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Comparison of measured leak rates and calculation values for sealing packages

机译:密封包的测量泄漏速率和计算值的比较

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It is often necessary to calculate a leak rate from the size of leak hole and vice versa for testing of sealing packages such as foods, medicines and dangerous goods. These calculations are actually rather complicated because the characteristics of the gas flow through the leak hole change depending on the pressure, the gas species, the temperature and the diameter d and length l of the leak hole. In this study, the air flow rate through 12 flow channels with the inner diameter of 5-50 mu m and the l/d ratio of 0.72-260 were measured by a pressure change method and compared with the predictions of the equations governing laminar, turbulent, compressible and molecular flow, as well as those of a developed combined governing equation (modified Knudsen equation). The modified Knudsen equation provided good agreement within 20% over the entire range of experimental conditions, including the transition region between laminar and compressible flow.
机译:通常需要从泄漏孔的尺寸计算泄漏率,反之亦然,以测试食品,药物和危险品等密封包装。 这些计算实际上是相当复杂的,因为气体流过泄漏孔的特性根据压力,气体物种,温度和直径D和泄漏孔的长度L而变化。 在该研究中,通过压力变化方法测量通过12个内径为5-50μmM和0.72-260的L / D比的流动速率通过120μm和0.72-260的L / D比。 湍流,可压缩和分子流动,以及开发的组合式方程(改进的Chaudsen方程)。 改进的Knudsen方程在整个实验条件范围内提供了良好的同意,包括层流和可压缩流程之间的过渡区域。

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