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Fretting behavior of gold flashed palladium, palladium nickel and palladium silver contact materials

机译:金闪烁的钯,钯镍和钯银触点材料的烦恼行为

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Palladium and palladium-alloy contact materials manufactured by both electroplating and skive inlay cladding technologies were evaluated for adhesive and abrasive wear behavior. The contact materials were coated with 0.1- mu m-thick hard gold electroplate and tested again to determine the effect of the coating on wear behavior. Selected contact finishes with the gold flash were subjected to fretting conditions in the presence of organic vapors to determine susceptibility to frictional polymer formation. It was found that, in general, palladium and palladium-alloy 'flats' cause rider wear, and the durability of wrought Pd-Ag was significantly improved by alloying with small amounts of Ni. The gold flash altered the wear behavior of plated Pd-Ni and clad Pd-Ag but not plated Pd-Ag and clad Pd-Ag-Ni. Type-I frictional polymers were produced on the gold flashed Pd-Ag electroplates and gold flashed Pd-Ag-Ni inlays but not on the gold flashed Pd-Ni electroplates. It was determined that the wear mechanism and therefore the resultant contact surface materials controlled the formation of frictional polymer. The increase in contact resistance at end of test was attributed to rider wear and the exposure of the nickel underplate.
机译:钯和钯合金接触材料通过电镀和掠镶嵌镶嵌技术制造的用于粘合剂和磨料磨损行为。将接触材料涂有0.1-mu m厚的硬金电镀,再次测试以确定涂层对磨损行为的影响。在有机蒸气存在下,在有机蒸气存在下进行带金闪光的选定接触饰面以确定对摩擦聚合物形成的敏感性。结果发现,通常,通过少量Ni合金化显着提高钯和钯合金的架子佩服的衣架,并且通过合金化而显着改善了锻造PD-AG的耐久性。金闪光改变了镀PD-Ni和包层Pd-Ag的磨损行为,但不镀PD-Ag和包层Pd-Ag-Ni。在金闪光的PD-AG电镀电镀和金闪蒸的PD-AG-Ni嵌体上产生型式摩擦聚合物,但不在金闪蒸的PD-Ni电镀板上。确定磨损机构,因此得到的接触表面材料控制了摩擦聚合物的形成。测试结束时接触电阻的增加归因于骑士磨损和镍底板的暴露。

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