研究目的
To investigate the effects of groove dimension and defocusing distance of narrow-gap LBW-F on the microstructure and mechanical properties of D406A steel welded joints, and to compare these with traditional TIG-F welding methods.
研究成果
Narrow-gap LBW-F is a feasible substitute for conventional TIG-F welding for D406A steel, offering higher production efficiency, more uniform microstructure, and reduced distortion. However, further research is needed to improve interlayer fusion behavior and toughness of the welded joints after quenching and tempering.
研究不足
The study focused on D406A steel plates with a specific thickness (6.6 mm) and used a particular filler wire (H10SiMnCrNiMoV). The findings may not be directly applicable to other materials or thicknesses without further research.
1:Experimental Design and Method Selection:
The study employed a multi-mode infrared laser system for LBW-F welding and a Panasonic TX400 DC gas tungsten arc welding equipment for TIG-F welding. The L9 (34) orthogonal design experiment was used to optimize the groove dimension and welding parameters for single-pass and multi-pass LBW-F.
2:Sample Selection and Data Sources:
Annealed D406A steel plates with a thickness of 6.6 mm were used. The H10SiMnCrNiMoV filler wire was used for both welding methods.
3:6 mm were used. The H10SiMnCrNiMoV filler wire was used for both welding methods. List of Experimental Equipment and Materials:
3. List of Experimental Equipment and Materials: Equipment included a YLS-4000 laser system, Motoman arc welding robot, wire feeder, and shielding gas chamber. Materials included D406A steel plates and H10 filler wire.
4:Experimental Procedures and Operational Workflow:
The study involved optimizing groove dimensions and welding parameters, performing welding under optimized conditions, and analyzing the microstructure and mechanical properties of the welded joints.
5:Data Analysis Methods:
Microstructure analysis was conducted using optical and scanning electron microscopy. Microhardness and tensile tests were performed, and welding distortion was measured using a binocular stereo three-dimensional scanning system.
独家科研数据包,助您复现前沿成果,加速创新突破
获取完整内容-
YLS-4000
YLS-4000
IPG Photonics Corporation
Multi-mode infrared laser system for welding
-
TX400 DC gas tungsten arc welding equipment
TX400
Panasonic
Gas tungsten arc welding
暂无现货
预约到货通知
-
SU3500
SU3500
Hitachi Ltd.
Tungsten filament scanning electron microscope for microstructure observation
暂无现货
预约到货通知
-
Motoman arc welding robot
Yaskawa America Inc.
Automated welding
暂无现货
预约到货通知
-
Eclipse MA200
Eclipse MA200
Nikon Corporation
Optical microscope for microstructure observation
暂无现货
预约到货通知
-
Instron? hydraulic servo material testing machine
1342
Illinois Tool Works Inc.
Tensile testing
暂无现货
预约到货通知
-
XJTUOM binocular stereo three-dimensional scanning system
XJTUOM
Measurement of weld distortion
暂无现货
预约到货通知
-
登录查看剩余5件设备及参数对照表
查看全部