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Effect of processed pozzolans on residual mechanical properties and macrostructure of high-strength concrete at elevated temperatures

机译:高温处理后火山灰对高强度混凝土残余力学性能和宏观结构的影响

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摘要

Recently, use of processed pozzolans such as rice husk ash (RHA) and bagasse ash (BA) have been identified as promising mineral admixtures to produce HSC. As fire is considered one of the severe hazards to which a structure may be exposed, there is a requirement to evaluate the performance of HSC containing pozzolanic admixtures, namely, RHA and BA at elevated temperatures. In this study, the residual mechanical properties comprising, compressive and splitting tensile strength, compressive stress-strain response, and static elastic modulus of HSC mixtures made with 10% RHA, 10% BA as cement replacement are presented. The properties were investigated at different temperatures up to 800 degrees C, at a slow heating rate of 3 degrees C/min. Results reveal that the residual mechanical properties of pozzolanic concretes deteriorate at elevated temperatures with significant loss above 200 degrees C. Visual observations of the physical deterioration reveal that the cracking in specimens mostly initiates during the cooling phase and develops extensively in all concrete types at exposure temperature of above 400 degrees C.
机译:最近,已确认使用加工过的火山灰,例如稻壳灰(RHA)和甘蔗渣灰(BA)是生产HSC的有前途的矿物混合物。由于火灾被认为是可能会暴露于建筑物的严重危害之一,因此有必要评估含有HSC的火山灰混合物(即RHA和BA)在高温下的性能。在这项研究中,提出了由10%RHA,10%BA代替水泥制成的HSC混合物的残余力学性能,包括抗压强度和劈裂抗拉强度,压缩应力-应变响应以及静态弹性模量。在高达800摄氏度的不同温度下,以3摄氏度/分钟的缓慢加热速率研究了这些性能。结果表明,火山灰混凝土的残余机械性能在高温下会劣化,在200摄氏度以上会造成明显损失。肉眼观察到的物理劣化表明,试样的开裂主要在冷却阶段开始,并在暴露温度下在所有类型的混凝土中广泛扩展高于400摄氏度。

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