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Shear transfer across a crack in high-strength concrete after elevated temperatures

机译:高温后高强度混凝土中的裂缝上的剪切传递

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摘要

This paper experimentally investigated the shear transfer behavior of high-strength concrete (HSC) across a crack after elevated temperatures. The compressive strength of concrete and the experienced temperature were the two main parameters in this study. Twenty-two uncracked push-off specimens were casted and heated in an electrical furnace. Push-off tests were then conducted to study the shear strength and the crack formulation and deformation of the concrete after elevated temperatures. The elevated temperature test results indicate that the heating process of HSC is related to the furnace chamber temperature, the thermal convection and the thermal radiation. The heating process can be divided into 3 stages based on the heating time. Except for an exposed temperature of 200 ℃, the ultimate shear strength of HSC reduces and the corresponding crack deformation (crack slip and crack width) increases with the increase of the temperature. The shear brittleness of HSC decreases as the exposed temperature increases. The higher the strength of concrete is, the more brittle the shear transfer characteristics becomes. Finally, the equation for estimating the residual shear strength of HSC after elevated temperatures are proposed based on the statistical analysis of the test data.
机译:本文通过实验研究了高温后高强度混凝土(HSC)穿过裂缝的剪切传递行为。混凝土的抗压强度和所经历的温度是这项研究的两个主要参数。在电炉中铸造并加热了22个未破裂的下料样品。然后进行推力试验,以研究高温后混凝土的抗剪强度,裂缝配方和变形。高温测试结果表明,HSC的加热过程与炉膛温度,热对流和热辐射有关。根据加热时间,加热过程可分为三个阶段。除了在200℃的暴露温度下,HSC的极限剪切强度会降低,相应的裂纹变形(裂纹滑移和裂纹宽度)会随着温度的升高而增加。 HSC的剪切脆性随暴露温度的升高而降低。混凝土的强度越高,剪切传递特性变得越脆。最后,基于试验数据的统计分析,提出了高温后HSC残余剪切强度的估算方程。

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