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首页> 外文期刊>Applied Physics A: Materials Science & Processing >Sub-wavelength surface structuring of NiTi alloy by femtosecond laser pulses
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Sub-wavelength surface structuring of NiTi alloy by femtosecond laser pulses

机译:飞秒激光脉冲在NiTi合金的亚波长表面结构化

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摘要

Generation of self-organized sub-wavelength surface structures on a nickel-titanium alloy plate by femtosecond laser pulses is investigated experimentally through line-scribing experiments in air. It is found that Bragg-like relief gratings, with the orientation perpendicular to the laser polarization, are formed over the entire laser-scribed regions. The average period is measured as 630 ± 30 nm. Distinctive features of these novel surface structures include nanoparticle-covered grating ridges and the maintainable spatial period regardless of incidence angles. With different laser parameters and sample scan speeds, sub-wavelength grating structures can evolve into cellular-like nanotextures. Optimal conditions for forming these surface structures are determined in terms of laser energy and scan speed. Elementary analyses of the structured surfaces by X-ray diffraction and photoelectron spectroscopy reveal that both the crystal structures and the chemical elements can remain in their original states, but the surface grains are refined and the atomic percentages are varied after femtosecond laser treatments.
机译:通过飞秒激光在空气中进行线刻划实验,研究了飞秒激光脉冲在镍钛合金板上产生自组织亚波长表面结构的过程。发现在整个激光刻划区域上形成了垂直于激光偏振方向的类布拉格光栅。平均周期为630±30 nm。这些新颖的表面结构的显着特征包括纳米粒子覆盖的光栅脊和可维持的空间周期,而与入射角无关。利用不同的激光参数和样品扫描速度,亚波长光栅结构可以演变成细胞状的纳米纹理。根据激光能量和扫描速度确定形成这些表面结构的最佳条件。通过X射线衍射和光电子能谱对结构化表面进行的元素分析表明,飞秒激光处理后,晶体结构和化学元素都可以保持其原始状态,但表面晶粒细化,原子百分率发生变化。

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