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Preparation, Microstructure, and Mechanical Properties of Spinel-Corundum-Sialon Composite Materials from Waste Fly Ash and Aluminum Dross

机译:废粉煤灰和铝渣制备尖晶石-刚玉-赛隆复合材料的制备,微观结构和力学性能

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The solid wastes fly ash and aluminum dross were used to prepare the low cost, high added-value product spinel-corundum-Sialon with anin situaluminothermic reduction-nitridation reaction. The effects of varying raw material components and heating temperatures on the phase compositions, microstructure, bulk density, apparent porosity, and bending strength of products were investigated. The presence of hazardous or impure elements in the products was also evaluated. The sintered materials mainly consisted of micro-anosized plate corundum, octahedral spinel, and hexagonal columnarβ-Sialon. The bulk density and bending strength of product samples initially increased and then decreased as Al content increased. Product samples with an Al content exceeding 10 mass% that were sintered at 1450°C exhibited the highest bending strength (288 MPa), the lowest apparent porosity (1.24%), and extremely low linear shrinkage (0.67%). The main impurity present was Fe5Si3with hazardous elements P, Cr, Mn, and Ni doping. This work could provide a new method to reduce environmental pollution and manufacture low cost high performance refractory materials using the abundant waste materials fly ash and aluminum dross.
机译:利用固废粉煤灰和铝渣制备了低成本,高附加值的尖晶石-刚玉-Sialon产品,并进行了亚锡热还原-氮化反应。研究了原料成分和加热温度的变化对相组成,微观结构,堆积密度,表观孔隙率和产品弯曲强度的影响。还评估了产品中有害或不纯元素的存在。烧结材料主要由微米级/纳米级的刚玉,八面体尖晶石和六方柱状β-Sialon组成。产品样品的堆积密度和弯曲强度最初随着Al含量的增加而增加,然后降低。在1450℃下烧结的Al含量超过10质量%的产品样品表现出最高的弯曲强度(288 MPa),最低的表观孔隙率(1.24%)和极低的线性收缩率(0.67%)。存在的主要杂质是Fe5Si3,其中有害元素P,Cr,Mn和Ni掺杂。这项工作可以提供一种新的方法,以减少环境污染,并利用丰富的废料粉煤灰和铝渣制造低成本的高性能耐火材料。

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