4.6 Article

The m-SiCNW/FKM nanocomposites: fabrication, characterization and properties

期刊

RSC ADVANCES
卷 6, 期 42, 页码 35633-35640

出版社

ROYAL SOC CHEMISTRY
DOI: 10.1039/c5ra27843k

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资金

  1. National Natural Science Foundation of China [51572137, 51272117, 51172115]
  2. Natural Science Foundation of Shandong Province [ZR2015PE003, ZR2011EMQ011, ZR2013EMQ006]
  3. Research Award Fund for Outstanding Young Scientists of Shandong Province [BS2013CL040]
  4. Specialized Research Fund for the Doctoral Program of Higher Education of China [20123719110003]
  5. Tackling Key Program of Science and Technology in Shandong Province [2012GGX1021]
  6. Application Foundation Research Program of Qingdao [13-1-4-117-jch]
  7. Shandong Province Taishan Scholar Project
  8. Overseas Taishan Scholar Project

向作者/读者索取更多资源

Nanocomposites consisting of the fluoroelastomer (FKM) matrix and modified SiC nanowires (m-SiCNWs) as strengthening phase (coded as m-SiCNW/FKM nanocomposites) have been prepared for the first time on an open two-roll mill. SiCNWs were modified by simple chemical treatment using fluoroalkylsilane (AC-FAS, CF3(CF2)(7)CH2CH2Si(OC2H5)(3)) as modifier. Fourier transform infrared spectroscopy (FTIR) indicated that AC-FAS was successfully grafted to the surface of the SiCNWs. The water contact angle test confirmed that the surface of m-SiCNWs was hydrophobic. Compared with FKM, the tensile strength, stress at 100% strain, tear strength and thermal conductivity at 100 degrees C of the nanocomposites with 14 phr m-SiCNWs were improved by 15.3%, 102.0%, 17.6% and 56.9%, respectively. The tensile fracture surface morphology of m-SiCNW/FKM nanocomposites shows that m-SiCNWs were uniformly dispersed, and the interfacial adhesion between m-SiCNWs and FKM matrix was strong. Dynamic mechanical analysis shows that the storage modulus (E') of the m-SiCNW/FKM nanocomposites was improved, and the T-g shifted to a higher temperature by increasing the m-SiCNW content, indicating the greater reinforcing effect of m-SiCNWs. Payne effect, as an important characteristic of rubber materials, was also investigated. The preparation of m-SiCNW/FKM nanocomposites provides a favorable exploration for the application of one-dimensional (1D) nanofiller in polymer composites.

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