4.7 Article

Preparation of boron-containg hybridized silicon rubber by in-situ polymerization of vinylphenyl-functionalized polyborosiloxane and liquid silicone rubber

期刊

POLYMER
卷 219, 期 -, 页码 -

出版社

ELSEVIER SCI LTD
DOI: 10.1016/j.polymer.2021.123541

关键词

Polyborosiloxane; Thermal stability; Mechanical properties

资金

  1. Specialized Research Fund for the Doctoral Program of Higher Education of China [20121101110014]
  2. State Key Laboratory of Explosive Science and Technology of China [YBKT19-07]

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A boron-containing hybridized silicon rubber, VP-PBSi/SR, with excellent thermal and mechanical properties, was successfully prepared in this study. The addition of vinylphenyl-functionalized polyborosiloxane significantly enhanced the thermal stability and mechanical properties of the silicone rubber.
In this study, a kind of boron-containg hybridized silicon rubber (VP-PBSi/SR), which possess great thermal and mechanical properties, was successfully prepared. First, the vinylphenyl-functionalized polyborosiloxane (VP-PBSi) possessing good storage stability were synthesized by reacting triethoxyvinylsilane (VTEOS), phenyltriethoxysilane (PTEOS) and boric acid (BA) by sol-gel method. From the results of GPC, FT-IR, C-13-, Si-29, B-11-NMR characterization, the structures of VP-PBSi were confirmed to be the cage structure. Then, the VP-PBSi/SR were prepared by in situ polymerization of vinylphenyl-functionalized polyborosiloxane (VP-PBSi) and addition liquid silicone rubber (SR). The effect of VP-PBSi on thermal stability and mechanical properties of SR were mainly discussed by scanning electron microscope (SEM), thermal gravimetric analysis (TG), universal testing machine, and dynamic mechanical analysis (DMA), respectively, and the results showed that the thermal stability and mechanical properties of the SR were significantly enhanced. The maximum thermal decomposition temperature (T-max), char yield and tensile strength can reach 675 degrees C, 72.3% and 4.65 MPa, respectively, and 21.8%, 26.1% and 20.2% higher than that of neat SR. We believe this work can provide reference for the preparation of high-performance heat resistance rubber materials.

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