Multiscale simulation of the interlaminar failure of graphene nanoplatelets reinforced fibers laminate composite materials

被引:8
|
作者
Basso, Matteo [1 ]
Azoti, Wiyao [2 ,3 ]
Elmarakbi, Hana [4 ,5 ]
Elmarakbi, Ahmed [5 ]
机构
[1] Ctr Ric Fiat SCpA, Grp Mat Labs Polymers & Glass Composites, Pomigliano Darco, Italy
[2] ECAM Strasbourg Europe, Sch Engn, F-67300 Schiltigheim, France
[3] Univ Strasbourg, CNRS, UMR 7357, ICube Lab, F-67000 Strasbourg, France
[4] St Anthonys Acad, Sunderland SR2 7JN, England
[5] Northumbria Univ, Fac Engn & Environm, Dept Mech & Construct Engn, Automot Composites, Newcastle NE1 8ST, England
基金
欧盟地平线“2020”;
关键词
composites; mechanical properties; theory and modeling; MECHANICAL-PROPERTIES; FRACTURE-TOUGHNESS; MASONRY WALLS; NANOCOMPOSITES; MATRIX; MODEL;
D O I
10.1002/app.47664
中图分类号
O63 [高分子化学(高聚物)];
学科分类号
070305 ; 080501 ; 081704 ;
摘要
This article presents a multiscale approach to derive the interlaminar properties of graphene nanoplatelets (GNPs)-based polymeric composites reinforced by short glass fibers (SGFs) and unidirectional carbon fibers (UCFs). The approach accounts for the debonding at the interface of a 2-phases GNPs/polymer matrix using a cohesive model. The resulting composite is used within a 3-phases nanocomposite consisting either of a GNPs/polyamide/SGFs or a GNPs/epoxy/UCFs nanocomposite. Experiments are performed for determining the interlaminar fracture toughness in mode I for the GNPs/epoxy/UCFs. Results show that the aspect ratio (AR) of GNPs influences the effective Young modulus which increases until a threshold. Also, the addition of the GNPs increases up to 10% the transverse Young modulus and up to 11% the shear modulus as well as up to 16% the transverse tensile strength useful in crashworthiness performance. However, the nanocomposite behavior remains fiber dominant in the longitudinal direction. This leads to a weak variation of the mechanical properties in that direction. Due to the well-known uniform dispersion issues of GNPs, the interlaminar fracture toughness G(IC) has decreased up to 8.5% for simulation and up to 2.4% for experiments while no significant variation of the interlaminar stress distribution is obtained compared to a nanocomposite without GNPs. (c) 2019 Wiley Periodicals, Inc. J. Appl. Polym. Sci. 2019, 136, 47664.
引用
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页数:11
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