Experimental studies on the possibility of using a pulsed laser for spot welding of thin metallic foils

Author:

Sęk Piotr1

Affiliation:

1. Politechnika Świętokrzyska w Kielcach, Centrum Laserowych Technologii Metali (Kielce University of Technology, Center for Laser Technologies of Metals), Al. 1000-lecia P. P. 7, PL- 25-314KielcePoland

Abstract

AbstractThe purpose of the experiment was to study the influence of the laser beam in pulse mode on metallic foils in order to obtain a spot weld. The welding process was carried out using the overlap weld method, using spot welds in various quantities. The Nd - YAG BLS 720 pulsed laser was used to conduct the experiment. The impact of the number of spot welds on the value of force needed to break the sample was examined. A number of measurements were carried out to determine the best process parameters. Butt welding and overlap welding were also performed using a continuous weld consisting of spot welds. Weld strength tests were performed to select the most appropriate parameters for the process under consideration.

Publisher

Walter de Gruyter GmbH

Subject

Electrical and Electronic Engineering,Mechanical Engineering,Aerospace Engineering,General Materials Science,Civil and Structural Engineering,Environmental Engineering

Reference34 articles.

1. Application of pulsed Nd:YAG laser in thin foil microwelding;INT J MATER PROD TEC

2. The average friction coefficient of laser textured surfaces of silicon carbide identified by RSM methodology;Adv Mat Res

3. Analiza technologii spawania laserowego materiałów trudno spawalnych;Przegląd Spawalnictwa

4. Laser micro-welding of transparent materials by a localized heat accumulation effect using a femtosecond fiber laser at 1558 nm;Optics Express

5. Fine Micro-welding of Thin Stainless Steel Sheet by High Speed Laser Scanning;JLMN

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