颗粒增强铝基复合材料的制备及热膨胀性能
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Fabrication and thermal expansion properties of particle reinforced Al matrix composites
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    摘要:

    以复合材料在电子封装方面的应用为目标,选择粒径大约为4μm的Al2O3、AlN和SiC颗粒,采用挤压铸造法方法制备了颗粒体积分数为40%的3种铝基复合材料.研究表明,所制备的复合材料组织致密,颗粒均匀分布.对比分析表明,复合材料的平均线膨胀系数(CTE)在11.51×10-6~18.62×10-6/K之间并随着加热温度的升高而增大.SiCp/2024复合材料的CTE实测值最低,AlNp/6061次之,Al2O3p/2024略高;Al2O3p/2024的实测值与Ker

    Abstract:

    Aimed at electronic packaging application, the different types of particles of Al2O3, AlN and SiC which the mean size is about 4 μm are selected and three types of composites are fabricated by squeeze casting method with the particle volume fraction is 40%. The results show that the microstructure of composites is dense and free of pores with the particle distribute uniformly. The mean linear coefficient of thermal expansion (CTE) of composites ranges from 11.51×10-6~18.62×10-6/K and increases with increasing temperature. The measured coefficient of thermal expansion of SiCp/2024 is lower than that of AlNp/6061 and Al2O3p/2024. The measured CTE values of Al2O3p/2024 composites agreed well with Kerner’s model, the CTE of AlNp/6061 is closer to the prediction by ROM, and the CTE of SiCp/2024 varies from lower limit to upper limit of Shapery’s model.

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栾佰峰,裴英飞,黄天林,叶青,黄光杰,杨谦.颗粒增强铝基复合材料的制备及热膨胀性能[J].重庆大学学报,2010,33(8):135-142.

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  • 收稿日期:2010-02-14
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