Induction melting of aluminium oxide in the cold crucible

D. Rot, J. Kožený, S. Jiřinec, J. Jiřinec, Antonin Podhrazky, I. Poznyak
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引用次数: 12

Abstract

This article deals with the process of the experimental induction melting of aluminium oxide in so called cold crucible (CC). The experiment took place in a couple of steps, that were needed for a successful realisation of the melting. The first step was the designing of suitable parameters of the cold crucible regarding the depth of penetration of the eddy currents into the melted aluminium oxide and the output power of the high frequency generator for melting in the cold crucible. The process of the experiment itself then consisted in the preparation of cold crucible for melting. The overheating of the starting material to the melting point of the load. The melting of the load. The endurance of the load in steady-state at a constant temperature. The controlled cooling of the load. The removal of the ingot of aluminium oxide from the cold crucible. The article is dedicated to the process of the experiment with respect to the development of the heating losses considering the input power during the melting process in the whole induction system.
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氧化铝在冷坩埚中的感应熔化
本文研究了氧化铝在冷坩埚中感应熔炼的实验过程。实验分几个步骤进行,这是成功实现融化所必需的。第一步是设计合适的冷坩埚参数,包括涡流对熔化铝的穿透深度和冷坩埚中熔化高频发生器的输出功率。实验本身的过程就是准备熔化用的冷坩埚。起始材料过热到负载的熔点。负载的熔化。负载在恒定温度下处于稳态时的持久力。负载的受控冷却。从冷坩埚中取出氧化铝锭。本文介绍了整个感应系统在熔炼过程中考虑输入功率的热损失发展的实验过程。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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