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Corrosion behavior of laser-alloyed copper with titanium fabricated by high power diode laser

机译:大功率二极管激光器制造的钛合金激光合金化铜的腐蚀行为

摘要

Laser surface alloying of commercially pure copper (cp Cu) with preplaced Ti powder has been successfully achieved using a high power diode laser. All laser-alloyed specimens have corrosion potentials in between that of cp Cu and commercially pure titanium (cp Ti) and their corrosion current densities are lower than that of cp Cu. Particularly, the specimen with 85. wt.% Ti fabricated at scanning speed of 35. mm/s shows the highest corrosion resistance, that is, about 150 times that of cp Cu and very close to that of cp Ti. Improvement of corrosion resistance is attributed to presence of Ti in the intermetallic and metallic phases for forming the protective oxide.
机译:使用大功率二极管激光器已成功实现了商用纯铜(cp Cu)与预先放置的Ti粉的激光表面合金化。所有激光合金样品的腐蚀电位都在cp Cu和商业纯钛(cp Ti)之间,并且其腐蚀电流密度低于cp Cu。特别地,以35.mm/s的扫描速度制造的具有85重量%的Ti的样品显示出最高的耐腐蚀性,即,约cp Cu的约150倍并且非常接近cp Ti。耐腐蚀性的提高归因于在金属间和金属相中存在钛,以形成保护性氧化物。

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