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多功能含能结构材料冲击压缩特性的理论计算 (Theoretical calculation on shock compression characteristics of multifunctional energetic structural materials )  2013年发表《爆炸与冲击》
  史安顺  张先锋 乔良   Shi An-shun   Zhang Xian-feng   Qiao Liang


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shianshun1: 金币+20, ★★★★★最佳答案 2015-09-01 16:05:30
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Accession number:  
20132516432948

              Title:  Theoretical calculation on shock compression characteristics of multifunctional energetic structural materials
      Authors:  Shi, An-Shun1, 2; Zhang, Xian-Feng1 Email author lynx@mail.njust.edu.cn; Qiao, Liang1; Wei, Sheng3; Zhang, Jiang1; He, Yuan1; He, Yong1  
    Author affiliation:  1 Ministerial Key Laboratory of ZNDY, Nanjing University of Science and Technology, Nanjing 210094, Jiangsu, China  
   2 Ningbo Branch of China Academy of Ordnance Science, Yantai 264003, Shandong, China  
   3 Anhui Hongxing Ltd., Hefei 231135, Anhui, China  
      Corresponding author:  Zhang, X.-F. (lynx@mail.njust.edu.cn)  
          Source title:  Baozha Yu Chongji/Explosion and Shock Waves
    Abbreviated source title:  Baozha Yu Chongji
    Volume:  33
        Issue:  2
        Issue date:  March 2013
    Publication year:  2013
        Pages:  148-155
        Language:  Chinese
    ISSN:   10011455   
      CODEN:   BAYCE7   
        Document type:  Journal article (JA)
                Publisher:  Explosion and Shock Waves, P.O. Box 523-60, Chengdu, 610003, China
       Abstract:  Based on the cold energy mixture theory, the equations of state were given for the compaction multifunctional energetic structural materials (MESMs) under shock compression by using the Hugoniot relations of the components. And combining the above method and the Wu-Jing model, the equations of state were proposed for the porous MESMs under shock compression along the isobaric paths. To verify the accuracy of the calculations, the Hugoniot relations were calculated for the typical metal particle mixture (W/Cu) and the typical MESMs (Al/Ni, Ni/Ti and Al/Fe2O3/epoxy), respectively. The theoretical calculations agree well with the corresponding experimental results. The shock compression characteristics of the MESMs can be evidently influenced by their porosities and the proportions of the components in them.
            Number of references:  26
                Main heading:   Semiconductor insulator boundaries  
      Controlled terms:   Equations of state  -  Mixtures  -  Porous materials  
    Uncontrolled terms:   Hugoniot relation  -  Impact loads  -  Metal particle  -  Mixture theory  -  Shock compressions  -  Shock response  -  Solid mechanics  -  Theoretical calculations  
        Classification code:   714.2 Semiconductor Devices and Integrated Circuits -  802.3 Chemical Operations -  921 Mathematics -  951 Materials Science
                            Database:  Compendex
   Compilation and indexing terms, © 2015 Elsevier Inc.
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