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Sustainable nanocomposites of epoxy and silica xerogel synthesized from corn stalk ash: Enhanced thermal and acoustic insulation performance

机译:由玉米秸秆灰合成的可持续的环氧和二氧化硅干凝胶纳米复合材料:增强的隔热和隔音性能

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摘要

The synthesis of silica xerogel from corn stalk ash in ambient pressure drying was carried out by sol-gel method. With the usage of silica xerogel (0.5, 1.0 and 1.5 wt%) in epoxy resin (ER), silica xerogel/epoxy nanocomposites were successfully prepared. The uniform dispersion of silica xerogel in neat ER was observed except nano composite including 1.5 wt% silica xerogel. The low density nanocomposites showed high thermal stability and low thermal conductivity. The char residue at 600 degrees C and thermal conductivity of nanocomposite including 1.5 wt% silica xerogel were specified as 20.30% and 0.220 W/mK, respectively. The acoustic velocity of the nanocomposites was decreased with increasing amount of silica xerogel. The water sorption of the nano composites was slightly higher than neat ER. The water contact angle of the nanocomposites were between 75 degrees and 70 degrees. The study provided a new thermal and acoustic insulation material instead of expensive and health risk traditional materials.
机译:采用溶胶-凝胶法,由玉米秸秆灰分在常压下合成二氧化硅干凝胶。通过在环氧树脂(ER)中使用二氧化硅干凝胶(0.5、1.0和1.5 wt%),成功制备了二氧化硅干凝胶/环氧树脂纳米复合材料。观察到二氧化硅干凝胶在纯净的ER中的均匀分散,除了包含1.5重量%二氧化硅干凝胶的纳米复合材料。低密度纳米复合材料显示出高的热稳定性和低的热导率。包含1.5重量%的二氧化硅干凝胶的纳米复合材料在600℃下的炭渣和热导率分别规定为20.30%和0.220W / mK。随着二氧化硅干凝胶量的增加,纳米复合材料的声速降低。纳米复合材料的吸水率比纯净ER高。纳米复合材料的水接触角在75度至70度之间。该研究提供了一种新型的隔热隔音材料,代替了昂贵且具有健康风险的传统材料。

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