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Mechanical properties of thermal insulation concrete with recycled coarse aggregates after elevated temperature exposure

机译:高温暴露后具有再生粗骨料的保温混凝土的机械性能

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Thermal insulation concrete with recycled coarse aggregate (RATIC) provides an excellent alternative to energy saving and the reuse of waste concrete in buildings. In this paper, experiments were conducted to investigate the mechanical properties of the RATIC material after exposure to elevated temperatures, including failure feature and residual strengths. The effects of temperatures and the replacement percentage of recycled coarse aggregate (RCA) on the compressive and tensile strengths of the RATIC were first assessed experimentally. Then, the formulas for both compressive and tensile strengths were developed as a function of temperatures using the regression analysis. The test results show that the RATIC is prone to explosive spalling due to the compact structure of cement paste and low thermal conductivity. The compressive strength of the RATIC increases slightly under the temperature of 400 degrees C and then decreases significantly with an increasing exposed temperature. In contrast, the splitting tensile strength of the RATIC decreases significantly after the material was exposed to a high temperature of 200 to 800 degrees C. With the increasing RCA percentage, the RATIC experiences more strength deterioration in tension than compression, while little difference was observed regarding thermal exposure and failure modes of the RATIC.
机译:带有再生粗骨料(RATIC)的隔热混凝土是节能和建筑物中废弃混凝土的再利用的极佳选择。在本文中,进行了实验以研究RATIC材料在高温下的力学性能,包括破坏特征和残余强度。首先通过实验评估温度和再生粗骨料(RCA)的替代百分比对RATIC的抗压强度和拉伸强度的影响。然后,使用回归分析得出抗压强度和抗拉强度的公式作为温度的函数。测试结果表明,由于水泥浆的致密结构和低导热性,RATIC容易发生爆炸剥落。 RATIC的抗压强度在400摄氏度的温度下略有增加,然后随着暴露温度的升高而显着降低。相比之下,在材料暴露于200至800摄氏度的高温后,RACIC的劈裂拉伸强度显着降低。随着RCA百分比的增加,RADIC的拉伸强度比压缩的强度下降更多,而观察到的差异很小关于RATIC的热暴露和失效模式。

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