#AskGlaston 平板钢化系列 第6期:如何避免钢化过程中的装载延迟?

在 #AskGlaston flat tempering 系列的第六集中,我们将探讨如何避免回火过程中的加载延迟。

当熔炉尚未准备好从装货台接收下一批玻璃时,就会出现装载延迟。这通常是由熔炉内部的温度波动引起的。当温度不一致时,玻璃的加热效果会变得不理想,下一批必须等到条件稳定下来。

格拉司通的轧辊热控制 (RHC) 系统通过直接从滚筒持续测量滚筒温度并自动调整加热以保持最佳水平来应对这一挑战。这可确保整个熔炉的温度更加稳定和均匀,从而使熔炉操作变得更加容易。

除了通过减少表面缺陷和手动调整来提高工艺一致性和玻璃质量外, 轧辊热控制还显著提高了能源效率。通过最大限度地减少温度波动,该系统减少了不必要的再加热和空闲时间,这反过来又降低了总体能耗。更快、更稳定的装料意味着熔炉运行效率更高,等待期间浪费的能量更少。

Roller Heat Control 通过稳定熔炉温度、最大限度地减少加载延迟和优化能源使用来提高回火过程的 效率、质量和能源性能。

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作者简介

Riku Färm

With a background in industrial engineering and management, Riku is Director of Heat Treatment Product Management & Sales Engineering at Glaston. He is keen on working with customers and developing new business- and technology-related things – which makes product management a natural fit for him. In everything Riku does, he aims to ensure that glass processing customers are as successful as possible. This drives Riku and challenges him every day to think about what could be done better. Riku is an e-sports enthusiast. Aside from watching, he also enjoys playing the games that he actively follows.

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