Keyhole stability during laser welding—Part II: process pores and spatters

Author:

Volpp Jörg

Funder

DFG - Deutsche Forschungsgemeinschaft

Publisher

Springer Science and Business Media LLC

Subject

Industrial and Manufacturing Engineering,Mechanical Engineering

Reference16 articles.

1. Mizutani M, Katayama S (2003) Keyhole behavior and pressure distribution during laser irradiation on molten metal. In: Proceedings of the 22nd international congress on applications of lasers and electro-optics (ICALEO), LIA congress proceeding. Paper 1004

2. Berger P, Hügel H, Graf T (2011) Understanding pore formation in laser beam welding. In: Schmidt M, Zaeh MF, Graf T, Ostendorf A (eds) Lasers in manufacturing (LIM), Physics Procedia, vol 12. Elsevier, Amsterdam, pp 241–247

3. Tsukamoto S, Kawaguchi I, Arakane G, Honda H (2002) Keyhole behavior in high power laser welding. In: Proceedings of the international congress on laser advanced materials processing (LAMP). International Society for Optics and Photonics

4. Fabbro R, Slimani S, Doudet I, Coste F, Briand F (2006) Experimental study of the dynamical coupling between the induced vapour plume and the melt pool for Nd–Yag CW laser welding. J Phys D Appl Phys 39:394–400

5. Zhang M, Chen G, Zhou Y, Li S (2013) Direct observation of keyhole characteristics in deep penetration laser welding with a 10 kW fiber laser. Opt Express 21(17):19997–20004

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