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Thermal optimization of induction-heated pulling-down furnace for quartz glass rod fabrication

机译:石英玻璃棒制造的诱导加热拉下炉热优化

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摘要

Quartz glass rods are widely used in modern industries due to their remarkable properties. In this paper, a systematic study is conducted to analyze the induction-heated pulling-down furnace for quartz glass rod fabrication using simulation methods. The softening zone of quartz glass rod plays a significant role in its quality, which needs proper controlling. Numerical simulations are performed to explore the influences of furnace design, including coil pitch, coil position, length and thickness of the afterheater, and thickness of the bottom insulation, on the softening zone range. In quantitative analysis, the softening zone is described using the length parameters l(1) and l(2) and the relative length l(r). Single-factor analysis reveals that under current study conditions, increasing coil pitch or afterheater thickness is beneficial to the softening zone, while the other three factors exert non-monotonic effects. To identify optimal conditions for quartz glass rod fabrication, an orthogonal test design is employed with a comprehensive consideration of the five aforementioned factors. Based on the results, the influence of afterheater thickness on the softening zone is the most significant, and coil position is the least. An optimal furnace design is proposed that could provide useful insight into the fabrication of high-quality quartz glass rods.
机译:由于其出色的特性,石英玻璃棒广泛用于现代行业。本文采用了系统研究,采用模拟方法分析了石英玻璃棒制造的诱导加热的拉压炉。石英玻璃棒的软化区在其质量上起着重要作用,需要适当的控制。进行了数值模拟以探讨炉子设计的影响,包括线圈间距,线圈位置,长度和厚度的后热器,以及底部绝缘的厚度,在软化区范围内。在定量分析中,使用长度参数L(1)和L(2)和相对长度L(R)描述软化区。单因素分析表明,在目前的研究条件下,增加线圈间距或后料厚度有利于软化区,而另外三种因素施加非单调效应。为了确定石英玻璃棒制造的最佳条件,正常考虑五个上述因素的全面考虑。基于结果,在软化区上的后热器厚度的影响是最重要的,线圈位置最少。提出了一种最佳炉设计,可以提供对高质量石英玻璃棒的制造的有用洞察。

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