全部 标题 作者
关键词 摘要

OALib Journal期刊
ISSN: 2333-9721
费用:99美元

查看量下载量

相关文章

更多...
含能材料  2006 

高热稳定性多硝基芳烃的研究(英)

Full-Text   Cite this paper   Add to My Lib

Abstract:

References

[1]  Skider A K,Skider N.A review of advanced high performance,insensitive and thermally stable energetic materials emerging for military and space applications[J].J Hazard Mater,2004,112:1.
[2]  Hamid J,Griffiths T,Claridge R,et al.Application of Novel Energetic Materials for Initiators and Explosive Trains[C].Proc.7th Int.Seminar NTREM,Univ.Pardubice,April 2004,133.
[3]  Kneisl P.Fluoro Rubber-Plasticized Fluoropolymer Binders for Thermally Stable,Shaped-Charge Plastic Explosive[P].U.S.Pat.Appl.2004050466, Chem.Abstr.,2004,140:238057.
[4]  Sitzmann M E.Nonanitroterphenyl[P].U.S.Pat.6,476,280,Secretary of the Navy,2002.
[5]  Dacon J C.2,4,6-Tripicryl-s-triazinel[P].U.S.pat.3,755,321,Secretary of the Navy,1973.
[6]  Dacon J C.2,4,6-Tripicryl-s-triazine,TPT:its Crystallization and Crystal Density Determinations[R].U.S.NTIS Rep.AD-A023464,NTIS Springfield,1976.
[7]  Anonym.The Development of Spacecraft Explosives for the Lyndon B.Johnson Space Center[R].Naval Surf.Weapons Cent.,White Oak,NASA-CR-147547,1976, Chem.Abstr.,1976,85:145386.
[8]  Moysak I E,Sharnin G P,Shapshin M I,et al.Sposob polucheniya tretichnikh aromaticheskikh aminov (A Method of Obtaining of Tertiary Aromatic Amines)[P].RU 226 629,Kazanskii Khim.-Tekhnol.Inst.,1968.
[9]  Krupka M.Devices and Equipment for Testing of Energetic Materials[A].in:J.Vágenknecht (Ed.),Proc.4th Int.Seminar NTREM[A],Univ.Pardubice,April 2001,222.
[10]  Kissinger H E.Reaction kinetics in differential thermal analysis[J].Anal Chem,1957,29:1702.
[11]  Zeman S.Preparation of NTFA,unpublished results,Univ.of Pardubice,July 2005.
[12]  Su(c)eska M.Test Methods for Explosives[M].Springer-Verlag,New York,1995,12.
[13]  Kamlet M J,Adolph H G.The relationship of impact sensitivity with structure of organic high explosives.Part Ⅱ.polynitroaromatic explosives[J].Propellants,Explos,1979,4:30.
[14]  Zeman S.Kinetic Compensation Effect and Thermolysis Mechanisms of Organic Polynitro and Polynitroso Compounds[J].Thermochim Acta,1997,290:199.
[15]  Zeman S,Dimun M,Truchlik ″.The relationship between kinetic data of the low-temperature thermolysis and the heats of explosion of organic polynitro compounds[J].Thermochim.Acta,1984,78:181.
[16]  Maksimov Yu Ya,Shipitsyn L A.O temperaturnom predele primeneniya vzryvchatykh aromaticheskikh nitrosoedinenii v glubokikh skvazhinakh (On the Temperature Threshold of Nitroaromatic Explosives Application in Deep Holes)[J].Prikl.Geofiz.,1974,73:195.
[17]  Maksimov Yu Ya,Shipitsyn L A.O temperaturnom predele primeneniya vzryvchatykh aromaticheskikh nitrosoedinenii v glubokikh skvazhinakh (On the Temperature Threshold of Nitroaromatic Explosives Application in Deep Holes)[J].Prikl.Geofiz.,1974,73:195.
[18]  Kamlet M J,Jacobs S J.Chemistry of detonation:simple method of calculation detonation properties of CHNO explosives[J].J Chem Phys,1968,48:23.
[19]  Yang W,Parrott R A,Behrman L A,et al.High Temperature Explosive for Downhole Well Application[P].U.S.Pat.Appl.2002129940,Chem.Abstr.,2002,137:250035.
[20]  Voreck W,Brooks J,Eberhardt J,et al.Shaped Charge Containing Triaminotrinitrobenzene[P].EP 794163,Chem.Abstr.,1997,127:222631.
[21]  Dacon J C.Octanitroterphenyl[P].U.S.pat.3,592,860,Secretary of the Navy,1971.
[22]  Makarov V V,Grinevich E A,Lazshev V Z,et al.Method of Obtaining of the 2,4,6,4′,6′,2″,4″,6″-Octanitro-m-terphenyl[P].RU Pat.2,263,654,Gos.Nauchno-Issled.Inst."Kristall",2005.
[23]  Dacon J C.Nonanitroterphenyl[P].U.S.pat.3,755,471,Secretary of the Navy,1973.
[24]  Zhukov B P.Energeticheskie kondenzirovannye sistemy (Energetic Condensed Systems)-Short Encyclopedia[E].Izdat.Yanus-K,Moscow,2000.
[25]  Rohá M.Synthesis and Properties of Polynitro Polyphenylenes[T].M.Sc.-Thesis,Univ.of Pardubice,June 2006.
[26]  Sharnin G P,Shapshin I M,Moysak I E,et al.Sintez polyzameshchenykh tretichnikh aril-i diarilalkilaminov (Synthesis of Polysubstituted Tertiary Aryl-and Diaryl-Alkylamines)[J].Zh Org Khim,1971,7:521.
[27]  Storm C B,Stine J R,Kramer J F.Sensitivity Relationships in Energetic Materials[M].in S.N.Bulusu (Ed.),Chemistry and Physics of Energetic Materials,Kluwer Acad.Publs.,Dordrecht,1990,605.
[28]  Zeman S.Possibilities of applying piloyan method of determination of decomposition activation energies in differential thermal analysis of polynitroaromatic compounds and their derivatives.Part IV.[J].J Thermal Anal,1980,19:207.
[29]  Maksimov Yu Ya,Polyakova N V,Sapranovich V F.Nitromethylbenzenes Thermal Decomposition[M].Tr.Mosk.Khim.-Tekhnol.Inst.Mendeleeva,1974,83:55.
[30]  Andreev K K.Termicheskoe razlozhenie i gorenie vzryvchatykh veschestv (Thermal Decomposition and Combustion of Explosives)[M].Izdat.Nauka,Moscow,1966.
[31]  Maksimov Yu Ya,Kukhina T A,Kogut E N.Kinetika termicheskogo razlozheniya oktanitroterfenyla i tripikryltriazina (Kinetics of the Thermolysis of Octanitroterphenyl and Tripicryltriazine)[J].Tr Mosk Khim-Tekhnol Inst Mendeleeva,1979,104:28.
[32]  Pepekin V I,Makhov N M,Lebedev Zu A.Teploty vzrychatogo razlozheniya individualnykh vzryvshchatykh veshchestv (Heats of Explosion of Individual Explosives)[J].Dokl Akad Nauk SSSR,1977,230:852.
[33]  Laval F,Prisset C.Le tripicryl-s-triazine:un explosif thermostable[C].Proc.of the 12th Int.Pyrotech.Semin.,Juan-Les-Pins,June 1987,177.
[34]  Maksimov Yu Ya.Vapor pressures of aromatic nitro compounds at various temperatures[J].Yh Fiy Kim,1968,42:2921.
[35]  Baytos J F.High-Temperature Vacuum Thermal Stability Test of Explosives[R].Los Alamos Nstl.Lab.,Sci.Lab.Rep.LA-5829MS,1975.
[36]  Barzikin V V.Teplovye rezhimy ekzotermicheskikh reaktsii (Thermal Regimes of the Exothermic Reactions)[M].Izdat.Isman,Chernogolovka,2004,47.
[37]  Zeman S.Modified Evans-Polanyi-Semenov relationship in the study of chemical micromechanism governing detonation initiation of individual energetic materials[J].Thermochim Acta,2002,384:137.

Full-Text

Contact Us

service@oalib.com

QQ:3279437679

WhatsApp +8615387084133