Tominaga Yuichi, Shimamoto Daisuke, Hotta Yuji
National Institute of Advanced Industrial Science and Technology (AIST), Shimosidami, Moriyama-ku, Nagoya 463-8560, Japan.
Materials (Basel). 2018 Mar 26;11(4):493. doi: 10.3390/ma11040493.
The interfacial adhesion of recycled carbon fiber (CF) reinforced epoxy composite heated by microwave (MW) irradiation were investigated by changing the curing state of the epoxy resin. The recycled CF was recovered from the composite, which was prepared by vacuum-assisted resin transfer molding, by thermal degradation at 500 or 600 °C. Thermogravimetric analysis showed that the heating at 600 °C caused rough damage to the CF surface, whereas recycled CF recovered at 500 °C have few defects. The interfacial shear strength (IFSS) between recycled CF and epoxy resin was measured by a single-fiber fragmentation test. The test specimen was heated by MW after mixing the epoxy resin with a curing agent or pre-curing, in order to investigate the curing effects on the matrix resin. The IFSSs of the MW-irradiated samples were significantly varied by the curing state of the epoxy resin and the surface condition of recycled CF, resulting that they were 99.5 to 131.7% of oven heated samples Furthermore, rheological measurements showed that the viscosity and shrinking behaviors of epoxy resin were affected based on the curing state of epoxy resin before MW irradiation.
通过改变环氧树脂的固化状态,研究了微波(MW)辐照加热的回收碳纤维(CF)增强环氧树脂复合材料的界面附着力。回收的CF是从通过真空辅助树脂传递模塑制备的复合材料中,在500或600℃下通过热降解回收的。热重分析表明,600℃加热会对CF表面造成粗糙损伤,而500℃回收的回收CF几乎没有缺陷。通过单纤维断裂试验测量回收CF与环氧树脂之间的界面剪切强度(IFSS)。在将环氧树脂与固化剂混合或预固化后,通过MW对试样进行加热,以研究对基体树脂的固化效果。MW辐照样品的IFSS因环氧树脂的固化状态和回收CF的表面状况而有显著变化,结果表明它们是烘箱加热样品的99.5%至131.7%。此外,流变学测量表明,MW辐照前环氧树脂的固化状态会影响其粘度和收缩行为。