Verbundstoff mit thermoplastischer gehärteter novolac-basierter epoxidmatrix

AT1904197TUndetermined Publication Date: 2026-04-15HEXCEL CORP
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Patent Information

Application Number
AT2023211855T
Authority / Receiving Office
AT · AT
Patent Type
Patents
Current Assignee / Owner
Priority Date
2017-06-14
Filing Date
2017-06-20
Publication Date
2026-04-15
Estimated Expiration
2037-06-20

AI Technical Summary

Technical Problem

Aerospace prepregs face challenges in achieving high tensile and compressive strengths while maintaining high damage tolerance and interlaminar fracture toughness, as increasing modulus for compression strength often reduces damage tolerance and fracture toughness.

Method used

The use of a pre-impregnated composite material with a resin matrix composed of novolac epoxy resin, triglycidyl aminophenol epoxy resin, thermoplastic particles, and a thermoplastic toughening agent, along with a curing agent, which provides a balance between strength and toughness.

Benefits of technology

This formulation results in composite parts with unexpectedly high interlaminar fracture toughness and improved damage tolerance, meeting the stringent requirements for aerospace applications.

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Abstract

Pre-impregnated composite material (prepreg) that can be cured / molded to form aerospace composite parts. The prepreg includes carbon reinforcing fibers and an uncured resin matrix. The resin matrix includes an epoxy component that is a combination of a hydrocarbon epoxy novolac resin and a trifunctional epoxy resin and optionally a tetrafunctional epoxy resin. The resin matrix includes polyethersulfone as a toughening agent and a thermoplastic particle component.
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