共 80 条
- [11] LIU J B, LIU S F, YANG X, Et al., Research Progress in lightweight application research of metal additive manufacturing technology[J], Materials China, 39, 2, (2020)
- [12] KLOTZ U E, TIBERTO D, HELD F., Optimization of 18-karat yellow gold alloys for the additive manufacturing of jewelry and watch parts[J], Gold Bulletin, 50, 2, (2017)
- [13] PRATHEESH K S, ELANGOVAN S, MOHANRAJ R, Et al., A review on properties of Inconel 625 and Inconel 718 fabricated using direct energy deposition, Materials Today: Proceedings, 46, pp. 7892-7906, (2021)
- [14] ZHU H W, LIU W C, JIANG Z D, Et al., Research progress in material system of aluminum alloy fabricated by selective laser melting, The Chinese Journal of Nonferrous Metals, 34, 1, (2024)
- [15] MURR L E, GAYTAN S M, RAMIREZ D A, Et al., Metal fabrication by additive manufacturing using laser and electron beam melting technologies, Journal of Materials Science & Technology, 28, 1, (2012)
- [16] LI Z H, LIU W P, LIU B, Et al., Difference-extent of microstructure and mechanical properties: Simulating multilaser selective melting Ti<sub>6</sub>Al<sub>4</sub>V, Optics & Laser Technology, 153, (2022)
- [17] MA R L, PENG C Q, CAI Z Y, Effect of bimodal microstructure on the tensile properties of selective laser melt Al-Mg-Sc-Zr alloy, Journal of Alloys and Compounds, 815, (2020)
- [18] LIU H, GU Z, LIANG J., Study on boiling heat transfer characteristics of composite porous structure fabricated by selective laser melting, Materials (Basel), 16, 19, (2023)
- [19] SUN W T, FU Y, MA H, Et al., High-strength AlCoCrFeNi<sub>2.1</sub> eutectic high entropy alloy skeleton with hollow brick wall structures by selective laser melting, Materials Science and Engineering A, 887, (2023)
- [20] ZHOU Y, SHEN S P, LIU T, Et al., Effective heat conduction evaluation of lattice structures from selective laser melting printing, International Journal of Heat and Mass Transfer, 218, (2024)