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Development of the Combinatorial Glass Formation Tester

机译:组合玻璃形成测试仪的研制

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The combinatorial glass formation tester has been developed to determine the glass forming regions as quickly as possible. The 24 glass batches of about 1g were put into each carbon crucible on a carbon holder and heated in an electric furnace filled with dry nitrogen gas. After about a half an hour heating, the crucibles were taken out from the furnace and moved into the cooling chamber purged with dry nitrogen gas. The holder and the crucibles were moved on to a cooling stage to be cooled down quickly with a water flowing jacket together with nitrogen gas blowing. The time interval after taking out of the crucibles till the placement on the cooling stage was shortened as much as possible, resulting to be 10sec. The temperature of the melt in the crucibles was measured with an optical pyrometer to estimate the cooling rate. The top view of the crucibles on the holder was taken with a CCD camera during cooling. The CCD figures were stored on a computer for the judgments of the transparency of the samples in the crucibles to compile a glass forming region. The glass formation tester can manage 24 glass melting tests every 1 hours. In other words, the tester can produce at least 192 glass samples (24 x 8=192) within a day working time. The speed was roughly 100 times larger than the case of manual operation.
机译:已经开发出组合玻璃形成测试仪来尽快确定玻璃形成区域。将24批约1g的玻璃批次放入碳保持器上的每个碳坩埚中,并在充满干燥氮气的电炉中加热。加热约半小时后,将坩埚从炉中取出,移入用干燥氮气吹扫的冷却室中。将保持器和坩埚移至冷却台,并用流动水套和吹入氮气迅速冷却。从坩埚中取出到冷却台放置之间的时间间隔尽可能短,为10秒。用光学高温计测量坩埚中熔体的温度,以估算冷却速率。在冷却过程中,用CCD摄像机拍摄了支架上坩埚的俯视图。将CCD图像存储在计算机上,以判断坩埚中样品的透明度,以汇编出玻璃形成区域。玻璃形成测试仪每1小时可以管理24个玻璃熔化测试。换句话说,测试人员可以在一天的工作时间内生产至少192个玻璃样品(24 x 8 = 192)。速度大约是手动操作速度的100倍。

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