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Experimental Investigation on the Blast Resistance of Fiber-Reinforced Cementitious Composite Panels Subjected to Contact Explosions

机译:接触爆炸下纤维增强水泥基复合板抗爆性能的试验研究

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Abstract This study investigates the blast resistance of fiber-reinforced cementitious composite (FRCC) panels, with fiber volume fractions of 2%, subjected to contact explosions using an emulsion explosive. A number of FRCC panels with five different fiber mixtures (i.e., micro polyvinyl alcohol fiber, micro polyethylene fiber, macro hooked-end steel fiber, micro polyvinyl alcohol fiber with macro hooked-end steel fiber, and micro polyethylene fiber with macro hooked-end steel fiber) were fabricated and tested. In addition, the blast resistance of plain panels (i.e., non-fiber-reinforced high strength concrete, and non-fiber-reinforced cementitious composites) were examined for comparison with those of the FRCC panels. The resistance of the panels to spall failure improved with the addition of micro synthetic fibers and/or macro hooked-end steel fibers as compared to those of the plain panels. The fracture energy of the FRCC panels was significantly higher than that of the plain panels, which reduced the local damage experienced by the FRCCs. The cracks on the back side of the micro synthetic fiber-reinforced panel due to contact explosions were greatly controlled compared to the macro hooked-end steel fiber-reinforced panel. However, the blast resistance of the macro hooked-end steel fiber-reinforced panel was improved by hybrid with micro synthetic fibers.
机译:摘要本研究研究了纤维体积分数为2%的纤维增强水泥基复合材料(FRCC)面板在使用乳化炸药进行接触爆炸时的抗爆炸性。多种具有五种不同纤维混合物的FRCC面板(即,微型聚乙烯醇纤维,微型聚乙烯纤维,大钩形末端钢纤维,带大钩形末端纤维的微聚乙烯醇纤维和具有大钩形末端的微型聚乙烯纤维)钢纤维)进行了制造和测试。另外,检查了普通板(即,非纤维增强的高强度混凝土和非纤维增强的胶结复合材料)的抗爆炸性,以与FRCC板进行比较。与普通面板相比,通过添加微合成纤维和/或大钩端钢纤维,面板的抗剥落性得到了改善。 FRCC面板的断裂能明显高于普通面板的断裂能,这减少了FRCC遭受的局部破坏。与宏观钩端钢纤维增强板相比,由于接触爆炸而导致的微合成纤维增强板背面的裂纹得到了极大的控制。但是,通过与微合成纤维混合,可以改善宏观钩端钢纤维增强板的抗爆炸性。

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