• ISSN 1001-1455  CN 51-1148/O3
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  • 力学类中文核心期刊
  • 中国科技核心期刊、CSCD统计源期刊
Volume 33 Issue 2
Apr.  2014
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Article Contents
ShiAn-shun, ZhangXian-feng, QiaoLiang, WeiSheng, . Theoreticalcalculationonshockcompressioncharacteristicsofmultifunctionalenergeticstructuralmaterials[J]. Explosion And Shock Waves, 2013, 33(2): 148-155. doi: 10.11883/1001-1455(2013)02-0148-08
Citation: ShiAn-shun, ZhangXian-feng, QiaoLiang, WeiSheng, . Theoreticalcalculationonshockcompressioncharacteristics ofmultifunctionalenergeticstructuralmaterials[J]. Explosion And Shock Waves, 2013, 33(2): 148-155. doi: 10.11883/1001-1455(2013)02-0148-08

Theoreticalcalculationonshockcompressioncharacteristics ofmultifunctionalenergeticstructuralmaterials

doi: 10.11883/1001-1455(2013)02-0148-08
Funds:

NationalNaturalScienceFoundationofChina(10902053)

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  • Corresponding author: ZhangXian-feng
  • Publish Date: 2013-03-25
  • Basedonthecoldenergymixturetheory,theequationsofstateweregivenforthecompactionmultifunctionalenergeticstructuralmaterials( MESMs)undershockcompressionbyusingthe Hugoniotrelationsofthecomponents.AndcombiningtheabovemethodandtheWu-Jingmodel,the equationsofstatewereproposedfortheporousMESMsundershockcompressionalongtheisobaric paths.Toverifytheaccuracyofthecalculations,theHugoniotrelationswerecalculatedforthetypicalmetalparticlemixture( W/Cu)andthetypicalMESMs(Al/Ni,Ni/TiandAl/Fe2O3/epoxy),respectively. Thetheoreticalcalculationsagreewellwiththecorrespondingexperimentalresults.The shockcompressioncharacteristicsoftheMESMscanbeevidentlyinfluencedbytheirporositiesand theproportionsofthecomponentsinthem.
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