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A Novel Process For Electroless Nickel Plating On Anodized Magnesium Alloy

机译:阳极氧化镁合金化学镀镍的新工艺

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In this paper, a novel palladium-free activation electroless nickel (EN) plating process, by which a TiB_2 powders contained intermediate film was used as catalyst, was introduced for anodized magnesium alloy AZ91D. The corrosion behavior of AZ91D without and with coating was compared and the bonding strength of the EN plating to the substrate was also measured. The results showed that the EN plating could easily take place on the intermediate catalytic layer, directly on which a smooth and compact Ni-P alloy layer without obvious flaws, about 20 μm thickness, was successfully deposited. The catalytic function was principally from TiB_2 powder. The adhesive tensile test indicated a good bonding strength of about 11 MPa between the substrate and the catalytic layer. An obvious passivation range and higher E_(corr) (-0.323 V) for the EN plating during anodic polarization in 3.5 wt.% NaCl solution, implied a typical character of a compact Ni-P alloy layer, with an effective protection for the substrate.
机译:本文介绍了一种新型的无钯活化化学镀镍(EN)工艺,该工艺以含有中间膜的TiB_2粉末为催化剂,用于阳极氧化镁合金AZ91D。比较了不带涂层和带涂层的AZ91D的腐蚀行为,还测量了EN镀层与基材的结合强度。结果表明,EN镀层很容易在中间催化层上进行,直接在其上成功沉积了光滑而致密的Ni-P合金层,无明显缺陷,厚度约为20μm。催化作用主要来自TiB_2粉末。粘合剂拉伸试验表明基材和催化层之间具有约11MPa的良好粘合强度。在3.5 wt%的NaCl溶液中进行阳极极化时,EN镀层具有明显的钝化范围和较高的E_(corr)(-0.323 V),这暗示了紧凑的Ni-P合金层的典型特征,并有效保护了基材。

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