Influence of a flame-retardant on the fire-behaviour and the residual mechanical properties of C/PEKK composite laminates exposed to a kerosene flame

被引:0
|
作者
Vieille B. [1 ]
Coppalle A. [2 ]
Le Pluart L. [3 ]
Schuhler E. [2 ]
Chaudhary A. [2 ]
Rijal B. [3 ]
Alia A. [1 ]
Delpouve N. [1 ]
Bourdet A. [1 ]
机构
[1] Normandie Univ, UNIROUEN Normandie, INSA Rouen, CNRS, Groupe de Physique des Matériaux, St Etienne du Rouvray
[2] Normandie Univ, UNIROUEN Normandie, INSA Rouen, CNRS, CORIA, St Etienne du Rouvray
[3] Normandie Univ, ENSICAEN, UNICAEN, CNRS, Laboratoire de Chimie Moléculaire et Thioorganique, Caen
关键词
Damages; Fire behaviour; Flame-retardant; Mechanical properties; Thermoplastic;
D O I
10.1016/j.compositesa.2021.106720
中图分类号
学科分类号
摘要
This work examines the influence of a phosphorus-based flame-retardant additive (Exolit) on the fire-behaviour and the residual mechanical properties of composite laminates manufactured by a thermo-consolidation process from unidirectional (UD) carbon fibers (C) and a PEKK (Polyether-ketone-ketone) thermoplastic associated with or without Exolit. Depending on the laminates lay-up (orthotropic or quasi-isotropic), the influence of Exolit on the thermal degradation, resulting from a kerosene flame exposure (116 kW/m2 and 1100 °C), on the composites structural integrity was examined. The changes in the residual tensile properties (axial stiffness and strength) were compared with respect to the virgin materials (experiencing no prior flame exposure) in room temperature (RT) conditions post fire exposure. The discussions on fire- and mechanically-induced damage mechanisms are supported by fractographic analysis of specimens. It is therefore possible to better understand how the fire-induced damages within the laminates micro- and meso-structures modify the mechanical behaviour of flame-exposed laminates. Thus, the axial stiffness and strength decrease moderately (−6% and −18%, respectively) in quasi-isotropic laminates with respect to virgin specimens. In orthotropic laminates, the axial stiffness decreases by 15%, whereas the axial strength dramatically decreases (−55%). The obtained results suggests that the flame-retardant additive not only delays the thermal degradation of C/PEKK laminates but also efficiently contributes to maintain the structural integrity of the composites, hence resulting in good mechanical properties. The positive effect of Exolit is particularly noticeable in orthotropic laminates whose mechanical behaviour is driven by 0° carbon fibers. © 2021 Elsevier Ltd
引用
收藏
相关论文
共 50 条
  • [31] Preparation of microencapsulated aluminum hypophosphite and flame retardancy and mechanical properties of flame-retardant ABS composites
    Wu, Ningjing
    Xiu, Zhaoxia
    Du, Jiyu
    JOURNAL OF APPLIED POLYMER SCIENCE, 2017, 134 (33)
  • [32] Preparation, flame retardancy, and mechanical properties of flame-retardant glass fibre reinforced epoxy composites
    Su, Liping
    Li, Zhinong
    Huang, Zhensheng
    Lai, Kaigong
    Zhang, Huagui
    Liu, Canpei
    Chen, Mingfeng
    Zhang, Xu
    PLASTICS RUBBER AND COMPOSITES, 2020, 49 (10) : 443 - 449
  • [33] Influence of chicken feather fibre processing technique on mechanical and fire performances of flame-retardant polypropylene composites
    Mishra, Avishek
    Jung, Daeseung
    Kim, Nam Kyeun
    Bhattacharyya, Debes
    COMPOSITES PART A-APPLIED SCIENCE AND MANUFACTURING, 2023, 165
  • [34] Effect of silicon-containing nitrogen and phosphorus flame-retardant system on the mechanical properties and thermal and flame-retardant behaviors of corrugated cardboard
    Guochao Yang
    Jing Liu
    Bingbing Xu
    Zhijia Liu
    Fang Ma
    Qiuhui Zhang
    Journal of Thermal Analysis and Calorimetry, 2021, 145 : 2321 - 2334
  • [35] A flame-retardant and transparent epoxy resin based on phosphorus-containing ionic liquid and its mechanical, thermal and flame-retardant properties
    Wei, Lijuan
    Zhang, Xiang
    Min, Fusong
    Yan, Gaoxiang
    Sun, Xinyue
    Xie, Bingbing
    Lu, Haoran
    Liu, Yanping
    Zhao, Na
    Li, Qian
    REACTIVE & FUNCTIONAL POLYMERS, 2024, 197
  • [36] Effect of silicon-containing nitrogen and phosphorus flame-retardant system on the mechanical properties and thermal and flame-retardant behaviors of corrugated cardboard
    Yang, Guochao
    Liu, Jing
    Xu, Bingbing
    Liu, Zhijia
    Ma, Fang
    Zhang, Qiuhui
    JOURNAL OF THERMAL ANALYSIS AND CALORIMETRY, 2021, 145 (05) : 2321 - 2334
  • [37] Effect of silane coupling agent on mechanical properties, flame retardancy, and ceramifiable behavior of ceramifiable flame-retardant silicone rubber composite
    Wang, Jun-Sheng
    Shang, Ke
    Jiang, Hui-Jing
    Wang, Peng-Ju
    Zhu, Hai-Bo
    Lin, Gui-De
    Jin, Xing
    Liu, Dan
    Zhao, Bi
    Yang, Jin-Jun
    Fu, Teng
    FIRE AND MATERIALS, 2024, 48 (08) : 858 - 867
  • [38] Simultaneous Improvement of the Mechanical and Flame-Retardant Properties of a Composite Elastomer by a Biomimetic Modified Multilayer Graphene
    Li, Wen
    Cai, Xiaomin
    Wang, Wenqiang
    Huang, Jindu
    Wang, Gengchao
    JOURNAL OF MACROMOLECULAR SCIENCE PART B-PHYSICS, 2021, 60 (09): : 708 - 726
  • [39] Influence of expandable graphite on fire resistance and water resistance of flame-retardant coatings
    Wang, Zhenyu
    Han, Enhou
    Ke, Wei
    CORROSION SCIENCE, 2007, 49 (05) : 2237 - 2253
  • [40] Effects of flame-retardant additives on the manufacturing, mechanical, and fire properties of basalt fiber-reinforced polybenzoxazine
    Wolter, Nick
    Carrillo Beber, Vinicius
    Haubold, Thorben
    Sandinge, Anna
    Blomqvist, Per
    Goethals, Frederik
    Van Hove, Marc
    Jubete, Elena
    Mayer, Bernd
    Koschek, Katharina
    POLYMER ENGINEERING AND SCIENCE, 2021, 61 (02): : 551 - 561