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首页> 外文期刊>Rubber Chemistry and Technology >THERMOREVERSIBLE CROSS-LINKING MALEIC ANHYDRIDE GRAFTED CHLOROBUTYL RUBBER WITH HYDROGEN BONDS (COMBINED WITH IONIC INTERACTIONS)
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THERMOREVERSIBLE CROSS-LINKING MALEIC ANHYDRIDE GRAFTED CHLOROBUTYL RUBBER WITH HYDROGEN BONDS (COMBINED WITH IONIC INTERACTIONS)

机译:具有氢键的热可逆交联的马来酸酐接枝氯丁橡胶(与离子相互作用结合)

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Thermoreversible cross-linking polymers are designed based on reversible cross-linking bonds. These bonds are able to reversibly dissociate and associate upon the input of external energy, such as heat or light. Reprocessibility is possible for this kind of material. The objective was to thermoreversibly cross-link maleic anhydride grafted chlorobutyl rubber (MAHg-CIIR) via a reaction with octadecylamine, with an excess to obtain amide-salts, which form both hydrogen bonds and ionic interactions. X-ray diffraction experiments showed the presence of microphase-separated aggregates that acted as physical cross-links for both the MAH-g-CIIR precursor and amide-salts. The tensile properties were improved by converting MAHg-CIIR to amide-salts, because of the combination of hydrogen bonding and ionic interactions. The cross-linked materials could be repeatedly compression molded at 155 °C into homogeneous films. The differential scanning calorimetry curves and Fourier transform infrared spectra indicate that hydrogen bonds are of a thermoreversible nature, but the recovery of ionic bonds is impossible. After treatment with heating-cooling for up to three cycles, the tensile strength of the thermoreversible cross-linking CIIR was greatly reduced. The gradual reduction in the effectiveness of the ionic-hydrogen bonds is the major contribution to the reprocessibility of these materials.
机译:热可逆交联聚合物是基于可逆交联键设计的。这些键能够根据外部能量(例如热或光)的输入可逆地解离和结合。这种材料可进行再加工。目的是通过与十八烷基胺反应过量地热可逆地交联马来酸酐接枝的氯丁基橡胶(MAHg-CIIR),以获得形成氢键和离子相互作用的酰胺盐。 X射线衍射实验表明,存在微相分离的聚集体,该聚集体同时充当MAH-g-CIIR前体和酰胺盐的物理交联。由于氢键和离子相互作用的结合,通过将MAHg-CIIR转化为酰胺盐提高了拉伸性能。可以将交联的材料在155°C下重复压制成均匀的薄膜。差示扫描量热曲线和傅立叶变换红外光谱表明氢键具有热可逆性,但是离子键的恢复是不可能的。经过多达三个循环的加热冷却处理后,热可逆交联CIIR的拉伸强度大大降低。离子-氢键有效性的逐渐降低是这些材料可再加工性的主要贡献。

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