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Influence of Ag impurity doping on the microstructure and hardness of alumina dispersion strengthened copper alloys

机译:AG杂质掺杂对氧化铝分散氧化铝微观结构和硬度强化铜合金的影响

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Dispersion strengthened copper alloys (DSC) with high strength and high conductivity are widely used in automobile and electronics industries. In the present investigation the influence of Ag impurity doping on the mechanical properties of the alumina dispersion strengthened copper alloys was studied by mechanical alloying, and the influence mechanism was discussed subsequently. Alumina dispersion strengthened copper alloys powder was fabricated by high-energy ball milling. XRD results showed that the high-energy ball milling can dissolve A12O3 into Cu matrix. As-milled powder was consolidated by cold-pressing and sintered at 860°C, 900°C, 940°C and 980°C, respectively. It was shown that the addition of Ag can significantly improve the hardness of Cu alloys. SEM characterization showed that the size of A12O3 particles in Cu-Al2O3 sintered at 980°C was about 200nm, which is bigger than the initial size (about 150±30nm) of A12O3 particles; and the size of Cu-Al2O3-Ag sintered at 980°C and 860°C was about 100nm and 30nm respectively. The difference in alumina size was considered as the result of Ag segregation at Cu/ A12O3 interface. The segregation of Ag at Cu/ A12O3 interface can suppress the growth of A12O3, which will significantly improve the hardness of Cu alloys.
机译:具有高强度和高导电性的分散加强铜合金(DSC)广泛用于汽车和电子工业。在本研究中,通过机械合金化研究了AG杂质掺杂对氧化铝分散铜合金的机械性能的影响,随后讨论了影响机理。氧化铝分散体强化铜合金粉末由高能球磨制成。 XRD结果表明,高能球铣削可以将A12O3溶解成Cu基质。通过冷压和烧结分别在860℃,900℃,940℃和980℃下固结。结果表明,添加AG可以显着提高Cu合金的硬度。 SEM表征显示,在980℃下烧结的Cu-Al 2 O 3中的A12O3颗粒的尺寸约为200nm,其大于A12O3颗粒的初始尺寸(约150±30nm);并且在980℃和860℃下烧结的Cu-Al2O3-Ag的尺寸分别为约100nm和30nm。作为Cu / A12O3界面的Ag偏析的结果,考虑了氧化铝大小的差异。在Cu / A 12 O 3界面处的Ag的分离可以抑制A12O3的生长,这将显着提高Cu合金的硬度。

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