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Growth Of Titanium Oxynitride Layers By Short Pulsed Nd:yag Laser Treatment Of Ti Plates: Influence Of The Cumulated Laser Fluence

机译:短脉冲Nd:YAG激光处理Ti板生长氧氮化钛层:累积激光通量的影响

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Titanium oxynitride layers were formed by surface laser treatment of Ti plates in air using a Nd:YAG laser source of short pulse duration about 5 ns. The cumulated laser fluence was varied in the 100-1200 J cm~(-2) range and its influence on the composition and the structure of the formed layers was studied by different characterization techniques providing physico-chemical and structural information. It was shown that the laser treatment induces the insertion of light elements as O, N and C in the formed layer with the amount increasing with the laser fluence. The in-depth composition of the layers and the co-existence of different phases were also studied. The way in which the laser parameters such as fluence affect the insertion of nitrogen and oxygen was discussed in connection with the effects of the plasma plume formed above the target.
机译:氧氮化钛层是通过在空气中使用短脉冲持续时间约为5 ns的Nd:YAG激光源对Ti板进行表面激光处理而形成的。累积激光通量在100-1200 J cm〜(-2)范围内变化,并通过提供物理化学和结构信息的不同表征技术研究了其对所形成层的组成和结构的影响。结果表明,激光处理可以在形成的层中引入O,N和C等轻元素,其含量随着激光通量的增加而增加。还研究了层的深层组成和不同相的共存。结合靶上方形成的等离子羽流的影响,讨论了诸如通量之类的激光参数影响氮和氧的插入的方式。

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