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Laser texturing of stainless steel under different processing atmospheres: From superhydrophilic to superhydrophobic surfaces

机译:在不同的加工气氛下对不锈钢进行激光变形:从超亲水性表面到超疏水性表面

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Wettability plays a major role in a variety of surface related phenomena, as corrosion, heat transfer or tissue adhesion on implants. Consequently, great research effort is being devoted to control the wetting degree of functional surfaces. Pulsed laser texturing at microanometric level has been widely used for that purpose as a precision/time efficient technique. This work studies the role of the processing atmosphere in controlling the wettability of commercial AISI 304 by laser texturing. A pulsed laser source (lambda = 532 nm) working at the nanosecond regime was employed and five different atmospheres were tested (i. e. O-2, Air, CO2, N-2, Ar). The results show clear differences in the wetting behaviour depending solely on the processing environment, ranging from hydrophilicity (31 degrees) to hydrophobicity (125 degrees). Those differences in wettability were found to be a consequence of changes in surface chemistry between samples processed under the various gases. The laser processing parameters showed a capability to tune the final wetting behaviour by controlling the topography and modulating the chemical composition given by the processing environment. It is demonstrated how the effects of the atmosphere can be exploited to tailor the wettability of the untreated surfaces (theta = 88 degrees) up to the desired value, ranging from superhydrophilicity (theta = 0 degrees) to superhydrophobicity (theta = 152 degrees).
机译:润湿性在各种与表面相关的现象中起着重要作用,例如腐蚀,热传递或组织对植入物的粘附。因此,致力于控制功能表面的润湿度的大量研究工作。为此,在微米/纳米级的脉冲激光纹理化已被广泛用作精确/省时的技术。这项工作研究了加工气氛在通过激光纹理化控制商业AISI 304润湿性中的作用。使用在纳秒级工作的脉冲激光源(λ= 532 nm),并测试了五个不同的气氛(即O-2,空气,CO2,N-2,Ar)。结果表明,润湿行为的明显差异仅取决于加工环境,范围从亲水性(31度)到疏水性(125度)。发现润湿性的那些差异是在各种气体下处理的样品之间表面化学变化的结果。激光加工参数显示了通过控制形貌和调节加工环境所给出的化学成分来调节最终润湿行为的能力。证明了如何利用大气的影响来调整未处理表面的润湿性(θ= 88度),直至达到所需值,范围从超亲水性(θ= 0度)到超疏水性(θ= 152度)。

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