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Enhancing Corrosion and Wear Resistance of AA6061 by Friction Stir Processing with Fe78Si9B13 Glass Particles

机译:Fe78Si9B13玻璃粒子的摩擦搅拌处理可增强AA6061的耐蚀性和耐磨性

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摘要

The AA6061-T6 aluminum alloy samples including annealed Fe78Si9B13 particles were prepared by friction stir processing (FSP) and investigated by various techniques. The Fe78Si9B13-reinforced particles are uniformly dispersed in the aluminum alloy matrix. The XRD results indicated that the lattice parameter of α-Al increases and the preferred orientation factors F of (200) plane of α-Al reduces after friction stir processing. The coefficient of thermal expansion (CTE) for FSP samples increases at first with the temperature but then decreases as the temperature further increased, which can be explained by the dissolving of Mg and Si from β phase and Fe78Si9B13 particles. The corrosion and wear resistance of FSP samples have been improved compared with that of base metal, which can be attributed to the reduction of grain size and the CTE mismatch between the base metal and reinforced particles by FSP, and the lubrication effect of Fe78Si9B13 particles also plays a role in improving wear resistance. In particular, the FSP sample with reinforced particles in amorphous state exhibited superior corrosion and wear resistance due to the unique metastable structure.
机译:通过摩擦搅拌工艺(FSP)制备了包括退火Fe78Si9B13颗粒的AA6061-T6铝合金样品,并通过各种技术进行了研究。 Fe78Si9B13增强颗粒均匀地分散在铝合金基体中。 XRD结果表明,搅拌摩擦后,α-Al的晶格参数增加,α-Al的(200)面的择优取向因子F减小。 FSP样品的热膨胀系数(CTE)随温度先升高,然后随温度进一步升高而降低,这可以通过将Mg和Si从β相和Fe78Si9B13颗粒中溶解来解释。与FSP样品相比,FSP样品的耐蚀性和耐磨性得到了改善,这可以归因于FSP降低了晶粒尺寸以及FSP增强了FPS样品与增强颗粒之间的CTE不匹配,以及Fe78Si9B13颗粒的润滑作用在提高耐磨性方面起着作用。特别地,由于独特的亚稳结构,具有无定形增强颗粒的FSP样品表现出优异的耐腐蚀性和耐磨性。

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