Development of a photocurable glass-fiber reinforced epoxy-amine/thiol-ene composite

被引:12
|
作者
Acosta Ortiz, Ricardo [1 ]
Garcia Valdez, Aida Esmeralda [1 ]
Garcia Padilla, Erika Elizabeth [1 ]
Aguirre Flores, Rafael [1 ]
Espinoza Munoz, Jorge Felix [1 ]
机构
[1] Ctr Invest Quim Aplicada, Blvd Enrique Reyna 140, Saltillo 25294, Coahuila, Mexico
关键词
Photopolymerization; GFRP; Epoxy; Thiol-ene; Mechanical properties; Composite; FABRICATION; POLYESTER; SYSTEM;
D O I
10.1007/s10965-016-0917-5
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 work reports a rapid and efficient method to prepare photocurable glass-fiber reinforced epoxy composites. The curing agent for the developed epoxy photocurable systems is a tertiary tetramine functionalized with six allyl groups. The tertiary amine groups induce the anionic polymerization of the epoxy groups to produce the corresponding polyethers. At the same time the double bonds of the curing agent react with an added multifunctional thiol by means of the thiol-ene mechanism, forming polythioethers. These polythioethers affect the reactivity of the system because once formed they are basic enough to anionically polymerize the unreacted epoxy groups. Moreover, the flexibility of the polythioethers improves the toughness of the polyethers derived from the epoxy resin as demonstrated by the impact resistance determinations. When this epoxy-amine/thiol-ene system was tested to prepare glass fiber reinforced epoxy composites, completely cured specimens were obtained with modulus of approximately 25,000-29,000 MPa. The heat released during the thiol-ene photopolymerization contributes to completely cure the composite.
引用
收藏
页码:1 / 8
页数:8
相关论文
共 50 条
  • [41] Engineering and Construction Torsional Responses of Glass-Fiber/Epoxy Composite Blade Shaft for A small Wind Turbine
    Tseng, Yu-Chung
    Kuo, Chih-Yu
    PROCEEDINGS OF THE TWELFTH EAST ASIA-PACIFIC CONFERENCE ON STRUCTURAL ENGINEERING AND CONSTRUCTION (EASEC12), 2011, 14
  • [42] Mechanical Properties of Glass-Fiber Reinforced Epoxy Composites Filled with Al2O3 Particles
    Asi, Osman
    JOURNAL OF REINFORCED PLASTICS AND COMPOSITES, 2009, 28 (23) : 2861 - 2867
  • [43] Properties of Glass-fiber Reinforced Composites Based on Liquid Diglycidyl Ether of Bisphenol-c-epoxy Resin
    Soni, H. K.
    Patel, V. S.
    Patel, R. G.
    POLYMERS FOR ADVANCED TECHNOLOGIES, 1991, 2 (06) : 275 - 277
  • [44] Equivalent processing time analysis development in glass transition development in epoxy/carbon fiber composite systems
    Park, IK
    Lee, DS
    Nam, JD
    JOURNAL OF APPLIED POLYMER SCIENCE, 2002, 84 (01) : 144 - 154
  • [45] Meso-scale strain localization and failure response of an orthotropic woven glass-fiber reinforced composite
    Koohbor, Behrad
    Ravindran, Suraj
    Kidane, Addis
    COMPOSITES PART B-ENGINEERING, 2015, 78 : 308 - 318
  • [46] Laminate Design of Lightweight Glass Fiber Reinforced Epoxy Composite for Electrical Transmission Structure
    Marzuki, Haslan Fadli Ahmad
    Jaafar, Mariatti
    5TH INTERNATIONAL CONFERENCE ON RECENT ADVANCES IN MATERIALS, MINERALS AND ENVIRONMENT (RAMM) & 2ND INTERNATIONAL POSTGRADUATE CONFERENCE ON MATERIALS, MINERAL AND POLYMER (MAMIP), 2016, 19 : 871 - 878
  • [47] Effects of delamination on the critical buckling load of glass fiber reinforced epoxy composite plates
    Venkatesh S.
    Prakash S.
    Raja S.
    Manigandan S.
    Sivashankari P.
    Venkatesh, S. (mitvenkatesh@gmail.com), 2018, MechAero Found. for Techn. Res. and Educ. Excellence (10) : 226 - 230
  • [48] Tensile and Fatigue Behavior of Glass Fiber Laminated Aluminum-Reinforced Epoxy Composite
    Sonker, Tripti
    Bharti, Ajaya
    Malviya, Pranshu
    ADVANCES IN LIGHTWEIGHT MATERIALS AND STRUCTURES, ACALMS 2020, 2020, 8 : 319 - 328
  • [49] Bulk cure study of nanoclay filled epoxy glass fiber reinforced composite material
    Olusanya, John
    Kanny, Krishnan
    Singh, Shalini
    JOURNAL OF POLYMER ENGINEERING, 2017, 37 (03) : 247 - 259
  • [50] An investigation into hybrid carbon/glass fiber reinforced epoxy composite automotive drive shaft
    Badie, M. A.
    Mahdi, E.
    Hamouda, A. M. S.
    MATERIALS & DESIGN, 2011, 32 (03) : 1485 - 1500