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Atomic pillar-based nanoprecipitates strengthen AlMgSi alloys

机译:原子柱基纳米沉淀可增强AlMgSi合金

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Atomic-resolution electron microscopy reveals that pillarlike silicon double columns exist in the hardening nanoprecipitates of AlMgSi alloys, which vary in structure and composition. Upon annealing, the Si, pillars provide the skeleton for the nanoparticles to evolve in composition, structure, and morphology. We show that they begin as tiny nuclei with a composition close to Mg2Si2Al7 and a minimal mismatch with the aluminum matrix. They subsequently undergo a one-dimensional growth in association with compositional change, becoming elongated particles. During the evolution toward the final Mg5Si6 particles, the compositional change is accompanied by a characteristic structural change. Our study explains the nanoscopic reasons that the alloys make excellent automotive materials.
机译:原子分辨率电子显微镜显示,柱状硅双柱存在于AlMgSi合金的硬化纳米沉淀物中,其结构和组成各不相同。退火后,硅柱为纳米颗粒提供了组成,结构和形态演变的骨架。我们表明,它们以微小的核开始,其组成接近Mg2Si2Al7,并且与铝基体的匹配度最小。随后,它们随着成分变化而经历一维生长,成为细长的颗粒。在向最终的Mg5Si6粒子演化的过程中,成分变化伴随着特征性的结构变化。我们的研究解释了合金制成出色汽车材料的纳米原因。

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