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Effect of high temperatures on gypsum-based composites

机译:高温对石膏基复合材料的影响

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摘要

The behaviour of several gypsum-based materials at high temperatures was investigated. Three gypsum-based binders, pure gypsum, binary gypsum-lime binder and ternary gypsum-lime-silica fume binder were exposed to temperatures up to 1000 degrees C. From each binder paste (binder and water) and mortar (binder and mortar and silica sand) were prepared. The basic physical and mechanical properties of the materials after heating were measured. With the exception of gypsum-lime paste, all the materials performed well at temperatures up to 400 degrees C. Gypsum paste achieved the best residual strength at 1000 degrees C (about 30% of the original value). The volume changes could be effectively reduced by adding silica sand, but the strength of the mortars was about 10% lower than the strength of the pastes. The volume changes in mortars were three times less than the volume changes of the pastes. The presence of aggregates also prevents the disintegration of gypsum-based materials. The best resistance against high temperatures was found for pure gypsum materials. The ternary materials have similar residual strength to cement-based pastes and mortars, while the behaviour of the binary materials was significantly worse. (C) 2018 Elsevier Ltd. All rights reserved.
机译:研究了几种石膏基材料在高温下的行为。将三种石膏基粘合剂,纯石膏,二元石膏-石灰粘合剂和三元石膏-石灰-硅粉粘合剂暴露于最高1000摄氏度的温度下。从每种粘合剂糊剂(粘合剂和水)和砂浆(粘合剂,砂浆和二氧化硅)砂)。测量了加热后材料的基本物理和机械性能。除石膏灰浆外,所有材料在高达400摄氏度的温度下均表现良好。石膏灰浆在1000摄氏度(约原始值的30%)时具有最佳残留强度。加入硅砂可有效减少体积变化,但砂浆的强度比糊剂的强度低约10%。砂浆的体积变化比浆料的体积变化小三倍。骨料的存在还防止了石膏基材料的崩解。对于纯石膏材料,发现了最佳的耐高温性能。三元材料的残余强度与水泥基浆料和砂浆的残余强度相似,而二元材料的性能则明显较差。 (C)2018 Elsevier Ltd.保留所有权利。

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