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Formation Mechanism of Dilute Region and Microstructure Evolution in Laser Solid Forming TA15/Ti2AlNb Dual Alloy

机译:激光固态成型TA15 / Ti2AlNb双合金的稀薄区形成机理及组织演变

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摘要

TA15/Ti AlNb multiple-layer samples and a dual-alloy sample were fabricated by laser solid forming (LSF) in this study. The formation mechanism of the dilute region and microstructure evolution of the dual alloy were analyzed. The results confirmed a “step” distribution of the composition among several initial layers in the multiple-layer samples, which can be explained by calculating the ratio of the remelted zone to the deposited Ti AlNb zone in each deposited layer. However, the “step” compositional distribution disappears, and the compositional variation tends to be more continuous and smooth in the TA15/Ti AlNb dual-alloy sample, which is attributed to alloy elements’ diffusion at the subsequent multiple re-melting and the longer thermal cycle. The macrostructure of the TA15/Ti AlNb dual-alloy sample consists of epitaxially grown columnar prior β grains at the TA15 side and equiaxed grains at the Ti AlNb side, while the microstructure shows a transition of α+β→α+α +β/B2→α +β/B2→α +B2+O with increasing amounts of Ti AlNb, leading to the microhardness also changing significantly.
机译:在这项研究中,通过激光固相成型(LSF)制备了TA15 / Ti AlNb多层样品和双合金样品。分析了双合金的稀薄区形成机理和组织演变。结果证实了多层样品中几个初始层之间的成分“阶跃”分布,这可以通过计算每个沉积层中重熔区与沉积Ti AlNb区的比例来解释。但是,TA15 / Ti AlNb双合金样品中的“阶梯”成分分布消失了,并且成分变化趋于更加连续和平滑,这归因于合金元素在随后的多次重熔中的扩散以及更长的时间。热循环。 TA15 / Ti AlNb双合金样品的宏观结构由在TA15侧外延生长的柱状先验β晶粒和在Ti AlNb侧的等轴晶粒组成,而显微组织显示出α+β→α+α+β/随着Ti AlNb含量的增加,B2→α+β/ B2→α+ B2 + O的显微硬度也发生了显着变化。

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