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高性能夹芯结构的面板与芯材的黏合性能
作者姓名:Yi-ou SHEN  Wesley CANTWELL  Yan LI
作者单位:School of Aerospace Engineering and Applied Mechanics, Tongji University;Department of Aerospace Engineering, Khalifa University of Science, Technology and Research (KUSTAR)
基金项目:Project supported by the Engineering and Physical Sciences Research Council(EPSRC)(No.EPSRC EP/C009525/1)of China;the China Postdoctoral Science Foundation(No.2011M500625)
摘    要:研究目的:通过准静态到动态的加载,研究以不锈钢点阵结构为芯材的夹芯结构的层间断裂韧性。创新要点:制备的夹芯结构不需要黏合剂,但是具有优异的面板-芯材界面性能;证明改良后的三点弯曲实验可用于研究夹芯结构在低速冲击下的界面性能。研究方法:采用改良后的三点弯曲实验(见图2)测试夹芯结构的面板芯材断裂韧性;采用低速冲击米测试夹芯结构的抗分层性能(见图5)和吸收能量性能(见图8)。重要结论:1.采用热压法制备的以碳纤维增强环氧树脂预浸料为面板,不锈钢点阵结构为芯材的夹芯结构不需要任何粘合剂;2.所得夹芯结构在受到准静态和动态三点弯曲加载时展现了优异的抗面板一芯材界面分层性能,断裂能达到5500J/m2;3.改良的三点弯曲实验可以用于测试低速冲击条件下夹芯结构的断裂性能。

关 键 词:夹芯结构  层间断裂韧性  弯曲性能

Skin-core adhesion in high performance sandwich structures
Yi-ou SHEN,Wesley CANTWELL,Yan LI.Skin-core adhesion in high performance sandwich structures[J].Journal of Zhejiang University Science,2014,15(1):61-67.
Authors:Yi-ou Shen  Wesley Cantwell  Yan Li
Institution:1. School of Aerospace Engineering and Applied Mechanics, Tongji University, Shanghai, 200092, China
2. Department of Aerospace Engineering, Khalifa University of Science, Technology and Research (KUSTAR), Abu Dhabi, UAE
Abstract:The aim of this study is to characterize the interfacial fracture toughness of a micro-lattice core based sandwich structure from quasi-static to dynamic rates of loading. The modified three-point bend (MTPB) sandwich beam was used to characterize the interfacial properties of these sandwich structures. Dynamic tests were undertaken of up to 3 m/s using a purpose-built instrumented drop-weight impact tower. Data reduction was accomplished through the use of a compliance calibration procedure similar to that used for characterizing the delamination resistance of composites. The flexural properties of sandwich beams were investigated through three-point bend tests at a cross-head displacement rate of up to 3 m/s. A detailed examination of the impact region highlighted the failure processes in these systems and this was related to the data from the quasi-static flexural tests. The globalized deformation and energy absorption during progressive were also discussed.
Keywords:Sandwich structure  Interfacial fracture toughness  Flexural property
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