4.7 Article

Fabrication and investigations on the polydopamine/KH-560 functionalized PBO fibers/cyanate ester wave-transparent composites

Journal

COMPOSITES COMMUNICATIONS
Volume 8, Issue -, Pages 36-41

Publisher

ELSEVIER SCI LTD
DOI: 10.1016/j.coco.2018.03.006

Keywords

Bisphenol A dicyanate ester; Poly (p-phenylene-2, 6-benzobisoxazole) fibers; Wave-transparent laminated composites; Surface functionalization

Funding

  1. Foundation of National Natural Science Foundation of China [51773169]
  2. Space Supporting Fund from China Aerospace Science and Industry Corporation [2017-HT-XG, 2014-HT-XGD]
  3. Aeronautics Science Fund [2016ZF03010, 2015ZF53071, 2015ZF53074]
  4. Fundamental Research Funds for the Central Universities [3102017jg02003]
  5. Undergraduate Innovation& Business Program in NPU [201710699279]
  6. Seed Foundation of Innovation and Creation for Graduate Students in NPU [ZZ2018034]

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Functionalized poly (p-phenylene-2, 6-benzobisoxazole) (f-PBO) fibers were firstly obtained by introducing polydopamine (PDA) and 3-GlycidoxypropyltriMethoxysilane (KH-560), then performed to fabricate the f-PBO fibers/fluoride-containing bisphenol A dicyanate ester (m-BADCy) wave-transparent laminated composites. PDA was coated on the surface of PBO fibers and KH-560 was also grafted onto the PBO fibers. And the single fiber pull-out strength of the f-PBO fibers/m-BADCy micro-composites was increased from 3.2 MPa (PBO fibers/BADCy) to 4.0 MPa. Interlaminar shear strength (ILSS) and flexural strength of the f-PBO fibers/m-BADCy composites was also enhanced to 49.5 MPa and 652.2 MPa, increased by 39.8% and 12.1%, compared with that of PBO fibers/BADCy composites (ILSS of 35.4 MPa and flexural strength of 582.0 MPa), respectively. The corresponding epsilon and tan delta was decreased to 2.86 and 5.7x10(-3), declined by 6.5% and 23.0%, compared with that of PBO fibers/BADCy composites (epsilon of 3.06 and tan delta of 7.4x10(-3)), respectively.

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