Nanometer Al2O3-Cu composites with high plasticity and strength
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摘要: 以Cu-Al水霧化合金粉末為原料,通過內氧化方法制備了Al2O3彌散強化銅復合材料,使用場發射掃描電子顯微鏡(FE-SEM)結合X射線衍射等手段,對復合材料進行了綜合研究.結果表明:γ-Al2O3彌散相粒子在基體內均勻分布,尺寸約6nm,間距30~50nm.擠壓態棒材的相對導電率為87%IACS,軟化溫度達850℃.擠壓態的25mm彌散強化銅棒材不經過任何中間熱處理,直接冷拉拔得到1mm的銅絲,其抗拉強度高達680MPa.Abstract: Using water-atomized Cu-Al alloy powder as raw materials,Al2O3 dispersion-strengthened copper composite materials were fabricated by the internal oxidation method.The obtained composite materials were comprehensively characterized by field emission scanning electron microscopy (FE-SEM) and X-ray diffraction analysis.The results show that γ-Al2O3 nano-particles with a mean size of 6 nm are uniformly distributed in the matrix and the space distance between particles is about 30 to 50 nm.The conductivity of the hot extruded bars is 87% IACS and the softening point is 850℃.Without any intermediate heat treatment,copper wires of Ф1 mm in diameter were produced by direct cold drawing from the dispersion-strengthened copper bars of Ф25 mm in diameter.The tensile strength of these copper wires is 680 MPa.
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