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Numerical Simulation of Steel Target Penetration by Shaped Charge Distended Jet with a High-Polymer Liner

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dc.contributor.author Yi, J.Y.
dc.contributor.author Wang, Z.J.
dc.contributor.author Yin, J.P.
dc.contributor.author Chang, B.H.
dc.date.accessioned 2020-12-12T13:45:34Z
dc.date.available 2020-12-12T13:45:34Z
dc.date.issued 2017
dc.identifier.citation Numerical Simulation of Steel Target Penetration by Shaped Charge Distended Jet with a High-Polymer Liner / J.Y. Yi, Z.J. Wang, J.P. Yin, B.H. Chang // Проблемы прочности. — 2017. — № 1. — С. 34-44. — Бібліогр.: 12 назв. — англ. uk_UA
dc.identifier.issn 0556-171X
dc.identifier.uri http://dspace.nbuv.gov.ua/handle/123456789/173580
dc.description.abstract This study investigates the characteristics of shaped charge jet formed with a high-polymer (PTFE) liner, as well as its penetration capabilities, by theoretical, experimental, and numerical methods. This work presents a viscoplastic model and equation of compressible fluid to describe the jet cohesive condition. It also shows that the high-polymer jet is inevitably distended. Two types of liner materials were studied: a high-polymer PTFE liner and a pure copper one. The corresponding numerical simulations of the two jet formations are presented. The pulse X-ray photographic technology was employed to observe the distended jet of the PTFE liner and the particulate jet of the copper one. The simulation and jet radiography results show that the two types of jet behavior with particulate and radial dispersion are ductile and related to the liner material. The distended jet formation result from the liner material was crushed at the high-pressure region because a sudden pressure jump induces the radial velocity rise, which results in lateral expansion. As compared with a typical copper penetration performance, the polymer distended jet had a larger aperture and lower penetration depth. Due to polymer liner lower density, this jet will have limited penetration as compared to that of a copper liner. The simulated results strongly agree with the experimental ones. The polymer material can be modified to obtain much better performance, which will greatly enhance the penetration capacity of polymer jets. uk_UA
dc.description.sponsorship The authors would like to acknowledge the financial support from the Project supported by the National Natural Science Foundation of China under Grant No. 11572291. uk_UA
dc.language.iso en uk_UA
dc.publisher Інститут проблем міцності ім. Г.С. Писаренко НАН України uk_UA
dc.relation.ispartof Проблемы прочности
dc.subject Научно-технический раздел uk_UA
dc.title Numerical Simulation of Steel Target Penetration by Shaped Charge Distended Jet with a High-Polymer Liner uk_UA
dc.title.alternative Численное моделирование проникновения размытой реактивной струи кумулятивного заряда с высокополимерной облицовкой в стальную мишень uk_UA
dc.type Article uk_UA
dc.status published earlier uk_UA
dc.identifier.udc 539.4


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