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Effect of processing condition and composition on the microhardness of Cu-(2.5-10)vol.Al₂O₃ nanocomposite powder particles produced by high energy mechanical milling

机译:加工条件和组成对高能机械磨制Cu-(2.5-10)vol。%Al 2 O 3纳米复合粉末颗粒显微硬度的影响

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摘要

Nanostructured Cu-(2.5-10vol.%)Al₂O₃ nanocomposites were produced using high energy mechanical milling. For the as-milled Cu- Al₂O₃ composite powder particles having Al₂O₃ volume fractions of 2.5% and 5%, the increase in average microhardness is significant with the increase of milling time from 12 hours to 24 hours. With the increase of the content of Al₂O₃ nanoparticles the microhardness increases and in the range of 255HV-270HV. The milled nanocomposite powders were heat treated at 150, 300, 400 and 500°C for 1 hour, respectively, to determine the thermal stability of the powder particles as a function of annealing temperature. The average microhardness increased/decreased for the Cu- Al₂O₃ composites after annealing at 150°C due to the dislocation density, while increasing the annealing temperature to 300°C and 400°C the average microhardness almost remained mostly unchanged. Further increasing the annealing temperature to 500°C causes significant decrease in average microhardness due to reduction in dislocation density and coarsening of Cu grains of the Cu- Al₂O₃ composite powders produced after 24 hours of milling. This paper is to report and discuss the changes of the microhardness of the material, caused by the compositions and processing conditions, used to fabricate the Cu-(2.5-10)vol.% Al₂O₃ nanocomposite powders.
机译:纳米结构的Cu-(2.5-10%(体积))Al 2 O 3纳米复合材料是用高能机械研磨制备的。对于Al 2 O 3体积分数为2.5%和5%的刚研磨的Cu-Al 2 O 3复合粉末颗粒,随着研磨时间从12小时增加到24小时,平均显微硬度的增加是显着的。随着Al 2 O 3纳米颗粒含量的增加,显微硬度在255HV-270HV范围内增加。将研磨的纳米复合粉末分别在150、300、400和500℃下热处理1小时,以确定粉末颗粒的热稳定性与退火温度的关系。由于位错密度,在150℃退火后,Cu-Al 2 O 3复合材料的平均显微硬度增加/降低,同时将退火温度提高到300℃和400℃,平均显微硬度几乎保持不变。将退火温度进一步提高到500℃,由于磨碎24​​小时后产生的Cu-Al 2 O 3复合粉末的位错密度降低和Cu晶粒粗大化,平均显微硬度显着降低。本文旨在报告和讨论由于组成和加工条件所引起的材料显微硬度的变化,这些材料用于制造Cu-(2.5-10)%(体积)的Al 2 O 3纳米复合粉末。

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