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Effect of resin infiltration on fumed silica-based thermal insulations

机译:树脂渗透对气相二氧化硅基隔热材料的影响

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摘要

The thermal conductivities and the strengths of fumed silica-based thermal insulations prepared by the dry process and the resin infiltration method have been studied. Infiltration of the insulation samples prepared by dry processing of mixtures, consisting of fumed silica, ceramic fiber and a SiC opacifier, was performed to strengthen their binding structure. The high temperature thermal conductivities for the insulation samples obtained by the resin infiltration method were similar to those for the samples prepared by the dry process. On the other hand, the bending strengths for the former were superior to those for the latter. However, the resin-infiltrated samples were more brittle than the samples obtained by the dry process due to the occurrence of rigid bonding between the fibers and the infiltrated resin in the porous insulations. The thermosetting resin solution infiltration method appeared to be applicable to producing a dust-free fumed silica-based thermal insulation.
机译:研究了通过干法和树脂渗透法制备的气相法二氧化硅基隔热材料的导热系数和强度。通过对混合物的干法处理(包括气相法二氧化硅,陶瓷纤维和SiC遮光剂)进行渗透,以增强绝缘样品的结合结构。通过树脂渗透法获得的绝缘样品的高温热导率与通过干法制备的样品的高温热导率相似。另一方面,前者的弯曲强度优于后者。然而,由于在多孔绝缘体中纤维和渗透的树脂之间发生刚性结合,因此树脂渗透的样品比通过干法获得的样品更脆。热固性树脂溶液渗透方法似乎适用于生产无尘的气相二氧化硅基隔热材料。

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