航空学报2026,Vol.47Issue(11):322-339,18.DOI:10.7527/S1000-6893.2025.32073
点阵材料在航空发动机中的研究进展与应用
Research progress and application of lattice materials in aero-engines
摘要
Abstract
Lattice materials,as novel structural materials characterized by lightweight construction,high strength-to-weight ratio,and multifunctional capabilities,exhibit substantial application potential in aerospace propulsion systems.Drawing upon findings from our research team,this paper systematically examines the structural classifications(rod-like,plate-like,curved-shell configurations),material compositions(polymer matrix composites,metallic alloys,ce-ramic matrices),and fabrication methodologies(investment casting,additive manufacturing techniques)of lattice ma-terials,with particular focus on their functional attributes including enhanced thermal conductivity,superior thermal in-sulation performance,exceptional specific strength characteristics,impact resistance capacity,and tunable coeffi-cients of thermal expansion.Contemporary lattice material systems are comprehensively analyzed through compara-tive evaluation of their architectural configurations,constituent materials,manufacturing technologies,and resultant functional properties.The investigation specifically addresses implementation strategies for lattice materials demon-strating enhanced heat dissipation,thermal barrier capabilities,mechanical performance metrics,energy absorption characteristics,and customized thermomechanical responses in critical aerospace engine components such as turbine blades,combustion chamber linings,heat exchangers,and rotating disk structures.Empirical evidence demonstrates that integrated structural-functional design approaches enable lattice materials to significantly enhance overall system performance parameters,operational reliability thresholds,and weight reduction efficiencies in aerospace propulsion applications.Future technological advancements should prioritize resolving key technical challenges including multi-scale structural optimization under geometric constraints,long-term performance stability under extreme service condi-tions,and accurate predictive modeling of coupled thermomechanical phenomena to accelerate industrial adoption of these advanced materials.关键词
点阵材料/航空发动机/结构功能一体化/结构设计/增材制造Key words
lattice material/aero-engine/integration of structure and function/structural design/additive manufacturing分类
航空航天引用本文复制引用
田伟,刘砚飞,张少平,张汪洋,张东哲,郭会明,李祚军..点阵材料在航空发动机中的研究进展与应用[J].航空学报,2026,47(11):322-339,18.基金项目
中国航发自主创新专项资金(ZZCX-2023-006) Independent Innovation Special Fund of China Aviation Industry Corporation(ZZCX-2023-006) (ZZCX-2023-006)