环氧化橡胶籽油和大豆作为环氧聚合物的有效改性剂

E. Gotlib, T. Nguyen, Dmitry G. Miloslavskiy, R. Akhmedyanova
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摘要

从生态、经济和技术的角度来看,为巴西橡胶树大面积生长的东南亚、南美和非洲国家寻找橡胶籽油的合理工业使用区域具有重大的实际和科学意义。因此,对环氧化橡胶籽油的制备和使用进行研究具有重要意义。由于双键的存在,这种植物油相对容易官能化。在含钨催化剂存在的相间催化条件下,用双氧水对橡胶籽油进行了环氧化反应。环氧化植物油作为环氧-黛安聚合物的活性改性剂受到广泛关注。为了与ERSO进行比较,对工业环氧大豆油进行了研究。环氧化橡胶籽油和环氧化大豆油对不同化学结构胺固化的环氧组合物进行改性,使其硬度、耐磨性和抗磨指标显著提高。凝胶组分的含量降低,即环氧涂料在部分包含在结构中,部分发挥增塑剂作用的环氧化橡胶籽油和大豆油存在下形成的交联结构的密度降低。用环氧化棕榈树油对环氧聚合物进行改性时也发现了类似的效果。用环氧化植物油改性的环氧聚合物的交联密度降低,由于改性剂中存在柔性碎片,导致结构元素的迁移率增加。这大大简化了组合物中的松弛过程,从而有助于减少内应力和改善性能。此外,与环氧化橡胶籽油相比,环氧化大豆油更大程度地降低了环氧涂料的磨损和摩擦系数。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
EPOXIDATED RUBBER SEED OIL AND SOY AS EFFECTIVE MODIFIERS OF EPOXY POLYMERS
The search for rational areas of industrial use of rubber seed oil for the countries of Southeast Asia, South America and Africa, where Hevea brasiliensis grows in vast areas, is of great practical and scientific interest, both from ecological, economic and technical points of view. In this regard, the studies of the preparation and the use of epoxidized rubber seed oil are important. Due to the presence of double bonds, this vegetable oil is relatively easily functionalized. The epoxidation of rubber seed oil was carried out by us with hydrogen peroxide under the conditions of interphase catalysis in the presence of tungsten-containing catalysts. Epoxidized vegetable oils are of great interest as reactive modifiers for epoxy-diane polymers. For comparison with ERSO, industrial epoxidized soybean oil was investigated. Modification by both epoxidized rubber seed oil and epoxidized soybean oil of epoxy compositions cured with amines of different chemical structure, causes a significant increase in their hardness, wear resistance and improved antifriction indicators. The content of the gel fraction is reduced, that is, the density of the cross-linked structure of epoxy coatings formed in the presence of epoxidized rubber seed oil and soybean oil, which are partially included in the structure, and partially perform the functions of plasticizing agents, decreases. A similar effect was found when epoxy polymers modifying with epoxidized palm trees oil. The decrease cross-linked density of epoxy polymers modified with epoxidized vegetable oils causes an increase in the mobility of the elements of the structure, due to the presence of flexible fragments in the modifiers. This greatly make easier the relaxation processes in the composition, which helps to reduce internal stresses and improve properties. Moreover, epoxidized soybean oil to a greater extent reduces wear and friction coefficient of epoxy coatings, compared with epoxidized rubber seed oil.
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