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Effect of Intermetallic Compounds on the Thermal and Mechanical Properties of Al–Cu Composite Materials Fabricated by Spark Plasma Sintering

机译:金属间化合物对火花等离子体烧结制备Al-Cu复合材料热力学性能的影响

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摘要

Aluminium–copper composite materials were successfully fabricated using spark plasma sintering with Al and Cu powders as the raw materials. Al–Cu composite powders were fabricated through a ball milling process, and the effect of the Cu content was investigated. Composite materials composed of Al–20Cu, Al–50Cu, and Al–80Cu (vol.%) were sintered by a spark plasma sintering process, which was carried out at 520 °C and 50 MPa for 5 min. The phase analysis of the composite materials by X-ray diffraction (XRD) and energy-dispersive spectroscopy (EDS) indicated that intermetallic compounds (IC) such as CuAl2 and Cu9Al4 were formed through reactions between Cu and Al during the spark plasma sintering process. The mechanical properties of the composites were analysed using a Vickers hardness tester. The Al–50Cu composite had a hardness of approximately 151 HV, which is higher than that of the other composites. The thermal conductivity of the composite materials was measured by laser flash analysis, and the highest value was obtained for the Al–80Cu composite material. This suggests that the Cu content affects physical properties of the Al–Cu composite material as well as the amount of intermetallic compounds formed in the composite material.
机译:以铝和铜粉为原料的火花等离子体烧结成功地制造了铝铜复合材料。通过球磨工艺制备了Al-Cu复合粉末,并研究了Cu含量的影响。通过火花等离子烧结工艺烧结由Al-20Cu,Al-50Cu和Al-80Cu(体积%)组成的复合材料,该工艺在520°C和50 MPa下进行5分钟。通过X射线衍射(XRD)和能量色散光谱(EDS)对复合材料进行的相分析表明,在火花等离子体烧结过程中,Cu和Al之间的反应形成了金属间化合物(IC),例如CuAl2和Cu9Al4。使用维氏硬度计分析复合材料的机械性能。 Al-50Cu复合材料的硬度约为151 HV,高于其他复合材料的硬度。通过激光闪光分析测量了复合材料的热导率,并且获得了Al-80Cu复合材料的最高值。这表明铜含量会影响铝铜复合材料的物理性能以及在复合材料中形成的金属间化合物的数量。

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