Research output: Chapter in Book/Report/Conference proceeding › Conference contribution › Research › peer-review
The present study focused the effect of aluminium series backing layer on the ballistic resistance of bi-layer ceramic/metal target by means of three dimensional numerical simulation using ANSYS/AUTODYN explicit solver which is cable of modeling and solving the 3D explicit problems. The ceramic and metal layer of bi-layer target was alumina 95% and 1100-H12, 2024-T3, 6061, 7075 aluminium respectively and the impact velocity of ogive nose projectile of 4340 steel was 493, 820 and 1200 m/s. The strength and failure mode of alumina, and steel and aluminium under the projectile impact was computationally modelled by Johnson-Holmiquist (JH-2) model and Johnson-Cook (JC) model respectively. The results shows that ballistic resistance of bi-layer target significantly varied with the aluminium series. 7075 aluminium backing helped the bi-layer target to offer high resistance to the projectile penetration for all the impact velocities.
Original language | English |
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Title of host publication | XXVII INTERNATIONAL CONFERENCE: MATHEMATICAL AND COMPUTER SIMULATION IN MECHANICS OF SOLIDS AND STRUCTURES - FUNDAMENTALS OF STATIC AND DYNAMIC FRACTURE (MCM 2017) |
Editors | Y Petrov, Silberschmidt |
Publisher | Elsevier |
Pages | 40-47 |
Number of pages | 8 |
DOIs | |
State | Published - 1 Jan 2017 |
Event | 27th International Conference on Mathematical and Computer Simulations in Mechanics of Solids and Structures - Fundamentals of Static and Dynamic Fracture (MCM) - Saint Petersburg, Russian Federation Duration: 25 Sep 2017 → 27 Sep 2017 |
Name | Procedia Structural Integrity |
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Publisher | ELSEVIER SCIENCE BV |
Volume | 6 |
ISSN (Print) | 2452-3216 |
Conference | 27th International Conference on Mathematical and Computer Simulations in Mechanics of Solids and Structures - Fundamentals of Static and Dynamic Fracture (MCM) |
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Country/Territory | Russian Federation |
City | Saint Petersburg |
Period | 25/09/17 → 27/09/17 |
ID: 61897315