Temperature distribution of gas powder jet formed by coaxial nozzle in laser metal deposition

Author(s):  
Yuri N. Zavalov ◽  
Vladimir D. Dubrov ◽  
Elena S. Makarova ◽  
Nikolay G. Dubrovin ◽  
Fikret K. Mirzade ◽  
...  
Author(s):  
Doglas Negri ◽  
Gustavo Reis de Ascencao ◽  
Saulo Melotti ◽  
Jhonattan Gutjahr

Metals ◽  
2020 ◽  
Vol 10 (6) ◽  
pp. 766
Author(s):  
Marius Gipperich ◽  
Jan Riepe ◽  
Kristian Arntz ◽  
Thomas Bergs

Wire-based Laser Metal Deposition (LMD-w) is a suitable manufacturing technology for a wide range of applications such as repairing, coating, or additive manufacturing. Employing a pulsed wave (pw) laser additionally to the continuous wave (cw) process laser has several positive effects on the LMD process stability. The pw-plasma has an influence on the cw-absorption and thus the temperature distribution in the workpiece. In this article, several experiments are described aiming to characterize the heat input during dual beam LMD. In the first setup, small aluminum and steel disks are heated up either by only cw or by combined cw and pw radiation. The absorbed energy is then determined by dropping the samples into water at ambient temperature and measuring the water’s temperature rise. In a second experiment, the temperature distribution in the deposition zone under real process conditions is examined by two-color pyrometer measurements. According to the results, the pw plasma leads to an increase of the effective absorption coefficient by more than 20%. The aim of this work is to achieve a deeper understanding of the physical phenomena acting during dual beam LMD and to deploy them selectively for a better and more flexible process control.


2021 ◽  
Vol 33 (1) ◽  
pp. 012029
Author(s):  
Stefan Polenz ◽  
Christian Kolbe ◽  
Florian Bittner ◽  
Elena López ◽  
Frank Brückner ◽  
...  

Author(s):  
Jurandir Sousa ◽  
Adriano de Souza Pinto Pereira ◽  
Rafael Gomes Nunes Silva ◽  
Calil Amaral ◽  
Milton Pereira

2020 ◽  
Vol 107 (3-4) ◽  
pp. 1559-1568 ◽  
Author(s):  
Himani Siva Prasad ◽  
Frank Brueckner ◽  
Joerg Volpp ◽  
Alexander F. H. Kaplan

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