材料科学
机械加工
高温合金
皮秒
激光器
表面粗糙度
表面光洁度
航空航天
航空航天材料
光学
复合材料
光电子学
冶金
微观结构
航空航天工程
工程类
物理
作者
Sundar Marimuthu,Bethan Smith
标识
DOI:10.1177/09544054211028842
摘要
This manuscript discusses the experimental results on 300 W picosecond laser machining of aerospace-grade nickel superalloy. The effect of the laser’s energetic and beam scanning parameters on the machining performance has been studied in detail. The machining performance has been investigated in terms of surface roughness, sub-surface thermal damage, and material removal rate. At optimal process conditions, a picosecond laser with an average power output of 300 W can be used to achieve a material removal rate (MRR) of ∼140 mm 3 /min, with thermal damage less than 20 µm. Shorter laser pulse widths increase the material removal rate and reduce the resultant surface roughness. High scanning speeds improve the picosecond laser machining performance. Edge wall taper of ∼10° was observed over all the picosecond laser machined slots. The investigation demonstrates that high-power picosecond lasers can be used for the macro-machining of industrial components at an acceptable speed and quality.
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