Simulation of Dwell-to-Penetration Transition for SiC Ceramics Subjected to Impact of Tungsten Long Rods
Author:
Affiliation:
1. Temasek Laboratories; Nanyang Technological University, 50 Nanyang Drive, Singapore; Singapore
2. School of Materials Science and Engineering; Nanyang Technological University, Singapore; Singapore
Publisher
John Wiley & Sons, Inc.
Reference14 articles.
1. T. J. Holmquist C. E. Anderson Jr T. Behner D. L. Orphal “Mechanics of dwell and post-dwell penetration 109 8 467 479 2010
2. Impact of Metallic Projectiles on ceramic targets: transition between interface defeat and penetration;Lundberg;Int. J. Impact Eng.,2000
3. Fundamental Issues and Applications of Shock-Wave and High-Strain-Rate Phenomena;LaSalvia,2001
4. Response of silicon carbide to high velocity impact;Holmquist;J. of Applied Physics,2002
5. Characterization and evaluation of silicon carbide for high-velocity impact;Holmquist;J. Appl. Phys.,2005
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2. Ballistic ceramics and analysis of their mechanical properties for armour applications: A review;Ceramics International;2021-04
3. Simulation study on influence of component thickness on dwell-penetration transition time of long rod projectile impacting ceramic armour module;Journal of Physics: Conference Series;2021-01-01
4. Study on transition from dwell/interface defeat to penetration of long-rod projectile impacting silicon carbide;International Journal of Fracture;2019-06-26
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