Interface characteristic and mechanical performance of TiAl/Ti2AINb diffusion bonding joint with pur

来源 :稀有金属(英文版) | 被引量 : 0次 | 上传用户:xwxseven
下载到本地 , 更方便阅读
声明 : 本文档内容版权归属内容提供方 , 如果您对本文有版权争议 , 可与客服联系进行内容授权或下架
论文部分内容阅读
Solid-state diffusion bonding(DB)of TiAl alloy and Ti2AlNb alloy was carried out using pure Ti as an interlayer at 1000 ℃ under 20 MPa for 60-120 min.The effects of bonding times on the interfacial microstructure and mechanical performance of the TiAl/Ti/Ti2AlNb bon-ded joints at room temperature(RT)were investigated detailly.The results demonstrated that the diffusion layers(DLs)mainly consisted of four characteristic layers,(I)single coarse α2 phase adjacent TiAl alloy,(II)single refined α2 phase at the bonding interface,(III)equiaxed/acicular α2 phase embedded in β phase adjacent Ti2AlNb alloy and(IV)both equiaxed α2 phase and acicular O phase embedded in β phase adjacent Ti2AlNb alloy,respectively.The thickness of the four layers increased with the increasing of the bonding time.The growth of DLs is controlled by diffusion and the reaction rate constant k for region I,II,III and IV are 1.22 × 10-6,1.27 × 10-6,2.6 × 10-7 and 7.7 × 10-7 m?s-1/2,respectively.Mean-while,the interface α2 grain grows up without texture.The maximum tensile strength of 281 MPa was maintained at 1000 ℃ for 90 min under the pressure of 20 MPa.Con-sequently,the phase transformation and dynamic recrys-tallization behavior of the DLs were discussed.
其他文献
A LiFePO4-type lithium secondary battery cell of 8 Ah capacity with a high energy density and power density was developed for hybrid electric vehicle(HEV)applic
In this paper,it was addressed a hydrogen absorbing and desorbing thermodynamics in α+β type TC21 titanium alloy with high strength and toughness based on the
目前传统视觉惯性SLAM通常采用点特征来对相机位姿进行估计,但在两边都是白墙的走廊等弱纹理环境下表现很不理想,容易跟踪失败.因此使得仅基于点特征的SLAM算法面临巨大挑战,