Fragmentation behavior of large-caliber PELE impacting RHA plate at low velocity  被引量:5

Fragmentation behavior of large-caliber PELE impacting RHA plate at low velocity

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作  者:Mo-ang Lei Hai-fu Wang Qing-bo Yu Yuan-feng Zheng 

机构地区:[1]State Key Laboratory of Explosion Science and Technology,Beijing Institute of Technology

出  处:《Defence Technology(防务技术)》2019年第6期912-922,共11页Defence Technology

摘  要:Impact experiments of large-caliber PELE with various inner-outer diameter ratio perforating RHA plate at low velocity were performed.Experimental results showed the size of perforated holes on plate,average diameter of damage area on witness plate,and number of behind-armor fragments will increase as d/D increasing from 0.72 to 0.84.Expansion and fragmentation of large-caliber PELE in this condition were also numerically studied with ANSYS Autodyn.Then,an analytical model accounting for an additional radial shock wave was presented to predict radial expansion velocity and fragmentation of jacket,as well as an empirical approach to estimate diameter of damage area.Calculation results by these approaches were in good agreement with experiments and numerical simulations.Further discussion revealed that Shock/rarefaction wave interactions behavior varying with inner-outer diameter ratio is an important mechanism resulting in different lateral effect by PELE projectiles with various configurations.Impact experiments of large-caliber PELE with various inner-outer diameter ratio perforating RHA plate at low velocity were performed.Experimental results showed the size of perforated holes on plate,average diameter of damage area on witness plate,and number of behind-armor fragments will increase as d/D increasing from 0.72 to 0.84.Expansion and fragmentation of large-caliber PELE in this condition were also numerically studied with ANSYS Autodyn.Then,an analytical model accounting for an additional radial shock wave was presented to predict radial expansion velocity and fragmentation of jacket,as well as an empirical approach to estimate diameter of damage area.Calculation results by these approaches were in good agreement with experiments and numerical simulations.Further discussion revealed that Shock/rarefaction wave interactions behavior varying with inner-outer diameter ratio is an important mechanism resulting in different lateral effect by PELE projectiles with various configurations.

关 键 词:PELE Enhanced lateral effect Penetration mechanics Behind-armor fragments 

分 类 号:TJ4[兵器科学与技术—火炮、自动武器与弹药工程]

 

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