Volume 32 Issue 5
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WANG Xiao-hong, LI Xiao-jie, YAN Hong-hao, YI Cai-hong, LUO Ning. Detonationreactioncharacteristicofemulsionexplosivesusedfornano-materialssynthesi[J]. Explosion And Shock Waves, 2012, 32(5): 523-527. doi: 10.11883/1001-1455(2012)05-0523-05
Citation: WANG Xiao-hong, LI Xiao-jie, YAN Hong-hao, YI Cai-hong, LUO Ning. Detonationreactioncharacteristicofemulsionexplosives usedfornano-materialssynthesi[J]. Explosion And Shock Waves, 2012, 32(5): 523-527. doi: 10.11883/1001-1455(2012)05-0523-05

Detonationreactioncharacteristicofemulsionexplosives usedfornano-materialssynthesi

doi: 10.11883/1001-1455(2012)05-0523-05
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NationalNaturalScienceFoundationofChina(10902023)

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  • Corresponding author: WANG Xiao-hong
  • Publish Date: 2012-09-25
  • ThecharacteristicofdetonationreactionoftheemulsionexplosivescontainingFe,Mnand Znelementswasdiscussed.Thethermaldecompositioncharacteristicoftheexplosivesanddetonation products,theingredientsandmorphologyofdetonationproductswereallresearchedandcharacterized byDSCandTGexperimentsandXRDandTEMtest.Themostlikelystatusofthesolidproductsin detonationreactionprocesswasalsodiscussedandverifiedbynumericalmethods.Experimentalresultsindicatedthatammonium nitratewashelpfultoform uniform andstabledetonationreaction structurewhichwashelpfultopreparenano-Mn(Zn)ferritepowderswithsameingredientsrepeatably. Thelow-densityexplosiveswereincompletelydetonatedresultinginnano-Mn(Zn)ferritepowderscontaininglotsofimpurities. Thenumericalresultsindicatedthatthephasedistributiondiagram ofthedetonationproductscouldhelpusunderstandthemostlikelystatusofthesoliddetonation productsandMn(Zn)ferritepowdersformationmechanismindetonationreactionprocess.
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