Mechanical Properties of Fiber Reinforced Concrete by using Sisal Fiber with M-Sand as Fine Aggregate

V. Gnanasundar
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引用次数: 1

Abstract

Abstract. Conventional concrete has a low tensile strength, constrained ductility and little protection from crack propagation. The inward miniaturized scale of cracks, prompting weak disappointment of concrete. Investigations have been carried out in many countries on various mechanical properties, physical performance and durability of cement-based matrices reinforced with naturally occurring fibers including sisal, coconut, jute, bamboo, and wood fibers. Raised natural mindfulness and an expanding worry with an unnatural weather change have invigorated the search for materials that can supplant traditional engineered fiber. Characteristic fiber, for example, sisal strands show up as one of the great options since they are accessible in sinewy structure and can be separated from plant leaves, stalk, and products of the soil at exceptionally low expenses. In this work, the impact of sisal strands on the quality of cement for M25 evaluation has been examined by shifting the level of filaments in concrete. Fiber substance were shifted by 0.05%, 0.10%, 0.15%, 0.20%, 0.25%, 0.30%, 0.35% and 0.40% by volume of cement. Cubes, Cylinder and Prism were cast to assess the Compressive, Split Tensile and Flexural Strength test. Every one of the samples was tested for a time of 28 days curing. The results of fiber reinforced concrete for 28 days curing with a varied percentage of fiber were studied and it has been found that there is significant strength improvement with addition of sisal fiber in concrete.
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剑麻纤维配m砂细骨料混凝土的力学性能研究
摘要常规混凝土的抗拉强度低,延性受限,对裂缝扩展的保护作用小。向内的裂缝规模缩小,促使混凝土的弱失望。许多国家都对天然纤维增强水泥基基质的各种机械性能、物理性能和耐久性进行了调查,这些纤维包括麻、椰子、黄麻、竹和木纤维。自然意识的增强和对非自然天气变化的担忧日益加剧,促使人们寻找能够取代传统工程纤维的材料。特征纤维,例如,剑麻丝是一个很好的选择,因为它们具有坚韧的结构,可以以极低的成本从植物叶子、茎和土壤产品中分离出来。在这项工作中,通过改变混凝土中细丝的水平,研究了剑麻丝对M25评价水泥质量的影响。纤维物质的位移分别为水泥体积的0.05%、0.10%、0.15%、0.20%、0.25%、0.30%、0.35%和0.40%。铸体、圆柱体和棱柱体进行抗压、劈裂拉伸和弯曲强度测试。每个样品都进行了28天的固化测试。对不同纤维掺量的纤维增强混凝土养护28天的结果进行了研究,发现在混凝土中加入剑麻纤维可显著提高混凝土的强度。
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