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Ni-Concentration Dependence of Directed Energy Deposited NiTi Alloy Microstructures

机译:直接能量沉积NITI合金微结构的Ni浓度依赖性

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摘要

Localized re-melting and re-heating in regions between overlapping passes and layers drive localized microstructure development during laser-based additive manufacturing processes. Ti-rich (Ti_(52.1)Ni_(47.9) at.%) and Ni-rich (Ni_53Ti_47 at.%) alloy builds were fabricated using a laser-based directed energy deposition (LDED) process and sectioned in three orthogonal cross-sections to provide a 3-dimensional view of the grain and precipitate morphologies in the interpass and interlayer regions. Fine equiaxed grains, which were an order of magnitude smaller than the columnar grains in the bulk regions, were observed in the interfacial regions. While these columnar grains showed preferential orientation in the highest heat flow direction corresponding to the build height, the fine equiaxed grain structures in the interfacial regions showed no orientation preferences. In addition to these changes in grain structures, precipitation of second phases is also impacted in these regions. The re-melting and re-heating characteristic of the interfacial regions produces precipitates in the Ni-rich alloys with fine oriented morphologies different from those observed in the bulk regions.
机译:在重叠通道和层之间的区域中的局部重新加热和重新加热在基于激光的添加剂制造过程中驱动局部微观结构开发。富含Ti(Ti_(52.1)Ni_(47.9)。%)和Ni-ing(Ni_53Ti_47 AT。%)使用基于激光的定向能量沉积(Lded)工艺来制造合金构建,并在三个正交横截面中切断提供三维视图,谷物的三维视图,在接口和层间区域中沉淀形态。在界面区域中观察到精细等式的晶粒,其是小于散装区域中的柱状颗粒的数量级。虽然这些柱状晶粒在对应于构建高度的最高热流向方向上显示出优先取向,但界面区域中的细平衡晶粒结构显示出没有取向偏好。除了这些晶粒结构的变化外,第二阶段的沉淀也受到这些区域的影响。界面区域的重新熔化和再加热特性在富含Ni的合金中产生沉淀物,其具有与在散装区域中观察到的细度不同的细异形态。

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