和 0 . 6 8 m ,較NSC和UHPC遮彈層分別降低了 6 1 . 8 % ~ 6 9 . 1 % 和 4 3 . 3 % ~ 5 8 . 0 % ;3種戰(zhàn)斗部侵徹爆炸作用下,CRC遮彈層的臨界貫穿厚度及臨界震塌厚度分別為0.55、1.41和 1 . 4 8 m 及1.11、2.26和 3 . 1 7 m ,與NSC和UHPC遮彈層相比,臨界貫穿厚度分別降低了 5 8 . 5 % ~ 6 1 . 2 % 和 4 3 . 2 % ~ 5 8 . 1 % ,臨界震塌厚度分別降低了 6 1 . 8 % ~ 6 9 . 2 % 和 3 4 . 7 % ~ 4 0 . 5 % 0-龍?jiān)雌诳W(wǎng)" />

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典型戰(zhàn)斗部侵徹爆炸下塊石混凝土的遮彈層設(shè)計(jì)

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中圖分類號(hào):0385 國標(biāo)學(xué)科代碼:1303530 文獻(xiàn)標(biāo)志碼:A

Abstract:Aimingattheresistanceevaluationandengineringdesign therock-rubbleconcreteshieldunderthecombination penetrationandexplosionEarthPenetrating Weapons,firstly,afiniteelement modeling methodforrock-rubbleconcrete shieldswas proposed.Byconducting numerical simulations quasi-staticand penetration tests onultra-high performance concrete (UHPC)targets containing diferentcoarse aggegate types (corundumandbasalt),particlesizes (5-15,50,545, and 6 5-7 5 m m ), and volume fractions ( 1 5 % and 3 0 % ),the reliability the finite element analysis approach was thoroughly verified.Then,usingthesemi-infiniterock-rubbleconcrete shield penetrated bythesmal-diameter bomb (SDB)as acase study,the quantitativeinfluence type(corundum,basalt,and granite)and dimensionless particlesizerock-rubble (anging from0.3 to2.2times theprojectilediameter)on the penetration depth was analyzed,andoptimaldesignrecommendations were determied.Furthermore,thepenetrationanalysesthreetypical prototype warheads,i.e.,SDB,WDU-43/B,andBLU109/B,werecarriedout,andthecorresponding penetrationresistances normal strengthconcrete (NSC),ultra-high performance concrete,and corundum rubble concrete (CRC) shields against the above three warheads were quantitatively compared.Finall,theengineeingdesignmethodfortheCRCshieldunderthecombinedeffectspenetrationandexplosion prototype warheads was proposed.Theresults idicate that theCRCshieldcontaining the particle size1.3to1.7times the projectile diameter exhibits the most excelent penetration resistance. Under the penetration three types warheads,the penetration depths in CRC shield were 0.29, 0.78,and 0 . 6 8 m ,respectively,which are reduced by 6 1 . 8 % 6 9 . 1 % and 4 3 . 3 % 5 8 . 0 % compared to those in NSC and UHPC shields. Under the combined effcts penetration and explosion, the perforationlimits theCRC shield are O.55,1.41,and 1 . 4 8 m ,while the scabbinglimits are1.11,2.26,and 3 . 1 7 m .Compared withNSC and UHPC shields, the perforation limitsare reduced by 5 8 . 5 % - 6 1 . 2 % and 4 3 . 2 % 5 8 . 1 % ,respectively,and the scabbing limits are reduced by 6 1 . 8 % 6 9 . 2 % and 3 4 . 7 % - 4 0 . 5 % ,respectively.

Keywords:rock-rubbleconcrete shield; penetrationandexplosion; perforation limit;scabbing limit;protective design

含大粒徑塊石的超高性能混凝土(ultra-high performance concrete,UHPC),簡稱塊石混凝土,較普通強(qiáng)度混凝土(normal strength concrete,NSC)具有優(yōu)異的抗鉆地武器戰(zhàn)斗部侵徹和爆炸性能以及突出的綜合性價(jià)比[1-4]。(剩余20305字)

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