間隙內(nèi)的速度發(fā)展歷程、擊靶速度及形貌,給出了TATB基鈍感炸藥在不同起爆間隙下的到爆轟距離。結(jié)果表明:隨著起爆間隙的增大,TATB基鈍感炸藥的到爆轟距離呈非單調(diào)變化特征,與飛片的速度及結(jié)構(gòu)特性相關(guān)。飛片起爆炸藥的5個速度階段中,飛片主體與層裂層融合完成階段的飛片起爆能力最強(qiáng),隔層起爆次之,層裂層發(fā)生前的速度衰減階段及層裂層與飛片主體融合過程中的飛片起爆能力最弱。-龍源期刊網(wǎng)" />

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金屬飛片起爆間隙對TATB基炸藥到爆轟距離的影響

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中圖分類號:O381;TJ55 國標(biāo)學(xué)科代碼:13035 文獻(xiàn)標(biāo)志碼:A

Abstract:Todiscusstheflyinggapeffectof themetalflyerontheinitiating behaviorforTATB-basedexplosives,nitiation experiments for PBX-6and PBXL-7were performed.The target velocityand shape oftheflyer to explosives were obtained using a 1 5 5 0 n m photon Doppler velocimetry. The running distance to detonation (RDTD) of explosive samples was gained byaTerahertz-wave Doppler interferometricvelocimetryatthecenter point.Therelationship between theexperiment data captured above was analyzed.It reveals that the running distance to detonation of the TATB-based explosive changes nonmonotonously with the increase of gap. With the gap increasing from zero to 2 0 m m ,there are five stages.The initial stage is named S0,theflyer velocitydecliningstage is named S1,thefreerunning stage ofspalationis named S2,theremergingstage whenthe main flyer catches up and remerging with its spalation layer is named S3,and the stage when the main flyer and spalation are united asone is named S4.The RDTD for the TATB-based explosiveis the smalest when the flyer velocity comes to stage S4,theRDTDat stage SOis the next,and theRDTDat the velocitydeclining stage S1and remerging stage S3 arethe worst together.These experiment results suggst thatthe initiating performanceofTATB-based explosives impacted by theflyer is notalwaysbeterthanthegaplayerresults.The initiationmechanismofexplosives byflyerunder diferent gaps is probably relatedtothetarget velocitytogether with the structure oftheflyer.The simplex target velocityrising offlyercan't always make the running distance to detonation ofTATB-based explosives shorter.The initiation mechanism ofTATB-based explosives impacted by flyeris more complex than the gap layer,requiring much experiment data and numerical simulation for further discussion.

Keywords: TATB-based explosive; running distance to detonation; gap size; flyer velocity

飛片起爆炸藥是一種高可靠的起爆方式,可以通過多級增壓技術(shù)[1-2]獲取比接觸起爆更高的沖擊壓力,從而提升下級裝藥的起爆可靠性[3-5],在武器裝藥爆炸序列中有著較為廣泛的應(yīng)用。(剩余9464字)

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