Continuous light-guide control of melts temperature in induction furnaces

L. Zhukov, D. Petrenko
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Abstract

The article is devoted to the question of the most effective for the full use of the induction furnaces technological flexibility continuous temperature control. The aim of the work is to create a light-guide technology for continuous temperature control of the processes of induction melting, treatment and pouring of liquid metal in metallurgy of machine building. The investigations of crucible and channel, melting, holding and pouring induction furnaces from the standpoint of light-guide thermometry have been developed. Materials, designs, as well as technologies of manufacturing, mounting and safe operation of the light-guide and auxiliary devices have also been investigated. Using the results of complex studies, the base light-guide thermometry system, general and particular methods of the light-guide temperature measurements have been developed. On the base of the Huygens construction, as well as the laws of geometric and crystal optics, techniques for calculation of the optical characteristics of the light-guide and focusing devices, as well as schemes of their optical joint have been developed. These techniques increase the metrological characteristics of the light-guide thermometry. Standard construction of the secondary part of thermometry system requires classical pyrometry methods application. These methods are acceptable for continuously operated metallurgical aggregates, where stable emissivity of the light-guide operating end takes place. The secondary part of thermometry system has been modernized in order to widen application field of light-guide thermometry on periodically operated metallurgical aggregates where emissivity of light-guide immersion end randomly changes. Modernized secondary part is purposed for spectral (multicolor) pyrometry methods realization. These methods minimize influence of the instability of emissivity of light-guide immersion end on methodical errors of temperature measurements. Research and industrial exploitation, at domestic and foreign enterprises, have shown obvious metrological advantages of the light-guide thermometry technology in comparison with known solutions. Implementation of the light-guide thermometry systems on induction furnaces has high technical-economic efficiency, including by reduction the spoilage of metal products and resource costs for production. Keywords: induction furnace, continuous temperature control, light-guide thermometry, amorphous, poly- and single-crystalline materials, measurement error, Huygens construction, technical-economic efficiency.
感应炉熔体温度的连续光导控制
文章主要探讨了如何最有效地充分利用感应炉技术灵活性进行连续温度控制的问题。这项工作的目的是创造一种光导技术,用于机械制造冶金中液态金属感应熔化、处理和浇注过程的连续温度控制。从光导测温的角度对坩埚和槽式感应炉、熔化、保温和浇注进行了研究。此外,还研究了光导和辅助装置的材料、设计以及制造、安装和安全操作技术。利用综合研究的结果,开发了基础光导测温系统、光导测温的一般和特殊方法。在惠更斯结构以及几何和晶体光学定律的基础上,开发了光导和聚焦装置的光学特性计算技术及其光学连接方案。这些技术提高了光导测温仪的计量特性。测温系统二级部分的标准结构要求采用经典的高温测量方法。这些方法适用于连续运行的冶金集料,在这种情况下,光导运行端具有稳定的发射率。为了扩大光导测温法在周期性运行的冶金骨料上的应用范围,对测温系统的辅助部分进行了现代化改造,在这种情况下,光导浸入端的发射率会发生随机变化。现代化的二级部件用于实现光谱(多色)测温方法。这些方法最大限度地减少了光导浸入端发射率不稳定性对温度测量方法误差的影响。国内外企业的研究和工业应用表明,与已知的解决方案相比,光导测温技术具有明显的计量优势。在感应炉上使用光导测温系统具有很高的技术经济效益,包括降低金属产品的损耗和生产的资源成本。关键词:感应炉、连续温度控制、光导测温、非晶、多晶和单晶材料、测量误差、惠更斯结构、技术经济效益。
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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