Microstructures and properties of Al_2O_3 dispersion-strengthened copper alloys prepared through dif

来源 :International Journal of Minerals Metallurgy and Materials | 被引量 : 0次 | 上传用户:zouyuefu
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Al_2O_3 dispersion copper alloy powder was prepared by internal oxidation, and three consolidation methods—high-velocity compaction(HVC), hot pressing(HP), and hot extrusion(HE)—were used to prepare Al_2O_3 dispersion-strengthened copper(Cu–Al_2O_3) alloys. The microstructures and properties of these alloys were investigated and compared. The results show that the alloys prepared by the HP and HE methods exhibited the coarsest and finest grain sizes, respectively. The alloy prepared by the HVC method exhibited the lowest relative density(98.3% vs. 99.5% for HP and 100% for HE), which resulted in the lowest electrical conductivity(81% IACS vs. 86% IACS for HP and 87% IACS for HE). However, this alloy also exhibited the highest hardness(77 HRB vs. 69 HRB for HP and 70 HRB for HE), the highest compressive strength(443 MPa vs. 386 MPa for HP and 378 MPa for HE), and the best hardness retention among the investigated alloys. The results illustrate that the alloy prepared by the HVC method exhibits high softening temperature and good mechanical properties at high temperatures, which imply long service life when used as spot-welding electrodes. Al 2 O 3 dispersion copper alloy powder was prepared by internal oxidation, and three consolidation methods-high-velocity compaction (HVC), hot pressing (HP), and hot extrusion (HE) -were used to prepare Al 2 O 3 dispersion- strengthened copper (Cu-Al 2 O 3 The results show that the alloys prepared by the HP and HE methods drawings the coarsest and finest grain sizes, respectively. The alloy prepared by the HVC method showed the lowest relative density (98.3% vs. 99.5% for HP and 100% for HE), which resulted in the lowest electrical conductivity (81% IACS vs. 86% IACS for HP and 87% IACS for HE). However, this alloy also saw the highest The highest compressive strength (443 MPa vs. 386 MPa for HP and 378 MPa for HE), and the best hardness retention among the investigated alloys. The results illustrate that the hardness (77 HRB vs. 69 HRB for HP and 70 HRB for HE) that the alloy prepared by the HVC me thod exhibits high softening temperature and good mechanical properties at high temperatures, which imply long service life when used as spot-welding electrodes.
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