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Effects of gamma ray irradiation on penetration hole in and fragment size from carbon fiber reinforced composite plates in hypervelocity impacts

机译:γ射线辐照对超高速撞击中碳纤维增强复合材料板的穿透孔和碎片尺寸的影响

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摘要

This study examines how gamma ray irradiation affects the penetration holes in and fragment sizes from carbon fiber reinforced plastic (CFRP) plates due to hypervelocity impacts. In order to do so, quasi-isotropic CFRP plates made of unidirectional pre-impregnated sheets and 1-mm-diameter spherical projectiles made of aluminum alloy (2017-T4) were used. Witness plates (200 mm x 200 mm x 2 mm) made of copper (C1100P-1/4H) and containing a 30-mm-diameter hole were placed 50 mm in front of and behind each target to examine the fragments based on ISO 11227. The fragments collected from the impact and rear sides of the target were compared. Gamma ray irradiation had a slight effect on the penetration hole, the fragment size distributions, and the craters on the witness plates. When the gamma ray irradiation was 10 MGy, the penetration holes at impact velocities of 2.4 km/s and 5.3 km/s became slightly smaller. At the impact velocity of 2.4 km/s, perforation of the 0.5 MGy, 6.5 MGy, and 10 MGy specimens prevented the projectile from fracturing.
机译:这项研究探讨了由于超高速影响,伽马射线辐射如何影响碳纤维增强塑料(CFRP)板的穿透孔和碎片尺寸。为此,使用了由单向预浸渍板制成的准各向同性CFRP板和由铝合金制成的1毫米直径的球形弹丸(2017-T4)。将铜制(C1100P-1 / 4H)且直径为30 mm的孔的见证板(200 mm x 200 mm x 2 mm)放在每个目标的前后50 mm处,以根据ISO 11227检查碎片比较了从目标的撞击面和背面收集的碎片。伽马射线辐照对穿透孔,碎片尺寸分布和见证板上的凹坑影响不大。当伽马射线辐照为10 MGy时,在2.4 km / s和5.3 km / s的冲击速度下的穿透孔会稍微变小。在2.4 km / s的冲击速度下,穿孔0.5 MGy,6.5 MGy和10 MGy的样品可防止弹丸破裂。

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