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Anti-penetration Performance and Micro-damage Mecha-nism of Ti-6Al-4V Alloy Composite Armor
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1.Department of Artillery Engineering, Army Engineering University of PLA, Shijiazhuang 050003, China;2.Physical and Chemical Test Center, HBIS Group Research Institute, Shijiazhuang 050003, China

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Military Key Task Project of China (MS201507A0132)

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    Abstract:

    In order to study the optimal combination of Ti-6Al-4V (TC4) alloy with silicon carbide (SiC) ceramics and ultra-high molecular weight polyethylene (UHMWPE) in composite armor, the penetration resistance and macro-damage of the complex material with composite structure of SiC/UHMWPE/TC4 (I) and SiC/TC4/UHMWPE (II) were analyzed, and the micro-damage of TC4 alloy was also discussed. Results show that the bullet hole edges of TC4 alloy in composite structure I are relatively smooth without cracks, and there are a few adiabatic shear bands (ASBs) propagated along the straight lines. The bullet hole edges of TC4 alloy in composite structure II are rough, and there are cracks and spalling damage. There are many curved and bifurcated ASBs in composite structure II. The penetration process of TC4 alloy in composite structure II includes the pit opening stage, stable penetration stage, and perforation stage. The adiabatic shear behavior of TC4 alloy in composite structure II is more complicated than that in composite structure Ⅰ, resulting in more energy consumption. In addition, the tensile failure caused by UHMWPE in the composite structure II is also one of characteristics of the high energy consumption failure mode. Therefore, the SiC/TC4/UHMWPE composite structure can efficiently exert the energy consumption mechanisms of TC4 alloy and UHMWPE, and the anti-penetration performance of the complex armor with this composite structure is better than that with the composite structure Ⅰ.

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[Zou Youchun, Xiong Chao, Yin Junhui, Deng Huiyong, Cui Kaibo, Zhang Sa, An Zhiguo, Bai Lijuan. Anti-penetration Performance and Micro-damage Mecha-nism of Ti-6Al-4V Alloy Composite Armor[J]. Rare Metal Materials and Engineering,2022,51(7):2329~2335.]
DOI:10.12442/j. issn.1002-185X.20210425

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History
  • Received:May 14,2021
  • Revised:June 15,2021
  • Adopted:June 22,2021
  • Online: August 03,2022
  • Published: July 27,2022