Enhanced toughness and thermal properties of bismaleimide resin based on the synergistic effect of reactive amino‐terminal poly(phthalazinone ether nitrile sulfone) and bisallyl bearing diphenol group

Author:

Liu Cheng123ORCID,Jia Hang12,Li Nan123,Qiao Yue12,Weng Zhihuan123ORCID,Du Gaize1,Jian Xigao123

Affiliation:

1. State Key Laboratory of Fine Chemicals Dalian University of Technology Dalian China

2. Department of Polymer Science & Materials Dalian University of Technology Dalian China

3. Liaoning Province Engineering Research Centre of High Performance Resins Dalian University of Technology Dalian China

Funder

Dalian Science and Technology Bureau

Ministry of Science and Technology of the People's Republic of China

National Natural Science Foundation of China

Publisher

Wiley

Subject

Polymers and Plastics

Reference49 articles.

1. Enhanced mechanical and tribological properties of graphene/bismaleimide composites by using reduced graphene oxide with non-covalent functionalization

2. Modern advances in bismaleimide resin technology: A 21st century perspective on the chemistry of addition polyimides

3. Effects of plasma treatment of carbon fibers on interfacial properties of BMI resin composites

4. Curing behavior, thermal, and mechanical properties of N,N′‐(4,4′‐diphenylmethane)bismaleimide/2,2′‐diallylbisphenol A/3‐allyl‐5,5‐dimethylhydantoin resin system;Liu X;High Perform Polym,2019

5. Surface modification of high performance fibers and interfacial properties of their reinforced bismaleimide resin matrix composites;Chen P;Acta Polym Sin,2018

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