研究目的
To study the effect of Si addition on the hot cracking susceptibility of a high strength AleZneMgeCu alloy and to develop a new AleZneSieMgeCu alloy specifically designed for selective laser melting.
研究成果
Silicon addition has a positive effect on the SLM processability of the investigated high-strength AleZneSieMgeCu alloys. The proposed Al-6.8Zn-6.5Sie2Mg-1.3Cu alloy in T5 temper exhibited hardness of 174 HV, YS of 370 and 402 MPa and UTS of 432 and 449 MPa in the vertical and horizontal directions, respectively.
研究不足
The study focused on the effect of Si addition on the hot cracking susceptibility of a high strength AleZneMgeCu alloy and the development of a new AleZneSieMgeCu alloy. The research did not explore the full range of possible alloy compositions or the effects of other additive manufacturing parameters.
1:Experimental Design and Method Selection:
The study involved blending AleZneMgeCu and AleSieMg powders to investigate their microstructure and properties after selective laser melting. A new AleZneSieMgeCu alloy was then designed, produced as powder alloy by gas atomization, and tested.
2:Sample Selection and Data Sources:
Gas-atomized AleSieMg and AleZneMgeCu alloy powders were used. The chemical composition of the as received and produced powders was analyzed.
3:List of Experimental Equipment and Materials:
A model 280 HL system by SLM Solutions GmbH was used for selective laser melting. Microstructure analyses were carried out by optical microscope and scanning electron microscope (SEM) mod. Zeiss EVO
4:Differential scanning calorimetry (DSC) analysis was carried out by a Setaram Labsys instrument. XRD investigation was performed at the ID22 beamline of the European Synchrotron Radiation Facility (ESRF). Experimental Procedures and Operational Workflow:
Optimization of process parameters for each pre-alloyed and blended powder was carried out by a statistical design of experiment (DOE) approach. Solution annealing was performed for 1 h at 475 (cid:1)C, followed by water quenching. Aging response was evaluated starting from the as built and from the solution treated conditions.
5:Data Analysis Methods:
The evolution of hardness after different aging times was tracked by Vickers indentations. Microstructure analyses were performed using standard grinding and polishing procedures. DSC analysis was used to investigate the aging behaviour.
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