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Investigation of the optimal processing parameters for picosecond laser-induced microfabrication of a polymer-ceramic hybrid material

机译:皮秒激光诱导的聚合物-陶瓷杂化材料微细加工的最佳工艺参数研究

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This paper reports the effect of different process parameters on the resolution of direct laser writing by two-photon polymerization (2PP) with a low-cost Nd: YAG picosecond laser. Microstructures were fabricated from the hybrid polymer-ceramic material Ormocomp and the impact of varying the laser beam focus position, average laser power and scanning speed were investigated in detail with scanning electron microscopy and atomic force microscopy imaging. With the appropriate laser beam focus settings, suspended structures could be fabricated. The laser intensity range of the so-called polymerization window and damage zone are reported along with the scanning speed range for producing uniform polymer lines. It is shown that very high resolution is achievable with this affordable picosecond laser 2PP system with feature sizes comparable to those previously reported for costly femtosecond laser systems. The discovered relationships between the process parameters and structure dimensions enable the design and fabrication of both 3D microstructures and nanometer scale surface features.
机译:本文报道了不同工艺参数对采用低成本Nd:YAG皮秒激光器的双光子聚合(2PP)直接写入激光的分辨率的影响。由混合聚合物陶瓷材料Ormocomp制成微结构,并通过扫描电子显微镜和原子力显微镜成像详细研究了改变激光束焦点位置,平均激光功率和扫描速度的影响。通过适当的激光束聚焦设置,可以制造悬挂结构。报告了所谓的聚合窗口和损伤区域的激光强度范围以及用于产生均匀聚合物线的扫描速度范围。结果表明,使用这种价格合理的皮秒激光2PP系统可以实现非常高分辨率,其特征尺寸可与之前报道的昂贵飞秒激光系统相媲美。工艺参数和结构尺寸之间的发现关系使得3D微观结构和纳米级表面特征的设计和制造成为可能。

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