COMPOSITES SCIENCE AND ENGINEERING ›› 2026, Vol. 0 ›› Issue (4): 9-17.DOI: 10.19936/j.cnki.2096-8000.20260428.002

• BASIC AND MECHANICAL PERFORMANCE RESEARCH • Previous Articles     Next Articles

Study on synthesis and properties of silane hybrid resins and their composites

ZHANG Yaozhi1, XU Jinwen1, ZHAO Xingnuo1, JIANG Fengguang1, SHU Changpeng2*, ZHOU Quan1*   

  1. 1. Key Laboratory of Specially Functional Polymeric Materials and Related Technology (Ministry of Education), School of Material Science and Engineering, East China University of Science and Technology, Shanghai 200237, China;
    2. Shanghai Aerospace Equipments Manufacturer Co., Ltd., Shanghai Engineering Research Center of Specialized Polymer Materials for Aerospace, Shanghai 200245, China
  • Received:2025-03-17 Published:2026-06-16

Abstract: Silane hybrid resin, as a kind with excellent temperature resistance material, is favored in lots of fields. This investigation has studied the performance and characteristic of one kind of high-performance silane hybrid resins modified by chemical and physical methods and made it into composites for promoting the application of this material. This study investigates the relationship between structure and performance aiming to improve this resin’s heat resistance, mechanical properties and processing performance.In this study, m-diethynylbenzenes and dichlorosilane with different substituents were used to make poly (m-diethynylbenzene-silane) resin(PBS-R). The structure, curing process and heat resistance of the PBS-R resins was researched by various test methods. The results showed that viscosity of PBS-R increased with increasing of molecular weight; curing temperature rose with the enlargement of the steric hindrance of the silane substituents. The resin PBS-H which synthesied from methylhydrodichlorosilane has the best heat resistance. Td5 reached 734.8 ℃ and 615.2 ℃, respectively at N2 and air atmosphere. Poly (m-diethynylbenzene-dimethylsilane) resin (PBS-B) has the optimum mechanical properties. By reinforcing with glass fiber, the flexural and interlaminar shear strength of composites at room temperature reached 403.5 MPa and 21.3 MPa, with performance retention rates above 80% at 250 ℃ testing environment.

Key words: silyne hybrid resin, molecular structure, composites, heat resistance, mechanical properties

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