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Additive manufactured Mg-Gd-Y-Zr alloys: Effects of Gd content on microstructure evolution and mechanical properties

机译:增材制造的Mg-Gd-Y-Zr合金:Gd含量对组织演变和力学性能的影响

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摘要

Laser directed energy deposition (LDED), as one of the most promising additive manufacturing processes, is an excellent technique for preparing large-scale engineering structural components. Herein, a series of Mg-xGd-3Y-0.2Zr (wt%, x = 9, 12, 15, and 18) alloys was manufactured by LDED, respectively. The microstructure evolution, hardness, tensile properties and fracture behavior were characterized and the effects of Gd addition were systematically explored. With the increment of Gd content, epitaxial growth at the bottom of melting pool transforms to equiaxed growth. The size of equiaxed dendritic grains shows negligible changes, whereas the intermetallic phase increases to a large extent from 1.51% to 15.92% (volume fraction). The Vickers hardness presents a linear growth against Gd content, and peaks at x = 18 wt% (118 Hv). Furthermore, the variation trend of the yield strength (YS) was rationalized by using the superposition law, according to which solute atoms in supersaturated solid solution (i.e. α-Mg matrix) and the intermetallic phase provided the main contribution. The highest YS (230 MPa) appears in Mg-15Gd-3Y-0.2Zr alloy, in contrast, the ultimate tensile strength (UTS) peaks at x = 12 and 15 wt%, at around 260 MPa. Noticeably, the hardness, YS, UTS, and elongation of Mg-xGd-3Y-0.2Zr alloys manufactured by LDED are generally superior to those of their as-cast counterparts.
机译:激光定向能量沉积(ld)之一最有前途的添加剂制造过程,是一个优秀的技术准备大型工程结构组件。(wt %, x = 9、12、15和18)合金分别由ld。微观结构演化、硬度、拉伸性能和断裂行为和Gd的影响特点系统地探讨。内容,底部的外延生长熔化池变换各向等大的增长。等轴枝晶颗粒大小变化可以忽略不计,而金属间化合物阶段从1.51%增加在很大程度上15.92%(体积分数)。提出了一种线性增长对Gd内容,山峰在x = 18 wt %(118高压)。屈服强度的变化趋势(y)合理化利用叠加法,根据溶质原子在过饱和固溶体(即α毫克矩阵)和金属间化合物相的主要提供的贡献。mg - 15 - gd - 3 - y - 0.2 -锆合金,相比之下,最终抗拉强度(ut)峰值在x = 12和15wt %,在大约260 MPa。y、ut和伸长的mg - xgd - 3 - y - 0.2 -锆合金生产的ld一般优于铸的同行。

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