TY - JOUR
T1 - Flame-retardant glass fiber reinforced polysilsesquioxane epoxy composite with excellent mechanical strength and water resistance
AU - Zhou, Hailian
AU - Zhang, Jie
AU - Zhang, Xiaoyu
AU - Zhang, Zeqi
AU - Zhang, Wenyuan
AU - Yang, Rongjie
AU - Zhang, Wenchao
N1 - Publisher Copyright:
Copyright © 2026. Published by Elsevier Ltd.
PY - 2026/11
Y1 - 2026/11
N2 - Owing to the high viscosity and poor flame retardancy of epoxy resins, the development of glass fiber reinforced epoxy resin composites (GFREPs) in large-scale application has been limited. It is vital for meeting requirements of vacuum-assisted resin transfer molding (VARTM) process to develop a low-viscosity and flame-retardant epoxy resin. In this work, a polysilsesquioxane epoxy resin with low viscosity was prepared and a glass fiber reinforced polysilsesquioxane epoxy composite (EPHPOSS30/GF) was successfully constructed through VARTM process. Compared with traditional GFREPs (EP-257/GF), the bending strength, interfacial shear strength and interlaminar shear strength of EPHPOSS30/GF reach 604.5 MPa, 38.5 MPa and 26.9 MPa, which are 104%, 63.1% and 28.6% higher than that of the EP-257/GF, respectively. The EPHPOSS30/GF exhibits high water resistance, which can maintain its dielectric properties and mechanical properties after water treatment. The EPHPOSS30/GF demonstrates improved thermal behavior, with significant increments in the thermal initial decomposition temperature and the glass transition temperature. Notably, the EPHPOSS30/GF is a low-heat, low-smoke and low-toxicity composite, the peak heat release rate, carbon monoxide production, and maximum smoke density are 38.9%, 48.2% and 77.8% lower than that of EP-257/GF, respectively. This strategy addresses the key issues of traditional GFREPs in viscosity, mechanical properties, water resistance and flame retardancy, enabling its large-scale application.
AB - Owing to the high viscosity and poor flame retardancy of epoxy resins, the development of glass fiber reinforced epoxy resin composites (GFREPs) in large-scale application has been limited. It is vital for meeting requirements of vacuum-assisted resin transfer molding (VARTM) process to develop a low-viscosity and flame-retardant epoxy resin. In this work, a polysilsesquioxane epoxy resin with low viscosity was prepared and a glass fiber reinforced polysilsesquioxane epoxy composite (EPHPOSS30/GF) was successfully constructed through VARTM process. Compared with traditional GFREPs (EP-257/GF), the bending strength, interfacial shear strength and interlaminar shear strength of EPHPOSS30/GF reach 604.5 MPa, 38.5 MPa and 26.9 MPa, which are 104%, 63.1% and 28.6% higher than that of the EP-257/GF, respectively. The EPHPOSS30/GF exhibits high water resistance, which can maintain its dielectric properties and mechanical properties after water treatment. The EPHPOSS30/GF demonstrates improved thermal behavior, with significant increments in the thermal initial decomposition temperature and the glass transition temperature. Notably, the EPHPOSS30/GF is a low-heat, low-smoke and low-toxicity composite, the peak heat release rate, carbon monoxide production, and maximum smoke density are 38.9%, 48.2% and 77.8% lower than that of EP-257/GF, respectively. This strategy addresses the key issues of traditional GFREPs in viscosity, mechanical properties, water resistance and flame retardancy, enabling its large-scale application.
KW - Flame retardancy
KW - Glass fiber reinforced epoxy resin composites
KW - Mechanical properties
KW - Polyhedral oligomeric silsesquioxane
UR - https://www.scopus.com/pages/publications/105043383300
U2 - 10.1016/j.compositesa.2026.110042
DO - 10.1016/j.compositesa.2026.110042
M3 - Article
AN - SCOPUS:105043383300
SN - 1359-835X
VL - 210
JO - Composites Part A: Applied Science and Manufacturing
JF - Composites Part A: Applied Science and Manufacturing
M1 - 110042
ER -