Design and Ballistic Testing of Ti—6Al—4V Matrix Composites

Author:

Yabei Gu 1,Nesterenko Vitali F.2

Affiliation:

1. Graduate Aeronautical Laboratories, California Institute of Technology 1200E California Blvd, Mail Code 205-45, Pasadena, CA 91125, USA,

2. Department of MAE, University of California San Diego 9500, Gilman Dr. La Jolla, CA 92093, USA

Abstract

Ti—6Al—4V matrix composites enhanced by alumina tubes filled with boron carbide, alumina rods, and alumina plate is termed high gradient composite because of the big density differences among Ti—6Al—4V, alumina, and boron carbide materials. This high gradient composite has been developed for a theoretical study to help determine the best configuration for armor protection. This is the first attempt where materials are prepared using a powder processing method with the specific goal to address the ballistic performance. Hot isostatic pressing (HIP) was first used to manufacture ballistic grade Ti—6Al—4V alloy and high gradient composites incorporating Al2O3 rods, plates, and tubes filled with B4C powders. Processing parameters were investigated and optimized based on materials properties. An important feature of powder-based materials is the lack of texture in comparison with traditional material. Several configurations of this high gradient composite were designed and tested by long rod penetration tests. High gradient composite materials demonstrated new damage patterning features during the long rod projectile penetration process. These features include projectile deflection, self-sealing of the hole, and forced shear localization in the direction of 45° to the impact line caused by fracture of Al2O3 tubes on the initial stage of penetration process. Powder filled voids and rods induced volume distributed, highly heterogeneous pattern of damage initiated by cavities and their interactions. The test results are shown and analyzed in depth in this paper. The results prove that the powder-based approach can be used for processing of materials suitable for ballistic applications.

Publisher

SAGE Publications

Subject

Materials Chemistry,Mechanical Engineering,Mechanics of Materials,Ceramics and Composites

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1. Optimisation strategies for multi-layered armour plates;International Journal of Modelling and Simulation;2023-01-19

2. Lateral stress evolution in chromium sulfide cermets with varying excess chromium;Journal of Applied Physics;2016-04-07

3. Ballistic Response of Chromium/Chromium-Sulfide Cermets;Journal of Dynamic Behavior of Materials;2015-08-29

4. Lateral stress evolution in Chromium Sulfide;Journal of Physics: Conference Series;2014-05-07

5. Damage behaviour of Al matrix composite reinforced with Ti–6Al–4V meshes under the hypervelocity impact;Materials Science and Engineering: A;2012-02

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