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Mechanical Properties of Hybrid Ultra-High Performance Engineered Cementitous Composites Incorporating Steel and Polyethylene Fibers

机译:含钢和聚乙烯纤维的混合超高性能工程水泥质复合材料的力学性能

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摘要

This paper presents the authors’ newly developed hybrid ultra-high performance (HUHP) engineered cementitious composite (ECC) with steel (ST) and polyethylene (PE) fibers. From this point on it will be referred to as HUHP-ECC. The volumes of steel and PE fibers were adjusted to obtain different mechanical properties, including compressive strength, tensile, and flexural properties. We found that tensile and flexural properties, including bending strength and ductility indexes, increased with higher PE fiber amounts but reduced with the increased ST fiber volume. Notably, the compressive strength had the opposite tendency and decreased with increases in the PE volume. The ST fiber had a significantly positive effect on the compressive strength. The fluidity of HUHP-ECC improved with the increasing amount of ST fiber. The pseudo strain-hardening (PSH) values for all the HUHP-ECC mixtures were used to create an index indicating the ability of strain capacity; thus, the PSH values were calculated to explain the ductility of HUHP-ECC with different fiber volumes. Finally, the morphology of PE and ST fibers at the fracture surface was observed by an environmental scanning electron microscope (ESEM).
机译:本文介绍了作者新开发的混合超高性能(HUHP)工程化水泥基复合材料(ECC),其中含有钢(ST)和聚乙烯(PE)纤维。从这一点开始,它将被称为HUHP-ECC。调节钢纤维和PE纤维的体积以获得不同的机械性能,包括抗压强度,拉伸性能和弯曲性能。我们发现,拉伸强度和弯曲性能(包括弯曲强度和延展性指标)随着PE纤维含量的增加而增加,但随ST纤维体积的增加而降低。值得注意的是,抗压强度具有相反的趋势,并且随着PE体积的增加而降低。 ST纤维对抗压强度具有明显的积极影响。随着ST纤维数量的增加,HUHP-ECC的流动性提高。所有HUHP-ECC混合物的伪应变硬化(PSH)值用于创建指示应变能力的指标。因此,计算PSH值可以解释不同纤维体积下HUHP-ECC的延展性。最后,通过环境扫描电子显微镜(ESEM)观察断裂表面的PE和ST纤维的形态。

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