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首页> 外文期刊>Polymer engineering and science >Effects of Aromatic Carboxylic Dianhydrides on Thermomechanical Properties of Polybenzoxazine-Dianhydride Copolymers
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Effects of Aromatic Carboxylic Dianhydrides on Thermomechanical Properties of Polybenzoxazine-Dianhydride Copolymers

机译:芳族羧酸二酐对聚苯并恶嗪-二酐共聚物热力学性能的影响

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摘要

Enhanced thermomechanical properties of bisphenol-A based polybenzoxazine (PBA-a) copolymers obtained by reacting bisphenol-A-aniline-type benzoxazine (BA-a) resin with three different aromatic carboxylic dianhydrides, i.e., pyromellitic dianhydride (PMDA), 3,3,4,4' biphenyltetracarboxylic dianhydride (s-BPDA), or 3,3,4,4' benzophenonetetracarboxylic dianhydride (BTDA) were reported. Glass transition temperature (T_g), of the copolymers was found to be in the order of PBA-a:PMDA>PBA-a:s-BPDA>PBA-a:-BTDA. The difference in the T_g of the copolymers is related to the rigidity of the dianhydride components. Furthermore, the T_g of PBA-a:BTDA, PBA-a:s-BPDA, and PBA-a:BTDA films was observed to be significantly higher than that of the neat PBA-a owing to the enhanced crosslink density by the dianhydride addition. This greater crosslink density results from additional ester linkage formation between the hydroxyl group of PBA-a and the anhydride group of dianhydrides formed by thermal curing. Moreover, the copolymers exhibit enhanced thermal stability with thermal degradation temperature (T_d) ranging from 410° C to 426 °C under nitrogen atmosphere. The char yield at 800 °C of the copolymers was found to be remarkably greater than that of the neat PBA-a with a value up to 60% vs. that of about 38% of the PBA-a. Toughness of the copolymer films was greatly improved compared to that of the neat PBA-a.
机译:通过使双酚-A-苯胺型苯并嗪(BA-a)树脂与三种不同的芳族羧酸二酐,即均苯四甲酸二酐(PMDA)3,3反应而获得的双酚A基聚苯并恶嗪(PBA-a)共聚物的增强的热机械性能据报道有4,4'联苯四羧酸二酐(s-BPDA)或3,3,4,4'二苯甲酮四羧酸二酐(BTDA)。发现共聚物的玻璃化转变温度(T_g)为PBA-a:PMDA> PBA-a:s-BPDA> PBA-a:-BTDA的顺序。共聚物的T_g的差异与二酐组分的刚性有关。此外,由于二酐的添加增加了交联密度,观察到PBA-a:BTDA,PBA-a:s-BPDA和PBA-a:BTDA膜的T_g明显高于纯PBA-a。 。这种更大的交联密度是由于在PBA-a的羟基和通过热固化形成的二酐的酸酐基团之间形成了额外的酯键所致。此外,在氮气氛下,该共聚物表现出增强的热稳定性,其热降解温度(T_d)为410℃至426℃。发现该共聚物在800℃下的炭收率明显高于纯PBA-a的炭收率,其值高达60%,而PBA-a约为38%。与纯PBA-a相比,共聚物膜的韧性大大提高。

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