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首页> 外文期刊>Polymer Degradation and Stability >THERMAL ANALYSIS OF SOME AROMATIC AMINE CURED MODEL EPOXY RESIN SYSTEMS .1. MATERIALS SYNTHESIS AND CHARACTERIZATION, CURE AND POST-CURE
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THERMAL ANALYSIS OF SOME AROMATIC AMINE CURED MODEL EPOXY RESIN SYSTEMS .1. MATERIALS SYNTHESIS AND CHARACTERIZATION, CURE AND POST-CURE

机译:某些芳香族胺缩环型环氧树脂体系的热分析.1。材料的合成与表征,固化和后固化

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摘要

A selection of small, large and network epoxy resin model systems were prepared and characterized structurally. X-ray crystallography was used to establish that a conformation available to the RS diasteriomer of the di-beta-hydroxy, sp(2) hybridized tertiary amine structural motif, common to aromatic amine-glycidyl ether epoxy resin systems, is capable of engaging in intramolecular H-bonding. NMR spectroscopy was used to confirm the existence of strong intramolecular II-bonding in the RS diasteriomer and support the presence of weaker intramolecular II-bonding interactions in the RR=SS diasteriomer. It was illustrated, through the use of more complex model compounds and soluble polymers, that the structure-NMR spectroscopic correlations established in simpler models should extrapolate into 3-dimensional epoxy network systems. DMA spectroscopy was used to establish that changes in crosslink density of stoichiometric epoxy resin model systems, brought about through changes in hardener formulation, influence the energetics of the alpha and beta transitions as quantified through E(a), Delta H# and Delta S#. It was established also that changes in the chemical composition of epoxy resin model systems, brought about through changes in reagent stoichiometry, have a more significant influence on the energetics of measured thermal transitions as quantified by this method. (C) 1996 Elsevier Science Limited [References: 26]
机译:准备了各种小型,大型和网络环氧树脂模型系统,并进行了结构表征。 X射线晶体学用于确定对芳香族胺-缩水甘油醚环氧树脂体系通用的二-β-羟基,sp(2)杂化叔胺结构基序的RS非对映异构体可用的构象分子内氢键。 NMR光谱用于确认RS非对映异构体中存在强分子内II键,并支持RR = SS非对映异构体中存在较弱的分子内II键相互作用。通过使用更复杂的模型化合物和可溶性聚合物可以说明,在较简单的模型中建立的结构-NMR光谱相关性应外推到3维环氧网络系统中。 DMA光谱用于确定化学计量环氧树脂模型系统的交联密度变化,这是通过固化剂配方的变化而引起的,从而影响通过E(a),Delta H#和Delta S#量化的α和β跃迁的能级。 。还已经确定,通过试剂化学计量的变化引起的环氧树脂模型系统化学组成的变化,对通过这种方法量化的测得的热转变的能量学具有更大的影响。 (C)1996 Elsevier Science Limited [参考号:26]

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