Vacuum holding research for a high power microwave source
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摘要: 针对一种陶瓷真空界面、天鹅绒阴极和不锈钢外壳的无氧铜压封高功率微波管,利用真空设计软件VacTran建立了系统抽气模型,模拟了真空室主要材料放气率和抽气曲线;通过吸气剂简单吸气模型,对保真空过程中吸气剂的吸气行为进行了模拟。实验对比了高功率微波管真空室在常温和烘烤状态下抽真空至10-4 Pa量级所需的时间。在真空度满足要求后,采用非蒸散型吸气剂(NEG)作为吸气泵进行保真空实验,静态下保真空超过30 d后,真空度仍维持在210-4 Pa。在此基础上,对保真空状态下的高功率微波管进行加速寿命实验:温度为80 ℃,累计时间超过140 h,真空度仍好于110-2 Pa,据此估计高功率微波管在常温下保持真空度高于110-2 Pa的时间超过1年。Abstract: For a high power microwave source composed of ceramic vacuum interface, velvet cathode and stainless steel shell, which is sealed with knife-edge oxygen free copper gasket seals, the outgassing rates of the major materials and pumping down curves are simulated by the vacuum design software VacTran. The adsorption behavior of non-evaporable getter (NEG) is simulated by using a simple model in the high vacuum maintenance process. Pumping down times to 10-4 Pa in normal temperature and baked state are compared in experiments. NEG is adopted as inspiration pump when the vacuum reaches to the work pressure. The experimental results show that the pressure is still kept at 210-4 Pa after 30-day high vacuum maintenance. The accelerated life test of the high power microwave tube is done under the temperature of 80 ℃ for more than 140 hours, the pressure in the high power microwave tube is still lower than 110-2 Pa. Accordingly, the vacuum holding life lower than 110-2 Pa at room temperature is estimated more than one year.
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