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Strain hardening behavior of lightweight hybrid poly vinyl alcohol (PVA) fiber reinforced cement composites

机译:轻质混杂聚乙烯醇(PVA)纤维增强水泥复合材料的应变硬化行为

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摘要

Experimental results on the strain hardening and multiple cracking behaviors of polyvinyl alcohol (PVA) fiber reinforced cementitious composites under bending are reported in this paper. Different hybrid combinations of PVA fibers with different lengths and volume fractions are considered to reinforce the mortar matrix. Among different hybrid combinations, the composite containing 2% thicker PVA fibers of 12 mm length and 1% thinner PVA fibers of 6 mm length and the composite containing 2% thicker PVA fibers of 24 mm length and 1% thinner PVA fibers of 6 mm length showed the best performance in terms of highest ultimate load, largest CMOD (crack mouth opening displacement) at peak load and multiple cracking behavior. The effects of four types of light weight sands on the strain hardening and multiple cracking behavior of hybrid fiber composites are also evaluated in this study. It has been observed that the ultimate load and CMOD at peak load for all light weight hybrid fiber composites are almost the same irrespective of volume fractions of light weight sand. The composites containing finer light weight sands exhibited higher ultimate load than those containing coarser light weight sands. It is also observed that the hybrid fiber composite containing normal silica sand exhibited higher ultimate load than the composites with light weight sands.
机译:本文报道了聚乙烯醇(PVA)纤维增强水泥基复合材料在弯曲下的应变硬化和多重开裂行为的实验结果。具有不同长度和体积分数的PVA纤维的不同混合组合被认为增强了灰浆基质。在不同的混合组合中,复合材料包含2%的12毫米长的PVA纤维较粗,而1%的6 mm的细PVA纤维较细,复合材料包含24毫米长度的2%的PVA较粗和1%6mm长度的PVA较细。在最高载荷,最大载荷下的最大CMOD(裂口张开位移)和多重开裂行为方面,它表现出最佳性能。这项研究还评估了四种轻质砂对杂化纤维复合材料的应变硬化和多重开裂行为的影响。已经观察到,所有轻质杂化纤维复合材料的极限载荷和峰值载荷下的CMOD几乎相同,而与轻质沙子的体积分数无关。包含较细轻质砂的复合材料比包含较粗轻质砂的复合材料具有更高的极限载荷。还观察到,含有普通硅砂的杂化纤维复合材料比具有轻质砂的复合材料具有更高的极限载荷。

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