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The Study of the Strength Properties of Galvanized Iron (GI) Fiber Reinforced Concrete

机译:镀锌铁(GI)纤维混凝土强度性能研究

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摘要

The use of concrete with randomly distributed metallic or non-metallic fiber is now prominent in concrete engineering and metallic fiber has been reported to have a better contribution to concrete mechanical properties. The utilization of locally available galvanized iron or metallic fiber as a bridging material which is a new technique in Bangladesh has the ability to surprisingly improve concrete physical properties. This research was, therefore, conducted to compare the concrete performance of GI fiber and steel fiber using previous literature as well as the suitability of GI fiber as a supplant to steel fiber in the concrete industry. This was achieved through the evaluation of the compression, tension, and brittleness of concrete with ‘Galvanized Iron’ fiber using several cutting lengths of 20 mm and 40 mm with multiple mix proportions including 1.0%, 1.5%, 2.0%, and 2.5% by volume of the concrete. The results showed the fiber with a large cut length of 40 mm and proportion lesser than 2.5% performed well than 20 mm with proportion 2% in reference to the plain concrete. Moreover, the incorporation of a 2.0% proportion of galvanized iron fiber with 40 mm length was observed to have exhibited crowning increment for both concrete compression and tension by 16.1% and 89.2% correspondingly contrasted to the control specimen. A further increase in the percent of fiber content 2% led to a reduction in the compression and tension for both 20 mm and 40 mm lengths while a significant reduction in brittleness for galvanized iron fiber reinforced concrete was observed in contrast to the control specimen. Furthermore, the inclusion of 1.0%–2.5% GI fiber with a 40 mm length reduced concrete brittleness by 56.9% - 65.5 % in comparison with the control specimen. Therefore, the inclusion of galvanized iron (metallic) to enhance the physical properties of concrete was deduced to be one of the startling stratagems
机译:使用具有随机分布的金属的或非金属的纤维混凝土的是现在在混凝土工程突出和金属纤维已被报道有混凝土的机械性能更好的贡献。本地可用镀锌铁或金属纤维作为其是在孟加拉国的新技术的桥接材料的利用具有令人惊讶地提高混凝土的物理性质的能力。这项研究,因此,以比较GI纤维和钢纤维的混凝土的性能使用先前的文献以及GI光纤的适合作为取代钢纤维在混凝土工业中。这是通过压缩,张力的评价来实现,以及使用为20mm和40mm具有多个配合比含1.0%,1.5%,2.0%,和2.5%的几个切削长度与“镀锌铁”纤维混凝土的脆性混凝土的体积。结果表明,纤维具有40毫米的大切长度和较小的比例大于2.5%表现良好大于20毫米与比例2%在参照普通混凝土。此外,观察到镀锌铁纤维的40毫米的长度的2.0%的比例掺入到已经表现出两个混凝土压缩和张力16.1%和89.2%相对应的对比到控制试样隆起增量。的进一步增加在纤维含量2%导致压缩的降低和张力两个20毫米和40mm的长度,而增强在脆性显著还原为镀锌铁纤维相比于对照样品中观察到混凝土的百分比。与对照试样相比,65.5% - 此外,1.0%-2.5%的GI纤维的用40毫米长的夹杂物由56.9%降低混凝土的脆性。因此,镀锌铁(金属)的夹杂物,以增强混凝土的物理特性推导出是惊人计中的一

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