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催化剂含量和环氧/羧酸盐比例对环氧类 Vitrimer 等温蠕变的影响

Influence of Catalyst Content and Epoxy/Carboxylate Ratio on Isothermal Creep of Epoxy Vitrimers.

作者信息

Palmieri Barbara, Cilento Fabrizia, Amendola Eugenio, Valente Teodoro, Dello Iacono Stefania, Giordano Michele, Martone Alfonso

机构信息

Institute of Polymers, Composite and Biomaterials (IPCB), National Research Council of Italy, 80055 Portici, Italy.

Agenzia Spaziale Italiana (ASI), Via del Politecnico snc, 00133 Roma, Italy.

出版信息

Polymers (Basel). 2023 Sep 21;15(18):3845. doi: 10.3390/polym15183845.

Abstract

In the present work, a commercial epoxy based on epoxy anhydride and tertiary amine was modified by a metallic catalyst (Zn) to induce vitrimeric behavior by promoting the transesterification reaction. The effect of two different epoxy/acid ratios (1 and 0.6) at two different zinc acetate amounts (Zn(Ac)) on the thermomechanical and viscoelastic performances of the epoxy vitrimers were investigated. Creep experiments showed an increase in molecular mobility above the critical "Vitrimeric" temperature (T) of 170 °C proportionally to the amount of Zn(Ac). A procedure based on Burger's model was set up to investigate the effect of catalyst content on the vitrimer ability to flow as the effect of the dynamic exchange reaction. The analysis showed that in the case of a balanced epoxy/acid formulation, the amount of catalyst needed for promoting molecular mobility is 5%. This system showed a value of elastic modulus and dynamic viscosity at 170 °C of 9.50 MPa and 2.23 GPas, respectively. The material was easily thermoformed in compression molding, paving the way for the recyclability and weldability of the thermoset system.

摘要

在本工作中,一种基于环氧酸酐和叔胺的商用环氧树脂被金属催化剂(锌)改性,通过促进酯交换反应来诱导其具有热致液晶行为。研究了两种不同的环氧/酸比例(1和0.6)以及两种不同的醋酸锌用量(Zn(Ac))对环氧热致液晶聚合物热机械性能和粘弹性性能的影响。蠕变实验表明,在高于170℃的临界“热致液晶”温度(T)时,分子流动性随Zn(Ac)用量的增加而成比例增加。建立了一个基于伯格模型的程序,以研究催化剂含量对热致液晶聚合物流动能力的影响,作为动态交换反应的效果。分析表明,在环氧/酸配方平衡的情况下,促进分子流动性所需的催化剂用量为5%。该体系在170℃时的弹性模量和动态粘度值分别为9.50MPa和2.23GPas。该材料在压缩成型中易于热成型,为热固性体系的可回收性和可焊接性铺平了道路。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/9cc3/10535981/e7f1d39e786e/polymers-15-03845-g001.jpg

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