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Powder Aluminum Composites of Al-Cu System with Micro-Additions of Oxide Nanoparticles

机译:微量添加氧化物纳米粒子的Al-Cu体系粉末铝复合物

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摘要

Aluminum composites doped with copper (4 wt %) with micro-additions (0.01-0.15 vol %) of oxide nanoparticles (Al_2O_3, ZrO_2, MgO, SiO_2) are synthesized by the powder metallurgy method. Their microstructure and mechanical properties (Brinell hardness number, Vickers microhardness) are investigated. Existence of phases CuAl_2 both on the boundaries and inside grains of the matrix are revealed. Optimal concentrations of nanoparticles that provide high mechanical properties are determined. For Al-Cu material with 0.15 vol % of aluminum oxide, a maximum increase in Brinell hardness of 17% (68 HB) with respect to aluminum composite without nano-additions sintered according to the same technology is observed. Among the investigated materials, the highest Vickers microhardness of 0.543 GPA is intrinsic to aluminum composite with Al_2O_3 content of 0.1 vol %.
机译:通过粉末冶金法合成了掺杂有铜(4 wt%)和微量添加(0.01-0.15 vol%)的氧化物纳米颗粒(Al_2O_3,ZrO_2,MgO,SiO_2)的铝复合材料。研究了它们的微观结构和机械性能(布氏硬度值,维氏显微硬度)。揭示了基体的边界和内部晶粒中都存在相CuAl_2。确定提供高机械性能的纳米粒子的最佳浓度。对于具有0.15体积%氧化铝的Al-Cu材料,相对于没有按照相同技术烧结的纳米添加剂的铝复合材料,布氏硬度最大增加了17%(68 HB)。在所研究的材料中,最高的维氏显微硬度为0.543 GPA是Al_2O_3含量为0.1 vol%的铝复合材料所固有的。

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