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Investigation of curing characteristics of carbon fiber/epoxy composites cured with low-energy electron beam

机译:低能电子束固化碳纤维/环氧树脂复合材料的固化特性研究

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摘要

To solve the penetration depth of carbon fiber/epoxy prepreg and irradiation dose uniformity by low-energy E-Beam under 125 keV, the both-side irradiation curing of prepreg was investigated. The results show that there is little thermal effect during the low-energy electron beam irradiation curing process, even though the irradiation dosage reached 300 kGy, only 46.2 degrees C can be tested on the prepreg surface. Due to the low curing temperature, the degree of cure of prepreg was only 61.8% at 300 kGy level of irradiation, and the glass-transition temperature (T-g) was only 48.6 degrees C. The degree of cure and T-g can be increased sharply by thermal postcure. After being postcured at 160 degrees C for 30 min, the degree of cure and the T-g of prepreg reached 98.5% and 170.4 degrees C, respectively. Interlaminar shear strength testing result indicate that the fabrication process of the composite layer by layer curing by the low- energy E-Beam is a promising cure approach. POLYM. COMPOS., 36:1731-1737, 2015. (c) 2014 Society of Plastics Engineers
机译:为了解决碳纤维/环氧预浸料的渗透深度和125 keV下低能电子束的辐照剂量均匀性,研究了预浸料的双面辐照固化。结果表明,在低能电子束辐照固化过程中几乎没有热效应,即使辐照剂量达到300 kGy,也只能在预浸料坯表面测试46.2摄氏度。由于固化温度低,在300 kGy的辐射水平下,预浸料的固化度仅为61.8%,玻璃化转变温度(Tg)仅为48.6摄氏度。热后固化。在160摄氏度后固化30分钟后,固化程度和预浸料的T-g分别达到98.5%和170.4摄氏度。层间剪切强度测试结果表明,低能电子束逐层固化复合层的制备工艺是一种很有前途的固化方法。 POLYM。 COMPOS。,36:1731-1737,2015.(c)2014年塑料工程师学会

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