementitious composite (SFRCC) panels subjected to high velocity impact of short projectiles have great significance in designing protective structures. Numerical investigation carried out to determine the high velocity impact responses of SFRCC (300 mm square) panels is presented. In order to model the high velocity impact behaviour of SFRCC in the post peak region, the constitutive model of Riedel, Hiermaier and Thoma (RHT) is used with suitable modification in damage parameters. The numerical studies presented in this paper are validated using the experimental investigations carried out by the authors. The influences of steel fibrevolumes (0, 2, 4, 6, 8, and 10%) and thickness of panels (50, 60, 75, 100 mm), on depth of penetration (DOP) and crater dimensions is also investigated. Based on the numerical simulations, the important phenomenon like scabbing and perforation in the SFRCC panels are predicted for the chosen in-service ammunition (7.62 mm calibre) and munitions (AK - 47 rifle).
机译:钢纤维增强胶粘剂复合材料(SFRCC)面板对短射弹进行高速冲击的光面板对设计保护结构具有重要意义。提出了用于确定SFRCC(300mm平方)面板的高速冲击响应的数值研究。为了模拟柱峰区域中SFRCC的高速冲击行为,RIEDEL,HIERMAIER和THOMA(RHT)的本构模型用于损伤参数的合适改性。本文提出的数值研究是使用作者进行的实验研究验证的。钢fibrevolumes(0,2,4,6,8,和10%)和面板的厚度(50,60,75,100mm)上,在渗透(DOP)和火山口尺寸的深度的影响进行了研究。基于数值模拟,预计SFRCC板中的切割和穿孔等重要现象是为选择的在职的弹药(7.62mm)和弹药(AK-47步枪)。

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