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首页> 外文期刊>Polymer Composites >Study on BMI Modified Allyl-functional Novolac Resin/ Silica Cloth Composites:Effect of Allylation Degree on Thermal and Mechanical Properties
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Study on BMI Modified Allyl-functional Novolac Resin/ Silica Cloth Composites:Effect of Allylation Degree on Thermal and Mechanical Properties

机译:BMI改性的烯丙基官能线型酚醛树脂/硅胶布复合材料的研究:烯丙基化度对热力学性能的影响

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摘要

A series of allyl-functional novolac resin with various allylation degree,from 32.4 to 114.6%,were synthesized and then blended reactively with 4,4-bismaleimide bi-phenyl methane(BMI)at a weight ratio of 2.50:1 to get BMI-modified allyl-functional novolac(BMAN)resins.BMAN resins were used as matrix resin to fabricate BMAN/Silica cloth composites by compression molding process.Heat-resistant properties of the composites were evaluated by means of dynamic mechanical analysis.The results indicated that thermal resistance of the composites increased as allylation degree of BMAN resins increased.Mechanical properties of the composites,including interlaminar shear strength(ILSS)and f lexural strength at room temperature and 300 deg C,were determined,and the results showed that with increase in allylation degree of matrices the ILSS and flexural strength values of composites at room temperature decreased,but the values of ILSS and flexural strength at 300 deg C increased.Scanning electron microscope morphology analysis of fracture surface for composites revealed that tough interphase was responsible for the better mechanical properties of the composites based on lower allylation degree resins.
机译:合成了一系列烯丙基化度为32.4至114.6%的烯丙基官能酚醛清漆树脂,然后将其与4,4-双马来酰亚胺联苯甲烷(BMI)以2.50:1的重量比反应共混,得到BMI-改性的烯丙型酚醛树脂(BMAN)树脂。以BMAN树脂为基体树脂,通过压塑工艺制备了BMAN /硅布复合材料。通过动态力学分析评价了复合材料的耐热性能。随着BMAN树脂烯丙基化程度的提高,复合材料的抗力增加。确定了复合材料的力学性能,包括室温和300摄氏度时的层间剪切强度(ILSS)和挠曲强度,结果表明随着烯丙基化程度的增加室温下复合材料的基体ILSS和抗弯强度值降低,但300摄氏度时ILSS和抗弯强度值增加。对复合材料的断裂表面进行的显微镜形态学分析表明,坚韧的相间关系是基于较低烯丙基化树脂的复合材料具有更好的机械性能的原因。

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