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Polyesterimide-modified bismaleimide resins. I. Effect of polyesterimide content

机译:聚酯酰亚胺改性的双马来酰亚胺树脂。一,聚酯酰亚胺含量的影响

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A novel polyesterimide (PEsI-M) was used to improve toughness of bismaleimide (BMI) resin composed of bis(4-maleimidediphenyl) methane (BDM) and O,O'-diallyl bisphenol A (DBA). Morphologies of modified resins changed from spherical particles to inverted phase structures, depending on PEsI-M's content based on the observation of scanning electronic microscopy (SEM). PEsI-M was an effective morphology modifier so that loading of 12 pbw resulted in a diverted phase structure. Dynamic mechanical analysis (DMA), rheometrics mechanical spectroscopy (RMS) and differential scanning calorimetry (DSC) were respectively used to investigate the dynamic mechanical behavior, and the gelation time and the curing extent of unmodified and modified BMI resins. The fairly uniform morphology in 15 pbw PEsI-M modified system cured at 180degreesC suggests that the phase separation might take place via a spinodal decomposition mechanism. The fracture energy (G(IC)) increased with the increase of PEsI-M content in the modified systems G(IC) of 15 pbw PEsI-M modified system was 0.63 times larger than that of the unmodified BMI resin. [References: 23]
机译:新型聚酯酰亚胺(PEsI-M)用于提高由双(4-马来酰亚胺二苯基)甲烷(BDM)和O,O'-二烯丙基双酚A(DBA)组成的双马来酰亚胺(BMI)树脂的韧性。根据扫描电子显微镜(SEM)的观察结果,取决于PEsI-M的含量,改性树脂的形态从球形颗粒变为反相结构。 PEsI-M是一种有效的形态修饰剂,因此负载量为12 pbw会导致相结构改变。分别使用动态力学分析(DMA),流变学机械能谱(RMS)和差示扫描量热法(DSC)研究了未改性和改性BMI树脂的动态力学行为,胶凝时间和固化程度。在180℃固化的15 pbw PEsI-M改性体系中,形态相当均匀,这表明相分离可能通过旋节线分解机制发生。 15 pbw PEsI-M改性体系的改性体系G(IC)的断裂能(G(IC))随着PEsI-M含量的增加而增加,是未改性BMI树脂的0.63倍。 [参考:23]

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