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The effect of NiTi shape memory alloy, polypropylene and steel fibres on the fresh and mechanical properties of self-compacting concrete

机译:NITI形状记忆合金,聚丙烯和钢纤维对自压力混凝土的新鲜机械性能的影响

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Self-compacting concrete (SCC) is the main cementitious material employed in modern constructions, because of its outstanding deformability and high resistance to segregation. In this study, a new nickel-titanium (NiTi) shape memory alloy (SMA) fibre was manufactured to investigate its effects on the fresh and mechanical properties of SMA fibre-reinforced SCC and comparing it with polypropylene (PP) fibre and steel fibre reinforced SCC. Fresh properties tests, including slump flow and J-ring, and mechanical properties tests, including compressive strength, splitting tensile strength, flexural strength and impact, were carried out. The SMA fibre-reinforced SCC displays outstanding fresh properties and ductile performance compared to the PP and steel fibre-reinforced SCC. This is because SMA fibres present outstanding ultimate tensile strength and superelastic characteristics. The combination of the advantages delays initial crack development and narrows the crack gap width, resulting in energy dissipation phenomena which enhance both ductile performance in mechanical experiments and dynamic resistance in impact loading. (C) 2019 Elsevier Ltd. All rights reserved.
机译:自压力混凝土(SCC)是现代建筑中采用的主要胶凝材料,因为其出色的可变形性和高抗性抵抗。在该研究中,制造了一种新的镍 - 钛(NITI)形状记忆合金(SMA)纤维,以研究其对SMA纤维增强SCC的新鲜和力学性能的影响,并将其与聚丙烯(PP)纤维和钢纤维进行比较SCC。进行新鲜特性试验,包括坍落度和J环,以及机械性能测试,包括抗压强度,分裂拉伸强度,弯曲强度和抗冲击。与PP和钢纤维增强SCC相比,SMA光纤增强SCC显示出优异的新鲜性能和延展性性能。这是因为SMA纤维具有出色的终极抗拉强度和超弹性特性。优点的组合延迟了初始裂纹开发并缩小了裂缝间隙宽度,导致能量耗散现象,增强机械实验中的延展性性能和冲击载荷的动态抗性。 (c)2019 Elsevier Ltd.保留所有权利。

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