等熵压缩装置中氢同位素的冷却和冷凝

G. V. Boriskov, A. Bykov, N. Egorov, V. Pavlov
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引用次数: 2

摘要

开发了一种压缩装置,可以在易压缩的物质中等熵地产生数兆巴压力,并研究其热力学和动力学性质,目前已成功使用。上述物质是:稀有气体和氢的同位素,转化成凝聚的初始状态。该装置采用超高磁场MC-1发生器获得超高压,采用特殊设计的低温恒温器冷却所研究物质并使其向多晶态转变。本文介绍了一种低温装置的设计和工作原理。以氘为例,说明了如何能够描述冷却和结晶过程。室内和现场实验数据的计算结果和分析表明,在冷却时可以得到符合要求尺寸和初始温度的样品,并且密度足够均匀。
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Cooling and Condensation of Hydrogen Isotopes in Isentropic Compression Device
A compression facility that allows isentropically creating multi-megabar pressure in easily compressed substances and studying their thermodynamic and kinetic properties is developed and successfully used nowadays. The mentioned substances are: rare gases and hydrogen isotopes, converted into condensed initial state. An ultra-high magnetic field MC-1 generator is used for ultra-high pressure obtaining on the device, and a cryostat of special design is used for cooling of the studied substance and its transition to a polycrystalline phase. In the paper we present a design and operating principle of the cryogenic device. By the example of deuterium it is shown how it is possible to describe the cooling and crystallization process. Calculation results and analysis of data of laboratory and field experiments show that at cooling it is possible to obtain the samples with the required sizes and initial temperature, and homogeneous enough in density.
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