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Tannic acid-based prepolymer systems for enhanced intumescence in epoxy thermosets

机译:基于单宁酸的预聚物体系,用于增强环氧热固性型膨胀

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摘要

Tannic acid (TA) is a bio-based high-molecular-weight organic molecule. Although biologically sourced, TA is a pollutant in industrial wastewater streams, and there is desire to find applications in which to downcycle this molecule. Many flame retardants (FRs) used in epoxy are synthesized from petroleum-based monomers. Various bio-based modifiers have been developed, but increasing the flame retardancy of the system without trade-offs with other properties has proved challenging. In this work, TA is incorporated into the thermoset. The molecular behavior of the system was dependent on the TA loading, with low concentrations causing the molecule to be surface-functionalized, while at higher concentrations the molecule was cross-linked into the network. The material was further characterized for its cross-link density, thermal stability, mechanical and thermomechanical properties and FR ability. In this work, TA was found to work well as an intumescent agent but did not reduce the heat release rate. The results of this study suggest that the external (hydrophilic surface-phenol groups) and internal (D-glucose and attached phenyl groups) structural regions of the TA molecule impact the FR ability of the molecule in epoxy separately. Maintaining the structural integrity of both regions is critical to the synergistic FR behavior of the molecule.
机译:鞣酸(TA)是一种基于生物的高分子量有机分子。虽然生物学源于生物学,但TA是工业废水流中的污染物,并且希望在该分子下发现该分子的应用。环氧树脂中使用的许多阻燃剂(FRS)由石油基单体合成。已经开发出各种生物的改性剂,但增加了系统的阻燃性而无需其他性质的权衡已经证明了具有挑战性。在这项工作中,TA被纳入热固性。该系统的分子行为依赖于TA负载,具有低浓度,使得分子表面官能化,而在较高浓度下,分子被交联进入网络。该材料进一步表征了其交联密度,热稳定性,机械和热机械性能和能力。在这项工作中,发现TA可以用作膨胀剂,但没有降低热释放率。本研究的结果表明,TA分子的外部(亲水性表面 - 酚基)和内部(D-葡萄糖和附着的苯基)的结构区域分别影响分子在环氧树脂中的FR能力。保持两个地区的结构完整性对分子的协同FR行为至关重要。

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