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首页> 外文期刊>Surface & Coatings Technology >The homogeneity of multi-textured micro-pattern arrays in a laser shock surface patterning process and its effect on the surface properties of aluminum alloy
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The homogeneity of multi-textured micro-pattern arrays in a laser shock surface patterning process and its effect on the surface properties of aluminum alloy

机译:激光冲击表面图案化过程中多纹理微图案阵列的均匀性及其对铝合金表面性质的影响

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摘要

In this study, a laser shock surface patterning process was performed to effectively implement hundreds of micro patterns on a metallic surface through a single laser beam irradiation. Micro-pattern arrays of rectangular, hexagonal, circular, and mesh shapes of various sizes were successfully transferred to the workpiece, and a multi-textured surface structure was realized. In order to improve the homogeneity of the micro-pattern array, it was most effective to increase the thickness of the ablation layer. In the case of the thicker ablation layer, it seems that more uniform pressure was transferred to the material because the ablation layer was in a relatively rigid state due to the reduced level of self-deformation. Since the laser shock surface patterning process exerts a strong shock loading along with plastic deformation on the material surface, the hardness value increased mainly around the area subjected to the shock load. The better the homogeneity of the micro-pattern array, the less the deviation in the hardness value. Therefore, it is important to ensure micro-pattern uniformity in order to achieve uniform surface properties. Changes in the contact angle were also observed under various process conditions. After surface patterning, the contact angle increased as the amount of air trapped in the bar region increased. As the laser intensity increased, it was observed that the geometric surface changes were sharp, and the surface structure changed. As a result, the contact between the air and the water droplets decreased, and the contact angle decreased.
机译:在该研究中,进行激光冲击表面图案化工艺,以通过单个激光束照射在金属表面上有效地实现数百微型图案。各种尺寸的矩形,六边形,圆形和网状形状的微图案阵列成功转移到工件上,实现了多纹理的表面结构。为了提高微图案阵列的均匀性,最有效地增加消融层的厚度。在较厚的消融层的情况下,由于自变形水平降低,烧蚀层似乎将更均匀的压力转移到材料上。由于激光冲击表面图案化过程施加强烈的冲击载荷以及材料表面上的塑性变形,因此硬度值主要增加在受冲击载荷的区域周围。微图案阵列的均匀性越好,硬度值的偏差越少。因此,重要的是要确保微观图案均匀性以实现均匀的表面性质。在各种过程条件下也观察到接触角的变化。在表面图案化之后,随着条形区域中捕获的空气的量增加,接触角增加。随着激光强度的增加,观察到几何表面变化是尖锐的,并且表面结构改变。结果,空气和水滴之间的接触降低,接触角减小。

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