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Recycling of silicon kerf loss derived from diamond-wire saw cutting process to prepare silicon nitride

机译:回收金刚石线锯切割工艺制备的氮化硅引起的硅切口损耗

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In this paper, silicon kerf loss derived from diamond-wire saw cutting process was recycled to synthesize Si3N4 powders and ceramics via the incorporation of carbothermal nitridation and direct nitridation. The effects of sintering temperatures and CaO additives on the nitridation behavior were studied in detail. The results showed that the main impurities were SiC and Si2N2O in Si3N4 powders products, and the content of impurities could be reduced with the increasing of sintering temperatures and CaO additives. In addition, the acceleration mechanisms of sintering temperatures and CaO additives on the nitridation were investigated and proposed by the thermodynamics calculation and density functional theory, respectively. Owing to the acceleration effect of CaO additives on the nitridation, the properties of the obtained Si3N4 ceramics were obviously improved. When the content of CaO additives was 5 wt%, the asprepared Si3N4 ceramic had a bulk density of 2.31 g cm(-3), apparent porosity of 25.42% and a compressive strength of 109 Mpa. In a word, this study presented a feasible approach for recycling silicon kerf loss to fabricate high-value Si3N4 materials, which could be applied to other harmful waste resources. (C) 2019 Elsevier Ltd. All rights reserved.
机译:本文通过结合碳热氮化法和直接氮化法,将金刚石线锯切割工艺产生的硅切口损失回收,以合成Si3N4粉末和陶瓷。详细研究了烧结温度和CaO添加剂对氮化行为的影响。结果表明,Si3N4粉末产品中的主要杂质为SiC和Si2N2O,随着烧结温度和CaO添加剂的增加,杂质含量可以降低。此外,分别通过热力学计算和密度泛函理论研究并提出了烧结温度和CaO添加剂对氮化的促进机理。由于CaO添加剂对氮化的促进作用,所制得的Si 3 N 4陶瓷的性能得到明显改善。当CaO添加剂的含量为5 wt%时,所制备的Si3N4陶瓷的堆积密度为2.31 g cm(-3),表观孔隙率为25.42%,抗压强度为109 Mpa。简而言之,这项研究提出了一种可行的方法来回收硅切口损失,以制造高价值的Si3N4材料,该材料可用于其他有害废物资源。 (C)2019 Elsevier Ltd.保留所有权利。

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