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Use of hollow glass microspheres and hybrid fibres to improve the mechanical properties of engineered cementitious composite

机译:中空玻璃微球和杂化纤维改善工程水泥复合材料的机械性能的用途

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Engineered cementitious composite (ECC) is a well-known high performance cementitious composites for its superior strain-hardening properties and high impact resistance. ECC has been produced using single type of fibre (mono-fibre). However, producing ECC using hybrid-fibre and as a lightweight construction material is in need for investigation. This paper describes the mechanical properties of ECC containing hollow glass microspheres (HGM) and hybrid-fibre consisted of polyvinyl alcohol (PVA) fibre and steel fibre (SF). The variables in this study were the HGM content (0% and 10%) and the hybrid-fibre volume fraction proportions (PVA : SF of 2.0% : 0.0%, 1.75% : 0.25%, 1.50% : 0.50%, and 1.25% : 0.75%). Compressive strength, flexural behaviour, energy absorption including first crack energy absorption were measured for the proposed cementitious composites. This study aimed at developing a new class of ECC with less unit weight, high-energy dissipation and ductility compared to conventional ECC. The results showed that mono-fibre ECC (PVA : SF is 2.0% : 0.0%) had higher compressive and flexural strengths than those showed by hybrid-fibre ECC mixtures. The ratio (PVA/SF) of 3.0 displayed the highest flexural strength compared to other hybrid-fibre ECC. The compressive and flexural strength of ECC was found to decrease with using HGM, although some lightweight ECC matrixes were deemed viable. Enhancements in compressive and flexural strength with further decrease in unit weight were achieved while w/b ratio decreased from 0.56 to 0.45. (C) 2018 Elsevier Ltd. All rights reserved.
机译:工程水泥复合材料(ECC)是一种众所周知的高性能水泥复合材料,具有出色的应变硬化性能和高抗冲击性。 ECC是使用单一类型的纤维(mono-fibre)生产的。但是,需要研究使用混合纤维并作为轻质建筑材料生产ECC。本文描述了包含空心玻璃微球(HGM)和由聚乙烯醇(PVA)纤维和钢纤维(SF)组成的混合纤维的ECC的机械性能。该研究中的变量是HGM含量(0%和10%)和杂化纤维体积分数比例(PVA:SF为2.0%:0.0%,1.75%:0.25%,1.50%:0.50%和1.25% :0.75%)。测量了所提出的水泥基复合材料的抗压强度,挠曲性能,包括第一裂纹能量吸收在内的能量吸收。这项研究旨在开发一种新型的ECC,与传统ECC相比,它具有更小的单位重量,更高的能量耗散性和延展性。结果表明,单纤维ECC(PVA:SF为2.0%:0.0%)具有比混合纤维ECC混合物更高的抗压强度和抗弯强度。与其他混合纤维ECC相比,3.0的比值(PVA / SF)显示出最高的弯曲强度。发现虽然使用了某些轻量级的ECC基质,但使用HGM可以降低ECC的抗压强度和抗弯强度。抗压强度和抗弯强度的提高,以及单位重量的进一步降低,而w / b比从0.56降至0.45。 (C)2018 Elsevier Ltd.保留所有权利。

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