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Sintering Bonding of SiC Particulate Reinforced Aluminum Metal Matrix Composites by Using Cu Nanoparticles and Liquid Ga in Air

机译:SiC颗粒增强铝金属基复合材料通过使用Cu纳米颗粒和空气中的烧结粘合

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摘要

SiC particulate reinforced aluminum metal matrix composites (SiCp/Al MMCs) are characterized by controllable thermal expansion, high thermal conductivity and lightness. These properties, in fact, define the new promotional material in areas and industries such as the aerospace, automotive and electrocommunication industries. However, the poor weldability of this material becomes its key problem for large-scale applications. Sintering bonding technology was developed to join SiCp/Al MMCs. Cu nanoparticles and liquid Ga were employed as self-fluxing filler metal in air under joining temperatures ranging from 400 °C to 500 °C, with soaking time of 2 h and pressure of 3 MPa. The mechanical properties, microstructure and gas tightness of the joint were investigated. The microstructure analysis demonstrated that the joint was achieved by metallurgical bonding at contact interface, and the sintered layer was composed of polycrystals. The distribution of Ga was quite homogenous in both of sintered layer and joint area. The maximum level of joint shear strength of 56.2 MPa has been obtained at bonding temperature of 450 °C. The specimens sintering bonded in temperature range of 440 °C to 460 °C had qualified gas tightness during the service, which can remain 10−10 Pa·m3/s.
机译:SiC颗粒增强铝金属基复合材料(SICP / ALMMCS)的特征在于可控热膨胀,导热性和亮度高。事实上,这些属性定义了航空航天,汽车和电信业等领域和行业的新促销材料。然而,这种材料的可焊性不良成为大规模应用的关键问题。开发了烧结粘接技术以加入SICP / ALMCS。 Cu纳米颗粒和液体Ga在接合温度范围为400℃至500℃的空气中使用Cu纳米颗粒和液体Ga,浸泡时间为2小时,压力为3MPa。研究了接头的机械性能,微观结构和气密性。微观结构分析证明通过在接触界面处的冶金键合实现关节,并且烧结层由多晶构成。 Ga的分布在烧结层和接合区域中非常均匀。在450℃的键合温度下获得56.2MPa的最大关节剪切强度水平。在440℃至460°C的温度范围内粘合的标本烧结在服务期间具有合格的气体密封性,其可以保持10-10Pa·m3 / s。

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