Influence of oxygen concentration and humidity on palladium oxide formation by a mechanochemical reaction

T. Yamamoto, K. Sawa
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引用次数: 3

Abstract

Palladium oxide formed on the electrode surfaces of palladium electrical contacts by a mechanochemical reaction during mechanical switching generally causes significant contact resistance rise. In the present paper, the influence of oxygen concentration and humidity on this phenomenon is examined. It has been found that palladium oxide is formed even when the oxygen concentration is less than 0.01% under the condition that influence of aqueous vapor or organic gases is negligible. As the oxygen concentration decreases, both the contact resistance and the palladium oxide formation rate decrease. Experimental results indicate that the presence of water delays or prevents palladium oxide formation. The proposed model for this effect is that water molecules absorbed onto the contact surfaces act to lubricate to smooth the contact spots, thereby minimizing the palladium oxide formation rate.
氧浓度和湿度对机械化学反应生成氧化钯的影响
在机械开关过程中,在钯电触点的电极表面通过机械化学反应形成氧化钯,通常会导致触点电阻显著升高。本文考察了氧浓度和湿度对这一现象的影响。研究发现,在水溶液或有机气体的影响可以忽略的情况下,即使氧浓度小于0.01%也能生成氧化钯。随着氧浓度的降低,接触电阻和氧化钯生成速率均降低。实验结果表明,水的存在延缓或阻止了氧化钯的形成。所提出的这种效应的模型是,吸收到接触面上的水分子起到润滑作用,使接触点光滑,从而使氧化钯的形成速率最小化。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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