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Influence of artificial aggregate on mechanical properties, fracture parameters and bond strength of concretes

机译:人造骨料对混凝土力学性能,断裂参数和粘结强度的影响

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The paper presented herein investigates the mechanical performance of concrete involving lightweight and normal weight aggregates with similar compressive strength. For this, two compressive strength values, 25 and 45 MPa, were considered for the concretes produced by normal and lightweight aggregates. Therefore, four concrete mixtures were designed at different water-to-cement ratios and cement contents. The lightweight aggregate utilized in this study was produced through cold bonding pelletization of fly ash and cement at ambient temperature in a specially designed tilted pan. The artificial lightweight aggregate used as a substitution of natural aggregate had similar particle size distribution to that of natural aggregate. The same mixing procedure was adopted to produce concrete and the testing specimens attained from each mixture were cured at the same circumstances. After the 28-day curing period, the specimens were tested for compressive strength and modulus of elasticity, splitting tensile and flexural strengths. Moreover, advanced mechanical properties such as fracture parameters, bond strength between embedded reinforcement and the concrete were also investigated. The test results indicated that it is possible to produce the lightweight aggregate concrete having similar compressive strength with the natural aggregate concrete, however, the utilization of artificial lightweight aggregates significantly influenced the investigated mechanical and fracture properties of the concretes despite having the similar compressive strengths. But, it was also observed that the utilization of lightweight aggregate made the concrete more ductile. (C) 2019 Elsevier Ltd. All rights reserved.
机译:本文介绍的论文研究了具有相似抗压强度的轻质和中型骨料混凝土的机械性能。为此,考虑了普通和轻质骨料生产的混凝土的两个抗压强度值分别为25和45 MPa。因此,设计了四种不同水灰比和水泥含量的混凝土混合物。本研究中使用的轻质骨料是通过在特殊设计的倾斜锅中于环境温度下将粉煤灰和水泥冷粘合造粒而生产的。用作天然骨料的人造轻质骨料具有与天然骨料相似的粒度分布。采用相同的搅拌程序生产混凝土,并在相同的情况下固化从每种混合物获得的测试样品。固化28天后,测试样品的抗压强度和弹性模量,拉伸强度和挠曲强度。此外,还研究了先进的机械性能,例如断裂参数,埋入式钢筋与混凝土之间的粘结强度。试验结果表明,可以生产具有与天然骨料混凝土相似的抗压强度的轻质骨料混凝土,但是,尽管具有相似的抗压强度,人造轻质骨料的利用仍显着影响了所研究的混凝土的力学性能和断裂性能。但是,还观察到轻质骨料的利用使混凝土更具延展性。 (C)2019 Elsevier Ltd.保留所有权利。

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