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Spray forming of bulk Al85Y8Ni5Co2 with co-existing amorphous, nano- and micro-crystalline structures

机译:大量形成的Al 85 Y 8 Ni 5 Co 2 与非晶态,纳米和微米共存的喷射成形-晶体结构

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摘要

A 12 mm thick Al85Y8Ni5Co2 plate was spray deposited on a 30 mm thick pre-heated copper substrate. The deposit was characterized using optical, high resolution scanning and transmission electron microscopy. Differential scanning calorimetry was performed to assess the crystallization behaviour of the deposit compared to melt spun ribbons of the same composition. The deposit shows an amorphous phase fraction of 83 and 56 vol.% (based on the total crystallization energy), in the bottom and top regions of the deposit. The deposit consists of amorphous and nanoscale structures along with microcrystalline intermetallic phases. The large amorphous phase fraction in the deposit is attributed to the chilling effect upon deposition of highly undercooled/partially crystallized droplets onto the pre-heated substrate and rapid heat extraction thereof due to bonding at the deposit/substrate interface.
机译:将一块12mm厚的Al 85 Y 8 Ni 5 Co 2 板喷涂在30mm厚的预涂层上加热的铜基板。使用光学,高分辨率扫描和透射电子显微镜对沉积物进行表征。进行差示扫描量热法以评估与相同组成的熔融纺丝条相比的沉积物的结晶行为。该沉积物在沉积物的底部和顶部区域显示出83和56 vol。%(基于总结晶能)的非晶相分数。该沉积物由非晶和纳米级结构以及微晶金属间相组成。沉积物中较大的无定形相部分归因于将高度过冷/部分结晶的液滴沉积到预热基板上时的冷却效应,以及由于在沉积物/基板界面处的结合而导致的快速吸热。

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