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NEW ELECTROCHEMICAL CELL DESIGNS AND TEST METHODS FOR CORROSION TESTING OF THE COMPONENTS IN INTEGRATED CIRCUIT LIQUID COOLING SYSTEMS

机译:集成电路液体冷却系统中部件腐蚀测试的新型电化学电池设计和试验方法

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This paper introduces new electrochemical cells and testing methods that are ideal for characterizing corrosion risk assessment of the components used for liquid cooling system with high surface to liquid volume ratio. Two cell configurations are described in this paper and they use three electrode and two electrode cells. These cells have the identical structure except for the number of electrodes. These cells are made by sandwiching the working electrode plate (sample) and the counter electrode plate (graphite) with a spacer (gasket), and by filling the cavity with the liquid under interest. In case of the three-electrode cell, the reference electrode is inserted through the hole in the graphite. The three-electrode cell is ideal for the quantitative characterization of the corrosion rate by utilizing conventional electrochemical techniques such as a Tafel method. The use of the two-electrode cell is similar to the case of the galvanic corrosion characterization as it measures the cell current that flows between the dissimilar metals that are in contact with the liquid. When coupled with computer assisted data acquisition, the two-electrode cell configuration allows the characterization of long-term corrosion reliability of a component with a variation in a large number of test variables. It is particularly useful in finding corrosion inhibitors.
机译:本文介绍了新的电化学电池和测试方法,是表征用于液体冷却系统的腐蚀风险评估的理想选择,其具有高表面积与液体体积比。本文描述了两个电池配置,并且它们使用三个电极和两个电极电池。这些电池具有除电极数量之外的相同结构。通过将工作电极板(样品)和对电极板(石墨)用间隔物(垫圈)夹在一起,并通过利用液体填充腔的液体来制造这些细胞。在三电极电池的情况下,参比电极通过石墨中的孔插入。通过利用诸如Tafel方法的传统电化学技术,三电极电池是定量表征腐蚀速率的理想选择。使用双电极电池的使用类似于电抗腐蚀表征的情况,因为它测量与液体接触的不同金属之间流动的电池电流。当与计算机辅助数据采集耦合时,双电极电池配置允许表征具有大量测试变量的变化的组件的长期腐蚀可靠性。它在寻找腐蚀抑制剂方面特别有用。

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