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Surface modification of aluminum alloy by incorporation of AlCoCrFeNi high entropy alloy particles via underwater friction stir processing

机译:通过水下摩擦搅拌加工掺入Alcocri高熵合金颗粒的铝合金表面改性

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摘要

AlCoCrFeNi high entropy alloy (HEA) particles were incorporated into AA5083 matrix by underwater friction stir processing (UFSP) to modify the surface properties of aluminum matrix. The effects of incorporation of HEA particles on microstructural evolution, micromechanical properties and wear performance were investigated. Microstructural observations showed that HEA particles were homogeneously distributed in the matrix with refined grains, the interface between the HEA particles and matrix showed a good metallurgical bonding with the thickness of approximately 200 nm. The incorporation of HEA particles can effectively accelerate the dynamic recrystallization (DRX) due to particle stimulated nucleation (PSN) mechanism and result in higher fraction of high-angle grain boundary (HAGBs). The fabricated composite showed 68.8% higher microhardness compared with as-received Al. Nanoindentation test results showed that the hardness, elastic modulus, H/E and H3/E2 ratios of the matrix were also improved. The wear test results showed that the fabricated composite exhibited the lowest friction coefficient and wear loss in all samples, and the wear rate was decreased by 48.6% compared with that of the as received Al.
机译:通过水下摩擦搅拌加工(UFSP)将AlcocroCeni高熵合金(Hea)颗粒掺入AA5083基质中以改变铝基基质的表面性质。研究了研究Hea颗粒对微观结构演化,微机械性能和磨损性能的影响。微观结构观察表明Hea颗粒在基质中均匀地分布于精制晶粒,Hea颗粒和基质之间的界面显示出良好的冶金键合,厚度约为200nm。 Hea颗粒的掺入可以有效地加速由于颗粒刺激的成核(PSN)机构(PSN)机构的动态再结晶(DRX),并导致高角度晶界(HAGB)的较高分数。与接收的Al相比,制造的复合材料显示出68.8%的微硬度。纳米狭窄试验结果表明,基质的硬度,弹性模量,H / E和H3 / E2比率也得到改善。磨损试验结果表明,制造的复合材料在所有样品中表现出最低的摩擦系数和磨损损失,与AS接收的AS相比,磨损率降低了48.6%。

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