Fedchak James A, Scherschligt Julia, Barker Daniel, Eckel Stephen, Farrell Alex P, Sefa Makfir
National Institute of Standards and Technology, Gaithersburg, MD 20899.
J Vac Sci Technol A. 2018 Mar;36(2). doi: 10.1116/1.5016181.
Ultra-high vacuum systems must often be constructed of materials with ultra-low outgassing rates to achieve pressure of 10 Pa and below. Any component placed into the ultra-high vacuum system must also be constructed of materials with ultra-low outgassing rates. Baking stainless steel vacuum components to a temperature range of 400 °C to 450 °C while under vacuum is an effective method to reduce the outgassing rate of vacuum components for use in ultra-high vacuum systems. The design, construction, and operation of a vacuum furnace capable of baking vacuum components to a temperature of 450° C while maintaining a pressure of 10 Pa or lower is described. The furnace has been used for extended bakes at 450 °C while maintaining pressures below 10 Pa. As an example, we obtained an outgassing rate of 1.2 × 10 Pa L s for a gate valve baked for 20 days at a temperature of 420 °C.
超高真空系统通常必须由具有超低出气率的材料构建,以达到10帕及以下的压力。放入超高真空系统的任何部件也必须由具有超低出气率的材料制成。在真空状态下将不锈钢真空部件烘烤到400°C至450°C的温度范围是降低用于超高真空系统的真空部件出气率的有效方法。本文描述了一种真空炉的设计、构造和操作,该真空炉能够将真空部件烘烤到450°C的温度,同时保持10帕或更低的压力。该炉已用于在450°C下长时间烘烤,同时保持压力低于10帕。例如,我们在420°C的温度下对一个闸阀烘烤20天,得到的出气率为1.2×10⁻⁶ 帕·升/秒。