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低温下由废铝箔制备的纳米氧化铝粉末/陶瓷及其在各种工业中的应用。

Nano-alumina powders/ceramics derived from aluminum foil waste at low temperature for various industrial applications.

作者信息

El-Amir Ahmed A M, Ewais Emad M M, Abdel-Aziem Ahmed R, Ahmed Adel, El-Anadouli Bahgat E H

机构信息

Refractory & Ceramic Materials Division (RCMD), Central Metallurgical R&D Institute (CMRDI), P.O. Box 87, Helwan, 11421 Cairo, Egypt.

Refractory & Ceramic Materials Division (RCMD), Central Metallurgical R&D Institute (CMRDI), P.O. Box 87, Helwan, 11421 Cairo, Egypt.

出版信息

J Environ Manage. 2016 Dec 1;183:121-125. doi: 10.1016/j.jenvman.2016.08.072. Epub 2016 Aug 31.

Abstract

In this work, nanoscale single crystalline γ- and α-alumina powders have been successfully prepared from aluminum foil waste precursor via co-precipitation method using NH4OH as a precipitant. The obtained gel after co-precipitation treatment, was calcined at different temperatures (500,700, 900, 1050, 1100, 1300 and 1500 °C) and the products were characterized by XRD, FTIR and HRTEM. The results revealed that nano-γ-Al2O3 was fully transformed to nanometer-sized α-Al2O3 (36-200 nm) after annealing at temperatures as low as 1100 °C.The thermally preheated powder at 500 °C was further pressed under 95 MPa by the uniaxial press and the obtained bodies were found to have98.82% of the theoretical density, 1.18% porosity and 708 MPa compressive strength, when sintered at temperatures as low as 1600 °C without using any sintering aid. These excellent results proved that this work will contribute to finding a commercial source for preparing sub 100 nm α-alumina through the secondary resources management and even more so to synthesizing strong α-Al2O3 bodies which are promising in terms of their structure and compression. The α-Al2O3 bodies synthesized by the present work could be used as a feedstock for fabrication of various kinds of functional and structural materials that are extensively used in high tech.

摘要

在本工作中,以废铝箔为前驱体,采用共沉淀法,以NH₄OH为沉淀剂,成功制备了纳米级单晶γ - 和α - 氧化铝粉末。共沉淀处理后得到的凝胶在不同温度(500、700、900、1050、1100、1300和1500℃)下煅烧,产物通过XRD、FTIR和HRTEM进行表征。结果表明,纳米γ - Al₂O₃在低至1100℃的温度下退火后完全转变为纳米尺寸的α - Al₂O₃(36 - 200nm)。在500℃下热预热的粉末通过单轴压力机在95MPa下压制成型,当在低至1600℃的温度下烧结且不使用任何烧结助剂时,所得坯体的理论密度为98.82%,孔隙率为1.18%,抗压强度为708MPa。这些优异的结果证明,这项工作将有助于通过二次资源管理找到制备亚100nmα - 氧化铝的商业来源,更有助于合成在结构和压缩方面具有潜力的高强度α - Al₂O₃坯体。通过本工作合成的α - Al₂O₃坯体可作为原料用于制造广泛应用于高科技领域的各种功能和结构材料。

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