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Characterization of wall conditions in Uragan-2M stellarator using stainless steel thermal desorption probe

机译:使用不锈钢热脱附探针表征Uragan-2M恒星分离器的壁条件

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The method and device have been developed and used for operative estimation of impurity level, outgassing rate and molecular layers number on high vacuum chamber surfaces of magnetic confinement fusion devicesin situ. The method is based on the thermal desorption of gases into a vacuum vessel from the surface of a special metal probe during its heating up to temperature of 300 °C. To investigate and use this method, the probe was designed, manufactured and installed into the vacuum vessel of the Uragan-2 M stellarator. The technique was tested after applying VHF/RF cleaning discharges in different scenarios. A decrease of the released gas amount from the surface by more than one order of magnitude was recorded. The mass-spectrometer registered the atomic masses 18 u (H2O), 28 u (CO + N2) and 44 u (CO2), as the main gases desorbed from the probe surface during its heating. Heavy hydrocarbon masses (mainly 58 u) were also registered. The method had also been tested in the regime of hydrogen gas retained in the wall.
机译:已经开发了该方法和装置,并用于对磁约束聚变装置的高真空室表面上的杂质水平,脱气率和分子层数进行操作性估计。该方法基于气体在加热到300°C的过程中从特殊金属探针的表面热解吸到真空容器中。为了研究和使用这种方法,将探头设计,制造并安装到Uragan-2 M恒星发生器的真空容器中。在不同情况下应用VHF / RF清洁放电后,对该技术进行了测试。记录到从表面释放的气体量减少了一个数量级以上。质谱仪记录了原子质量18 u(H2O),28 u(CO3 + N2)和44 u(CO2),作为在加热过程中从探头表面解吸的主要气体。重烃(主要为58 hydrocarbonu)也被记录下来。还已经在壁中保留的氢气中测试了该方法。

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