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Effect of glass powder on the behaviour of high performance concrete at elevated temperatures

机译:玻璃粉对高温高性能混凝土行为的影响

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In recent years, many studies have been done on the performance of concrete containing glass powder (GP). For the purpose of widespread use of GP in concrete mixes, a knowledge of the performance of such a mixture after a fire is essential for the perspective of structural use. This research work was carried out to evaluate the performance of High Performance Concrete (HPC) made with GP after being exposed to elevated temperature. The studied mixtures include partial replacement of cement by GP with up to 30%. The mechanical performance and structural alterations were assessed after high temperature treatment from 200 degrees C to 800 degrees C. The mechanical performance was evaluated by testing the specimens to the compressive and tensile strength. In addition, the mass loss and the porosity were measured to notice the structural alterations. Changes in microstructure due to temperature was also investigated by the X-ray diffraction (XRD) and thermal gravimetric analyses (TGA) as well as porosity adsorption tests. The results of the concrete strength tests showed a slight difference in compressive strength and the same tensile strength performance when replacing a part of the cement by GP. However, after high temperature exposition, concrete with GP showed better performance than the reference concrete for temperature below 600 degrees C. But, after heating at 800 degrees C, the strength of the concrete with GP drop slightly more than reference concrete. This is accompanied by an important increase in mass loss and water porosity. After the microstructure analysis, no important changes happened differently for concrete with GP at high temperature except a new calcium silica form appears after the 800 degrees C heating.
机译:近年来,已经对含有玻璃粉末(GP)的混凝土的性能进行了许多研究。出于广泛使用GP在混凝土混合物中,对火灾后的这种混合物的性能的了解对于结构使用的角度来说是必不可少的。进行了该研究,以评估在暴露于升高的温度后用GP制备的高性能混凝土(HPC)的性能。研究的混合物包括通过GP部分更换水泥,高达30%。在高温处理到200摄氏度至800℃的高温处理后评估机械性能和结构改变。通过将样品测试到压缩和拉伸强度,评估机械性能。此外,测量质量损失和孔隙率以注意结构改变。还通过X射线衍射(XRD)和热重分析(TGA)以及孔隙度吸附试验来研究由于温度引起的微观结构的变化以及孔隙度吸附试验。在用GP取代一部分水泥时,混凝土强度试验的结果显示抗压强度和相同的拉伸强度性能。然而,在高温阐述后,具有GP的混凝土显示出比600℃的温度低的参考混凝土更好的性能。但是,在800摄氏度下加热后,混凝土的强度比参照混凝土略高。这伴随着质量损失和水孔隙率的重要增加。在微观结构分析之后,除了在800℃加热后出现新的钙二氧化硅形式外,没有对GP的混凝土发生的重要变化。

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