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The Effect of the Conductive Walls of the Melting Tank of an Electric Furnace on the Distribution of Energy Flows
Refractories and Industrial Ceramics ( IF 0.4 ) Pub Date : 2020-09-19 , DOI: 10.1007/s11148-020-00446-8
N. N. Shustrov , V. G. Puzach , S. A. Bezenkov

A method for modeling the electric glass melting process, which allows obtaining information about the commonality of electric and thermal processes occurring in the glass mass inside an electric glass-melting furnace, has been developed. The melting tank of the furnace is made of electrically conductive chromium oxide. The study was performed by way of modeling using an EHDA integrator, which resulted in the construction of two versions of pilot electric furnaces with different orientation of the electric field lines and a pilot-commercial furnace capable of melting 7 t/day of E-glass, widely used in the fiberglass manufacturing.



中文翻译:

电炉熔池导电壁对能量流分布的影响

已经开发出一种用于模拟电玻璃熔化过程的方法,该方法允许获得有关在电玻璃熔化炉内部的玻璃块中发生的电过程和热过程的共性的信息。熔炉的熔池由导电氧化铬制成。这项研究是通过使用EHDA积分器进行建模的方式进行的,结果是构造了两种版本的中试电炉,它们具有不同的电场线方向,以及中型商业熔炉,每天可熔化7吨电子玻璃,广泛用于玻璃纤维制造。

更新日期:2020-09-20
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