稀土化合物LaB6增强激光粉末床熔融TC4组织和性能

Microstructure and properties of laser powder bed fused TC4 reinforced by rare earth compound LaB6

  • 摘要:
    目的 旨在通过添加LaB6引入稀土La元素和B元素,改善激光粉末床熔融(Laser powder bed fusion, LPBF)TC4组织和性能,满足航空航天领域构件高性能需求。
    方法 通过系统研究LaB6对LPBF TC4组织形貌和相组成的影响,阐明其对力学性能作用机制。
    结果 研究结果表明,LaB6在LPBF凝固过程中作为异质形核剂和纳米La2O3颗粒对β晶粒起钉扎共同作用,抑制LPBF过程中和后续退火处理过程中晶粒长大,得到了近等轴晶粒。添加的LaB6在TC4中消耗O元素原位生成弥散分布的La2O3和TiB纳米颗粒。添加LaB6引起的晶粒细化和纳米颗粒增强共作用,同时提高了TC4的抗拉强度和断后伸长率。
    结论 加入LaB6后LPBF成形TC4试样抗拉强度由1 078 MPa提高到1 106 MPa,断后伸长率由9.5%提升至12%。

     

    Abstract: Objective This study aims to introduce rare earth element La and element B by adding LaB6 to improve microstructure and properties of TC4 fabricated by laser powder bed fusion (LPBF), thereby meeting the high-performance requirements of aerospace components. Methods Through systematic investigation of the effect of LaB6 on microstructure morphology and phase composition of LPBF TC4, underlying mechanism governing its influence on mechanical properties is elucidated. Results The results indicate that during LPBF solidification, LaB6 acts as a heterogeneous nucleation site, while the in-situ formed nano-La2O3 particles pin the β grain boundaries. This combined effect effectively suppresses grain growth both during the LPBF process and subsequent annealing treatment, resulting in nearly equiaxed grains. The addition of LaB6 leads to the in-situ formation of uniformly dispersed La2O3 and TiB nanoparticles, which consume O element within the TC4 matrix. The synergistic effects of grain refinement and nanoparticle strengthening, induced by LaB6 addition, simultaneously enhance tensile strength and elongation of TC4. Conclusion With the addition of LaB6, ultimate tensile strength of LPBFed TC4 specimen increases from 1 078 MPa to 1 106 MPa, and elongation rises from 9.5% to 12%.

     

/

返回文章
返回