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Simultaneous Micro-Structuring and Surface Smoothing of Additive Manufactured Parts Using DLIP Technique and Its Influence on the Wetting Behaviour

机译:使用DLIP技术同时微结构化和表面平滑的添加剂制造部件及其对润湿行为的影响

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摘要

It is well known that the surface topography of a part can affect its function as well as its mechanical performance. In this context, we report on the surface modification of additive manufactured components made of Titanium 64 and Scalmalloy®, using Direct Laser Interference Patterning technique. In our experiments, a nanosecond-pulsed near-infrared laser source with a pulse duration of 10 ns was used. By varying the process parameters, periodic structures with different depths and associated roughness values are produced. Additionally, the influence of the resultant morphological characteristics on the wettability behaviour of the fabricated textures is investigated by means of contact angle measurements. The results demonstrated a reduction of the surface roughness of the additive manufactured parts (in the order of some tens of micrometres) and simultaneously the production of well-defined micro-patterns (in the micrometre range), which allow the wettability of the surfaces from 26° and 16° up to 93° and 131° to be tuned for Titanium 6Al 4V and Al-Mg-Sc (Scalmalloy®), respectively.
机译:众所周知,部件的表面形貌可以影响其功能以及其机械性能。在这种情况下,我们使用直接激光干扰图案化技术报告了由钛64和Scalmalloy®制成的添加剂制造部件的表面改性。在我们的实验中,使用脉冲持续时间为10ns的纳秒脉冲近红外激光源。通过改变过程参数,产生具有不同深度和相关粗糙度值的周期性结构。另外,通过接触角测量研究了所得形态特征对制造纹理润湿性行为的影响。结果表明,添加剂制造部件的表面粗糙度(大约几十微米的量)的降低,并同时生产明确定义的微观图案(在微米范围内),这允许表面的润湿性26°和16°可分别为钛6AL 4V和Al-Mg-SC(Scalmalloy®)调整高达93°和131°。

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