Enhancing fiber/matrix interface adhesion in polymer composites: Mechanical characterization methods and progress in interface modification

被引:6
作者
Goda, Ibrahim [1 ]
Padayodi, Essole [1 ]
Raoelison, Rija Nirina [2 ]
机构
[1] Univ Technol Belfort Montbeliard, ELLIADD, Belfort, France
[2] Univ Technol Belfort Montbeliard, CNRS, ICB, Belfort, France
关键词
Interfacial properties; interface characterization methodologies; interfacial adhesion performance; fiber reinforced polymer composites; interface modification; CARBON FIBER/EPOXY COMPOSITES; GRAPHENE OXIDE COATINGS; FIBER BUNDLE COMPOSITES; PULL-OUT TEST; METHYLPHENYLSILICONE RESIN COMPOSITES; ASSISTED ELECTROPHORETIC DEPOSITION; PBO FIBER/BISMALEIMIDE COMPOSITE; REINFORCED EPOXY COMPOSITES; INTERLAMINAR SHEAR-STRENGTH; FRAGMENTATION TEST;
D O I
10.1177/00219983241283958
中图分类号
TB33 [复合材料];
学科分类号
摘要
The interface between the fiber and polymer matrix is a crucial region that plays a major role in the mechanical performance of fiber reinforced polymer composites (FRPCs) materials. The properties of this zone are recognized to have a significant influence on the fracture and failure of FRPCs. As a result, strong adhesion at the interface is required for effective stress transfer and load distribution within the composite material. In light of this, the aim of this work is to provide an up-to-date review of test methods for assessing fiber/matrix interface adhesion in FRPCs under static and dynamic loadings, along with advancements in interface modification techniques. At the outset, we give an overview of the different modification treatments used thus far, alongside interface testing methods, in order to optimize fiber/matrix compatibility, improve interfacial bonding and scrutinize their impact on interfacial adhesion properties. Particular attention is then focused on the description of the main mechanical characterization techniques used to assess the fiber/matrix interfacial properties. In the final outlook, we highlight the key findings and discuss potential directions for characterization of the fiber/matrix interface.
引用
收藏
页码:3077 / 3110
页数:34
相关论文
共 217 条
[1]   Effects of hydrazine reduced graphene oxide on the inter-laminar fracture toughness of woven carbon fiber/epoxy composite [J].
Adak, Nitai Chandra ;
Chhetri, Suman ;
Kuila, Tapas ;
Murmu, Naresh Chandra ;
Samanta, Pranab ;
Lee, Joong Hee .
COMPOSITES PART B-ENGINEERING, 2018, 149 :22-30
[2]   Experiments to relate carbon-fibre surface treatments to composite mechanical properties [J].
Ageorges, C ;
Friedrich, K ;
Ye, L .
COMPOSITES SCIENCE AND TECHNOLOGY, 1999, 59 (14) :2101-2113
[3]   Preparation and characterization of carbon nanotube-hybridized carbon fiber to reinforce epoxy composite [J].
An, Feng ;
Lu, Chunxiang ;
Li, Yonghong ;
Guo, Jinhai ;
Lu, Xiaoxuan ;
Lu, Huibin ;
He, Shuqing ;
Yang, Yu .
MATERIALS & DESIGN, 2012, 33 :197-202
[4]   Fibre fragment distribution in a single-fibre composite tension test [J].
Andersons, J ;
Joffe, R ;
Hojo, M ;
Ochiai, S .
COMPOSITES PART B-ENGINEERING, 2001, 32 (04) :323-332
[5]   Interfacial mechanical properties of carbon nanotube-deposited carbon fiber epoxy matrix hierarchical composites [J].
Awan, Faizan S. ;
Fakhar, Mohsin A. ;
Khan, Laraib A. ;
Zaheer, Usama ;
Khan, Abdul F. ;
Subhani, Tayyab .
COMPOSITE INTERFACES, 2018, 25 (08) :681-699
[6]   The effect of alkalization and fibre alignment on the mechanical and thermal properties of kenaf and hemp bast fibre composites: Part 1 - polyester resin matrix [J].
Aziz, SH ;
Ansell, MP .
COMPOSITES SCIENCE AND TECHNOLOGY, 2004, 64 (09) :1219-1230
[7]   Characterization of E-glass-polypropylene interfaces using carbon nanotubes as strain sensors [J].
Barber, AH ;
Zhao, Q ;
Wagner, HD ;
Baillie, CA .
COMPOSITES SCIENCE AND TECHNOLOGY, 2004, 64 (13-14) :1915-1919
[8]   Carbon nanotubes - the route toward applications [J].
Baughman, RH ;
Zakhidov, AA ;
de Heer, WA .
SCIENCE, 2002, 297 (5582) :787-792
[9]   Interfacial shear strength of carbon nanotubes based hybrid composites: effect of loading rate [J].
Bedi, Harpreet Singh ;
Billing, Beant Kaur ;
Agnihotri, Prabhat K. .
FRATTURA ED INTEGRITA STRUTTURALE, 2019, 13 (48) :571-576
[10]   Multiscale carbon nanotube-carbon fiber reinforcement for advanced epoxy composites [J].
Bekyarova, E. ;
Thostenson, E. T. ;
Yu, A. ;
Kim, H. ;
Gao, J. ;
Tang, J. ;
Hahn, H. T. ;
Chou, T. -W. ;
Itkis, M. E. ;
Haddon, R. C. .
LANGMUIR, 2007, 23 (07) :3970-3974