TiB2/Al-Cu-Li复合材料时效析出及组织演变对力学性能的影响

Effects of aging precipitation and microstructure evolution on mechanical properties of TiB2/Al-Cu-Li composites

  • 摘要: 研究了TiB2/Al-Cu-Li复合材料T6工艺的微观组织演变和时效析出对力学性能的影响。通过气氛保护熔炼法制备了TiB2/Al-Cu-Li复合材料。结果表明:在铸态合金的微观组织中,TiB2颗粒和共晶相主要分布在晶界周围。均匀化处理后,大部分共晶相回溶。轧制变形后,TiB2颗粒沿着轧制方向被拉长,产生了大量位错。固溶处理削弱了轧制产生的Brass织构和S织构,回溶了轧制产生的析出相。在175℃温度下进行时效,欠时效过程中,δ'(Al3Li)/β'(Al3Zr)为主要析出相。随着时效时间的增加,到22 h峰时效时,T1相为主要析出强化相。通过位错强化和析出强化的共同作用,随时效时间增加,屈服强度和抗拉强度先上升后下降,延伸率持续下降。复合材料峰时效的极限抗拉强度为562.7 MPa,屈服强度为475.9 MPa,延伸率为4.5%。

     

    Abstract: The effects of microstructure evolution and aging precipitation during T6 process on the mechanical properties of TiB2/Al-Cu-Li composites were investigated. The TiB2/Al-Cu-Li composites were prepared by protective atmosphere melting. The results show that within the microstructure of as-cast alloys, TiB2 particles and eutectic phases are mainly distributed around the grain boundaries. After homogenization treatment, the eutectic phase is mostly dissolved. After rolling deformation, TiB2 particles are elongated along the rolling direction and a large number of dislocations are generated. The solid solution treatment weakens the Brass texture and S texture generated by the rolling and the precipitated phases generated by the rolling are resolved. Aging is performed at 175℃, δ'(Al3Li)/β'(Al3Zr) is the main precipitated phase during under-aging. With the increase of aging time, the T1 phase is the main precipitation strengthening phase at 22 h peak aging. Through the combined effect of dislocation strengthening and precipitation strengthening, the yield strength and ultimate tensile strength increase and then decrease with increasing aging time, and the elongation continuously decreasing. The ultimate tensile strength, yield strength and elongation after peak aging reach 562.7 MPa, 475.9 MPa, and 4.5%, respectively.

     

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