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首页> 外文期刊>Proceedings of the Society for Experimental Mechanics >Combined Temperature and Deformation Measurement During Glass Forming in a Real Scale Setup
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Combined Temperature and Deformation Measurement During Glass Forming in a Real Scale Setup

机译:结合温度和变形测量设置在玻璃形成一个真正的规模

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摘要

An experimental setup has been built and instrumented with non intrusive measurement methods aiming at measuring temperature fields and deformations of a sodalime-silica glass piece during thermoforming process. A real scale furnace has been used and a realistic thermal load case applied. Infrared measurements based on the Christiansen effect have been performed on the present glass sample, providing the temperature distribution on the sample surface through IR images at 7.8 μm. Piece deformation has been registered simultaneously, using a DIC (Digital Image Correlation) technique combined with a fringe projection method. Results have been analysed in a combined manner, showing a non symmetrical deformation despite a quite homogeneous thermal field, which could be explained by mould/glass contact problems. The non intrusive measurement technique has been proven to be relevant for a possible control of the thermal environment of the piece during the thermoforming process. Further tests should be carried out on a wide range of shapes and glass types.
机译:一个实验是建立和设置与非侵入测量仪器针对测量温度场的方法和一块sodalime-silica玻璃变形在热成型过程。炉已经使用和一个现实的热负载情况下应用。克里斯琴森效应一直在进行现在的玻璃样品,提供在样品表面温度分布通过红外图像为7.8μm。同时已经注册,使用DIC吗(数字图像相关)技术的总和条纹投影法。分析相结合的方式,显示一个非尽管很对称变形均匀的温度场,可以用模具/玻璃接触问题来解释。非侵入性的测量技术被证明是可能的控制有关的热环境中热成型过程。进行广泛的形状和玻璃类型。

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