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Electrically conductive gelcast porous alumina sintered under argon atmosphere

机译:氩气氛下烧结的导电凝胶铸造多孔氧化铝

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Electrically conducting porous ceramics have gained a recent surge of interest in the development of high performance radiant heaters for the oxidation of noxious emissions, and others. This paper describes a simple and direct approach for introducing an electrical conductive phase into insulating porous alumina by gelcasting of mechanically foamed slurry, followed by inert sintering. The amount of monomer in the mechanically foamed slurry was varied with sintering in argon atmosphere. The electrical resistivity was measured using the van der Pauw's method. Results showed increasing monomer additions significantly affecting the lowering of electrical resistance, which measured at about 1.15 Ω-cm to 0.32 Ω-cm. The increase in temperature of the sample over increasing current as well as under microwave supported that this material is a potential porous heater in the oxidation of hazardous emissions, and absorber for electromagnetic waves. Further tests were conducted such as X-ray diffraction, TGA, and Ⅰ-Ⅴ plot that were used to describe the electrical conductive behavior of the material.
机译:导电多孔陶瓷在用于辐射有毒物质的氧化的高性能辐射加热器等的发展中,引起了人们的兴趣。本文介绍了一种简单直接的方法,可通过机械发泡浆料的凝胶浇铸,然后进行惰性烧结,将导电相引入绝缘多孔氧化铝中。机械发泡的浆料中单体的量随在氩气气氛中的烧结而变化。电阻率使用范德堡法(van der Pauw)测量。结果表明增加的单体添加量显着影响电阻的降低,电阻的降低在约1.15Ω-cm到0.32Ω-cm处测量。随着电流的增加以及微波的作用,样品温度的升高证明该材料是潜在的多孔加热器,可氧化有害气体,并吸收电磁波。进行了进一步的测试,如X射线衍射,TGA和Ⅰ-Ⅴ图,这些图用来描述材料的导电性能。

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