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芳纶蜂窝芯层对面外局部铺层结构的变形性能

卢政斌 孙巍 韦宁 刘路 李琼 吕秀雷

航空材料学报2025,Vol.45Issue(1):100-110,11.
航空材料学报2025,Vol.45Issue(1):100-110,11.DOI:10.11868/j.issn.1005-5053.2024.000013

芳纶蜂窝芯层对面外局部铺层结构的变形性能

Deformation performance of aramid honeycomb core layer on partial layup structure outside plane

卢政斌 1孙巍 1韦宁 1刘路 1李琼 1吕秀雷1

作者信息

  • 1. 连云港中复连众复合材料集团有限公司,江苏 连云港 222000
  • 折叠

摘要

Abstract

In the co-curing process of aramid honeycomb sandwich structures with traditional hexagonal core lattice structures,the deformation compatibility of honeycomb with locally varying structures outside the plane is an important factor affecting the internal forming quality of sandwich structures.This article analyzes the out-of-plane local deformation performance of honeycombs using numerical methods by establishing a finite element quantitative analysis model,combining typical structural experimental verification methods,using full-body modeling and elastic mechanics plate bending theory.It explores the influence of key factors such as honeycomb thickness and external pressure on honeycomb deformation,and verifies the local surface fitting method of super-honeycomb deformation limits.The results show that the quantitative analysis model of aramid honeycomb deformation capability,with deflection deformation fitting as the core,has good applicability for predicting the matching state of honeycomb-layered structures.For cases where the slope of the honeycomb deflection fitting curve is less than the transition slope of the layer,honeycomb yield milling has a positive impact on the bonding quality of the transition region of the layer,but different forms of yield milling do not produce significant differences in bonding quality.The relevant results have certain reference value for structural design and process design of honeycomb sandwich structures.

关键词

复合材料/夹层结构/蜂窝/变形/分析模型

Key words

composites/sandwich/honeycomb/deformation/analytical modelling

分类

航空航天

引用本文复制引用

卢政斌,孙巍,韦宁,刘路,李琼,吕秀雷..芳纶蜂窝芯层对面外局部铺层结构的变形性能[J].航空材料学报,2025,45(1):100-110,11.

基金项目

2023年度连云港市市级科技计划项目(CG2309) (CG2309)

航空材料学报

OA北大核心

1005-5053

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