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Method and apparatus for supercooling and solidifying substances

机译:用于物质的过冷和固化的方法和设备

摘要

A method and apparatus for preparing and studying samples of materials supercooled and solidified in a containerless, low-gravity environment in bulk form is disclosed which includes an enclosure 10 in which a containerless environment is provided in which a sample specimen 52 is positioned. Method contemplates heating the specimen 52 in the containerless environment, dropping the specimen melt through the tube 12 wherein it cools by radiation, and alternately backfilling the tube 12 with an inert gas whereby the specimen melt cools by both radiation and convection during its free fall. During the free fall, the sample is in a containerless, low-gravity environment which will enhance supercooling in the sample and prevent sedimentation and thermal convection influences. The sample will continue to supercool until nucleation occurs which is detected by silicon photovoltaic detectors. The sample will solidify after nucleation and be completely solid before entering the detachable catcher. The amount of supercooling of the specimen can be measured by knowing the cooling ratio and determining the time for nucleation to occur.
机译:公开了一种用于制备和研究在散装形式的无容器,低重力环境中过冷和固化的材料样品的方法和设备,该方法和设备包括外壳10,在该外壳10中提供了无容器环境,样品样本52被放置在该无容器环境中。该方法考虑了在无容器的环境中加热样品52,将样品熔体滴落到通过辐射冷却的管子12中,并交替地用惰性气体回填管子12,从而在其自由下落期间通过辐射和对流使样品熔体冷却。自由落体期间,样品处于无容器的低重力环境中,这将增强样品的过冷度并防止沉淀和热对流的影响。样品将继续过冷,直到发生成核,该成核被硅光电探测器检测到。样品在成核后将固化,并在进入可拆卸捕集器之前完全固化。样品的过冷量可以通过知道冷却比并确定成核时间来测量。

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