研究目的
Investigating the effects of Cr2O3 active agent on the weld process dynamic behavior and joint comprehensive properties of fiber laser welded stainless steel thick plate.
研究成果
Coating of Cr2O3 active agent on the specimen surface is effective in improving the welding properties of laser welded stainless steel plates by enhancing the stability of welding process, improving the quality of weld formation, increasing the weld penetration, refining the grain structure in weld zone, narrowing the width of heat affected zone, and enhancing the joint strength and toughness.
研究不足
The study focuses on the effects of Cr2O3 active agent on the welding of stainless steel thick plates, and the conditions are far more complicated for the activating laser welding of thick plates compared to conventional activating laser welding and thin plate welding. New scientific problems arising therefrom need urgent in-depth research.
1:Experimental Design and Method Selection:
The study employs a novel "sandwich" method in combination with a high-speed camera system to monitor the dynamic behaviors of metal vapor, plasma, keyhole, and weld pool during activating laser welding of stainless steel thick plates in real time.
2:Sample Selection and Data Sources:
304 stainless steel, borosilicate glass (GG17), and active agent are used. The stainless steel plate was cut into specimens for preparation of modified "sandwich" specimens and welding tests.
3:List of Experimental Equipment and Materials:
YLS-6000 fiber laser from IPG Photonics, Phantom series high-speed camera (VRI, USA), and other materials including 304 stainless steel, borosilicate glass (GG17), and active agent.
4:Experimental Procedures and Operational Workflow:
Prior to welding, the surface of specimen was wiped thoroughly with acetone, and the active agent was sprayed uniformly onto the specimen surface. Welding was performed with a set of superior process parameters derived from orthogonal tests.
5:Data Analysis Methods:
The welding quality of specimens was inspected and analyzed from the aspects like joint weld formation, mechanical properties, microstructure, and element distribution.
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