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Laboratory furnace for high temperature research

机译:高温研究实验室炉

摘要

The utility model relates to technical physics, namely to the analysis of materials by determining the viscosity, electrical resistance and density of high-temperature metal melts. In this case, flexible hoses of vacuum systems are used, the furnace is filled with helium from a cylinder and water cooling connected to the corresponding highways An electric furnace for laboratory high-temperature studies is shown, which contains water-cooled current leads, a lower flange and a housing, a upper flange with an upper end of an elastic suspension system fixed to it, with a crucible suspended at its lower end, located on the above current leads, lower flange and body fittings connected to one end of the flexible hoses, with The other end of which is connected to the vacuum, gas and water cooling lines, characterized in that the flexible hoses are made of transparent material. In addition, the flexible hoses are mainly made of polyvinyl chloride; In addition, the flexible hoses are made of silicone; In addition, the flexible hoses are reinforced. reducing the effect on the experiment of changes and / or pressure surges in flexible hose connections that are connected to the vacuum, gas and water lines of the electric furnace, In addition, increase aetsya time of maintenance-free operation of water-cooling systems, evacuation and gas filling, and thus stability and reliability of electric furnace operation. Ultimately, the expansion of the functionality of the electric furnace is achieved, an increase in its consistency, reliability and stability, as well as the likelihood of disruption during laboratory work is reduced, a higher level of safety of experiments is ensured. 3 C.p. f-ls, 1 ill.
机译:本实用新型涉及技术物理学,即通过确定高温金属熔体的粘度,电阻和密度来进行材料分析。在这种情况下,使用真空系统的挠性软管,将钢瓶中的氦气填充到熔炉中,并在相应的高速公路上进行水冷。图中显示了用于实验室高温研究的电炉,其中包含水冷电流引线,下部法兰和壳体,上部法兰和固定在其上的弹性悬架系统的上端,坩埚的下端悬挂在上述电流导线上,下部法兰和连接到柔性件一端的主体配件软管的另一端连接到真空,气体和水冷却管线,其特征在于,柔性软管由透明材料制成。另外,挠性软管主要由聚氯乙烯制成。另外,软管由硅树脂制成。此外,软管还经过了加固。减少连接到电炉真空,气体和水管线的软管连接的变化和/或压力波动对实验的影响,此外,延长了水冷系统免维护运行的时间,疏散和注气,从而提高电炉运行的稳定性和可靠性。最终,实现了电炉功能的扩展,提高了电炉的一致性,可靠性和稳定性,并减少了实验室工作期间发生中断的可能性,从而确保了更高的实验安全性。 3 C.p. f-ls,1病。

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