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1.中国科学院宁波材料技术与工程研究所高分子与复合材料实验室,浙江省生物基高分子材料技术与应用重点实验室,宁波 315201
2.太原科技大学材料科学与工程学院,太原 030024
于震(1996-),男,河北沧州人,硕士生,主要研究方向为生物基潜伏型环氧树脂固化剂设计与合成。E-mail: yuzhen@nimte.ac.cn;
*马松琪,E-mail:masongqi@nimte.ac.cn;
汤兆宾,E-mail:tangzhb04@nimte.ac.cn.
纸质出版日期:2022-11-20,
收稿日期:2021-11-25,
修回日期:2022-02-24,
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于震, 马松琪, 刘艳林, 汤兆宾, 张克维, 朱锦. 潜伏型环氧树脂固化剂研究进展[J]. 高分子通报, 2022,35(11):15-35.
Zhen YU, Song-qi MA, Yan-lin LIU, Zhao-bin TANG, Ke-wei ZHANG, Jin ZHU. Research Progress of Latent Curing Agent for Epoxy Resin[J]. Polymer Bulletin, 2022,35(11):15-35.
于震, 马松琪, 刘艳林, 汤兆宾, 张克维, 朱锦. 潜伏型环氧树脂固化剂研究进展[J]. 高分子通报, 2022,35(11):15-35. DOI: 10.14028/j.cnki.1003-3726.2022.11.002.
Zhen YU, Song-qi MA, Yan-lin LIU, Zhao-bin TANG, Ke-wei ZHANG, Jin ZHU. Research Progress of Latent Curing Agent for Epoxy Resin[J]. Polymer Bulletin, 2022,35(11):15-35. DOI: 10.14028/j.cnki.1003-3726.2022.11.002.
环氧树脂具有优异的综合性能
潜伏型环氧树脂固化剂与环氧树脂配合后具有良好的贮存稳定性
在胶黏剂、涂料、电子封装和复合材料等领域具有巨大的应用需求和商业价值。潜伏型固化剂的种类很多
按照固化剂主体不同可分为双氰胺、酰肼、酸酐、苯并噁嗪和氨基酸类化合物
咪唑和改性胺类化合物
硼胺络合物与重氮盐、碘鎓盐和锍鎓盐化合物。为了便于指导潜伏型固化剂的设计与使用
本文按照潜伏机理不同将当前报道的潜伏型固化剂分为热溶解型、化学改性型和微胶囊型固化剂三大类
并对其研究进展进行了分类概括与讨论;同时总结了当前评价固化剂潜伏性能的方法;最后对当前潜伏型固化剂的优缺点进行了总体评价
并对潜伏型固化剂的未来发展趋势进行了展望。
Epoxy resins possess excellent comprehensive performance. Epoxy systems with latent curing agent have favorable storage stability
and have huge application demand and commercial value in adhesives
coatings
electronic packaging
composite materials and other fields. There are many kinds of latent curing agents. According to the chemical structure
latent curing agents include dicyandiamide
hydrazide
anhydride
benzoxazine and amino acid compounds
imidazole and modified amine compounds
boron amine complex and diazonium salt
iodonium salt and sulfonium salt compounds. In order to guide the design and use of latent curing agents
in this work
the reported latent curing agents are divided into three catalogues according to their different latent mechanisms
namely heat dissolving
chemical modification and microencapsulation
and their research progress is summarized and discussed. Meanwhile
the current evaluation methods of latent performance of curing agent are summarized
including DSC and rheological behavior analysis. Finally
the advantages and disadvantages of the current latent curing agents are evaluated
and the trends of future work are highlighted. Nowadays
the methods for achieving the latent performance are complex
and it’s still difficult to well balance the latent performance and storage stability for the latent systems. In the future
the one-component epoxy systems with long storage life at room temperature
and high curing speed at medium and low temperature
and favorable performance after curing should be focused; and the latent systems combined with other functions such as high performance
toughening
flame retardancy
energy conservation and environment protection should also be the development direction.
潜伏型固化剂单组分环氧树脂化学改性型热溶解型微胶囊型
Latent curing agentOne-component epoxy resinChemical modificationHeat dissolvingMicroencapsulation
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