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Optimization of the contents of hollow glass microsphere and sodium hexametaphosphate for glass fiber vacuum insulation panel

机译:玻璃纤维真空绝缘板中空玻璃微球和六偏磷酸钠含量的优化

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In this paper, various additive amounts of hollow glass microspheres (HGMs) and sodium hexametaphosphate (SHMP) powders were blended with flame attenuated glass wool (FAGW) to form hybrid core materials (HCMs) through the wet method. Among them, the SHMP was dissolved in the glass fiber suspension and coated on the surface of glass fibers while the HGMs were insoluble in the glass fiber suspension and filled in the fiber-fiber pores. The average pore diameter of the FAGW/HGM HCMs was 8-11 μm which was near the same as that of flame attenuated glass fiber mats (FAGMs, i.e., 10.5 μm). The tensile strength of the SHMP coated FAGMs was enhanced from 160 N/m to 370 N/m when SHMP content increased from 0 wt.% to 0.2 wt.%. By contrast, the tensile strength of the FAGW/HGM HCMs decreased from 160 N/m to 40 N/m when HGM content increased from 0 wt.% to 50 wt.%. Both the FAGW/HGM HCMs and SHMP coated FAGMs were vacuumed completely to form vacuum insulation panels (VIPs). The results showed that both the addition of SHMP and HGM led a slight increase in the thermal conductivity of the corresponding VIPs. To obtain a high-quality VIP, the optimal SHMP content and HGM content in glass fiber suspension was 0.12-0.2 wt.% and 0 wt.%.
机译:在本文中,将各种添加量的中空玻璃微球(HGMS)和六偏磷酸钠(SHMP)粉末与火焰减弱玻璃棉(FAGW)混合,通过湿法形成杂化芯材料(HCM)。其中,将SHMP溶解在玻璃纤维悬浮液中并涂覆在玻璃纤维表面上,同时HGMS不溶于玻璃纤维悬浮液并填充在纤维纤维孔中。 FAGW / HGM HCM的平均孔径为8-11μm,其与火焰减弱玻璃纤维垫(Fagms,10.5μm)的相同。当SHMP含量从0重量%增加至0.2重量%时,SHMP涂覆的Fagms的拉伸强度从160n / m至370n / m增强。%。%。相反,当HGM含量从0重量%增加到50重量%至50重量%时,FagW / Hgm HCM的拉伸强度从160n / m至40 n / m降低。%。 FAGW / HGM HCM和SHMP涂层FGMS都完全吸尘以形成真空绝缘板(贵宾)。结果表明,SHMP和HGM的添加均导致相应的贵宾的导热率略有增加。为了获得高质量的VIP,玻璃纤维悬浮液中最佳的SHMP含量和HGM含量为0.12-0.2重量%和0重量%。

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