研究目的
To study the laws governing formation of HAZ in laser welded joints of the low-carbon steel and evaluate their mechanical properties.
研究成果
High cooling rates and non-uniform carbon distribution in the base metal led to increased microhardness in ICHAZ, primarily due to finely dispersed DUB regions and M-A constituents. Annealing reduced microhardness and brittleness, improving charpy impact energy and decreasing the ductile-brittle transition temperature.
研究不足
The study focused on the X70 low-carbon pipe steel and its laser welding process. The findings may not be directly applicable to other types of steel or welding methods. The research also highlighted the need for further optimization of welding parameters to improve mechanical properties.
1:Experimental Design and Method Selection:
The study involved laser welding of X70 low-carbon micro-alloyed pipeline steel using a ‘Siberia-1’ automated laser technological facility. The parameters of the welding process were optimized to form welds without any visible discontinuities.
2:Sample Selection and Data Sources:
Plates to be welded were cut from a hot-rolled sheet with a thickness of 56 mm perpendicular to the rolling direction.
3:List of Experimental Equipment and Materials:
Equipment included a ‘Zeiss Axiovert 25’ optical microscope, a ‘LEO EVO 50’ scanning electron microscope, a ‘Philips CM-12’ transmission electron microscope, an ‘HT-7700’ TEM, an ‘FIB2100’ focused ion beam system, a ‘PMT-3’ microhardness tester, and an ‘INSTRON MPX 450’ pendulum impact testing system.
4:Experimental Procedures and Operational Workflow:
Samples were prepared by standard procedure followed by etching. Microstructure was investigated using various microscopes. Microhardness was measured, and mechanical static tensile tests and impact bending tests were carried out.
5:Data Analysis Methods:
The approach for analyzing experimental data included statistical techniques and software tools utilized for microstructure analysis and mechanical properties evaluation.
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Zeiss Axiovert 25
Axiovert 25
Zeiss
Optical microscope for microstructure investigation
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HT-7700
7700
Hitachi
Transmission electron microscope for microstructure investigation
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FIB2100
2100
Hitachi
Focused ion beam system for foil cutting and local study of HAZ structures
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LEO EVO 50
EVO 50
LEO
Scanning electron microscope for microstructure investigation
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Philips CM-12
CM-12
Philips
Transmission electron microscope for microstructure investigation
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PMT-3
PMT-3
Microhardness tester for measuring microhardness values
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INSTRON MPX 450
MPX 450
INSTRON
Pendulum impact testing system for impact bending tests
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