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以酚醛树脂和沥青炭纤维为基础的炭质复合材料,具有较高的耐热性和热稳定性.该材料的性能在很大程度上取决于聚合物基质和填充剂之间的异相界面反应,首先是浸润和粘着.为保证最佳的浸润条件,创建牢固的粘着接触,研究了沥青炭纤维表面张力,酚醛树脂浸渍剂溶液浓度等对浸润性能的影响.为了缩短制品的成型时间,减少能耗,还研究了成型温度制度对炭质复合材料性质的影响.

参考文献

[1] A·И·布里亚,B·И·杜布柯娃.用不同元素改质的炭纤维短丝增强的复合材料之性质[J].新型炭材料,1998(03):48-51.
[2] A·И·布里亚,B·И·杜布柯娃.用金属改质炭纤维增强树脂复合材料制备的耐磨材料[J].新型炭材料,1998(04):68-70.
[3] АИ布里亚,戴伊文.以芳香族聚酰胺为基质的复合材料之力学化学和磨损[J].新型炭材料,1999(01):61-64.
[4] A·И·布里亚,OΓ普里赫奇柯.以芳香族聚酰胺菲尼龙为基质的复合材料摩擦性质与聚合物形态的关系[J].新型碳材料,1998(02):54-59.
[5] A·И·布里亚,H·Г·契尔卡索娃,王为钢,戴伊文.在酚醛树脂炭质复合材料中沥青炭纤维骨架杂乱分布强化效应的研究[J].新型炭材料,2001(04):40-45.
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