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Numerical Simulation of Shock Initiation of Shielded Composition B Impacted by Tungsten Alloy Fragment |
TONG Yuan 1, LI Degui 1, NIE Yuan 1, JIN Guiyu 2, CHI Dejian 2 |
1. Institute of Systems Engineering, China Academy of Engineering Physics, Mianyang 621999, Sichuan, China;
2. Shanghai Electro-Mechanical Engineering Institute, Shanghai 201109, China
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Abstract Using AUTODYN software to carry out numerical simulation, the “up-down” method was used to calculate the initiation velocity threshold of composition B shielded by 6 mm/9 mm thick 45 steel cover plate impacted by 10 g tungsten alloy spherical fragment. According to the Richard M. Lloyd and Jacobs-Roslund model equations, engineering calculations under the same target conditions were carried out. The results show that the velocity threshold of 10 g tungsten alloy spherical fragment to detonate 6 mm/9 mm thick 45 steel shielded composition B is 2 100 m/s and 2 200 m/s respectively, and the calculated results based on Jacobs-Roslund model equation are more consistent with the numerical simulation results. The conclusion of this paper can provide a basis for the lethality design and assessment of anti-missile warhead.
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Received: 25 January 2021
Published: 07 September 2021
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