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Viscosity and thermal evolution of density and wetting angle of a commercial glaze by means of hot stage microscopy

机译:通过热阶段显微镜通过热阶段商业釉料密度和润湿角度的粘度和热演变

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In the present work we attempt to describe the results of the thermal behavior analysis of a commercial glaze obtained in a thermal microscope developed by the research group. At the same time, the density and the wetting angle of the glaze with an alumina surface was evaluated. Particularly the sintering temperature, the sphere, semi-sphere and fusion temperatures were also determined. These present characteristic viscosities. Afterward, by means of the de Vogel-Fulcher-Tammann equation, the viscosity as a function of temperature was estimated. In the first part the developed equipment is described together with the image analysis carried out for the in-situ cylindrical samples (2,5 mm of height and diameter). The thermal cycle was up to 1200°C with a heating rate of 5°C/min. The developed equipment presents the following characteristics: some problems with the temperature evaluation, it was slightly affected by air currents and difficulties for achieving an adequate parallelism. On the other hand, the potentialities of the equipment for development and study of the thermal behavior of glasses was established.
机译:在本工作中,我们试图描述在研究组开发的热显微镜中获得的商业釉料的热行为分析的结果。同时,评价釉料与氧化铝表面的密度和润湿角度。特别是烧结温度,也确定了球体,半球和熔融温度。这些目前的特征粘度。之后,借助于De Vogel-Furecher-Tammann方程,估计作为温度函数的粘度。在第一部分中,开发设备与用于原位圆柱形样品(高度和直径的2,5mm)进行的图像分析一起描述。热循环高达1200℃,加热速率为5℃/ min。开发设备提出以下特点:温度评价的一些问题,受到气流的略微影响和实现足够平行的困难。另一方面,建立了对玻璃热行为的发展和研究的潜在能力。

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