低温泵的冷源是小型气体制冷机。
The mini-refrigerator is used as the condensation source of the modem cryopump.
制冷机低温泵的冷源是小型制冷机。
The condensation source of the modern cryopump is a mini refrigerator.
气体捕集泵包括:吸附泵和低温泵等。
Trapping gas pump include: adsorption pumps and low-temperature pumps.
本文叙述了低温泵在超导磁镜装置中的应用。
In this paper, a cryopump applyed to the superconducting magnetic mirror machine is described.
目前已完成低温泵的中试生产,开始批量生产。
At present, the pilot production of cryopump has been finished, the batch production will begin soon.
该机抽气系统由低温泵、扩散泵和机械泵组成。
The device is equipped with a cryogenic pump, an oil diffusion pump and a mechanical pump.
分析了液氦低温板的凝结层对低温泵性能的影响。
The effects of the condensing layer of the cryopanel on the cryopump capabilities were analyzed.
减小低温板的辐射热负荷是低温泵设计中的关键问题。
To decrease the radiation heat load of the cryopanel is considered to be necessary for the design of cryopumps.
并为以后开发更大抽速的低温泵及相关应用积累了丰富的物理参数和经验。
Physical parameters and experience were obtained which is very useful in developing even larger cryopump.
通过对低温泵的真空度及其抽速与液氦低温板温度的关系进行模拟,验证了真空系统设计的合理性。
By simulating the temperature of the cryopanel and the relation between the pressure and pumping gas speed of the cryopump, it was verified the vacuum system design was rational.
本文着重讨论了制冷机负载特性的变化对现代低温泵的抽速、极限压强、抽气容量等抽气特性的影响。
This paper emphatically discussed about the effects of change of the refrigerator load on pumping speed, limiting pressure, pumping capability etc.
小型全封闭式氦气压缩机是G-M制冷机的配套设备,广泛应用于空间环模设备、真空低温泵、真空镀膜等。
Small totally enclosed helium compressor is a componend equipment of G-M refrigerator. It is widely used in space environment simulation equipments, vacuum cryopump and vacuum coating equipments etc.
通过研究表明对大多数工艺,低温泵第一级控温在65K—100K比较合适,此时第二级处于12K—15K左右,处于低温吸附氢气和氦气的最佳范围内。
The study show to most of the technics Tl will be set in 65K-100K, then T2 will be in 12K-15K, it is a good temperature to cryo-adsorb Hydrogen, Helium.
通过研究表明对大多数工艺,低温泵第一级控温在65K—100K比较合适,此时第二级处于12K—15K左右,处于低温吸附氢气和氦气的最佳范围内。
The study show to most of the technics Tl will be set in 65K-100K, then T2 will be in 12K-15K, it is a good temperature to cryo-adsorb Hydrogen, Helium.
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