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Strong and ductile particulate reinforced ultrafine-grained metallic composites fabricated by flake powder metallurgy

机译:片状粉末冶金制得的强韧性球状增强超细颗粒金属复合材料

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摘要

A strategy of nanodispersion toughening is utilized to improve the ductility in micron particulate-reinforced aluminum composites, which involves increasing the strain hardening rate by introducing A1_2O_3 nanodispersoids into the ultrafine-grained (UFG) matrix using flake powder metallurgy. The as-fabricated B_4C/UFG A1(A1_2O_3) exhibits simultaneous enhancement in tensile plasticity (8.9%) and strength (364 MPa) compared with its counterpart without the nanodispersoids. Thus, nanodispersion toughening promises an easy but effective pathway to optimize the strength and ductility of particulate-reinforced UFG metallic composites.
机译:利用纳米分散增韧策略来改善微米颗粒增强的铝复合材料的延展性,这涉及通过使用片状粉末冶金将A1_2O_3纳米分散体引入超细晶粒(UFG)基体来提高应变硬化速率。与没有纳米分散体的同类产品相比,制成的B_4C / UFG A1(A1_2O_3)的拉伸塑性(8.9%)和强度(364 MPa)同时提高。因此,纳米分散增韧有望提供一种简便而有效的途径来优化颗粒增强的UFG金属复合材料的强度和延展性。

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