Interlaminar and translaminar fracture toughness of Automated Manufactured Bio-inspired CFRP laminates

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作者
Rodríguez-García, Verónica [1 ,3 ]
Herráez, M. [4 ]
Martínez, Vanesa [5 ]
Guzman de Villoria, Roberto [2 ,3 ]
机构
[1] EIT Manufacturing West, S.L. Paseo de Mikeletegi 1, Donostia/San Sebastian, Gipuzkoa,20009, Spain
[2] Department of Mechanical Engineering, Escuela Politécnica Superior de Zamora, University of Salamanca, Avenida Requejo, 33, Zamora,49022, Spain
[3] FIDAMC, Foundation for the Research, Development and Application of Composite Materials, Avda. Rita Levi Montalcini 29, Getafe, Madrid,28906, Spain
[4] Materials Science and Engineering Area, Escuela Superior de Ciencias Experimentales y Tecnología, Universidad Rey Juan Carlos, Madrid, Spain
[5] IMDEA Materials Institute, C/Eric Kandel, 2, Getafe, Madrid,28906, Spain
关键词
Automatic tape lay-up - Bio-inspiration - Carbon fibre reinforced polymer - Fibre reinforced polymer laminates - Interlaminar - Interlaminar fracture toughness - Natural structures - Prepregs - Strength and toughness - Translaminar;
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摘要
Natural structures such as nacre show an outstanding balance of strength and toughness, despite comprising mainly brittle constituents; this is a highly desirable combination of properties scarcely seen in synthetic composites. In this study, carbon fibre-reinforced polymer (CFRP) laminates mimicking the structure of nacre (‘brick-and-mortar’) were manufactured using the automated tape laying (ATL) technique, as a means of enhancing their interlaminar properties and fracture toughness. The interlaminar fracture toughness of the bio-inspired CFRP laminates was measured via double cantilever beam (DCB) and three-point bending end-notched flexure (3ENF) tests. The results indicated increments of up to 32% and 92%, respectively, in the interlaminar fracture toughness when compared with that of conventional continuous CFRP samples. In addition, the translaminar fracture toughness of the developed nacre-inspired CFRPs was measured through a compact tension (CT) test, which revealed increments of up to 30%. Finally, different reinforcement mechanisms were analysed to understand the effect of the ‘brick-and-mortar’ structure. © 2021 The Authors
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