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RESEARCH ON SEALING STRUCTURE AND GROUND TEST OF LUNAR SAMPLE RETURN DEVICES

机译:月球样品返回装置密封结构及地面测试研究

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This article is in the background of lunar exploration program, which requires unmanned operation in the environment of ultra high vacuum, extreme temperature, strong radiation and lunar dust. Seal reliability of lunar sample return devices should be guaranteed as well. Principal prototype devices of explosive welding seal and brazing seal are analyzed separately when applied to lunar program, both of their advantages and disadvantages are indicated, and improved schemes are given as well. Besides, a redundant seal combined with o type rubber ring and knife edge indium alloy is put forward, to validate its reliability, a mathematical model based on Roth theory has been developed to describe sealing mechanism and predict the variable leakage, and the ground tests on leak detection for rubber seal and knife edge seal have been set up separately through helium mass spectrometer. According to the test results, nitrile rubber is proved to be better because of its resilience in alternative temperature, lower leakage and permeation. The knife edge indium seal has lower leak rate, and the welding joint quality of indium alloy itself can be guaranteed as well. The redundant seal is considered to have preliminary feasibility while the test environment for leak detection is required to simulate lunar surface still further.
机译:本文是在月球勘探计划的背景下,需要在超高真空,极端温度,强烈辐射和月球尘埃的环境中无人驾驶。应保证月样返回设备的密封可靠性。在应用于月球程序时分别分析爆炸焊接密封和钎焊密封的主要原型装置,其两者的优点和缺点都被指示,也给出了改进的方案。此外,提出了一种冗余密封与O型橡胶环和刀刃铟合金,以验证其可靠性,基于罗斯理论的数学模型已经开发出描述密封机构并预测变量泄漏,以及地面测试通过氦质谱仪分别设置橡胶密封和刀刃密封件的泄漏检测。根据试验结果,证明丁腈橡胶是更好的,因为它在替代温度下的弹性,较低泄漏和渗透率。刀刃铟密封率较低,铟合金本身的焊接接头质量也可以得到保证。冗余密封被认为具有初步可行性,而泄漏检测的测试环境仍然需要进一步模拟月球表面。

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