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首页> 外文期刊>Rapid prototyping journal >Effect of aluminium content and processing parameters on the microstructure and mechanical properties of laser powder-bed fused magnesium-aluminium (0, 3, 6, 9wt%) powder mixture
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Effect of aluminium content and processing parameters on the microstructure and mechanical properties of laser powder-bed fused magnesium-aluminium (0, 3, 6, 9wt%) powder mixture

机译:铝含量和加工参数对激光粉状熔融镁 - 铝(0,3,6,9wt%)粉末混合物的微观结构和力学性能的影响

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Purpose Mg-Al powder mixture was used to manufacture Mg-Al alloy by laser powder bed fusion (LPBF) process. This study aims to investigate the influence of initial Al content and processing parameters on the formability, microstructure and consequent mechanical properties of the laser powder bed fused (LPBFed) component. Design/methodology/approach In this study, Al powder with different weight ratio ranged from 3 to 9 per cent was mixed with pure Mg powder, and the powder mixture was processed using different LPBF parameters. Microstructure and compressive properties of the LPBFed components were examined. Findings It was found that the presence of Al significantly modified the microstructure and improved the mechanical properties of the LPBFed components. Higher volume of ss-Al12Mg17 precipitates was produced at higher initial Al content and higher laser energy density. For this reason, the a-Mg was significantly refined and the compressive strength was improved. The highest yield compressive strength achieved was 279 MPa when using Mg-9 Wt. % Al mixture. Originality/value This work demonstrates that LPBF of Mg-Al powder mixture was a viable way to additively manufacture Mg-Al alloy. Both Al content and processing parameters can be modified to control the microstructure and mechanical properties of the LPBFed components.
机译:目的,使用Mg-Al粉末混合物通过激光粉床融合(LPBF)工艺制造Mg-Al合金。本研究旨在探讨初始Al含量和加工参数对激光粉床融合(LPBFED)组分的成形性,微观结构和随后力学性能的影响。本研究中的设计/方法/方法,用纯mg粉末混合具有不同重量比的Al粉末,并使用不同的LPBF参数处理粉末混合物。检查了LPBFED组分的微观结构和压缩性能。结果发现,A1的存在显着修饰了微观结构并改善了LPBFED组分的机械性能。在更高的初始Al含量和更高的激光能量密度下产生较高体积的SS-Al12mg17沉淀物。因此,A-Mg被显着精制,改善了抗压强度。在使用Mg-9重量的时,所达到的最高产量抗压强度是279MPa。 %Al混合物。原创性/值本作品表明Mg-Al粉末混合物的LPBF是一种可加强的制备Mg-Al合金的方法。可以修改Al含量和处理参数,以控制LPBFED组件的微观结构和机械性能。

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