Ma Yuqin, Wang Jie, Zhao Yatao, Wei Xinliang, Ju Luyan, Chen Yi
School of Mechano-Electronic Engineering, Xidian University, Xi'an 710071, China.
Army aviation institute, Beijing 101123, China.
Polymers (Basel). 2020 Feb 12;12(2):419. doi: 10.3390/polym12020419.
In order to prepare a carbon-fiber-reinforced polymer composite (CFRP) with ideal microstructure and properties, a new vacuum pressure infiltration CFRP method is proposed based on an analysis of existing CFRP preparation process methods. Research on composite material preparation systems was carried out by using this new method principle. The system mainly includes a fiber pre-forming module, a vacuum heating infiltration module, a hot-press curing molding module, and a data acquisition control module. Under the conditions of natural curing at 0 MPa + 6 h + 25 ℃, vacuum heating curing at -0.05 MPa + 30 min + 80 ℃, and hot-press curing at 0.7 MPa + 5 min + 50 ℃, a two-dimensional (2D) CFRP with excellent microstructure and properties was successfully prepared. Observing the microstructure of the prepared composite material, it can be found that the inside of the composite material was sufficiently and uniformly infiltrated, and common preparation defects such as holes and delamination were effectively controlled. Through the performance test, the bending strength of the material reached 790 MPa.
为制备具有理想微观结构和性能的碳纤维增强聚合物复合材料(CFRP),在分析现有CFRP制备工艺方法的基础上,提出了一种新的真空压力浸渍CFRP方法。利用该新方法原理对复合材料制备系统进行了研究。该系统主要包括纤维预成型模块、真空加热浸渍模块、热压固化成型模块和数据采集控制模块。在0MPa + 6h + 25℃自然固化、-0.05MPa + 30min + 80℃真空加热固化、0.7MPa + 5min + 50℃热压固化条件下,成功制备出具有优异微观结构和性能的二维(2D)CFRP。观察制备的复合材料微观结构发现,复合材料内部充分且均匀地被浸渍,有效地控制了孔洞和分层等常见制备缺陷。通过性能测试,材料的弯曲强度达到790MPa。