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首页> 外文期刊>Science of advanced materials >Preparation of Expanded Graphite and Fly Ash Base High Temperature Compound Phase Transition Heat Absorption Material and Its Application in Building Temperature Regulation
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Preparation of Expanded Graphite and Fly Ash Base High Temperature Compound Phase Transition Heat Absorption Material and Its Application in Building Temperature Regulation

机译:膨胀石墨和粉煤灰碱基高温复合相变热吸收材料的制备及其在建筑温度调节中的应用

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In this study, the product substance was pretreated with coal excrement as a raw product substance. Taking expanded graphite and paraffin as phase change product substances, expanded graphite and paraffin or coal excrement base high temperature compound phase transition thermal storage product substance were prepared by mixed sintering method. Firstly, the sintering mechanism of the composite should be deduced. In addition, XRD, TG-DSC and other analytical techniques were used to characterize the morphology and physical character of the product substances. In order to test the temperature regulation ability of the product substance, the composite product substance was fused with cement. The cement block added with composite product substance was taken as the research object, verify the performance of compound phase transition product substance on temperature regulation. In the experimental procedure, when phase change product substances' the proportion was less than 60%, the high temperature compound phase transition thermal storage product substances prepared were well-formed and had good crystallography, and the green body' various tissues were densely distributed. When the paraffin content was above 35 wt%, the external density, compressive strength, and cement blocks' thermal conductivity added with composite product substances increased significantly compared with ordinary expanded perlite cement blocks, which was suitable for building product substances' requirements. When the paraffin content reached 38 wt%, a temperature difference of 19.2 degrees C to 26.1 degrees C appeared in the composite product substance' corresponding cube space, indicating that room temperature can be adjusted by adding a certain phase change product substance.
机译:在这项研究中,用煤炭粪被作为原料产品物质预处理产品物质。通过混合烧结法制备膨胀石墨和石蜡作为相变产物物质,膨胀石墨和石蜡或煤粪碱基高温复合相转变热储存产品物质。首先,应推导复合材料的烧结机制。此外,XRD,TG-DSC和其他分析技术用于表征产品物质的形态和物理特性。为了测试产品物质的温度调节能力,复合产品物质与水泥融合。用复合产品物质添加的水泥嵌段作为研究对象,验证化合物相过转化产品物质对温度调节的性能。在实验程序中,当相变产物物质的比例小于60%时,制备的高温化合物相转变热储存产品物质良好形成并具有良好的晶体学,并且浓密地分布了绿体的各种组织。当石蜡含量高于35wt%时,与普通膨胀的珍珠岩水泥块相比,添加的外部密度,抗压强度和水泥嵌段的导热率显着增加,适用于建立产品物质的要求。当石蜡含量达到38wt%时,复合产品物质的相应立方体空间中出现19.2℃至26.1℃的温度差,表明可以通过添加一定相变产品物质来调节室温。

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