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首页> 外文期刊>Macromolecular materials and engineering >Eugenol‐Derived Bismaleimide High Performance Resins and Composites Using Diisocyanate as Property Modifier
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Eugenol‐Derived Bismaleimide High Performance Resins and Composites Using Diisocyanate as Property Modifier

机译:丁香酚衍生高性能双马来酰亚胺使用二异氰酸酯为树脂和复合材料属性修改器

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摘要

Abstract A new kind of high performance bismaleimide resin with good processability and improved toughness is synthesized by chemical modification of 4,4′‐bismaleimidodiphenylmethane (BMI) by eugenol (EG) and different contents of 4,4′‐diphenylmethane diisocyanate (MDI). MDI‐EG‐BMI resins exhibit good thermal stability for its 5% weight loss temperatures around 300?°C and its residue of 41.61% at 900?°C, which are much higher than those of EG‐BMI resin. Then, the carbon fiber‐reinforced MDI‐EG‐BMI composites are fabricated. The mechanical properties of the composites matrixed by MDI‐EG‐BMI resins are better than those by EG‐BMI resin. For carbon/MDI‐EG‐BMI composites, their glass transition temperatures are higher than 300?°C, and their flexural strength, moduli, and toughness are maintained at a range of 217.47–404.36?MPa, 35.12–48.49?GPa, and 1.16–2.63?MJ m ?3 respectively; with the contents increasing of MDI in the resin formulation, the flexural properties first increase then decrease; comprehensively the composite with 30 wt% MDI has the best mechanical and thermal properties.
机译:一种新的高性能双马来酰亚胺树脂具有良好的加工性能和提高韧性合成的化学改性4, 4’bismaleimidodiphenylmethane应承担的由丁香酚(BMI)(如)和不同的内容4, 4’应承担的二苯基甲烷二异氰酸酯(MDI)。MDI量如BMI树脂具有良好的热稳定性5%的减肥温度约300 ?在900年和41.61%的残留吗?远高于那些如BMI树脂。碳纤维加固应承担的MDI量如BMI复合材料编造的。复合矩阵,MDI的如BMI树脂比,如BMI树脂。碳/ MDI量如高BMI复合材料在他们的玻璃转变温度高于300 ?和他们的挠曲强度、模韧性是保持在一个范围的217 . 47 - 404。36 ?1.16 - -2.63吗?内容增加MDI的树脂首先制定、弯曲性能增加然后减少;复合30 wt % MDI有最好的机械和热性能。

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