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Microstructure and properties of Cu-Mg alloy treated by internal oxidation

机译:内氧化治疗Cu-Mg合金的组织与性能

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摘要

A Cu-0.24Mg alloy bar was treated by internal oxidation using Cu2O as an oxidiser at 1123-1273K for 10 h. The thermodynamic diagram for oxidation of a Cu-Mg alloy was confirmed by the critical oxygen pressure. The results show that the thickness of the MgO/Cu layer and the electrical conductivity of the Cu-0.24Mg alloy increase with increasing internal oxidation temperature, whereas the average hardness of the MgO/Cu layer initially increases and subsequently decreases. Examination of the microstructure of the MgO/Cu layer revealed that Mg precipitation in the form of MgO particles and their uniform dispersion in the Cu matrix were the primary reasons for increases in the comprehensive properties of the Cu-Mg alloy treated by internal oxidation.
机译:通过在1123-1273K的氧化剂10小时,通过内部氧化处理Cu-0.24mg合金棒。 通过临界氧气压力证实了用于Cu-Mg合金的氧化的热力学图。 结果表明,MgO / Cu层的厚度和Cu-0.24mg的电导率随着内部氧化温度的增加而增加,而MgO / Cu层的平均硬度最初增加并随后降低。 检查MgO / Cu层的微观结构显示Mg以MgO颗粒形式的Mg沉淀及其在Cu基质中的均匀分散体是通过内部氧化处理的Cu-Mg合金的综合性质增加的主要原因。

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