Author:
Hu Jingyuan,Zhang Liyue,Chen Mingxuan,Dai Jinyue,Teng Na,Zhao Hongchi,Ba Xinwu,Liu Xiaoqing
Abstract
To overcome the high flammability and brittleness of epoxy resins without sacrificing their glass transition temperature (Tg) and mechanical properties, three epoxy-terminated hyperbranched flame retardants (EHBFRs) with a rigid central core and different branches, named EHBFR-HB, EHBFR-HCM, and EHBFR-HBM, were synthesized. After chemical structure characterization, the synthesized EHBFRs were introduced into the diglycidyl ether of bisphenol A (DGEBA) and cured with 4, 4-diaminodiphenylmethane (DDM). The compatibility, thermal stability, mechanical properties, and flame retardancy of the resultant resins were evaluated. Results showed that all three EHBFRs could significantly improve the fire safety of cured resins, and 30 wt. % of EHBFRs (less than 1.0 wt. % phosphorus content) endowed cured DGEBA with a UL-94 V-0 rating. In addition, the increased rigidity of branches in EHBFRs could increase the flexural strength and modulus of cured resins, and the branches with appropriate rigidity were also beneficial for improving their room temperature impact strength and Tg.
Funder
National Natural Science Foundation of China
Project of Zhejiang Natural Science Foundation
Zhejiang Analysis and Testing Science and Technology Project
Natural Science Foundation of Ningbo City
Key Project from the Natural Science Foundation of Hebei Province
Research Project of Technology Application for Public Welfare of Ningbo City
Subject
Polymers and Plastics,General Chemistry
Cited by
2 articles.
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