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首页> 外文期刊>Journal of Alloys and Compounds: An Interdisciplinary Journal of Materials Science and Solid-state Chemistry and Physics >AlCoCrFeNi high-entropy alloy particle reinforced 5083Al matrix composites with fine grain structure fabricated by submerged friction stir processing
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AlCoCrFeNi high-entropy alloy particle reinforced 5083Al matrix composites with fine grain structure fabricated by submerged friction stir processing

机译:Alcocrofeni高熵合金颗粒增强5083Al基质复合材料,具有细晶粒结构,由浸没式搅拌加工制造

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In the present work, 5083Al matrix composites reinforced by 10 vol% AlCoCrFeNi high-entropy alloy (HEA) particles were fabricated by submerged friction stir processing (SFSP). It was found that the fabricated composites consist of equiaxed fi ne grains with the mean size of 1.2 mu m due to dynamic recrystallization, particle stimulated nucleation (PSN) and shortened thermal cycle by water cooling. The HEA/5083Al interface showed a two-layer structure, the layer close to the HEA exhibited FCC + T phases with the thickness of approximately100 nm, and the other layer consisted of the Cr-depleted AlCoCrFeNi HEA particles in the size of roughly 100 nm. The SFSPed HEA/5083Al composites showed 25.1% higher yield stress (YS) and 31.9% higher ultimate tensile strength (UTS) in comparison with the base metal while maintaining acceptable ductility (18.9%). Grain refinement, geometrically necessary dislocations and load transfer effect can mainly be responsible for the improved strength. (C) 2020 Published by Elsevier B.V.
机译:在本作的工作中,通过浸没式摩擦搅拌加工(SFSP)制造5083A1型基质复合材料10Vol%Alcocro高熵合金(Hea)颗粒。发现,由于动态重结晶,粒子刺激的成核(PSN)和通过水冷却缩短了热循环,制造的复合材料由平均尺寸为1.2μm的平均粒径。 HEA / 5083AL界面显示了双层结构,靠近HEA的层表现出具有约100nm的厚度的FCC + T相,而另一层由CR耗尽的AlcoCrfeni Hea颗粒组成,大小为约100nm 。与基础金属相比,SFSPED HEA / 5083A1复合材料显示出25.1%的屈服应力(Ys)和31.9%的抗拉强度(UTS),同时保持可接受的延展性(18.9%)。晶粒细化,几何必要脱位和载荷转移效果主要是对改进的强度负责。 (c)2020由elsevier b.v发布。

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