用户名: 密码: 验证码:
Energetic Al/Fe2O3/PVDF composites for high energy release: Importance of polymer binder and interface
详细信息    查看全文
文摘
Energetic composite materials are very important in military purpose and building explosion but, the role of polymer binder and the materials interfaces has been little reported. Here, we prepared energetic composites consisting of aluminum (Al), iron oxide (Fe2O3) and polymer, as the fuel, oxidizer and binder, respectively. Two different methods, i.e. physical mixing and compression molding were employed to form blended powder and composite film, respectively. The use of partially fluorinated polymer such as poly(vinylidene fluoride) (PVDF) resulted in large improvement in exothermic energy compared to that of hydrocarbon polymer such as poly(vinyl pyrrolidone) (PVP), representing that fluorocarbon groups are actively involved in the reaction and PVDF acts as an oxidizer as well as binder. Furthermore, the Al/Fe2O3/PVDF film prepared by compression molding exhibited much higher exothermic energy than the blended powder, indicating the importance of intimate contact property of energetic materials for energy release.Keywordsreactive materialaluminum (Al)iron oxide (Fe2O3)poly(vinylidene fluoride) (PVDF)energy releaseReferences(1).N. Degirmenbasi, S. Coskun, N. Boz, and D. M. Kalyon, Fuel, 153, 620 (2015).CrossRefGoogle Scholar(2).Y.-R. Huang, Y. Jiang, J. L. Hor, R. Gupta, L. Zhang, K. J. Stebe, G. Feng, K. T. Turner, and D. Lee, Nanoscale, 7, 798 (2015).CrossRefGoogle Scholar(3).J. T. Park, W. S. Chi, D. K. Roh, S. H. Ahn, and J. H. Kim, Adv. Funct. Mater., 23, 26 (2013).CrossRefGoogle Scholar(4).G. Nasar, M. A. Khan, M. F. Warsi, M. Shahid, U. Khalil, and M. S. Khan, Macromol. Res., 24, 309 (2016).CrossRefGoogle Scholar(5).B. Huang, M. Cao, F. Nie, H. Huang, and C. Hu, Defence Technol., 9, 59 (2013).CrossRefGoogle Scholar(6).D. Krishnan, F. Kim, J. Luo, R. Cruz-Silva, L. J. Cote, H. D. Jang, and J. Huang, Nano Today, 7, 137 (2012).CrossRefGoogle Scholar(7).E. S. Collins, B. R. Skelton, M. L. Pantoya, F. Irin, M. J. Green, and M. A. Daniels, Combust. Flame, 162, 1417 (2015).CrossRefGoogle Scholar(8).A. H. Xu, X. Wang, and L. Zhang, Powder Technol., 185, 176 (2008).CrossRefGoogle Scholar(9).B. S. Liu, M. Ye, A. Han, and X. Chen, Appl. Surf. Sci., 288, 349 (2014).CrossRefGoogle Scholar(10).B. Zhang, C. Huang, S. Yan, Y. Li, and Y. Cheng, Appl. Surf. Sci., 286, 91 (2013).CrossRefGoogle Scholar(11).O. B. Nazarenko, Y. A. Amelkovich, and A. I. Sechin, Appl. Surf. Sci., 321, 475 (2014).CrossRefGoogle Scholar(12).F. Noor, A. Vorozhtsov, M. Lerner, and D. Wen, Powder Technol., 282, 19 (2015).CrossRefGoogle Scholar(13).E. L. Dreizin, Prog. Energy Combust. Sci., 26, 57 (2000).CrossRefGoogle Scholar(14).E. L. Dreizin, Combust. Explos. Shock Waves, 39, 92 (2003).CrossRefGoogle Scholar(15).Y. Aly and E. L. Dreizin, Combust. Flame, 162, 1440 (2015).CrossRefGoogle Scholar(16).T. R. Sippel, S. F. Son, and L. J. Groven, Combust. Flame, 161, 311 (2014).CrossRefGoogle Scholar(17).P. Chakraborty and M. R. Zachariah, Combust. Flame, 161, 1408 (2014).CrossRefGoogle Scholar(18).W. L. Perry, B. L. Smith, C. J. Bulian, J. R Busse, C. S. Macomber, R. C. Dye, and S. F. Son, Propellants Explos. Pyrotech., 29, 99 (2004).CrossRefGoogle Scholar(19).W. L. Perry, B. C Tappan, B. L Reardon, V. E Sanders, and S. F. Son, J. Appl. Phys., 101, 064313/1 (2007).Google Scholar(20).L. Durães, O. Oliveira, L. Benedini, B. F. O. Costa, A. M. Beja, and A. Portugal, J. Phys. Chem. Solids, 72, 678 (2011).CrossRefGoogle Scholar(21).F. J. V. E. Oliveira, M. A. Melo Jr., and C. Airoldi, Mater. Res. Bull., 48, 1045 (2013).CrossRefGoogle Scholar(22).D. Mei, A. Abad, H. Zhao, and J. Adánez, Fuel Process. Technol., 133, 210 (2015).CrossRefGoogle Scholar(23).S. Apperson, R. V. Shende, S. Subramanian, D. Tappmeyer, S. Gangopadhyay, Z. Chen, K. Gangopadhyay, P. Redner, S. Nicholich, and D. Kapoor, Appl. Phys. Lett., 91, 243109 (2007).CrossRefGoogle Scholar(24).B. Mehendale, R. Shende, S. Subramanian, S. Gangopadhyay, P. Redner, D. Kapoor, and S. Nicholich, J. Energetic Mater., 24, 341 (2006).CrossRefGoogle Scholar(25).E. Ma, C. V. Thompson, L. A. Clevenger, and K. N. Tu, Appl. Phys. Lett., 57, 1262 (1990).CrossRefGoogle Scholar(26).S. Umbrajkar, M. A. Trunov, M. Schoenitz, E. L. Dreizin, and R. Broad, Propellants Explos., Pyrotech., 32, 32 (2007).CrossRefGoogle Scholar(27).M. A. Zamkov, R. W. Conner, and D. D. Dlott, J. Phys. Chem. C, 111, 10278 (2007).CrossRefGoogle Scholar(28).R. W. Conner and D. D. Dlott, J. Phys. Chem. A, 114, 6731 (2010).CrossRefGoogle Scholar(29).M. Losada and S. Chaudhuri, J. Phys. Chem. A, 113, 5933 (2009).CrossRefGoogle Scholar(30).W. S. Chi, R. Patel, H. K. Hwang, Y. G. Shul, and J. H. Kim, J. Solid State Electrochem., 16, 1405 (2012).CrossRefGoogle Scholar(31).B. Liu, C. Chen, T. Li, J. Crittenden, and Y. Chen, J. Membr. Sci., 445, 66 (2013).CrossRefGoogle Scholar(32).J. T. Park, J. H. Koh, D. K. Roh, Y. G. Shul, and J. H. Kim, Int. J. Hydrogen Energy, 36, 1820 (2011).CrossRefGoogle Scholar(33).S. Tanaka, K. Hokamoto, S. Irie, T. Okano, Z. Rend, M. Vesenjak, and S. Itoh, Measurement, 44, 2185 (2011).CrossRefGoogle Scholar(34).B. Torres, C. Taltavull, A. J. López, M. Campo, and J. Rams, Surf. Coatings Technol., 261, 130 (2015).CrossRefGoogle ScholarCopyright information© The Polymer Society of Korea and Springer Sciene+Business Media Dordrecht 2016Authors and AffiliationsJae Hun Lee1Sang Jin Kim1Jung Soo Park2Jong Hak Kim1Email author1.Department of Chemical and Biomolecular EngineeringYonsei UniversitySeoulKorea2.The 4th R&D Institute 2nd DirectorateAgency for Defense and DevelopmentYuseong-gu, DaejeonKorea About this article CrossMark Print ISSN 1598-5032 Online ISSN 2092-7673 Publisher Name The Polymer Society of Korea About this journal Reprints and Permissions Article actions function trackAddToCart() { var buyBoxPixel = new webtrekkV3({ trackDomain: "springergmbh01.webtrekk.net", trackId: "196033507532344", domain: "link.springer.com", contentId: "springer_com.buybox", product: "10.1007/s13233-016-4117-2_Energetic Al/Fe2O3/PVDF composites", productStatus: "add", productCategory : { 1 : "ppv" }, customEcommerceParameter : { 9 : "link.springer.com" } }); buyBoxPixel.sendinfo(); } function trackSubscription() { var subscription = new webtrekkV3({ trackDomain: "springergmbh01.webtrekk.net", trackId: "196033507532344", domain: "link.springer.com", contentId: "springer_com.buybox" }); subscription.sendinfo({linkId: "inst. subscription info"}); } window.addEventListener("load", function(event) { var viewPage = new webtrekkV3({ trackDomain: "springergmbh01.webtrekk.net", trackId: "196033507532344", domain: "link.springer.com", contentId: "SL-article", product: "10.1007/s13233-016-4117-2_Energetic Al/Fe2O3/PVDF composites", productStatus: "view", productCategory : { 1 : "ppv" }, customEcommerceParameter : { 9 : "link.springer.com" } }); viewPage.sendinfo(); }); Log in to check your access to this article Buy (PDF)EUR 34,95 Unlimited access to full article Instant download (PDF) Price includes local sales tax if applicable Find out about institutional subscriptions Export citation .RIS Papers Reference Manager RefWorks Zotero .ENW EndNote .BIB BibTeX JabRef Mendeley Share article Email Facebook Twitter LinkedIn Cookies We use cookies to improve your experience with our site. More information Accept Over 10 million scientific documents at your fingertips

© 2004-2018 中国地质图书馆版权所有 京ICP备05064691号 京公网安备11010802017129号

地址:北京市海淀区学院路29号 邮编:100083

电话:办公室:(+86 10)66554848;文献借阅、咨询服务、科技查新:66554700