复合材料科学与工程Issue(5):23-33,11.DOI:10.19936/j.cnki.2096-8000.20260528.004
复合材料U形结构固化变形与最大应力差的尺寸效应研究
Study on the size effect of curing deformation and maximum stress difference on composite U-shaped members
摘要
Abstract
The curing deformation and stress difference generated during the curing and molding of composite materials significantly affect the forming accuracy,structural assembly and service life of components,especially in large-sized,irregular U-shaped structures widely used in the aerospace field.This study is the first to conduct a systematic investigation on the curing deformation and stress difference of large-sized,irregular U-shaped structures.It analyzed and compared the temperature,curing degree,curing deformation and stress distribution characteristics of different layups,revealing the law of size effect and the nonlinear variation of the maximum stress difference.The research found that the curing degree field and the temperature field have similarities.In the early stage,the tempera-ture and curing degree of the inner and outer layers increase rapidly,while in the later stage,the middle layer will complete the overtaking.The stress field in the thickness direction shows an interlayer gradient effect,with the middle layer maintaining a uniform distribution characteristic,while the inner and outer boundary layers form a non-uniform distribution pattern.The curing deformation evolution of thin-walled,irregular U-shaped structures conforms to the law of size effect.The maximum stress difference decreases with the increase of the external dimensions.During the thickness control process,there is a critical point of the minimum value.After exceeding this point,the maximum stress difference gradually increases,and this critical thickness value increases with the increase of the component's external dimensions.关键词
复合材料/固化变形/最大应力差/尺寸效应/固化度/临界厚度Key words
composites/cure deformation/maximum stress difference/size effect/degree of cure/critical thick-ness分类
通用工业技术引用本文复制引用
刘洋,赵红华,白瑞祥,黄钰棋,贾志,鉴锴..复合材料U形结构固化变形与最大应力差的尺寸效应研究[J].复合材料科学与工程,2026,(5):23-33,11.基金项目
国家自然科学基金(U24B20192) (U24B20192)