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THE LOW TEMPERATURE PREPARATION OF ULTRA LOW-DENSITY CERAMIC PROPPANTS BY ADDING FLY ASH

机译:掺粉煤灰的低温制备超低密度陶瓷支撑剂

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Ultra low-density mullite-corundum based ceramic proppants were prepared from fly ash, bauxite, manganese dioxide and dolomite through a low temperature sintering method. The bulk density and breakage ratio of the proppants were systematically investigated as functions of the sintering temperature and the fly ash content. The morphology structure and phase composition of the different proppants were investigated by scanning electron microscopy and X-ray diffraction. The proppants were composed of corundum, prismatic mullite and glass phases. The fly ash introduction promoted the formation of prismatic mullite crystals at a lower sintering temperature. As the fly ash content increased, the prismatic mullite phase increased, but the apparent density decreased. The proppants containing 30 wt.% of fly ash and 65 wt.% of alumina sintered at 1200 ?C exhibited an apparent density of 2.47 g/cm3 and a breakage ratio of 8.35% under 35 MPa. Such a low density and sintering temperature, with sufficient crush resistance strength, were due to the structure of the interlocked mullite and corundum phases.
机译:由粉煤灰,铝土矿,二氧化锰和白云石通过低温烧结法制备了超低密度的莫来石-刚玉基陶瓷支撑剂。系统地研究了支撑剂的堆积密度和破损率与烧结温度和粉煤灰含量的关系。通过扫描电子显微镜和X射线衍射研究了不同支撑剂的形态结构和相组成。支撑剂由刚玉,方晶莫来石和玻璃相组成。飞灰的引入促进了在较低的烧结温度下形成棱柱形莫来石晶体。随着粉煤灰含量的增加,方形莫来石相增加,但表观密度降低。在35℃下,在1200℃烧结的含30%(重量)粉煤灰和65%(重量)氧化铝的支撑剂的表观密度为2.47g / cm3,破损率为8.35%。如此低的密度和烧结温度,具有足够的抗压强度,是由于互锁的莫来石相和刚玉相的结构所致。

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