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Tailoring pore structure and properties of waste-derived ceramic foams for lightweight construction

机译:剪裁孔隙结构和储物陶瓷泡沫的特性,用于轻质结构

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Ceramic foams (CFs) are manufactured by recycling granite waste, coal gangue, and cullet. Additionally, SiC powder is used as the foaming agent. The effect of the sintering temperature, the SiC content, and the presence of additives on the pore structure as well as on the physical and mechanical properties of the CFs has been investigated. A close correlation between the sintering temperature and the pore structure of the CFs is observed. The addition of SiC at 0.5 wt% results in a substantial volume expansion of the sample and in the formation of an internal structure with uniform pores and thin pore-walls. CaO and Na2HPO4 additives allow the pores to grow and shrink and increase the uniformity, which then meets different application requirements for insulation, gardening, and in lightweight construction. We believe that the results will generalize the use of mineral waste to manufacture better ceramic products at a lower cost.
机译:陶瓷泡沫(CFS)是通过回收花岗岩废物,煤矸石和CULLL来制造的。 另外,SiC粉末用作发泡剂。 已经研究了烧结温度,SiC含量和添加剂对孔结构的影响以及对CFS的物理和力学性质的影响。 观察烧结温度与CFS的孔结构之间的紧密相关性。 在0.5wt%时加入SiC导致样品的大量膨胀和形成具有均匀孔和薄孔壁的内部结构。 CaO和Na2HPO4添加剂允许毛孔生长和收缩并增加均匀性,然后符合绝缘,园艺和轻质结构的不同应用要求。 我们认为,结果将概括使用矿物废物以较低的成本制造更好的陶瓷产品。

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    《RSC Advances 》 |2019年第62期| 共8页
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  • 正文语种 eng
  • 中图分类 化学 ;
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