固溶温度对Ti-1023钛合金显微组织和力学性能的影响

    Effects of Solution Temperature on Microstructure and Mechanical Properties of Ti-1023 Titanium Alloy

    • 摘要: 对Ti-1023钛合金进行不同温度(700~820℃)的固溶处理以及515℃的时效处理,并对热处理后Ti-1023合金显微组织中α相的大小、分布进行了量化分析,揭示了固溶温度与显微组织、室温拉伸性能之间的关系。结果表明,700℃固溶热处理时,固溶态Ti-1023合金中初生α相的尺寸和数量与原始状态基本一致,但随着固溶温度的升高,α相数量逐渐减少,小尺寸的初生α相先溶解消失,大尺寸初生α相溶解较慢。固溶态Ti-1023钛合金室温抗拉强度随着α相尺寸、数量的减小而下降,屈服强度降幅大于抗拉强度。时效过程中析出的α'相能够显著提升Ti-1023钛合金的抗拉强度和屈服强度,但塑性随着α'相数量增加呈降低趋势。

       

      Abstract: Solution treatment at different temperatures ranging from 700℃ to 820 ℃ and aging treatment at 515 ℃ were carried out for Ti-1023 titanium alloy. Quantitative analysis was performed on the size and distribution of phases in the microstructure of heat-treated Ti-1023 alloy, revealing the correlation between solution temperature and microstructure,room-temperature tensile properties. The results show that the size and number of primary α phase in Ti-1023 alloy solution-treated at 700℃ is the same as that of the original sample. With the increase of the solution temperature, the number of primary α phase gradually reduces, small-sized primary α phases dissolve and disappear rapidly, while large-sized primaryα phases dissolve at a slower rate.The influence of size and number of α phase on tensile properties is significant, the tensile strength and yield strength decrease with the reduction of α phase, and the yield strength decreases more significantly. The precipitated α' phases during aging can markedly improve the tensile strength and yield strength of Ti-1023 titanium alloy,whereas, the ductility tends to decline with the increase of α' phase content.

       

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