Method for efficiently preparing high-strength plant-based epoxy resin based on front-line polymerization method

By optimizing the structure of plant-based epoxy monomers and introducing a highly efficient initiation-catalysis system, combined with rigidity-reinforcing additives, rapid synthesis and high strength of plant-based epoxy resins have been achieved. This solves the problems of low efficiency, insufficient performance, and poor environmental performance in traditional preparation methods, making it suitable for high-end fields such as new energy vehicles and wind turbine blades.

CN122404670APending Publication Date: 2026-07-17CHONGQING UNIV

Patent Information

Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
CHONGQING UNIV
Filing Date
2026-05-27
Publication Date
2026-07-17

AI Technical Summary

Technical Problem

The existing plant-based epoxy resin preparation process suffers from problems such as low production efficiency, insufficient mechanical properties, high energy consumption, and poor environmental performance, making it difficult to meet the needs of high-end materials.

Method used

By employing a frontline polymerization method, optimizing the molecular structure of plant-based epoxy monomers, introducing a highly efficient initiation-catalysis system, and combining rigidity-enhancing additives, the polymerization reaction parameters are precisely controlled to achieve rapid synthesis of high-strength epoxy resins.

Benefits of technology

It enables the rapid synthesis of plant-based epoxy resins, significantly improving the tensile strength and impact strength of the products, reducing energy consumption and environmental pollutant emissions, and meeting the application needs of high-end fields.

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Abstract

一种基于前线聚合方法高效制备高强度植物基环氧树脂的方法,涉及植物基环氧树脂技术领域,其包括:步骤1:进行高强度植物基环氧树脂的原料预处理与配比调控;步骤2:执行制备高强度植物基环氧树脂的前沿聚合反应与工艺控制阶段;步骤3:执行制备高强度植物基环氧树脂的产物提纯与后处理阶段。本发明通过利用精准、高效的前线聚合技术与多维度调控手段,实现高强度植物基环氧树脂快速制备与高强度、低能耗、环保性、协同统一的目标。
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