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首页> 外文期刊>Thermochimica Acta: An International Journal Concerned with the Broader Aspects of Thermochemistry and Its Applications to Chemical Problems >A new composite based on gypsum matrix and mineral additives: Hydration process of the matrix and thermal properties at room temperature
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A new composite based on gypsum matrix and mineral additives: Hydration process of the matrix and thermal properties at room temperature

机译:基于石膏基质和矿物添加剂的新型复合材料:基质的水合过程和室温下的热性能

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摘要

The present work aims to investigate a new composite used in building construction. The starting products are an industrial plaster, mica, vermiculite and water. The chemical characterization of the matrix reveals the presence of dihydrate (5 wt%) in plaster which modifies the setting time of the hydration process. This phenomenon is not observed with a pure plaster suggesting that another parameter modifies the kinetics: the particle size. Indeed, the setting time decreases of 30 min when the plaster is sieved from 150 to 10 μm. The evolution of the thermal properties versus the nature and the quantity of additives is also studied. Vermiculite proves to be well suited to decrease the thermal conductivity of the panel (0.58-0.27 W m-1 K-1) whereas mica tends to increase it. The analytical model of Hashin and Strikman well describe the evolution of the thermal conductivity until a porosity of 40%.
机译:本工作旨在研究用于建筑的新型复合材料。起始产品是工业石膏,云母,ver石和水。基质的化学特征表明石膏中存在二水合物(5 wt%),这改变了水合过程的凝固时间。用纯灰泥未观察到此现象,表明另一个参数改变了动力学:粒径。实际上,将灰泥从150微米筛分到10微米时,固化时间减少了30分钟。还研究了热性能相对于添加剂的性质和数量的变化。石被证明非常适合降低面板的导热系数(0.58-0.27 W m-1 K-1),而云母则倾向于增加面板的导热系数。 Hashin和Strikman的分析模型很好地描述了直到孔隙度达到40%时导热率的变化。

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