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Application of fibrillated polypropylene fibers for restraint of plastic shrinkage cracking in silica fume concrete

机译:原纤化聚丙烯纤维在抑制硅粉混凝土塑性收缩裂缝中的应用

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摘要

A review of the literature and an experimental research investigation are reported herein. The mechanism of plastic shrinkage cracking, as well as the effects of fibrillated polypropylene fibers and silica fume, are discussed. fibers restrain cracks by promoting water retention, setting acceleration, increasing tensile strain capacity, and controlling crack growth of fresh concrete. By increasing the number of menisic capillaries and water demand, silica fume increases the plastic shrinkage cracking of fresh concrete. The use of 0.1/100 volume fraction of fibrillated polypropylene fibers was found to be effective in shrinkage crack reduction of concretes with a silica fume content of 0 or 5/100.
机译:本文报道了文献综述和实验研究。讨论了塑料收缩开裂的机理,以及原纤化聚丙烯纤维和硅粉的影响。纤维通过促进保水,提高加速度,增加拉伸应变能力并控制新拌混凝土的裂纹扩展来抑制裂纹。通过增加弯液面毛细血管的数量和需水量,硅粉会增加新鲜混凝土的塑性收缩裂缝。发现使用0.1 / 100体积分数的原纤化聚丙烯纤维可有效减少硅粉含量为0或5/100的混凝土的收缩裂缝减少。

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