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反應合成AgCuO復合材料中CuO的長大動力學分析

Growth kinetics analysis of CuO in reactive synthesis AgCuO composites

  • 摘要: 通過分析銀銅顆粒表面銅與氧的反應,計算銀銅合金中銅的沉淀析出量、銅在銀基體中的擴散速率以及CuO顆粒大小,研究了反應合成AgCuO復合材料中CuO的長大動力學行為.結果表明:在反應合成制備過程中,氧化銅顆粒長大動力學行為滿足拋物線規律;銀銅合金表面銅與氧的反應是一種銅擴散控制型反應,該氧化銅顆粒的長大與銅在銀銅合金中的含量、擴散速率和所處位置(晶內、晶界)有關.計算得到的CuO顆粒大小與實際獲得的氧化銅顆粒大小相吻合.

     

    Abstract: The growth kinetics behaviors of CuO particles in reactive synthesis AgCuO composites were investigated by analyzing the reaction of copper and oxygen on the surface of a silver-copper alloy and calculating the precipitation amount of copper in the silvercopper alloy, the diffusion rate of copper in silver matrix and the size of CuO particles. It is indicated that the growth kinetics of CuO particles in the reactive synthesis process follows a parabolic law, the reaction of copper and oxygen on the surface of the silver-copper alloy is controlled by copper diffusion, and the growth of CuO particles is influenced by the content, diffusion rate and location (grains or grain boundaries) of copper in the silver-copper alloy. The calculated size of copper oxide particles agrees with the measured one.

     

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