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Phase-separation dominating mechanical properties of a novel tung-oil-based thermosetting polymer.

机译:相分离主导了一种新型的基于桐油的热固性聚合物的机械性能。

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摘要

This paper focuses on the structure-property relationship of a tung-oil-based thermosetting polymer, which was obtained by curing a newly developed tung-oil-based monomer (TOPERMA) with different styrene contents. Phase separation was first observed from transparency of the polymer matrixes and further studied by scanning electron microscopy (SEM). The separation resulted from the incompatibility of maleinated oil-based resins and styrene, and might be influenced by curing temperature and reactivity ratios of the reactive monomers. By dynamic mechanical analysis (DMA) storage modulus, glass transition temperature, and crosslink density of the bio-based polymer materials were investigated. The two effects of phase separation and crosslink density were used to correlate the microstructure factors with the obtained thermo-mechanical and mechanical properties of the tung-oil-based resins. It was found that the phase-separation effect was the dominating factor affecting the mechanical properties rather than other factors. The matrix of TOPERMA with 33% styrene exhibited good stiffness-toughness balance due to the minimum extent of phase separation it had. This developed eco-friendly bio-based polymer shows potential structural application as sheeting molding compounds.
机译:本文着重于通过固化一种新开发的具有不同苯乙烯含量的桐油基单体(TOPERMA)获得的桐油基热固性聚合物的结构-性质关系。首先从聚合物基质的透明度观察到相分离,然后通过扫描电子显微镜(SEM)对其进行进一步研究。分离是由于马来酸化的油基树脂和苯乙烯的不相容性,并且可能受到固化温度和反应性单体的反应率的影响。通过动态力学分析(DMA)的储能模量,玻璃化转变温度和生物基聚合物材料的交联密度进行了研究。相分离和交联密度的两种作用被用来将微观结构因素与桐油基树脂的热机械性能联系起来。已经发现,相分离效应是影响机械性能的主要因素,而不是其他因素。具有33%苯乙烯的TOPERMA基体由于具有最小的相分离程度而显示出良好的刚度-韧性平衡。这种开发的生态友好型生物基聚合物在片状模塑料中显示出潜在的结构应用。

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