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Pulsed laser cleaning of aluminium-magnesium alloys; effect of surface modifications on adhesion

机译:铝镁合金的脉冲激光清洗;表面改性对粘附性的影响

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Surface cleaning is a key step in many industrial processes and especially in laser surface treatments. During laser cleaning of metallic alloys using pulsed lasers, surface modification can be induced due to transient thermal effect. In ambient atmospheric conditions, an oxidation of the cleaned surface can be detected. The aim of this work was to characterize this transient oxidation that can occur below the laser energy domain leading to any phase change (melting, ablation) of the cleaned substrate. A Q-switched Nd:YAG laser (1.06 μm) with 10 ns pulse duration was used for this study. X-ray photoelectron spectroscopy and secondary ion mass spectroscopy were used for surface analysis of irradiated samples. Thermal oxidation took place on the aluminium-magnesium alloy (5000 series) during the irradiation in air (fluence range 0.6-1.4 Jcm~(-2)). It has been demonstrated that this 10 ns laser thermal oxidation and the steady state thermal oxidation have the same mechanism. When the laser fluence reached 1 J cm~(-2), the oxide formed by the thermal oxidation became in a large extent crystalline and its outer part was entirely covered by a continuous magnesium oxide layer.
机译:表面清洁是许多工业过程中的关键步骤,特别是在激光表面处理中。在使用脉冲激光器的激光清洁金属合金期间,由于瞬态热效应,可以诱导表面改性。在环境气氛条件下,可以检测清洁表面的氧化。这项工作的目的是表征这种瞬态氧化,其可以在激光能量域下方发生,导致清洁基板的任何相变(熔化,消融)。 Q开关Nd:YAG激光器(1.06μm),具有10ns脉冲持续时间的脉冲持续时间用于本研究。 X射线光电子能谱和二次离子质谱用于照射样品的表面分析。在空气照射期间在铝 - 镁合金(5000系列)上发生热氧化(流量范围0.6-1.4 JCM〜(-2))。已经证明,该10NS激光热氧化和稳态热氧化具有相同的机制。当激光物流量达到1J厘米〜(-2)时,通过热氧化形成的氧化物在很大程度上晶体且其外部部分完全被连续氧化镁层覆盖。

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