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Influence of specimen geometries and drying conditions on concrete cracking in restrained elliptical ring tests

机译:试样几何与干燥条件对抑制椭圆形环试验混凝土裂缝的影响

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The restrained shrinkage elliptical ring test has been established as an efficient method for assessing the cracking potential of concrete at early ages because an elliptical ring can provide a higher degree of restraint compared with a circular one. In this study, a series of circular and elliptical concrete rings restrained by steel rings with various thicknesses were tested under top & bottom surfaces drying or outer circumferential surface drying. By comparing concrete cracking age under different geometrical and drying conditions, the effects of ring geometry, restraining steel ring thickness and drying condition on the cracking process in concrete rings were revealed. Furthermore, numerical analyses were conducted to investigate the fracture mechanism for circular and elliptical rings by applying a fictitious temperature field to simulate the shrinkage effect of concrete. It is found that the increase of steel ring thickness can enhance the degree of restraint, therefore shorten the cracking age for both circular and elliptical rings. However, the improvement is more significant for circular rings. The fracture processes under the two drying conditions, i.e. top & bottom surfaces drying and outer circumferential surface drying are completely different: for drying from outer circumferential surface, the crack initiates at the outer surface and propagates towards the inner surface; for drying from top & bottom surfaces, the crack initiates partially along the height direction at the inner circumference of a concrete ring, and propagates along the radial direction, step by step, until the crack propagates throughout the whole ring wall. In both cases, the self-restraint caused by the non-uniform shrinkage of concrete and the external restraint from the inner steel ring contribute the driving effects for crack propagation. In general, compared with circular rings, the elliptical rings demonstrate the advantage of providing a higher degree of restraint. The elliptical ring test method can, therefore, supplement the traditional circular ring test method for assessing cracking tendency of concrete with higher cracking resistance. (C) 2019 Elsevier Ltd. All rights reserved.
机译:抑制的收缩椭圆形环试验已经建立为在早期评估混凝土的开裂电位的有效方法,因为椭圆环可以提供更高程度的克制与圆形的环。在本研究中,在顶部和底表面干燥或外周表面干燥之下测试一系列由具有各种厚度的钢环限制的一系列圆形和椭圆混凝土环。通过比较在不同几何和干燥条件下的混凝土裂解时期,揭示了环形几何形状,限制钢环厚度和干燥条件对混凝土环中的开裂过程的影响。此外,通过应用虚拟温度场模拟混凝土的收缩效应来研究数值分析以研究圆形和椭圆形环的断裂机制。结果发现,钢环厚度的增加可以提高克制程度,从而缩短圆形和椭圆环的裂缝年龄。然而,改善对于圆环更为显着。在两个干燥条件下的断裂过程,即顶部和底表面干燥和外周表面干燥完全不同:用于从外周表面干燥,裂纹在外表面上发起并朝向内表面传播;为了从顶部和底表面干燥,裂缝在混凝土环的内周的内圆周处部分地启动,并且沿径向传播,逐步传播,直到裂缝在整个环形壁中传播。在这两种情况下,由混凝土的不均匀收缩和内钢环的外部约束引起的自限制有助于裂纹繁殖的驱动效果。通常,与圆环相比,椭圆形环展示了提供更高程度的克制的优点。因此,椭圆形环试验方法可以补充传统的圆形环试验方法,用于评估混凝土的裂缝趋势,具有较高的裂化抗性。 (c)2019 Elsevier Ltd.保留所有权利。

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