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首页> 外文期刊>Journal of Thermal Analysis and Calorimetry >Insulating behavior of metakaolin-based geopolymer materials assess with heat flux meter and laser flash techniques
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Insulating behavior of metakaolin-based geopolymer materials assess with heat flux meter and laser flash techniques

机译:用热通量计和激光闪光技术评估偏高岭土基地质聚合物材料的绝缘性能

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摘要

Thermo physical behavior of metakaolin-based geopolymer materials was investigated. Five compositions of geopolymers were prepared with Si/Al from 1.23 to 2.42 using mix of sodium and potassium hydroxide (~7.5 M) as well as sodium silicate as activator. The products obtained were characterized after complete curing to constant weight at room temperature. The thermal diffusivity (2.5–4.5 × 10−7m2/s) and thermal conductivity (0.30–0.59 W/m K) were compared to that of existing insulating structural materials. The correlation between the thermal conductivity and parameters as porosity, pore size distribution, matrix strengthening, and microstructure was complex to define. However, the structure of the geopolymer matrix, typical porous amorphous network force conduction heat flux to travel through very tortuous routes consisting of a multiple of neighboring polysialate particles.
机译:研究了偏高岭土基地质聚合物材料的热物理行为。使用氢氧化钠和氢氧化钾(〜7.5 M)以及硅酸钠作为活化剂,用1.23至2.42的Si / Al制备了五种地质聚合物组合物。在室温下完全固化至恒重后,对所得产物进行表征。将热扩散率(2.5–4.5×10 −7 m 2 / s)和热导率(0.30–0.59 W / m K)与现有绝缘结构进行了比较材料。导热系数与孔隙度,孔径分布,基体强化和微观结构等参数之间的关系很难定义。然而,地质聚合物基质的结构,典型的多孔无定形网络迫使传导热通量通过非常弯曲的路径传播,该路径由多个相邻的聚唾液酸盐颗粒组成。

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