Effect of Laser Micro-drilling Parameters on Hole Geometry and Hole Formation of Thin Sheet SS304
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Publisher
Springer Nature Singapore
Link
https://link.springer.com/content/pdf/10.1007/978-981-19-1457-7_61
Reference15 articles.
1. Nasrollahi V, Penchev P, Jwad T, Dimov S, Kim K, Im C (2018) Drilling of micron-scale high aspect ratio holes with ultra-short pulsed lasers: critical effects of focusing lenses and fluence on the resulting holes’ morphology. Opt Lasers Eng 110:315–322
2. Venkatesan K, Devendiran S, Bhupatiraju SCSR, Kolluru S, Pavan Kumar C (2020) Experimental investigation and optimization of micro-drilling parameters on Inconel 800 superalloy. Mater Manuf Process 35(11):1214–1227
3. Stephen A et al (2018) Laser micro drilling methods for perforation of aircraft suction surfaces. Procedia CIRP 74:403–406
4. Pattanayak S, Panda S (2018) Laser beam micro drilling–a review. Lasers Manuf Mater Process 5(4):366–394
5. Erny A, Fadhil A, Aiman M, Ishak M, Quazi M (2021) Comparative study between furnace brazing and laser brazing. In: IOP conference series: materials science and engineering, vol 1068, no 1. IOP Publishing, p 012003
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