研究目的
Investigating the laser weldability of AlSi10Mg alloy parts produced by selective laser melting (SLM), focusing on microstructure and mechanical behavior.
研究成果
Laser welding of AlSi10Mg alloy produced by SLM is feasible but faces challenges like porosity formation. The welding process alters the microstructure, leading to reduced hardness and ductility. Thermal treatment can mitigate some of these effects by reducing the strength gap between the welded bead and base material.
研究不足
Porosity formation and high energy requirements due to high reflectivity and thermal conductivity of AlSi10Mg alloy during laser welding.
1:Experimental Design and Method Selection:
The study involved laser welding of SLM-built AlSi10Mg parts to explore weldability, microstructure evolution, and mechanical properties.
2:Sample Selection and Data Sources:
AlSi10Mg powders were used to produce SLM-built thin parts, which were then laser welded.
3:List of Experimental Equipment and Materials:
A SLM Solutions system for part production and an IPG Photonics fiber laser for welding were used.
4:Experimental Procedures and Operational Workflow:
Laser welding was performed in bead on plate configuration, followed by microstructural and mechanical analysis.
5:Data Analysis Methods:
Optical microscopy, SEM, EDS, DSC, microhardness measurements, and tensile tests were employed for analysis.
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IPG Photonics
YLR 300
IPG Photonics
Active fiber laser source for laser welding
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SLM Solutions
500 HL quad 4 x 400 W
SLM Solutions
Selective laser melting system for producing laminas
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Future Tech Corporation
FM-700
Future Tech Corporation
Hardness tester for microhardness measurements
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Seiko
DSC220C
Seiko
Differential scanning calorimetry for thermal analysis
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MTS
2/M
MTS
Tensile testing machine
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