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Experimental and numerical investigation of rectangular reinforced concrete columns under contact explosion effects

机译:矩形钢筋混凝土柱在接触爆炸作用下的试验与数值研究

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The response of reinforced concrete (RC) members subjected to contact explosion effects is more severe than the response to non-contact explosions due to local material failure. The shock-wave reflection within the RC member causes severe local material damage. The resulting loss of concrete cross-section reduces the axial load and bending capacity of the RC member. It is hypothesized that the concrete loss from the sides can be prevented by increasing the aspect ratio of the cross-section. In a low aspect ratio RC column, the reflection is from three faces whereas in RC slabs and high aspect ratio columns the shock-wave reflection from the back-face only is significant. This study experimentally investigates the response of rectangular RC columns with varying widths of the cross-section, subjected to contact explosion effects. A range of aspect ratios was investigated to preclude the side face damage for a given depth of rectangular RC column. High fidelity numerical models were developed to predict the blast-response and the residual axial capacity of the blast-damaged rectangular columns. The numerical models were validated, and the results show a good correlation with the experimental results. Using a rectangular RC column aspect ratio with a width that precludes the side face spall significantly improves the residual axial capacity of the blast-damaged columns. Furthermore, parametric analyses were performed to numerically investigate the influence of the width on the residual axial load carrying capacity of rectangular RC columns subjected to contact explosion effects of breach-charge mass required for the provided depth. An increase in the width of the column improved the damage resistance even though the rectangular column was breached around the point of detonation. Hence, increasing the width of the rectangular RC columns can be effectively used to mitigate contact explosion effects.
机译:受到接触爆炸影响的钢筋混凝土(RC)构件的响应要比由于局部材料失效而引起的非接触爆炸的响应要严重得多。 RC构件内的冲击波反射会导致严重的局部材料损坏。由此产生的混凝土横截面损失降低了RC构件的轴向载荷和弯曲能力。假设可以通过增加横截面的纵横比来防止侧面的混凝土损失。在低纵横比的RC柱中,反射来自三个面,而在RC平板和高纵横比的柱中,冲击波仅从背面反射。这项研究实验性地研究了矩形RC柱在横截面宽度变化时受到接触爆炸影响的响应。研究了宽高比的范围,以防止在给定深度的矩形RC柱中造成侧面损坏。建立了高保真数值模型来预测爆炸响应和爆炸破坏的矩形柱的残余轴向承载力。对数值模型进行了验证,结果与实验结果具有很好的相关性。使用矩形RC柱的宽高比,其宽度可以防止侧面剥落,从而显着改善了爆炸破坏柱的残余轴向承载力。此外,进行了参数分析,以数值方式研究了宽度对矩形RC柱的残余轴向承载能力的影响,该矩形RC柱受到了提供深度所需的破口电荷质量的接触爆炸影响。即使在爆炸点附近破坏了矩形柱,柱宽度的增加也改善了抗损伤性。因此,增加矩形RC柱的宽度可以有效地减轻接触爆炸的影响。

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