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Stripping of PFA Fluoropolymer Coatings Using a Nd:YAG Laser (Q-Switch) and an Yb Fiber Laser (CW)

机译:使用Nd:YAG激光器(Q-Switch)和Yb光纤激光器(CW)剥离PFA含氟聚合物涂层

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摘要

Fluoropolymers such as PFA are used as coatings for the protection of metal substrates due to their high chemical inertia and non-stick properties. These are “wear and tear” coatings and they degrade, at which point they should be removed for a new application. The removal of these types of coating by laser is of interest due to the process’s flexibility, precision, ease of automation, and environmental sustainability. The efficiency of the procedure was shown with the use of a source in a pulsed Nd:YAG and a source in continuous mode of fiber (Yb). The rates of stripping (cm /min) and fluence (J/cm ) were analyzed and related to the power of the laser sources. Variations of the substrate after stripping were studied: roughness and hardness. The properties of the coating, thickness, roughness, water sliding angle, and microhardness were also evaluated. It was concluded that the laser in continuous mode was more efficient than the pulsed laser; laser removal of fluoropolymers has a strong relationship with reflectivity, and the mechanical and surface properties of the substrate after stripping remained virtually unchanged.
机译:含氟聚合物(如PFA)由于具有很高的化学惯性和不粘特性,因此被用作保护金属基材的涂料。这些是“磨损”涂层,它们会降解,这时应将其去除以用于新的应用。由于该过程的灵活性,精度,自动化的简易性和环境的可持续性,因此通过激光去除这些类型的涂层非常重要。通过使用脉冲Nd:YAG中的光源和连续光纤(Yb)模式中的光源显示了该过程的效率。分析了剥离速度(cm / min)和通量(J / cm 2),它们与激光源的功率有关。研究了剥离后基材的变化:粗糙度和硬度。还评估了涂层的性能,厚度,粗糙度,水滑角和显微硬度。结论是连续模式的激光器比脉冲激光器更有效。激光去除含氟聚合物与反射率有很强的关系,剥离后基材的机械和表面性能几乎保持不变。

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