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Improving the Reliability of the Cooling Enclosure System in a Refrigerator

机译:提高冰箱中冷却外壳系统的可靠性

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Background: Aluminum tubes of a refrigerator evaporator were having pitting problems in the field. A failure analysis was performed using a scanning electron microscopy with energy dispersive x-ray analysis. The root cause of the problematic evaporator tubes was identified as the chlorine in a cotton adhesive tape that was used to fasten the evaporator tube to the inner case. The crevice (or pitting) corrosion mechanism occurred on the evaporator tube surface. Methods: A variety of chemical reactions were analyzed. To reproduce the pitting corrosion on the evaporator tube, a parametric accelerated life testing was performed using a 20% saline solution on the evaporator tube that was wetted in the chlorine water. Results: It showed that the evaporator tube was pitted in a place where the cotton tape was attached. The failure modes and mechanisms validated experimentally were identical to those of the problematic refrigerators in field. To modify the problem with the refrigerator evaporator tube, the cotton tape was changed into a generic transparent tape. Conclusions: The reliability of the new design for the cooling enclosure system pitted in field is now expected to have B1 life of over 10 years.
机译:背景:冰箱蒸发器的铝管在该领域具有点蚀问题。使用具有能量分散X射线分析的扫描电子显微镜进行失效分析。有问题的蒸发管的根本原因被鉴定为棉粘合带中的氯,用于将蒸发器管固定到内壳中。在蒸发器管表面上发生缝隙(或蚀刻)腐蚀机构。方法:分析各种化学反应。为了在蒸发器管上再现蚀腐蚀,使用在氯气中润湿的蒸发器管上的20%盐水溶液进行参数加速寿命测试。结果:它表明,蒸发器管在附着棉带的地方。经过实验验证的故障模式和机制与现场有问题的冰箱的模式相同。要使用冰箱蒸发器管修改问题,棉胶带被改变成通用透明胶带。结论:现场挖掘机系统的新设计的可靠性现在预计将拥有超过10年的B1寿命。

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