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Leak-Rate-Quantification Method for Gas Pressure Seals with Controlled Pressure Differential

机译:控制压差的气压密封件泄漏率定量化方法

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An enhancement to the pressure-decay leak-rate method with mass-point analysis solved deficiencies with the standard method. By adding a control system, a constant gas pressure differential across the test article was maintained. As a result, the desired pressure condition was met at the onset of the test, and the mass leak rate and measurement uncertainty were computed in real time. Data acquisition and control systems were programmed to automatically end the test when specified criteria were met. Typically, the test was stopped when a specified level of measurement uncertainty was attained. Using silicone O-ring test articles, the enhanced method was compared with the standard method that permitted the downstream pressure to be nonconstant atmospheric pressure. Two example cases were presented: one case had a low leak rate, whereas the second leak rate was three orders of magnitude higher. The two methods recorded comparable leak rates, but the enhanced method resulted in significantly lower measurement uncertainty, statistical variance, and test duration. Utilizing this enhancement in leak-rate quantification, projects will realize reduced cost and schedule, improved test results, and easier interpretation between data sets.
机译:通过质点分析增强了压力衰减泄漏率方法,从而解决了标准方法的不足。通过添加控制系统,可以维持整个测试物品的恒定气压差。结果,在测试开始时就满足了所需的压力条件,并且实时计算了质量泄漏率和测量不确定度。数据采集​​和控制系统经过编程,可以在满足指定条件时自动结束测试。通常,当达到指定的测量不确定度水平时,停止测试。使用有机硅O形圈测试制品,将增强方法与允许下游压力为非恒定大气压的标准方法进行了比较。提出了两个示例案例:一个案例的泄漏率低,而第二个案例的泄漏率高了三个数量级。两种方法记录的泄漏率相当,但是增强方法导致测量不确定度,统计差异和测试持续时间大大降低。利用泄漏率量化的这种增强,项目将实现成本和进度的降低,测试结果得到改善,并且数据集之间的解释更加容易。

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