高级检索

    工艺参数对Mg-9Gd-4Y-2Zn-0.5Zr合金扩散连接接头组织和剪切性能的影响

    Effect of Process Parameters on Microstructure and Shear Property of Diffusion Bonded Joints of Mg-9Gd-4Y-2Zn-0.5Zr Alloy

    • 摘要: 采用脉冲电流快速加热的放电等离子扩散连接设备,在不同温度(420~510 ℃)、不同压力(2~6 MPa)和不同时间(2,8 h)下对锻态Mg-9Gd-4Y-2Zn-0.5Zr镁合金进行真空扩散连接试验,研究了工艺参数对接头显微组织和剪切性能的影响。结果表明:接头边缘区域呈蜂窝状多孔结构,中心区域无明显孔洞等缺陷。随着连接温度升高,接头中块状LPSO相减少,片层状LPSO相增多,连接界面未焊合区域减少,接头剪切强度提高,当温度由480 ℃升至510 ℃时,接头剪切强度基本不变。在不高于450 ℃条件下随着连接压力升高,连接界面未焊合区域减少,接头剪切强度提高;在高于450 ℃条件下随着连接压力升高,连接界面形貌变化不大,2 MPa压力下接头已获得较高的剪切强度。随着连接时间延长,连接界面形貌无明显变化,接头剪切强度基本不变。在温度510 ℃、压力2 MPa和时间2 h下,接头连接界面完全焊合,剪切强度达母材(115 MPa)的94.8%。

       

      Abstract: The vacuum diffusion bonding tests were carried out on forged Mg-9Gd-4Y-2Zn-0.5Zr alloy at different temperatures (420‒510 ℃), pressures (2‒6 MPa) and time periods (2, 8 h) with a spark plasma diffusion bonding equipment with rapid pulse current heating. The effect of process parameters on the microstructure and shear property of the joints was studied. The results show that the edge area of the joints exhibited a honeycomb-like porous structure, and the central area of the joints had no obvious defects such as pores. With the increase of diffusion bonding temperature, the block LPSO phases in the joints decreased, the lamellar LPSO phases increased, the unwelded area of the bonding interface decreased, and the shear strength of the joints increased; when the temperature was raised from 480 ℃ to 510 ℃, the shear strength of the joints was basically unchanged. At temperatures not higher than 450 ℃, with the increase of diffusion bonding pressure, the unwelded area of the bonding interface decreased and the shear strength of the joints increased. At temperatures higher than 450 ℃, with the increase of diffusion bonding pressure, the morphology of the bonding interface did not change, and the joints obtained high shear strength under the pressure of 2 MPa. With the extension of diffusion bonding time period, there was no obvious change in the morphology of the bonding interface, and the shear strength of the joints was basically unchanged. At the temperature of 510 ℃, pressure of 2 MPa and time period of 2 h, the bonding interface was completely welded and the shear strength reached 94.8% of that of the base material (115 MPa).

       

    /

    返回文章
    返回