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Highly Enhancing the Interfacial and Mechanical Properties of Basalt Fiber/Poly(phthalazinone Ether Nitrile Ketone) Composite by Thermoplastic Sizing Agents with Different Structures

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Publisher MDPI
Date 2022 Jul 27
PMID 35890723
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Abstract

The interfacial modification of basalt-fiber-reinforced polymer (BFRP) composites is an essential research field and many techniques have been developed to improve the adhesion between basalt fiber (BF) and the matrix. However, most studies were based on the matrixes of general plastics and epoxy resins. In this work, five different chain structures of thermoplastic sizing agents were used to improve the interfacial properties of unidirectional BF-reinforced soluble and high-temperature-resistant poly(phthalazinone ether nitrile ketone) (BF/PPENK) composites. DMA results showed that the poly(ether nitrile) (PEN)-sized BF/PPENK (BF-PEN/PPENK) composite exhibited the optimal interfacial performance, with a storage modulus (') and glass transition temperature () up to 50 GPa and 288 °C, respectively. Moreover, the tensile strength, compressive strength, flexural strength, and interlaminar shear strength of the BF-PEN/PPENK composite reached 778 MPa, 600 MPa, 1115 MPa and 57 MPa, respectively, and increased by 42%, 49%, 20% and 30% compared with the desized BF/PPENK composite. This study provides some suggestions for the design of sizing agents to modify the interface of BF and high-performance thermoplastic resin.

Citing Articles

Influence of Polymer Matrices on the Tensile and Impact Properties of Long Fiber-Reinforced Thermoplastic Composites.

Jiang L, Zhou Y, Jin F, Hou Z Polymers (Basel). 2023; 15(2).

PMID: 36679287 PMC: 9865378. DOI: 10.3390/polym15020408.


Effect of Sizing Agent on the Mechanical, Thermal, and Electrical Performance of Basalt Fiber/Epoxy Composites.

Ma L, Fu X, Zhang C, Chen L, Chen X, Fu C Polymers (Basel). 2022; 14(17).

PMID: 36080608 PMC: 9459978. DOI: 10.3390/polym14173533.

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