近期,中南大学李瑞迪教授团队通过LPBF制备了高性能GH3536镍基高温合金(抗拉强度837MPa,延伸率29%),探究了扫描策略对材料显微组织与力学性能的影响,并对零件进行了成形工艺仿真。实现了材料研究和制造工艺的联动,成为增材制造应用于航空航天领域中一次成功的产学研融合。
文章题目:Laser powder bed fusion of GH3536 superalloy: Microstructure, mechanical properties and hydrocyclone manufacturing
文章摘要
研究背景
创新点
研究了摆放角度与支撑对旋流器成形的影响,结果表明当摆放角度为45°时,能充分利用45°悬垂角使得内流道无需支撑直接成形,与0°摆放角度相比,保证了内流道的功能性。
启示
近年团队发表文章:
[1] LI R, WANG M, LI Z, et al. Developing a high-strength Al-Mg-Si-Sc-Zr alloy for selective laser melting: Crack-inhibiting and multiple strengthening mechanisms [J]. Acta Mater 2020, 193: 83-98.
[2] Fan Z, Yin Y, Tan Q, Li X, Niu P, Li R, Yuan T, Zhang M-X, Huang H. Unveiling solidification mode transition and crystallographic characteristics in laser 3D-printed Al2O3-ZrO2 eutectic ceramics. Scripta Mater 2022; 210:114433.
[3] Wang M, Li R, Yuan T, Kang J, Niu P, Zheng D, Fan Z. The evolution of quasicrystal during additive manufacturing and aging treatment of a Si-modified Al–Mn-Sc alloy. Materials Science and Engineering: A 2022; 859:144206.
[4] Xu R, Li R, Yuan T, Zhu H, Wang M, Li J, Zhang W, Cao P. Laser powder bed fusion of Al–Mg–Zr alloy: Microstructure, mechanical properties and dynamic precipitation. Materials Science and Engineering: A 2022; 859:144181.
文章信息
https://doi.org/10.1016/j.apmate.2023.100134