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低强度胶粘接的玻璃纤维多胞结构 准静态压缩试验研究

作者:时间:2022-08-26点击数:


全文下载: 202204012.pdf


文章编号: 1672-6987202204-0087-10 DOI 10.16351/j.1672-6987.2022.04.012


张奇, 张震东*(南京理工大学 机械工程学院,江苏 南京 210094)

摘要: 模压成型工艺制备正六边形玻璃纤维管件,采用低强度胶(3MDP460)环氧树脂胶粘接成多胞结构试件,用万能试验机对其进行准静态压缩试验,分析了其压缩破坏模式和吸能特性。试验结果表明:准静态压缩过程中,玻璃纤维管件出现外翻、倾斜、脱粘、纤维断裂的破坏形式及各种破坏形式的复合,随着厚度增加,试件还出现分层现象;加载过程中,试件普遍出现脱粘现象,实际平均压缩载荷普遍小于理论平均压缩载荷,但仍能观察到平均压缩载荷及峰值载荷随着胞元数量增加而增大,随胞元壁厚增加而增大;本试验最小比吸能为811 J·g-1,最大比吸能为3227 J·g-1,且比吸能随壁厚增加而增加,与胞元数量无明显相关性。


关键词: 多胞结构; 准静态压缩; 比吸能; 破坏模式


中图分类号: TB 332文献标志码: A

引用格式: 张奇, 张震东. 低强度胶粘接的玻璃纤维多胞结构准静态压缩试验研究[J. 青岛科技大学学报(自然科学版), 2022, 43(4): 87-96.


ZHANG Qi ZHANG Zhendong.Experimental study on quasi-static compression of glass fiber multi-cellular structure bonded by low strength adhesiveJ. Journal of Qingdao University of Science and TechnologyNatural Science Edition), 2022 434): 87-96.


Experimental Study on Quasi-static Compression of Glass Fiber Multi-cellular

Structure Bonded by Low Strength Adhesive

ZHANG Qi ZHANG Zhendong

(College of Mechanical Engineering, Nanjing University of Science and Technology Nanjing 210094China)

Abstract: The hexagon glass fiber tube was prepared by the molding process, and the multi cell structure specimen was bonded by the low strength adhesive (3MDP460) , and the quasi-static compression test was carried out by the universal testing machine, the compression failure mode and energy absorption characteristics are analyzed.The test results show that during the quasi-static compression process, the failure modes of Eversion, declination, debonding, fiber fracture and the combination of various failure modes appear, and the specimens are layered with the increase of thickness, the results show that the average compression load and the peak compression load increase with the increase of the number of cells and the thickness of cell wall.The minimum specific absorption energy was 811 J·g-1, and the maximum specific absorption energy was 3227 J·g-1.


Key words: multi-cell structure; quasi-static compression; specific energy absorption; failure mode


收稿日期: 2021-07-12

基金项目: 青年科学基金项目 (A020602).

作者简介: 张奇(1996—),男,硕士研究生.*通信联系人.






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