首页> 外文会议>Proceedings of the Forty-First IEEE holm conference on electrical contacts(Electrical Contacts-1995) >A Tribochemical Investigation of the Reaction Products on Pd Plated Contacts
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A Tribochemical Investigation of the Reaction Products on Pd Plated Contacts

机译:镀钯触头上反应产物的摩擦化学研究

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Fretting experiments on Pd-plated pairs were carried out in an organic /air atmosphere including benzene, cyclohexane, and n-hexane, to understand the relationships between the tribological properties, the chemical form of reaction products, and the electric conductivity to form organic reaction products at the contact During the initial stage of fretting experiments in these atmospheres, the contact resistance was rather low and stable, compared with that in ambient air. Quantitative analysis of C and 0 on the contact surface by electron probe X-ray microanalyzer showed that a small amount of reaction product existed in and around the contact area, and the atomic composition of C and 0 of the product was mostly stoichiometric. Analytical results using Fourier transformed infrared absorption spectroscopy showed that the products include carbonyl, hydroxide, and minor amount of the initial organic compounds in dried atmosphere. Experimental results suggested that Pd surface fretted with no electric current across it induced catalytic reactions to oxidize the organic molecules to form carbonyl or carboxyl group in ambient atmosphere. The reaction product which was generated in dried atmosphere with organic vapor effectively maintained the contact resistance at a low and stable value. The wear rate of the contact surface, film thickness of the reaction product, and different effects of oxidation rate in dried and ambient air are discussed.
机译:在包括苯,环己烷和正己烷的有机/空气气氛中对镀钯对进行微动实验,以了解摩擦学性质,反应产物的化学形式和形成有机反应的电导率之间的关系。接触产品在这些环境下的微动试验的初始阶段,与周围空气相比,接触电阻相当低且稳定。用电子探针X射线微分析仪对接触表面上的C和0进行定量分析表明,在接触区域内和周围存在少量的反应产物,产物中C和0的原子组成大部分是化学计量的。使用傅立叶变换红外吸收光谱法的分析结果表明,产物在干燥气氛中包含羰基,氢氧化物和少量的初始有机化合物。实验结果表明,在没有电流通过的Pd表面上,会引起催化反应,从而在环境大气中氧化有机分子以形成羰基或羧基。在干燥气氛中与有机蒸气一起生成的反应产物有效地将接触电阻保持在低且稳定的值。讨论了接触表面的磨损率,反应产物的膜厚度以及干燥和环境空气中氧化率的不同影响。

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