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Fabrication of grooves on polymer-derived SiAlCN ceramics using femtosecond laser pulses

机译:使用飞秒激光脉冲在聚合物 - 衍生的SiAlcn陶瓷上制造凹槽

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摘要

In this study, grooves were fabricated on the surface of fully dense polymer-derived SiAlCN ceramics. Industrial femtosecond laser source was used at wavelength of 1030 nm with pulse duration of 290 fs and repetition rate of 100 kHz. Moreover, comprehensive study was carried out to evaluate the influence of scan speed and energy fluence on grooves quality, including the heat-affected zone around the laser-machined grooves, microstructures of laser-irradiated surface, and cross-section morphology of grooves. A series of grooves with width in the range of 30-80 mu m and depth below 280 mu m was successfully fabricated using femtosecond laser pulse. Laser parameters were optimized to obtain grooves with satisfying surface quality. Furthermore, formation and disappearance of laser-induced periodic surface structures were systematically investigated. This study proposes fabrication of grooves on SiAlCN ceramics via laser processing, which provides precise method for fabrication of microstructure with fascinating properties.
机译:在该研究中,在完全致密的聚合物衍生的SiAlcn陶瓷的表面上制造凹槽。工业飞秒激光源以1030nm的波长使用,脉冲持续时间为290 fs和100kHz的重复率。此外,进行了综合研究,以评估扫描速度和能量流量对凹槽质量的影响,包括激光加工槽周围的热影响区域,激光照射表面的微观结构,以及凹槽的横截面形态。使用飞秒激光脉冲成功制造了一系列宽度在30-80μmm和280μm的深度范围内的凹槽。优化激光参数以获得具有满足表面质量的凹槽。此外,系统地研究了激光诱导的周期性表面结构的形成和消失。该研究提出了通过激光加工在SialCN陶瓷上制造凹槽,其提供了具有迷人特性的微观结构的制造精确的方法。

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