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Quantitative Evaluation of Bulk and Interface Microstructures in Al-3003 Alloy Builds Made by Very High Power Ultrasonic Additive Manufacturing

机译:通过超高功率超声增材制造对Al-3003合金铸件中的本体和界面微观结构进行定量评估

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摘要

Ultrasonically consolidated 3003 aluminum alloy builds were prepared with constituent tapes by using a very high power ultrasonic additive manufacturing (UAM) process. Microstructures of interface and bulk regions were quantitatively characterized using the electron backscattered diffraction technique. The interface microstructure consists of equiaxed grains. The 〈111〉 crystallographic directions of these grains were aligned with the normal direction of the specimen, confirming a shear deformation mode at these regions. In addition, due to recrystallization, the density of low-angle grain boundaries also significantly decreased. In contrast, original elongated grains and partially recrystallized grains were observed in the bulk region of the tape. These elongated grains correspond to rolling texture components of face-centered-cubic materials. The preceding microstructure gradients are rationalized based on the accumulated thermomechanical cycles during processing.
机译:通过使用非常高功率的超声波增材制造(UAM)工艺,用组成胶带制备了超声波加固的3003铝合金铸件。界面和主体区域的微观结构使用电子背散射衍射技术进行了定量表征。界面微结构由等轴晶粒组成。这些晶粒的〈111〉晶体学方向与样品的法线方向对齐,证实了这些区域的剪切变形模式。另外,由于再结晶,低角度晶界的密度也显着降低。相反,在带的主体区域中观察到原始的拉长晶粒和部分重结晶的晶粒。这些细长的晶粒对应于面心立方材料的滚动纹理分量。基于加工过程中累积的热机械循环,可以合理化上述微结构梯度。

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