4.7 Article

Sisal fiber reinforced high density polyethylene pre-preg for potential application in filament winding

Journal

COMPOSITES PART B-ENGINEERING
Volume 159, Issue -, Pages 369-377

Publisher

ELSEVIER SCI LTD
DOI: 10.1016/j.compositesb.2018.09.090

Keywords

Sisal fiber; High density polyethylene; Pre-preg; Interfacial bonding

Funding

  1. National Key R&D Program of China [2017YFD0600802]
  2. Special Project for Double First Class-Cultivation of Innovative Talents [000/41113102]

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A thermoplastic-penetrated natural fiber belt was developed for potential application in filament winding. Discontinuous sisal fiber bundles were impregnated with high density polyethylene and then connected into continuous pre-pregs via hot-pressing. The interfacial bonding was improved by treating the fibers with sodium hydroxide (NaOH) and three types of coupling agents (NH2C3H6Si(OC2H5)(3), C2H3Si(OC2H5)(3) and C51H112O22P6Ti). Tensile properties of the fiber bundles, pre-pregs, and annular specimens were determined. The fiber surface microstructure and the pre-preg interfacial bonding were evaluated via scanning electron microscopy and Fourier transform infrared spectroscopy. Among the four treatments, 2% C2H3Si(OC2H5)(3) yielded the most significant improvement in the tensile properties of the pre-pregs and annular specimens. The fiber bundle was less damaged by the coupling agents treatment comparing to NaOH treatment. When the overlap at the end of the sisal fibers was > 11 mm, the presence of the joint had no effect on the tensile strength of the pre-preg. The pre-preg belt containing treated fibers, which was evaluated based on the requirements of filament winding applications, exhibited a high performance.

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