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Thermal Properties of Zeolite-Containing Composites

机译:含沸石复合材料的热性能

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摘要

A zeolite (mordenite)–pore–phenol resin composite and a zeolite–pore–shirasu glass composite were fabricated by hot-pressing. Their thermal conductivities were measured by a laser flash method to determine the thermal conductivity of the monolithic zeolite with the proposed mixing rule. The analysis using composites is useful for a zeolite powder with no sinterability to clarify its thermal properties. At a low porosity <20%, the thermal conductivity of the composite was in excellent agreement with the calculated value for the structure with phenol resin or shirasu glass continuous phase. At a higher porosity above 40%, the measured value approached the calculated value for the structure with pore continuous phase. The thermal conductivity of the monolithic mordenite was evaluated to be 3.63 W/mK and 1.70–2.07 W/mK at room temperature for the zeolite–pore–phenol resin composite and the zeolite–pore–shirasu glass composite, respectively. The analyzed thermal conductivities of monolithic mordenite showed a minimum value of 1.23 W/mK at 400 °C and increased to 2.51 W/mK at 800 °C.
机译:通过热压制备了沸石(丝光沸石)-孔-酚醛树脂复合材料和沸石-孔-shirasu玻璃复合材料。通过激光闪光法测量了它们的热导率,从而根据提出的混合规则确定了整体式沸石的热导率。使用复合材料进行的分析可用于没有烧结性的沸石粉末,以阐明其热性能。在<20%的低孔隙率下,复合材料的导热系数与使用酚醛树脂或shirasu玻璃连续相的结构的计算值非常吻合。在高于40%的较高孔隙率下,测量值接近具有孔连续相的结构的计算值。沸石-孔-酚醛树脂复合材料和沸石-孔-shirasu玻璃复合材料在室温下的整体丝光沸石的热导率分别为3.63 W / mK和1.70-2.07 W / mK。分析的整体丝光沸石的热导率在400°C时的最小值为1.23 W / mK,在800°C时增加至2.51 W / mK。

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