研究目的
Investigating the effects of a duplex treatment combining double quenching and laser surface quenching on the microstructure refinement and properties of 1.0C-1.5Cr steel.
研究成果
The duplex treatment combining double quenching and laser surface quenching effectively refines the microstructure of 1.0C-1.5Cr steel, enhancing surface hardness and wear resistance but deteriorating impact toughness. Preheating during laser surface quenching can mitigate the impact toughness reduction.
研究不足
The study is limited to 1.0C-1.5Cr steel and specific quenching and laser surface quenching parameters. The impact toughness deterioration after laser surface quenching is a significant limitation.
1:Experimental Design and Method Selection:
The study involved conventional quenching, double quenching, and laser surface quenching treatments to analyze cementite dissolution and grain growth behavior.
2:Sample Selection and Data Sources:
Spheroidized
3:0C-5Cr steel specimens were prepared for interrupted quenching and laser surface quenching. List of Experimental Equipment and Materials:
A fiber-coupled diode laser (Laserline) was used for laser surface quenching. Microstructure was examined using optical microscope, scanning electron microscope, electron probe, and transmission electron microscope.
4:Experimental Procedures and Operational Workflow:
Specimens underwent single and double quenching followed by laser surface quenching under varying parameters.
5:Data Analysis Methods:
Microstructure characterization, hardness measurement, wear resistance evaluation, and impact toughness testing were conducted.
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fiber-coupled diode laser
Laserline
Laserline
Used for laser surface quenching.
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scanning electron microscope
Zeiss IGMA HV-01-043
Zeiss
Microstructure examination.
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electron probe
JEOL JXA8530F
JEOL
Microstructure examination.
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transmission electron microscope
FEI Tecnai G2 F20
FEI
Microstructure examination.
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optical microscope
Olympus BX53 M and Zeiss Axio Scope A1
Olympus and Zeiss
Microstructure examination.
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microhardness tester
HMV-2TADW
Hardness measurement.
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pendulum impact testing machine
SANS ZBC2452-B
SANS
Impact toughness measurement.
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