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Corrosion in a closed-loop electronic device cooling system with water as coolant and its detection

机译:以水为冷却剂的闭环电子设备冷却系统中的腐蚀及其检测

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This paper presents highlights of an investigation to develop methods of monitoring corrosion risk of a waterbased, closed-loop cooling system and also to identify the mechanism of reliability threats by corrosion. The current investigation finds that an array of multiple, in-line sensors is necessary to track the change in stability of the cooling system against corrosion. The coolant pressure and the flow-rate sensors are necessary to detect clogging resulting from scale deposition. On the other hand, pH and electrical conductivity sensors are needed to measure the cumulative corrosion activity. It is further found that the corrosion activity is alarmingly high in a closed-loop cooling system with a high Cu surface area relative to the coolant volume. Slowly developing failure both by flow blockage and a localized corrosion within a cold plate is observed. The rate of failure is seen to be fastest, when the starting coolant is untreated, while it decreases with deionization and inhibition treatment of water.
机译:本文提出了研究的重点,以开发监测水基闭环冷却系统腐蚀风险的方法,并确定腐蚀引起的可靠性威胁的机理。当前的调查发现,必须有多个串联的传感器来跟踪冷却系统抗腐蚀稳定性的变化。冷却剂压力和流量传感器对于检测由水垢沉积引起的堵塞是必不可少的。另一方面,需要pH和电导率传感器来测量累积的腐蚀活性。进一步发现,在具有相对于冷却剂体积的高Cu表面积的闭环冷却系统中,腐蚀活性惊人地高。观察到由于流动阻塞和冷板内局部腐蚀而导致的缓慢发展故障。如果不对起始冷却液进行处理,则故障率最高,而随着去离子和水的抑制处理,故障率降低。

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