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本文描述了各种缩比多SFF战斗部的试验结果。这些缩比试验导致了全尺寸SFF试验战斗部的试验。径向放置的多个SFF装药配置对战斗部设计提出了许多特殊难题。为了评价这样一种结构,制造且测试了各种各样的试验品。在多个SFF战斗部结构中,主要难点之一是要确保所有的SFF同时起爆,以保证形成最佳的自锻破片。利用爆速在炸药中被认为不变这一原理,测量了单点起爆轰波的分配路径。一种全尺寸实验战斗部由一个铸钢壳体内装35个SFF装药组成,用单点起爆分配器将其引爆。SFF的速度和变形量用X射线照相获得。一个侵彻目标靶被用于测量贯穿深度。
This article describes the test results for various reduced-ratio, multi-SFF warheads. These scaling tests led to the full size SFF test warhead test. Multiple SFF charge configurations placed radially pose many unique challenges to warhead design. In order to evaluate such a structure, various test articles were manufactured and tested. Among the many SFF warhead configurations, one of the major challenges is ensuring that all SFFs are detonated at the same time to ensure the best possible forging fragmentation. Using the principle that detonation velocity is considered constant in explosives, the distribution path of single point detonation detonation was measured. A full-scale experimental warhead consisted of 35 SFF chargers in a cast steel housing, detonated with a single-point initiator dispenser. The speed and amount of deformation of the SFF are obtained by radiography. A penetration target is used to measure penetration depth.