2021
DOI: 10.1177/00219983211037049
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Effects of electron beam irradiation on hypervelocity impact behavior of carbon fiber reinforced plastic plates

Abstract: The effects of electron beam irradiation were examined on perforation holes and fragments from quasi-isotropic carbon fiber reinforced plastic plates (CFRP plates). CFRP plates with a total dose up to 60 MGy of electron beam irradiation were prepared for hypervelocity impact experiments. The perforation holes of CFRP plates in the hypervelocity impact experiments were decreased with electron beam irradiation when aluminum alloy spherical projectiles (2017-T4) of diameter of 1 mm struck at an impact velocity of… Show more

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Cited by 6 publications
(1 citation statement)
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“…6 The electron spin resonance signal of carbon radical was observed in the carbon fiber reinforced epoxy resin composite under 5 MGy EB irradiation. 36 The curing mechanism of pure BMI resins under EB irradiation is through radical polymerization, similar to that of acrylic resins. However, the C=C bond is in an electron-deficient state, caused by the strong electron-absorbing effects of the two carbonyl groups in the maleimide group.…”
Section: Curing Process Of Btp Resinsmentioning
confidence: 99%
“…6 The electron spin resonance signal of carbon radical was observed in the carbon fiber reinforced epoxy resin composite under 5 MGy EB irradiation. 36 The curing mechanism of pure BMI resins under EB irradiation is through radical polymerization, similar to that of acrylic resins. However, the C=C bond is in an electron-deficient state, caused by the strong electron-absorbing effects of the two carbonyl groups in the maleimide group.…”
Section: Curing Process Of Btp Resinsmentioning
confidence: 99%