Effect of hybrid steel-polypropylene fiber on punching shear behavior of flat slab with an opening

Shahzinan J. Zaezue, W. Hadi
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Abstract

This research aimed to gain a better understanding of how the addition of fiber influences the punching shear capacity of two-way slabs by conducting an experiment into the structural behavior of flat slabs with and without a square opening using different volume fractions of hybrid steel-polypropylene fiber (0%, 0.9%, 1.05% and 1.8%). Ten 700 × 700 × 70 mm slabs were divided into five pairs, with two samples used as control samples (with and without openings), and eight other samples with different volume fraction of fibers. Results showed that an increase in fiber content enhanced the shear strength of the slabs. For example, as the volume fraction of hybrid fiber increased from 0.0 to 1.8%, the ultimate load increased by 52% for slabs without an opening and up to 42% for slabs with an opening.
钢-聚丙烯混杂纤维对开孔平板冲剪性能的影响
本研究通过采用不同体积分数(0%、0.9%、1.05%和1.8%)的钢-聚丙烯混杂纤维对开方形和不开方形平板的结构性能进行试验,以更好地了解纤维添加量对双向板冲剪能力的影响。将10块700 × 700 × 70 mm的平板分成5对,其中2个样品作为对照样品(有开口和没有开口),另外8个样品具有不同的纤维体积分数。结果表明,纤维含量的增加提高了板的抗剪强度。例如,当混杂纤维体积分数从0.0增加到1.8%时,无开口板的极限载荷增加了52%,有开口板的极限载荷增加了42%。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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