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首页> 外文期刊>Construction and Building Materials >Flexural behavior and microstructure of hybrid basalt textile and steel fiber reinforced alkali-activated slag panels exposed to elevated temperatures
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Flexural behavior and microstructure of hybrid basalt textile and steel fiber reinforced alkali-activated slag panels exposed to elevated temperatures

机译:高温下混合玄武岩纺织品和钢纤维增强碱活化渣板的弯曲行为和微观结构

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This study investigates the effects of high temperatures and exposure duration on the flexural behavior and microstructure of hybrid basalt textile and steel fiber reinforced alkali-activated slag panels. Three-point bending tests were conducted after heating specimens to 400 degrees C, 600 degrees C, and 800 degrees C for durations of 1 and 2 h. The effects of thermal exposure on the matrix and the basalt fibers from the panels were investigated with scanning electron microscopy. Element and phase analyses of the matrix were performed after exposure to high temperatures via energy dispersive spectroscopy and X-ray diffraction, respectively. The first crack and peak flexural strength of the specimens not exposed to heat reached 8.9 and 20.5 MPa, respectively. Obvious decreases in flexural performance occurred as temperature and duration increased as a result of the decomposition of the alkali-activated slag mortar (AASM) matrix and the deterioration of the bonding performance between the basalt textile and the matrix. Changing of the Ca/Si ratio, the Al/Si ratio, and the crystalline phase of the AASM matrix indicated that phase transformation occurred after heat exposure at 800 degrees C. (C) 2017 Published by Elsevier Ltd.
机译:这项研究调查了高温和暴露时间对混合玄武岩纺织品和钢纤维增强碱活化渣板的弯曲行为和微观结构的影响。在将样品加热到400摄氏度,600摄氏度和800摄氏度持续1小时和2小时之后,进行了三点弯曲测试。用扫描电子显微镜研究了热暴露对板中基体和玄武岩纤维的影响。暴露于高温后分别通过能量色散光谱法和X射线衍射法对基质进行元素和相分析。未受热的样品的第一裂纹和最大弯曲强度分别达到8.9和20.5 MPa。由于碱活化矿渣砂浆(AASM)基体的分解以及玄武岩纺织品与基体之间的粘结性能下降,随着温度和时间的延长,挠曲性能明显下降。 Ca / Si比,Al / Si比和AASM基体的结晶相的变化表明,相变发生在800℃下暴露于热之后。(C)2017由Elsevier Ltd.出版。

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