材料科学
复合材料
渗透(战争)
射弹
穿透深度
运筹学
光学
物理
工程类
冶金
作者
Yaoming Li,Huang Zhang,Meini Yuan
标识
DOI:10.3389/fmats.2022.806020
摘要
A coupled finite-element genetic algorithm technique was used to optimize the arrangement order and layer thickness ratios of Ti-Al 3 Ti-Al laminated composites. Moreover, the damage evolution, energy conversion, and stress distribution of TC4-Al 3 Ti-Al laminated composites under impact were analyzed. The results showed that TC4-Al 3 Ti-Al laminated composites with a layer thickness ratio of 3:14:4 have optimum anti-penetration properties; the projectile kinetic energy is mainly converted into the internal energy of the bullet target system; during the penetration process of TC4-Al 3 Ti-Al targets, the TC4 layer is shear failure, the Al layer is a petal-like failure, the failure mode of Al 3 Ti layer is fragmentation; with the number of layer increases, the anti-penetration properties of TC4-Al 3 Ti-Al targets are gradually increasing. However, when the number of layers is more than 30 layers, the number of layers has little effect on the anti-penetration performance of these composites.
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