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Laser surface modification of Ti and TiC coatings on magnesium alloy

机译:镁合金上Ti和TiC涂层的激光表面改性

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摘要

In order to enhance the surface properties of magnesium alloy, a highly intense laser surface melting process following plasma spraying of Ti or TiC on AZ31 alloy were employed. When laser surface melting was applied to Ti coated magnesium alloy, the formation of fine Ti particle dispersed surface layer on the substrate occurred. The corrosion potential of the AZ31 alloy with Ti dispersed surface was significantly increased in 3.5 wt % NaCl solution. Additionally, an improved hardness was observed for the laser treated specimens as compared to the untreated AZ31 alloy. Laser melting process following plasma thermal deposition was also applied for obtaining in situ TiC coating layer on AZ31 alloy. The TiC coating layer could be successfully formed via in situ reaction between pure titanium and carbon powders. Incomplete TiC formation was observed in the plasma sprayed specimen, while completely transformed TiC layer was found after post laser melting process. It was also confirmed that the laser post treatment induced enhanced adhesion strength between the coating and the substrate.
机译:为了增强镁合金的表面性能,采用了在AZ31合金上等离子喷涂Ti或TiC之后的高强度激光表面熔化工艺。当将激光表面熔融应用于涂覆有钛的镁合金时,在基板上形成了细的Ti颗粒分散的表面层的形成。在3.5 wt%的NaCl溶液中,具有Ti分散表面的AZ31合金的腐蚀电位显着提高。此外,与未处理的AZ31合金相比,激光处理后的样品具有更高的硬度。等离子体热沉积后的激光熔化工艺也被用于在AZ31合金上获得原位TiC涂层。通过纯钛和碳粉之间的原位反应可以成功地形成TiC涂层。在等离子喷涂样品中观察到不完全的TiC形成,而在激光熔化后的过程中发现了完全转变的TiC层。还证实了激光后处理引起了涂层和基底之间增强的粘合强度。

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