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The Effects of Fiber Length and Volume on Material Properties and Crack Resistance of Basalt Fiber Reinforced Concrete (BFRC)

机译:纤维长度和体积对玄武岩纤维增强混凝土材料性能及抗裂性的影响(BFRC)

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Basalt fiber reinforced concrete (BFRC) has been widely utilized in various constructions such as buildings, large industrial floors, and highways, due to its excellent physical and mechanical properties, as well as low production cost. In order to address the influence of basic parameters such as fiber volume fraction (0.05~0.40%), fiber length (12~36?mm) of BF, and compressive strength (30, 40, and 50?MPa) of concrete on both physical and mechanical properties of BFRC including compressive strength, tensile and flexural strength, workability, and anti-dry-shrinkage cracking properties, a series of standard material tests were conducted. Experimental results indicated that clumping of fibers may occur at relatively higher fiber volume fraction resulting in mixing and casting problems. Based on experimental values of mechanical properties and anti-dry-shrinkage cracking resistance of BFRC, the reasonable basalt fiber length and fiber volume fractions are identified. The addition of a small amount of short basalt fibers can result in a considerable increase in both compressive strength and modulus of rupture (MoR) of BFRC and that the proposed fiber length and content are 12.0?mm and 0.10%~0.15%, respectively. As the length of basalt fibers increases, the development of early shrinkage cracks decreases initially and then increases slowly and the optimal fiber length is 18.0?mm. Results of the study also indicated that early shrinkage cracks decrease with the increase of fiber volume fraction, and when the volume fraction of 0.20% is used, no cracks were observed. All the findings of the present study may provide reference for the material proportion design of BFRC.
机译:玄武岩纤维增强混凝土(BFRC)已广泛用于各种结构,如建筑物,大型工业地板和高速公路,由于其优异的物理和机械性能,以及低生产成本。为了解决纤维体积分数(0.05〜0.40%),BF的纤维长度(12〜36Ωmm)的基本参数(0.05〜0.40%)的影响,以及两者上的混凝土的压缩强度(30,40和50μmba) BFRC的物理和力学性能,包括抗压强度,拉伸和抗弯强度,可加工性和抗干燥收缩裂解特性,进行了一系列标准材料测试。实验结果表明,在相对较高的纤维体积馏分中可能发生纤维的簇,导致混合和浇铸问题。基于BFRC的机械性能和抗干干裂解抗裂性的实验值,鉴定了合理的玄武岩纤维长度和纤维体积分数。添加少量的短玄武岩纤维可以导致BFRC的抗压强度和破裂模量(PRC)的抗压强度和模量显着增加,并且所提出的纤维长度和含量分别为12.0Ωmm和0.10%〜0.15%。随着玄武岩纤维的长度的增加,早期收缩裂缝最初降低,然后缓慢增加,最佳纤维长度为18.0Ωmm。该研究的结果还表明,随着纤维体积分数的增加,早期收缩裂缝降低,并且当使用0.20%的体积分数时,未观察到裂缝。本研究的所有发现可以为BFRC的材料比例设计提供参考。

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