@article{GAO2026, 
author = {Tong GAO and Shilong SU and Zhuang LI and Shijie XU and Jihong ZHU and Shaoping ZHANG and Weihong ZHANG},
title = {Research progress on optimization design method for thin-walled load-bearing structure with lattice and stiffeners},
year = {2026},
journal = {Acta Aeronautica et Astronautica Sinica},
volume = {47},
number = {15},
keywords = {lightweight, lattice, thin-walled stiffened structure, structural optimization, topology optimization, additive manufacturing},
url = {https://www.sciopen.com/article/10.7527/S1000-6893.2025.33063},
doi = {10.7527/S1000-6893.2025.33063},
abstract = {The thin-walled structure with lattice and stiffeners is a typical hybrid structure and effectively combines the load-bearing merits of lightweight lattices and thin-walled stiffened configurations, while demonstrating significant multifunctional potential that provides novel technical solutions for aerospace structural lightweighting. The increasing maturity of metal additive manufacturing technologies has laid a reliable foundation for the practical application of lattice structures. To facilitate the implementation of lattice structures in aerospace engineering, this paper focuses on thin-walled structures with lattice and stiffeners, primarily from the perspective of load-bearing structural design and its practical applications. Building upon the joint team's recent exploratory applications, this paper systematically outlines four critical aspects: fundamental characteristics of lattice structures, macroscale mechanical analysis methodologies, design of the lattice Representative Volume Element (RVE), eptimization design methodologies for thin-walled load-bearing structures with lattice and stiffeners. These systematic analyses aim to establish comprehensive reference guidelines for engineering designers. Furthermore, based on challenges encountered in aerospace, aviation, and aero-engine applications, this paper identifies priority research domains requiring urgent attention and critical technologies demanding breakthroughs in the hybrid structure design, offering valuable insights for researchers in related fields.}
}