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Effect of steel-polypropylene hybrid fiber and coarse aggregate inclusion on the stress-strain behavior of ultra-high performance concrete under uniaxial compression

机译:钢 - 聚丙烯杂交纤维和粗骨料夹杂物对单轴压缩下超高性能混凝土应力 - 应变行为的影响

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摘要

This paper investigates for the first time the effect of blending hybrid steel-polypropylene fiber (SF-PF) and coarse aggregate (CA) on the stress-strain behavior of ultra-high performance concrete (UHPC) under uniaxial compression. The uniaxial compression tests of UHPC specimens were carried out for different SF-PF, CA dosages and PF aspect ratios. Results show that the addition of hybrid SF-PF not only helps build stronger interfaces in UHPC, but also alters the failure pattern. The single corporation of SF significantly enhances the toughness, while the compressive strength and elastic modulus are diminished due to the less strong and compact 'skeleton' structure composed of the cement unhydrated core and hydrated coating. The toughness can be further improved under larger PF aspect ratio for the higher PF utilization ratio in restraining micro-cracks' growth. The inclusion of CA leads to an evident increase in both the strength and modulus attributed to the increasing packing density and stronger 'skeleton', but simultaneously reduces the deformability and toughness. PF could compensate for the adverse effects of CA on the toughness without sinking too much. Finally, a developed analytical model is presented for predicting the UHPC compressive stress-strain behavior considering the dosage of SF, PF and CA.
机译:本文研究了混合杂交钢 - 聚丙烯纤维(SF-PF)和粗聚集(CA)对单轴压缩下超高性能混凝土(UHPC)应力 - 应变行为的影响。为不同的SF-PF,Ca剂量和PF纵横比进行UHPC样本的单轴压缩试验。结果表明,加入混合动力SF-PF不仅有助于在UHPC中构建更强大的接口,还会改变失败模式。 SF的单一公司显着增强了韧性,而抗压强度和弹性模量由于由水泥未水氢化的芯和水合涂层组成的强大和紧凑的“骨架”结构而降低。在较高的PF宽高比下可以进一步改善韧性,以抑制微裂纹的生长。将Ca的包含导致归因于填充密度增加和更强的“骨架”的强度和模量增加,但同时降低可变形性和韧性。 PF可以弥补CA对韧性的不利影响而不会太多沉没。最后,提出了一种显影的分析模型,用于预测考虑SF,PF和CA的剂量的UHPC压缩应力 - 应变行为。

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