4.7 Article

Effects of the quality of pre-consolidated materials on the mechanical properties and morphology of thermoplastic pultruded flat laminates

期刊

COMPOSITES COMMUNICATIONS
卷 35, 期 -, 页码 -

出版社

ELSEVIER SCI LTD
DOI: 10.1016/j.coco.2022.101281

关键词

Fiber-reinforced materials; Thermoplastic composite; Thermoplastic pultrusion; Thermoplastic resin; Thermoplastic prepregs

资金

  1. Skoltech Center for Materials Technologies

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Pre-consolidated tapes in thermoplastic pultrusion solve the problem of impregnating reinforcements with high-viscosity thermoplastic resins. However, laminates made from pre-consolidated sheets exhibit higher compressive, tensile, and flexural strengths than those made from pre-consolidated tapes. This difference in strength is due to the presence of unimpregnated regions and matrix cracks in the tapes, which are absent in the sheets. Pre-consolidated sheets enable the production of thermoplastic pultruded composites with larger cross-sections and better mechanical performance compared to composites made from pre-consolidated tapes described in the literature.
Pre-consolidated tapes in thermoplastic pultrusion solve the problem of impregnating a reinforcement with high -viscosity thermoplastic resins. Thermoplastic glass fiber/polypropylene flat laminates (75 mm x 3.5 mm) were fabricated using pre-consolidated tapes from different manufacturers: pre-consolidated tapes by the ApATeCh-Tape Company (Russia) and pre-consolidated sheets by the Zhongji Company (China). In spite of the equal reinforcement volume fraction (38%), the laminates fabricated from the pre-consolidated sheets exhibited higher compressive, tensile, and flexural strengths than those made from the pre-consolidated tapes, differing by 27.1%, 27.3%, and 19.8%, respectively. The observed difference between the strength characteristics of the studied flat laminates was explained by the presence of unimpregnated regions in the fiber bundles and by matrix cracks in the pre-consolidated tapes, absent in the pre-consolidated sheets, as revealed by the scanning electron micro-scopy analysis. Such defects cannot be corrected during the pultrusion process, resulting in the formation of matrix cracks and debonding, impairing the mechanical performance of the produced pultruded laminates. Pre -consolidated sheets enable pultrusion flat laminates with larger cross-sections, exhibiting better mechanical performance and surface roughness, compared with thermoplastic pultruded composites fabricated from pre -consolidated tapes described in the literature.

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