田源灏,周建宏,杨智宇,丁兆虎,秦旭锋,蔡建,李丹,赵耀辉,徐淑权,白焘,宁慧铭.表征超混杂复合材料I型分层行为的半解析法研究[J].包装工程,2025,(9):77-85.
TIAN Yuanhao,ZHOU Jianhong,YANG Zhiyu,DING Zhaohu,QIN Xufeng,CAI Jian,LI Dan,ZHAO Yaohui,XU Shuquan,BAI Tao,NING Huiming.Semi-analytical Method for Characterizing Mode I Delamination Behavior of Super-hybrid Composite Materials[J].Packaging Engineering,2025,(9):77-85.
表征超混杂复合材料I型分层行为的半解析法研究
Semi-analytical Method for Characterizing Mode I Delamination Behavior of Super-hybrid Composite Materials
投稿时间:2025-02-17  
DOI:10.19554/j.cnki.1001-3563.2025.09.009
中文关键词:  超混杂复合材料  I型分层行为  半解析法
英文关键词:super-hybrid composite materials  mode I delamination behavior  semi-analytical method
基金项目:
作者单位
田源灏 西南技术工程研究所,重庆 400039 
周建宏 陆军装备部 驻重庆地区第七军事代表室 驻重庆地区第三军事代表室,重庆 400060 
杨智宇 陆军装备部 驻重庆地区第七军事代表室 驻重庆地区第三军事代表室,重庆 400060 
丁兆虎 重庆大学 航空航天学院,重庆 400044 
秦旭锋 西南技术工程研究所,重庆 400039 
蔡建 西南技术工程研究所,重庆 400039 
李丹 重庆大学 航空航天学院,重庆 400044 
赵耀辉 西南技术工程研究所,重庆 400039 
徐淑权 西南技术工程研究所,重庆 400039 
白焘 西南技术工程研究所,重庆 400039 
宁慧铭 重庆大学 航空航天学院,重庆 400044 
AuthorInstitution
TIAN Yuanhao Southwest Institute of Technology and Engineering, Chongqing 400039, China 
ZHOU Jianhong Seventh Military RepresentativeOffice in Chongqing,Third Military Representative Office in Chongqing, Armaments Department of the Army, Chongqing 400060, China 
YANG Zhiyu Seventh Military RepresentativeOffice in Chongqing,Third Military Representative Office in Chongqing, Armaments Department of the Army, Chongqing 400060, China 
DING Zhaohu College of Aerospace Engineering, Chongqing University, Chongqing 400044, China 
QIN Xufeng Southwest Institute of Technology and Engineering, Chongqing 400039, China 
CAI Jian Southwest Institute of Technology and Engineering, Chongqing 400039, China 
LI Dan College of Aerospace Engineering, Chongqing University, Chongqing 400044, China 
ZHAO Yaohui Southwest Institute of Technology and Engineering, Chongqing 400039, China 
XU Shuquan Southwest Institute of Technology and Engineering, Chongqing 400039, China 
BAI Tao Southwest Institute of Technology and Engineering, Chongqing 400039, China 
NING Huiming College of Aerospace Engineering, Chongqing University, Chongqing 400044, China 
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中文摘要:
      目的 以一种简单、高效的方法准确表征超混杂复合材料I型分层行为,助力该材料军用包装箱结构设计提质增效。方法 基于Timoshenko梁理论,推导超混杂复合材料I型断裂韧性与桥接应力的半解析法表达式,利用双悬臂梁试验的载荷-位移数据表征超混杂复合材料I型分层行为,对比半解析法计算结果与试验结果验证半解析法的准确性;基于半解析法结果建立的三线性内聚力模型,模拟超混杂复合材料I型分层行为,对比模拟结果与试验结果验证半解析法的准确性。结果 半解析法计算结果与试验结果吻合良好,模拟结果和试验载荷-位移曲线之间表现出较高的一致性。结论 该半解析法仅需利用双悬臂梁试验载荷-位移数据即可准确表征超混杂复合材料I型分层行为,避免目视观察裂纹扩展长度或开展额外试验测试材料参数,有效降低试验成本,减小试验误差,提高表征效率,在超混杂复合材料军用包装箱领域具有极大的应用前景。
英文摘要:
      The work aims to characterize the mode I delamination behavior of super-hybrid composite materials accurately with a simple and efficient method, to improve the quality and efficiency of the structural design of military packing boxes of such materials. Based on Timoshenko beam theory, the semi-analytical expressions of mode I fracture toughness and bridge stress of super-hybrid composite materials were derived. The load-displacement data of double cantilever beam test were used to characterize the mode I delamination behavior of super-hybrid composite materials. The accuracy of the semi-analytical method was verified by comparing the calculated results with the experimental results. Based on the results of the semi-analytical method, a trilinear cohesive force model was established to simulate the mode I delamination behavior of super-hybrid composite materials. The accuracy of the semi-analytical method was verified by comparing the simulation results with the experimental results. The calculated results of the semi-analytical method were in good agreement with the experimental results, and the simulated results were in good agreement with the experimental load-displacement curves. The semi-analytical method can accurately characterize the mode I delamination behavior of super-hybrid composite materials by the test load-displacement data of double cantilever beams only, avoid visual observation of crack propagation length or additional tests to test material parameters, effectively reduce the test cost, reduce the test error, and improve the characterization efficiency, which has great application prospects in the field of military packing of super-hybrid composite materials.
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