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Synthesis and viscoelastic properties of new thermosetting resins having isocyanurate and oxazolidone rings in their molecular structures

机译:分子结构中具有异氰脲酸和噁唑烷酮环的新型热固性树脂的合成及粘弹性

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AbstractA new type of thermosetting resin can be obtained from solventless varnishes composed of polyfunctional isocyanates and epoxides. The IR spectra show that the cured resins have isocyanurate and oxazolidone rings in their chemical structure, hence their name, isocyanurate–oxazolidone resins. The viscoelastic behavior of the cured resins can be varied considerably by selecting an appropriate reactant species and changing the equivalent ratio of the isocyanate and epoxy groups in the varnishes. Three relaxations, labeled α, β, and γ, characterize their dynamic mechanical spectra. The α‐dispersion is due to the glass transition, the β‐dispersion, to local mode motions of the backbone chains of resins, and the γ‐dispersion, to the molecular motions of long alkyl chains. If certain additives are mixed into the varnishes before curing, microphase separation takes place during the reactions. The resins finally obtained have a peculiar physical structure in which rubber particles are dispersed throughout a matrix phase as confirmed by scanning electron‐microscopic analysis and viscoe
机译:摘要 由多官能异氰酸酯和环氧化物组成的无溶剂清漆可制得一种新型热固性树脂。红外光谱显示,固化的树脂在化学结构上具有异氰脲酸酯和噁唑烷酮环,因此得名异氰脲酸噁唑烷酮树脂。通过选择合适的反应物种类并改变清漆中异氰酸酯和环氧基团的当量比例,固化树脂的粘弹性行为可以大大改变。标记为 α、β 和 γ 的三种弛豫表征了它们的动态力学光谱。α分散体是由于玻璃化转变、β分散体、树脂主链的局部模态运动,以及γ分散体、长烷基链的分子运动。如果在固化前将某些添加剂混合到清漆中,则在反应过程中会发生微相分离。最终获得的树脂具有特殊的物理结构,其中橡胶颗粒分散在整个基质相中,通过扫描电子显微镜分析和粘性

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