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LPBF制备Al-Ce-Sc-Zr合金的短时时效组织演化与力学性能研究

王贝贝 王朦朦 王刚 刘琪 顾贤科 费翔 张志 王冬晴

铸造技术2026,Vol.47Issue(5):529-536,8.
铸造技术2026,Vol.47Issue(5):529-536,8.DOI:10.16410/j.issn1000-8365.2026.6040

LPBF制备Al-Ce-Sc-Zr合金的短时时效组织演化与力学性能研究

Short-term Aging Strengthening Behavior and Mechanical Properties of an LPBF-fabricated Al-Ce-Sc-Zr Alloy

王贝贝 1王朦朦 2王刚 3刘琪 3顾贤科 4费翔 4张志 4王冬晴4

作者信息

  • 1. 安徽工程大学,安徽芜湖 241000
  • 2. 安徽工程大学,安徽芜湖 241000||增材制造(3D打印)安徽省联合共建学科重点实验室,安徽芜湖 241000||奇瑞汽车股份有限公司,安徽芜湖 241000||安徽开阳科技有限公司,安徽芜湖 241000
  • 3. 安徽工程大学,安徽芜湖 241000||增材制造(3D打印)安徽省联合共建学科重点实验室,安徽芜湖 241000
  • 4. 奇瑞汽车股份有限公司,安徽芜湖 241000||安徽开阳科技有限公司,安徽芜湖 241000
  • 折叠

摘要

Abstract

Based on thermodynamic calculations,a novel Sc-and Zr-microalloyed Al-Ce alloy was designed,and Al-10 wt.%Ce-0.3 wt.%Sc-0.25 wt.%Zr was selected as the target composition.The alloy was fabricated using laser powder bed fusion(LPBF).Combined with the isothermal age-hardening curve at 300℃,the microstructures and room-temperature tensile properties of the as-built alloy and the sample aged at 300℃ for 1 h were analysed.After aging at 300℃ for 1 h,a hierarchical microstructure consisting of microscale AlnCe3 eutectic phases,nanoscale L12-Al3(Sc,Zr)precipitates,and nanoscale stacking faults is formed in the alloy.Compared with the as-built state,the yield strength increases from(334.2±5.3)MPa to(391.3±6.1)MPa,and the ultimate tensile strength increases from(463.8±1.6)MPa to(552.9±6.5)MPa after aging for 1 h,without causing an obvious loss of ductility.The strength enhancement is attributed mainly to the effective impediment of dislocation motion by L12-Al3(Sc,Zr)precipitates and stacking fault structures,whereas the retention of ductility is associated with local stress relaxation and improved deformation compatibility induced by microstructural recovery during aging.

关键词

Al-Ce合金/热力学计算/激光粉末床熔融/时效

Key words

Al-Ce alloy/thermodynamic calculation/laser powder bed fusion/aging

分类

矿业与冶金

引用本文复制引用

王贝贝,王朦朦,王刚,刘琪,顾贤科,费翔,张志,王冬晴..LPBF制备Al-Ce-Sc-Zr合金的短时时效组织演化与力学性能研究[J].铸造技术,2026,47(5):529-536,8.

基金项目

安徽省自然科学基金(2508085QE194) (2508085QE194)

铸造技术

1000-8365

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