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Flexural and toughness properties of NiTi shape memory alloy, polypropylene and steel fibres in self-compacting concrete

机译:NiTi形状记忆合金,聚丙烯和钢纤维在自密实混凝土中的弯曲和韧性

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摘要

Self-compacting concrete presents good workability to fill complicated forms without mechanical vibrations. This concrete is often reinforced with fibres to improve the strength and toughness. This study investigated the use of nickel -titanium (NiTi) shape memory alloy fibres in comparison with polypropylene and steel fibres in self-compacting concrete. The performances of the fresh fibre-reinforced self-compacting concrete are explored by slump flow and J-ring experiments. Meanwhile, the static and cyclic flexural tests are conducted to estimate the bending resistance strength performance, residual deformation and recovering capacity of shape memory alloy, polypropylene and steel fibre-reinforced self-compacting concrete. Moreover, the flexural toughness of the shape memory alloy, polypropylene and steel fibre-reinforced self-compacting concrete is calculated using four different codes. The shape memory alloy fibre-reinforced self-compacting concrete with 0.75% volume fraction presents the largest flexural strength, re-centering ability and toughness in comparison with polypropylene and steel fibre-reinforced self-compacting concretes. The experimental results demonstrated the beneficial influence of the shape memory and superelastic properties of NiTi in postponing initial crack formation and restricting the crack widths.
机译:自密实混凝土具有良好的可加工性,可以填充复杂的形式而无需机械振动。这种混凝土通常用纤维增强,以提高强度和韧性。这项研究调查了镍-钛(NiTi)形状记忆合金纤维与聚丙烯和钢纤维在自密实混凝土中的比较。通过坍落流和J形环实验探索了新鲜纤维增强自密实混凝土的性能。同时,进行了静态和循环弯曲试验,以评估形状记忆合金,聚丙烯和钢纤维增强的自密实混凝土的抗弯强度强度性能,残余变形和恢复能力。而且,形状记忆合金,聚丙烯和钢纤维增强的自密实混凝土的抗弯韧性是使用四个不同的代码计算的。体积分数为0.75%的形状记忆合金纤维增强自密实混凝土与聚丙烯和钢纤维增强自密实混凝土相比,具有最大的抗弯强度,重新定心能力和韧性。实验结果表明,NiTi的形状记忆和超弹性性能对推迟初始裂纹形成和限制裂纹宽度具有有益的影响。

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