Gao Zeng, Yang Huanyu, Feng Jianguang, Ji Fei, Niu Jitai, Brnic Josip
School of Materials Science and Engineering, Henan Polytechnic University, Jiaozuo 454003, China.
School of Materials Science and Engineering, Harbin Institute of Technology, Harbin 150001, China.
Nanomaterials (Basel). 2020 Feb 29;10(3):437. doi: 10.3390/nano10030437.
A new method for flux-free diffusion joining of aluminum matrix composites reinforced with SiC particles (SiC/Al MMCs) in atmosphere environment has been developed. Liquid gallium and nano-copper particles were employed as filler metal under joining temperatures ranging between 400 °C to 480 °C, with a holding time of 2 h and pressure of 3 MPa. The results showed that 65 vol.% SiC/6063 Al MMCs were successfully joined together. X-ray diffraction (XRD) analysis confirmed the presence of GaO at the fracture. Meanwhile, neither copper oxide nor aluminum oxide was detected. The formation of GaO can protect nano-copper particles and SiC/6063 Al MMCs from oxidation. The width of weld seam tended to be narrowed from 40 μm to 14 μm gradually with increasing temperature from 400 °C to 480 °C. The maximum shear strength level of 41.2 MPa was achieved with a bonding temperature of 450 °C. The change of the strength was due to the adequate elements' mutual diffusion and solution, as well as the change of the quantity and morphology of intermetallic compounds in the weld seam, such as AlCu and CuGa. When the diffusion joining temperature reached 440 °C or above, the leak rate of the specimen remained under 10 Pa·m/s.
开发了一种在大气环境中对碳化硅颗粒增强铝基复合材料(SiC/Al MMCs)进行无熔剂扩散连接的新方法。在400℃至480℃的连接温度、2小时的保温时间和3MPa的压力下,使用液态镓和纳米铜颗粒作为填充金属。结果表明,65体积%的SiC/6063 Al MMCs成功连接在一起。X射线衍射(XRD)分析证实了断口处存在GaO。同时,未检测到氧化铜和氧化铝。GaO的形成可以保护纳米铜颗粒和SiC/6063 Al MMCs不被氧化。随着温度从400℃升高到480℃,焊缝宽度从40μm逐渐变窄至14μm。在450℃的 bonding温度下,最大剪切强度达到41.2MPa。强度的变化是由于元素的充分相互扩散和溶解,以及焊缝中金属间化合物(如AlCu和CuGa)的数量和形态的变化。当扩散连接温度达到440℃或以上时,试样的泄漏率保持在10 Pa·m/s以下。