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Modeling of humidity-related reliability in enclosures with electronics

机译:电子设备外壳湿度相关可靠性建模

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Reliability of electronics that operate outdoor is strongly affected by environmental factors such as temperature and humidity. Fluctuations of these parameters can lead to water condensation inside enclosures. Therefore, modelling of humidity distribution in a container with air and freely exposed water is of importance for reliability engineering. Reliability assessment of large complex systems is often done by dividing the complex into decoupled subsystems. The reliability of such system is then obtained by combining the reliability of each subsystem. In this paper we set up a framework to predict humidity-related reliability of a printed circuit board (PCB) located in a cabinet by combining structural reliability methods and non-linear diffusion models. This framework can, thus, be used for reliability prediction from a climatic point-of-view. The proposed numerical approach is then tested to estimate the reliability of a case example with liquid water at the bottom of a cabinet and PCB positioned on one of the walls. The water vapor profile inside the enclosure is calculated using a diffusion equation whereas the release of vapor from the water surface is modeled using statistical rate theory. The novelty in this work lies within the reliability prediction based on physical modeling of the climate in the system of interest.
机译:操作室外的电子设备的可靠性受温度和湿度等环境因素的强烈影响。这些参数的波动可能导致内部内部的水冷凝。因此,具有空气和自由暴露水的容器中湿度分布的建模对于可靠性工程是重要的。大型复杂系统的可靠性评估通常通过将复杂分为解耦的子系统来完成。然后通过组合每个子系统的可靠性来获得这种系统的可靠性。在本文中,我们通过组合结构可靠性方法和非线性扩散模型来设置一个框架,以预测位于机柜中的印刷电路板(PCB)的湿度相关的可靠性。因此,该框架可以用于来自气候的视图的可靠性预测。然后测试所提出的数值方法以估计壳体底部的液体水和位于其中一个壁上的PCB的液体水的可靠性。使用扩散方程计算外壳内的水蒸汽曲线,而来自水表面的蒸汽的释放使用统计速率理论进行建模。这项工作的新颖性在于基于感兴趣系统气候的物理建模的可靠性预测。

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