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首页> 外文期刊>The International Journal of Advanced Manufacturing Technology >Micromorphology of metallic surfaces for hydrophobicity by waterjet-guided laser processing
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Micromorphology of metallic surfaces for hydrophobicity by waterjet-guided laser processing

机译:通过水射流引导激光加工的金属表面疏水性微观形貌

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摘要

Abstract Waterjet-guided laser processing is a novel machining technique for metallic materials. To investigate and analyse the effects of processing parameters on surface topography change, micro-texturing evolution, and hydrophobicity, micromorphology machining experiments were conducted on stainless steel using self-developed waterjet-guided laser processing equipment. Nd:DPSS laser system with repetition frequency of 20–120 kHz and maximum power of 50W is used in the equipment. A scanning electron microscope (SEM) is used to measure surface topography. Energy-dispersive spectrometer (EDS) is used to evaluate the material composition of processing zone and no processing zone. The effects of grid spacing and laser power coupled into the jet are examined and processing conditions for hydrophobicity are provided. There was oxidation and no crack on the kerf edge. The surface contact angle dramatically increases from 92.94 to 138.41° with the decreasing of the grid size. It has been shown that waterjet-guided laser processing yields textures with a hydrophobic surface and is suit for micro-texture micro-machining.
机译:摘要 水射流引导激光加工是一种新型的金属材料加工技术。为研究和分析加工参数对表面形貌变化、微织构演变和疏水性的影响,采用自主研发的水射流引导激光加工设备对不锈钢进行了微观形貌加工实验。设备采用重复频率为20-120 kHz,最大功率为50W的Nd:DPSS激光系统。扫描电子显微镜(SEM)用于测量表面形貌。能量色散光谱仪(EDS)用于评估加工区和无加工区的材料成分。研究了网格间距和耦合到射流中的激光功率的影响,并提供了疏水性的加工条件。切口边缘有氧化,没有裂纹。随着网格尺寸的减小,表面接触角从92.94°急剧增加到138.41°。研究表明,水射流引导的激光加工可产生具有疏水表面的纹理,适用于微纹理微加工。

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