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Influence of basalt micro-fibres on the abrasion resistance of concrete in hydraulic structures

机译:玄武岩微纤维对液压结构混凝土耐磨性的影响

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In hydraulic structures, abrasion resistance can be a significant driver in concrete specification. Basalt micro-fibres represent a potentially sustainable construction product and have been shown to provide various benefits in concrete, however the implications for hydrodynamic abrasion resistance are to date unclear. This paper is the first investigation of its kind to examine the abrasion resistance of basalt fibre-reinforced (BFR) concretes using the ASTM C1138 underwater test method. Towards this, concretes incorporating fibre dosages of 0.5, 1, 1.5 and 3 kg/m(3) were tested. The relationships between concrete abrasion and its fundamental mechanical properties are evaluated. For the particular concretes examined, it is found that based on the Shapiro-Wilks tests at 95% confidence, abrasion loss in BFR concretes followed a normal distribution; the use of basalt fibre in contents of up to 3 kg/m(3) did not have a significant effect on abrasion resistance, compressive and tensile splitting strengths, as well as modulus of elasticity. It can be concluded that basalt micro-fibre can be used for their other attributes such as controlling bleeding, shrinkage and plastic cracking in concrete hydraulic structures without deleterious effects on abrasion resistance. The regression models proposed to predict concrete abrasion loss from its mechanical properties were found to be only significant at 48 h for compressive strength and 24 h for both tensile splitting strength and modulus of elasticity.
机译:在液压结构中,耐磨性可以是混凝土规格中的重要驾驶员。玄武岩微纤维代表潜在的可持续建筑产品,已被证明在混凝土中提供各种益处,但是对水动力耐磨性的影响迄今尚不清楚。本文是首次研究其使用ASTM C1138水下试验方法检查玄武岩纤维增强(BFR)混凝土的耐磨性的研究。向此迈出,测试含有0.5,1,1.5和3kg / m(3)的纤维剂量的混凝土。评估混凝土磨损与其基本机械性能之间的关系。对于所检查的特定混凝土,发现基于Shapiro-Wilks的置信度为95%,BFR混凝土中的磨损损失跟随正常分布;在高达3kg / m(3)的内容物中使用玄武岩纤维对耐磨性,压缩和拉伸分裂强度以及弹性模量没有显着影响。可以得出结论,玄武岩微纤维可用于其其他属性,例如控制混凝土液压结构中的流出,收缩和塑料开裂,对耐磨性的有害影响。发现从其机械性能预测混凝土磨损损失的回归模型仅在48小时内显着,对于抗压强度和24小时,用于拉伸分裂强度和弹性模量。

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