真空室

zhēn kōnɡ shì
  • vacuum chamber
真空室真空室
  1. 原RH真空室烘烤装置升降小车采用齿轮齿条传动方式或链轮链条传动方式,都曾多次发生事故,改用液压推杆&链条传动方式后使用效果很好。

    Many accidents occur on the original rise-fall vehicles of the roast device in RH vacuum chamber , these vehicles used gear-rack drive or sprocket-chain drive . But better effect can be brought by using hydraulic rod-chain drive .

  2. 对于等离子体浸没离子注入(PIII)技术,球形靶鞘层尺度预测对真空室设计、批量处理研究等是十分有用的。

    It is of great practical importance to predict the sheath evolution during plasma immersion ion implantation ( PIII ) of spherical targets in order to properly design the vacuum chamber and treatment processes .

  3. EAST超导托卡马克真空室烘烤系统设计

    Design of Baking System for EAST Vacuum Vessel

  4. RF高屏蔽波纹管真空室的设计与研究

    Mechanical Design and Radio Frequency Shielding of Vacuum Chamber with Bellows

  5. RH真空室烘烤装置的改进

    Improvement of the Roast Device in RH Vacuum Chamber

  6. RH真空室插入管喷补车结构与性能分析

    Structure and character analysis of spray-repair vehicles used in the snorkel of RH vacuum chamber

  7. 合肥光源BPM真空室位移监测系统

    BPM chamber displacement monitor in Hefei light source

  8. RH真空室熔池和钢包内钢液整体流场的数学模拟

    Mathematical Simulation for the Flow Field of Liquid Steel in the Vacuum Chamber of RH and Ladle during RH-Degassing

  9. ITER真空室中子屏蔽组件的结构动力学有限元分析

    Structure dynamic analysis of neutron shielding component for ITER vacuum vessel

  10. ITER导体检漏真空室的设计与优化

    Design and optimization of vacuum chamber for leak detection of ITER conductor

  11. KTB氧枪位置对RH真空室气体流动的影响

    Influence of KTB place on gas flow field in RH vacuum chamber

  12. 国际热核实验反应堆(ITER)真空室的设计介绍

    Iter ( International Thermonuclear Experimental Reactor ) - feat vacuum vessel design presentation

  13. 真空室在初次抽空中就获得了7.5×10~(-6)Pa真空度,达到了原设计要求。

    A pressure of 8.10 ~ ( - 6 ) Pa in the vacuum chamber was obtained during the first evacuation in September of 1986 .

  14. ITER真空室中子屏蔽设计

    Design of ITER vacuum vessel neutron shielding structure

  15. HT-7U超导托卡马克装置真空室结构数值分析

    Numerical structure analysis for the vacuum vessel of HT-7U Superconducting Tokamak device

  16. HT-7U放电真空室支撑结构的设计和应力分析

    Design and stress analysis of supporting structure of HT-7U discharging vacuum chamber

  17. HT-7U真空室在纵场失超情况下的力学性能分析

    Structure Analysis for the HT-7U Vacuum Vessel during Quench of Toroidal Field

  18. HL-2A偏滤器托卡马克真空室的预装

    Vacuum Vessel Preassembly of the HL-2A Divertor Tokamak

  19. HT-7U真空室抽气窗口设计

    Design of vacuum vessel pumping system in HT-7U device

  20. HL-1M装置真空室硅化的研究

    Study of vacuum wall siliconization in the HL-1M Tokamak

  21. HL-2A装置真空室总体检漏

    Overall leak detection for HL-2A vacuum installation

  22. HT-7U超导托卡马克真空室的结构设计

    Design Of The HT-7U Superconducting Tokamak Vacuum Vessel

  23. HT-7U真空室支撑结构的数值模拟与实验研究

    Numerical simulation and experimental research for the vacuum vessel support system of HT-7U Superconducting Tokamak

  24. 依据ITER真空室物理学计算结果,确定了屏蔽区域屏蔽材料的填充率。

    Filling ratios of shielding materials between VV shells were acquired according to ITER VV physics calculation results .

  25. EAST真空室作为超高真空压力容器是EAST超导托卡马克核聚变实验装置的关键部件之一,是等离子体放电的直接场所,其获得的真空度质量直接影响装置运行时等离子体的各项基本物理参数。

    The vacuum vessel as an ultrahigh vacuum pressure vessel is one of the important components of the EAST device , providing high quality vacuum conditions for the plasma discharge , which will affect greatly all kinds of plasma parameter .

  26. 实验表明,类似HL-1M托卡马克装置的真空室,经过烘烤、Taylor放电和DC放电清洗后,有可能得到高品质的等离子体。

    It is believed that after a period of DC glow discharge cleaning subsequent to baking and Taylor discharges , a plasma of good quality can be obtained in a tokamak like HL 1M .

  27. 用俄歇电子能谱(AES)研究高真空室中纯铁和多能量叠加注碳纯铁表面与氧气吸附及初始氧化过程。

    The initial oxidation of pure iron and implanted samples which were overlapped energy ion – implanted with C ions was studied by auger electron spectroscopy ( AES ) .

  28. 主要内容是VUV激发光源的选择、真空室的设计、以及系统可行性的评估和系统性能的验证。

    The selection of VUV light source , the design of vacuum chamber , and the evaluation and demonstration of system properties are described in details .

  29. ITER真空室中子屏蔽主要是屏蔽中子流、伽马射线以及降低环向场波纹度。

    Neutron shielding structure of the ITER vacuum vessel ( VV ) will be applied to shielding neutron and gamma-ray and reducing the toroidal field ripple .

  30. HL-2M真空室截面形式及重力支撑的初步分析

    Preliminary analysis for gravity support and vacuum vessel of different cross-sections on HL-2M tokamak