Skip to main content
Top
Published in: Journal of Materials Science 20/2017

10-04-2017 | Mechanochemical Synthesis

Combustion synthesis: mechanically induced nanostructured materials

Authors: Alexander S. Mukasyan, Alexander S. Rogachev

Published in: Journal of Materials Science | Issue 20/2017

Log in

Activate our intelligent search to find suitable subject content or patents.

search-config
loading …

Abstract

Combustion synthesis (CS) is a specific approach for fabrication of a variety of advanced materials through use of self-sustaining chemical reactions. Controlling over the microstructure of the material is a key factor in defining the maturity of a technology. In this work, we demonstrate that under specific conditions, morphology and microstructure of the initial reaction media do not change during the CS process. Thus, one may control the microstructure of CS materials by preparing the desired structure of the initial reaction media. Specifically, using examples from several systems, which include intermetallics (NiAl), ceramics (SiC) and refractory carbides (TiC), we demonstrate that combination of short-term high-energy ball milling and CS allows precise control over the morphology and phase composition of product powders.

Dont have a licence yet? Then find out more about our products and how to get one now:

Springer Professional "Wirtschaft+Technik"

Online-Abonnement

Mit Springer Professional "Wirtschaft+Technik" erhalten Sie Zugriff auf:

  • über 102.000 Bücher
  • über 537 Zeitschriften

aus folgenden Fachgebieten:

  • Automobil + Motoren
  • Bauwesen + Immobilien
  • Business IT + Informatik
  • Elektrotechnik + Elektronik
  • Energie + Nachhaltigkeit
  • Finance + Banking
  • Management + Führung
  • Marketing + Vertrieb
  • Maschinenbau + Werkstoffe
  • Versicherung + Risiko

Jetzt Wissensvorsprung sichern!

Springer Professional "Technik"

Online-Abonnement

Mit Springer Professional "Technik" erhalten Sie Zugriff auf:

  • über 67.000 Bücher
  • über 390 Zeitschriften

aus folgenden Fachgebieten:

  • Automobil + Motoren
  • Bauwesen + Immobilien
  • Business IT + Informatik
  • Elektrotechnik + Elektronik
  • Energie + Nachhaltigkeit
  • Maschinenbau + Werkstoffe




 

Jetzt Wissensvorsprung sichern!

Literature
1.
go back to reference Merzhanov AG, Borovinskaya IP, Shkiro VM, (1984) Phenomenon of wave localization for self—retarding solid state reactions, Diploma № 287, filed 05.07.1967; Vestnik of USSR Academy of Science, 10:13–16 Merzhanov AG, Borovinskaya IP, Shkiro VM, (1984) Phenomenon of wave localization for self—retarding solid state reactions, Diploma № 287, filed 05.07.1967; Vestnik of USSR Academy of Science, 10:13–16
2.
go back to reference Merzhanov AG, Borovinskaya IP (1972) Self-spreading high-temperature synthesis of refractory compounds. Dokl Chem 204:429–431 Merzhanov AG, Borovinskaya IP (1972) Self-spreading high-temperature synthesis of refractory compounds. Dokl Chem 204:429–431
3.
go back to reference Merzhanov AG (1990) Self-propagating high-temperature synthesis: twenty years of research and findings. In: Munir Z, Holt JB (eds) Combustion and plasma synthesis of high-temperature materials. VCH, New York, pp 1–90 Merzhanov AG (1990) Self-propagating high-temperature synthesis: twenty years of research and findings. In: Munir Z, Holt JB (eds) Combustion and plasma synthesis of high-temperature materials. VCH, New York, pp 1–90
4.
go back to reference Hlavacek V (1991) Combustion synthesis: a historical perspective. Am Ceram Soc Bull 70:240–243 Hlavacek V (1991) Combustion synthesis: a historical perspective. Am Ceram Soc Bull 70:240–243
5.
go back to reference Merzhanov AG (1995) History and recent development in SHS. Ceram Int 21:371–379CrossRef Merzhanov AG (1995) History and recent development in SHS. Ceram Int 21:371–379CrossRef
6.
go back to reference Rogachev AS, Mukasyan AS (2015) Combustion for materials synthesis. CRC Press, Taylor & Francis, Boca Raton, pp 34–38 Rogachev AS, Mukasyan AS (2015) Combustion for materials synthesis. CRC Press, Taylor & Francis, Boca Raton, pp 34–38
7.
go back to reference Koch CC, Whittenberger JD (1996) Mechanical milling/alloying of intermetallics. Intermetallics 4:339–355CrossRef Koch CC, Whittenberger JD (1996) Mechanical milling/alloying of intermetallics. Intermetallics 4:339–355CrossRef
8.
go back to reference Koch CC (1997) Synthesis of nanostructured materials by mechanical milling: problems and opportunities. Nanostruct Mater 9:13–22CrossRef Koch CC (1997) Synthesis of nanostructured materials by mechanical milling: problems and opportunities. Nanostruct Mater 9:13–22CrossRef
9.
go back to reference Suryanarayana C (2004) Mechanical alloying and milling. Marcel Dekker, New York, pp 183–227 Suryanarayana C (2004) Mechanical alloying and milling. Marcel Dekker, New York, pp 183–227
10.
go back to reference Takacs L (2002) Self-sustaining reactions induced by ball milling. Prog Mater Sci 47:355–414CrossRef Takacs L (2002) Self-sustaining reactions induced by ball milling. Prog Mater Sci 47:355–414CrossRef
12.
go back to reference Urakaev FK, Akmalaev KA, Orynbekov ES et al (2001) The use of combustion reactions for processing mineral raw materials: metallothermy and self-propagating high-temperature synthesis (review). Metall Mater Trans B 47:56–58 Urakaev FK, Akmalaev KA, Orynbekov ES et al (2001) The use of combustion reactions for processing mineral raw materials: metallothermy and self-propagating high-temperature synthesis (review). Metall Mater Trans B 47:56–58
13.
go back to reference Balaz P, Achimovova M, Balaz M et al (2013) Hallmarks of mechanochemistry: from nanoparticles to technology. Chem Soc Rev 42:7571–7637CrossRef Balaz P, Achimovova M, Balaz M et al (2013) Hallmarks of mechanochemistry: from nanoparticles to technology. Chem Soc Rev 42:7571–7637CrossRef
14.
go back to reference Mukasyan AS, Rogachev AS, Aruna ST (2015) Combustion synthesis in nanostructured reactive systems. Adv Powder Technol 26:954–976CrossRef Mukasyan AS, Rogachev AS, Aruna ST (2015) Combustion synthesis in nanostructured reactive systems. Adv Powder Technol 26:954–976CrossRef
15.
go back to reference Rogachev AS, Mukasyan AS (2010) Combustion of heterogeneous nano-structured systems. Combust Explos Shock Waves 4:243–266CrossRef Rogachev AS, Mukasyan AS (2010) Combustion of heterogeneous nano-structured systems. Combust Explos Shock Waves 4:243–266CrossRef
16.
go back to reference Rogachev AS, Moskovskikh DO, Nepapushev AA, Sviridova TA, Vadchenko SG, Rogachev AS, Mukasyan AS (2015) Experimental investigation of milling regimes in planetary ball mill and their influence on structure and reactivity of gasless powder exothermic mixtures. Powder Technol 274:44–52CrossRef Rogachev AS, Moskovskikh DO, Nepapushev AA, Sviridova TA, Vadchenko SG, Rogachev AS, Mukasyan AS (2015) Experimental investigation of milling regimes in planetary ball mill and their influence on structure and reactivity of gasless powder exothermic mixtures. Powder Technol 274:44–52CrossRef
17.
go back to reference Shuck CE, Pauls JM, Mukasyan AS (2016) Ni/Al Energetic nanocomposites and the solid flame phenomenon. J Phys Chem C 120:27066–27078CrossRef Shuck CE, Pauls JM, Mukasyan AS (2016) Ni/Al Energetic nanocomposites and the solid flame phenomenon. J Phys Chem C 120:27066–27078CrossRef
18.
go back to reference Mukasyan AS, White J, Kovalev DY, Kochetov NA, Ponomarev VI, Son SF (2010) Dynamics of phase transformation during thermal explosion in the Al–Ni system: influence of mechanical activation. Phys B Condens Matter 405:778–784CrossRef Mukasyan AS, White J, Kovalev DY, Kochetov NA, Ponomarev VI, Son SF (2010) Dynamics of phase transformation during thermal explosion in the Al–Ni system: influence of mechanical activation. Phys B Condens Matter 405:778–784CrossRef
19.
go back to reference Manukyan KV, Mason BA, Groven LJ, Ya-C Lin, Cherukara M, Son SF, Strachan A, Mukasyan AS (2012) Tailored reactivity of Ni + Al nanocomposites: microstructural correlations. J Phys Chem C 116:21027–21038CrossRef Manukyan KV, Mason BA, Groven LJ, Ya-C Lin, Cherukara M, Son SF, Strachan A, Mukasyan AS (2012) Tailored reactivity of Ni + Al nanocomposites: microstructural correlations. J Phys Chem C 116:21027–21038CrossRef
20.
go back to reference Mukasyan AS (2011) Combustion synthesis of silicon carbide in a book. In: Gerhardt R (ed) Properties and applications of silicon carbide. INTECH, Vienna, pp 389–409 Mukasyan AS (2011) Combustion synthesis of silicon carbide in a book. In: Gerhardt R (ed) Properties and applications of silicon carbide. INTECH, Vienna, pp 389–409
21.
go back to reference Mukasyan AS, Ya-C Lin, Rogachev AS, Moskovskikh DO (2013) Direct combustion synthesis of silicon carbide nanopowder from the elements. J Am Ceram Soc 96:111–117CrossRef Mukasyan AS, Ya-C Lin, Rogachev AS, Moskovskikh DO (2013) Direct combustion synthesis of silicon carbide nanopowder from the elements. J Am Ceram Soc 96:111–117CrossRef
22.
go back to reference Moskovskikh DO, Song Y, Rouvimov S, Rogachev AS, Mukasyan AS (2016) Silicon carbide ceramics: mechanical activation and spark plasma sintering. Ceram Int 42:12686–12693CrossRef Moskovskikh DO, Song Y, Rouvimov S, Rogachev AS, Mukasyan AS (2016) Silicon carbide ceramics: mechanical activation and spark plasma sintering. Ceram Int 42:12686–12693CrossRef
23.
go back to reference Lohse BH, Calka A, Wexler D (2007) Synthesis of TiC by controlled ball milling of titanium and carbon. J Mat Sci 42:669–675CrossRef Lohse BH, Calka A, Wexler D (2007) Synthesis of TiC by controlled ball milling of titanium and carbon. J Mat Sci 42:669–675CrossRef
24.
go back to reference Manukyan KV, Ya-C Lin, Rouvimov S, McGinn PJ, Mukasyan AS (2013) Microstructure-reactivity relationship of Ti-C reactive nanomaterials. J Appl Phys 113:024302–024302–024302–024310CrossRef Manukyan KV, Ya-C Lin, Rouvimov S, McGinn PJ, Mukasyan AS (2013) Microstructure-reactivity relationship of Ti-C reactive nanomaterials. J Appl Phys 113:024302–024302–024302–024310CrossRef
25.
go back to reference Shuck CE, Manukyan KV, Rouvimov S, Rogachev AS, Mukasyan AS (2016) Solid-flame: experimental validation. Combust Flame 163:487–493CrossRef Shuck CE, Manukyan KV, Rouvimov S, Rogachev AS, Mukasyan AS (2016) Solid-flame: experimental validation. Combust Flame 163:487–493CrossRef
Metadata
Title
Combustion synthesis: mechanically induced nanostructured materials
Authors
Alexander S. Mukasyan
Alexander S. Rogachev
Publication date
10-04-2017
Publisher
Springer US
Published in
Journal of Materials Science / Issue 20/2017
Print ISSN: 0022-2461
Electronic ISSN: 1573-4803
DOI
https://doi.org/10.1007/s10853-017-1075-9

Other articles of this Issue 20/2017

Journal of Materials Science 20/2017 Go to the issue

Premium Partners