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X-raydiffraction studyof self-propagating high-temperature synthesis. TheReviewof Scientific Instruments. 2002;73(2):422-428 [122] GauthierV, BernardF,Gaffet E, JosseC, Larpin JP. In-situ time resolvedX-raydiffrac- tion study of the formation of the nanocrystalline NbAl3 phase bymechanically acti- vated self-propagating high-temperature synthesis reaction. Materials Science and Engineering:A.1999;272(2):334-341 [123] Bernard F,Charlot F,GrasC,GauthierV,Gaffet E. In-situ time-resolvedX-raydiffrac- tion experiments applied to self-sustained reactions frommechanically activatedmix- tures.Le JournaldePhysique IV.2002;10:89-99 [124] GauthierV, Bernard F,Gaffet E, VrelD,GailhanouM, Larpin JP. Investigations of the formation mechanism of nanostructured NbAl3 via MASHS reaction. Intermetallics. 2002;10:377-389 [125] Javel JF, DirandM, Nassik FZ, Gachon JC. Real time X-ray diffraction study of the formationbySHSof thephasesγ' andH in the ternary systemAlNiTi. Le Journal de Physique IV.1996;6(C2):229-234 [126] Javel JF,DirandM,Kuntz JJ,NassikFZ,GachonJC.Real timeX-raydiffractionstudyof the formationbySHSof thephasesγ' andH in the ternary systemAl-Ni-Ti. Journal of AlloysandCompounds.1997;247(1–2):72-81 [127] Vaucher S, StirM, Ishizaki K, Catala-Civera JM,Nicula R. Reactive synthesis of Ti-Al intermetallicsduringmicrowaveheating inanE-fieldmaximum.ThermochimicaActa. 2011;522(1):151-154 [128] Dubois S, Karnatak N, BeaufortMF, Bourdarias L, Renault PO, Vreb D. Influence of mechanical activation on TiC self propagating high temperature synthesis. Materials andTechnologies. 2003;18(3):158-162 [129] WongJ,LarsonEM,WaidePA,FrahmR.Combustionfrontdynamics inthecombustion synthesisof refractorymetal carbidesandDi-boridesusing time-resolvedX-raydiffrac- tion. JournalofSynchrotronRadiation.2006;13(4):326-335 [130] LarsonEM,WongJ,Holt JB,WaidePA,NuttG,RuppB,TermninelloLJ.Timeresolved diffractionstudyofTa-Csolidcombustionsystem.JournalofMaterialsResearch.1993;8(7): 1533-1541 [131] Jie-CaiH,ZhangXH,Wood JV. In-situ combustion synthesis anddensification of TiC- xNicermets.MaterialsScienceandEngineering:A.2000;280(2):328-333 [132] RileyDP,KisiEH,HansenTC,HewatAW.Self-propagatinghigh-temperaturesynthesis of Ti3SiC2: I, ultra-high-speed neutron diffraction study of the reaction mechanism. Journalof theAmericanCeramicSociety. 2002;85(10):2417-2424 [133] GauthierV,CochepinB,DuboisS,VrelD.Self-propagatinghigh-temperature synthesis of Ti3SiC2: Study of the reaction mechanisms by time-resolved X-ray diffraction and infrared thermography. Journalof theAmericanCeramicSociety.2006;89(9):2899-2907 Kinetics of Heterogeneous Self-Propagating High-Temperature Reactions http://dx.doi.org/10.5772/intechopen.70560 193
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Advanced Chemical Kinetics
Titel
Advanced Chemical Kinetics
Autor
Muhammad Akhyar Farrukh
Herausgeber
InTech
Ort
Rijeka
Datum
2018
Sprache
englisch
Lizenz
CC BY 4.0
ISBN
978-953-51-3816-7
Abmessungen
18.0 x 26.0 cm
Seiten
226
Schlagwörter
Engineering and Technology, Chemistry, Physical Chemistry, Chemical Kinetics
Kategorien
Naturwissenschaften Chemie
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Advanced Chemical Kinetics