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Microstructural and Hardness Study of Pulsed Nd:YAG Laser Surface Alloyed Aluminum with Iron

机译:脉冲Nd:YAG激光表面合金化铝铁合金的组织和硬度研究

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摘要

In the present study, the feasibility of the formation of surface layers containing hard iron aluminides on AA6061-T6 aluminum via pre-plasma spraying with iron and subsequently double surface melting by pulsed Nd:YAG laser is studied. The effects of single and double laser surface melting on microstructure, phase formation, and hardness of the treated layers are examined. Single-step laser treatment resulted in the presence of undissolved iron particles surrounded by lump-like Al5Fe2 and needle-like Al3Fe intermetallic compounds. Double laser surface melting dissolved the retained undissolved irons and resulted in the formation of Al-Al3Fe eutectic structure. Microhardness profiles along cross section and top surface of the treated layers indicated that laser surface alloying with iron enhanced the hardness of the aluminum to more than twice of that of the base material.
机译:在本研究中,研究了通过等离子喷涂铁并随后通过脉冲Nd:YAG激光进行双表面熔化而在AA6061-T6铝上形成包含硬质铝化铁的表面层的可行性。检查了单次和两次激光表面熔化对被处理层的微观结构,相形成和硬度的影响。单步激光处理导致存在未溶解的铁颗粒,这些铁颗粒被块状Al5Fe2和针状Al3Fe金属间化合物包围。双重激光表面熔化溶解了残留的未溶解的铁,并导致形成Al-Al3Fe共晶结构。沿已处理层的横截面和顶表面的显微硬度分布表明,激光与铁表面合金化可以将铝的硬度提高到基础材料的两倍以上。

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