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首页> 外文期刊>Journal of thermal analysis and calorimetry >The effect of opacifier properties on thermal conductivity of vacuum insulation panel with fumed silica
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The effect of opacifier properties on thermal conductivity of vacuum insulation panel with fumed silica

机译:遮光剂特性对气相二氧化硅真空绝缘板热导率的影响

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The reduction of radiation heat transfer in VIPs is an important issue. In VIPs, the radiation heat transfer is reduced by the use of opacifier. However, the amount of opacifier also significantly affects the cost of VIP. In this study, the effect of different types and sizes of opacifiers on VIP thermal conductivity was investigated. For this purpose, 6 VIP samples containing different opacifiers (SiC, graphite and calcium aluminate in 3 different grain sizes) were produced. Fumed silica, glass fiber and opacifier were used as fillers in VIP cores at 65%, 20% and 15% (by mass), respectively. VIP samples were vacuumed up to 0.1 Pa, and their thermal conductivity coefficients were measured according to TS EN 12667 standard. In addition, transmittance ratios (%T) of fumed silica, glass fiber, opacifiers and core samples were measured by FTIR spectrophotometer and the mass extinction coefficients of each sample were calculated. The silicon carbide (F1000) as the opacifier (e: 399 m(2) kg(-1)) and the graphite-containing core among the VIP core samples (e: 149 m(2) kg(-1)) exhibited the highest mass absorption coefficient. In addition, the thermal conductivity of the core samples without barrier was measured under 1 Pa vacuum and then the radiation conductivities were calculated from the obtained data. F800 type SiC significantly reduced radiation heat transfer, while the solid conduction of the core was increased due to its relatively coarse grain size. VIP sample with SiC (F1200) provided the lowest thermal conductivity at 0.1 Pa (3.94 mW mK(-1)). As a result, F1200 type SiC was found to be the most efficient type of opacifier among the investigated opacifiers.
机译:辐射传热的达官贵人的减少是一个重要的问题。在贵宾,辐射热传递是通过使用遮光剂的减少。然而,遮光剂的量也显著影响VIP的成本。在这项研究中,不同类型和VIP导热系数的遮光剂尺寸的影响进行了研究。为了这个目的,制备含有不同遮光剂(碳化硅,石墨和3种中不同晶粒尺寸的铝酸钙)6个VIP样品。热解法二氧化硅,玻璃纤维和遮光剂分别用作在65%的VIP芯填料,20%和15%(质量)。 VIP样品真空度提高至0.1帕,并根据TS EN 12667标准测定它们的热导率系数。此外,热解法二氧化硅,玻璃纤维,遮光剂和岩心样品的透射率(%T)用FTIR分光光度计测量,并计算每一个样品的质量的消光系数。碳化硅(F1000)作为遮光剂(例如:399米(2)公斤(-1))和VIP芯样品中的含石墨芯(例如:149米(2)公斤(-1))所表现出的最高质量吸收系数。此外,岩心样品的无阻挡的热导率低于1米帕的真空测量,然后辐射电导率从所获得的数据来计算。 F800型SiC显著减少辐射的热传递,而核心的固体传导是由于增加至其相对粗的晶粒尺寸。有SiC的(F1200)VIP样品在0.1Pa提供最低的热导率(3.94毫瓦MK(-1))。其结果是,F1200型SiC被认为是所研究的遮光剂中的最有效类型的遮光剂。

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