Laser welding of the AA 2024-T3 aluminum alloy by using two different laser sources (Nd:YAG or CO 2 )

Author(s):  
Antonio D. Ludovico ◽  
Giuseppe Daurelio ◽  
L. A. C. De Filippis ◽  
A. Scialpi ◽  
F. Squeo
2008 ◽  
Author(s):  
Naoyuki Matsumoto ◽  
Yousuke Kawahito ◽  
Masami Mizutani ◽  
Seiji Katayama

2020 ◽  
Vol 2020 (12) ◽  
pp. 13-17
Author(s):  
Nikolay Proskuryakov ◽  
Uliana Putilova ◽  
Rasul Mamadaliev ◽  
Oleg Teploukhov

The comparative investigation results of AD33 aluminum alloy welded joint quality dependence upon changes in a laser beam motion rate for conditions of hand and automatic laser welding are shown. A micro-structure of a welded joint at the hand and automatic laser welding of the AD33 alloy is investigated.


2020 ◽  
Vol 326 ◽  
pp. 08005
Author(s):  
Mete Demirorer ◽  
Wojciech Suder ◽  
Supriyo Ganguly ◽  
Simon Hogg ◽  
Hassam Naeem

An innovative process design, to avoid thermal degradation during autogenous fusion welding of high strength AA 2024-T4 alloy, based on laser beam welding, is being developed. A series of instrumented laser welds in 2 mm thick AA 2024-T4 alloys were made with different processing conditions resulting in different thermal profiles and cooling rates. The welds were examined under SEM, TEM and LOM, and subjected to micro-hardness examination. This allowed us to understand the influence of cooling rate, peak temperature, and thermal cycle on the growth of precipitates, and related degradation in the weld and heat affected area, evident as softening. Although laser beam welding allows significant reduction of heat input, and higher cooling rates, as compared to other high heat input welding processes, this was found insufficient to completely supress coarsening of precipitate in HAZ. To understand the required range of thermal cycles, additional dilatometry tests were carried out using the same base material to understand the time-temperature relationship of precipitate formation. The results were used to design a novel laser welding process with enhanced cooling, such as with copper backing bar and cryogenic cooling.


2015 ◽  
Vol 224 ◽  
pp. 49-59 ◽  
Author(s):  
Liu Jia ◽  
Jiang Shichun ◽  
Shi Yan ◽  
Ni Cong ◽  
Chen junke ◽  
...  

Langmuir ◽  
2007 ◽  
Vol 23 (10) ◽  
pp. 5505-5514 ◽  
Author(s):  
Mojca Fir ◽  
Boris Orel ◽  
Angela Šurca Vuk ◽  
Aljaž Vilčnik ◽  
Robi Ješe ◽  
...  

2009 ◽  
Vol 156 (4) ◽  
pp. C147 ◽  
Author(s):  
M. Curioni ◽  
P. Skeldon ◽  
E. Koroleva ◽  
G. E. Thompson ◽  
J. Ferguson

Applied laser ◽  
2013 ◽  
Vol 33 (2) ◽  
pp. 177-180
Author(s):  
吴爱民 Wu Aimin ◽  
张健 Zhang Jian ◽  
郭亮 Guo Liang ◽  
张庆茂 Zhang Qingmao ◽  
夏琪 Xia Qi

2018 ◽  
Vol 45 (11) ◽  
pp. 1102001
Author(s):  
王天鸽 Wang Tiange ◽  
唐新华 Tang Xinhua ◽  
韩潇潇 Han Xiaoxiao ◽  
芦凤桂 Lu Fenggui ◽  
崔海超 Cui Haichao

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