Melt Time-Temperature Treatment Affecting the Amorphous Ribbons' Properties of the HTS-42 Solder

Research output: Chapter in Book/Report/Conference proceedingConference contributionResearchpeer-review

1 Citation (Scopus)
Original languageEnglish
Title of host publicationAPPLIED MECHANICS, FLUID AND SOLID MECHANICS
EditorsJ Tan
PublisherTrans Tech Publications Ltd.
Pages147-151
Number of pages5
Volume871
ISBN (Print)978-3-03785-967-4
DOIs
Publication statusPublished - 2014
EventInternational Conference on Applied Mechanics, Fluid and Solid Mechanics (AMFSM 2013) - Singapore, Singapore
Duration: 15 Nov 201316 Nov 2013

Publication series

NameAdvanced Materials Research
PublisherTRANS TECH PUBLICATIONS LTD
Volume871
ISSN (Print)1022-6680

Conference

ConferenceInternational Conference on Applied Mechanics, Fluid and Solid Mechanics (AMFSM 2013)
CountrySingapore
Period15/11/201316/11/2013

Fingerprint

Soldering alloys
Age hardening
Soldering
Soldered joints
Temperature
Heat treatment
Powders
Liquids

Keywords

  • Amorphous ribbon
  • Critical temperature
  • Electrical resistivity
  • Experimental melting
  • High speed melting
  • Kinematic viscosity
  • Magnetic susceptibility
  • Soldered joint
  • Ultimate strength

ASJC Scopus subject areas

  • Engineering(all)

Cite this

Tsepelev, V., Konashkov, V., Vyukhin, V., Povodator, A., & Latipova, A. (2014). Melt Time-Temperature Treatment Affecting the Amorphous Ribbons' Properties of the HTS-42 Solder. In J. Tan (Ed.), APPLIED MECHANICS, FLUID AND SOLID MECHANICS (Vol. 871, pp. 147-151). (Advanced Materials Research; Vol. 871). Trans Tech Publications Ltd.. https://doi.org/10.4028/www.scientific.net/AMR.871.147
Tsepelev, Vladimir ; Konashkov, Viktor ; Vyukhin, Vladimir ; Povodator, Arkadi ; Latipova, Ann. / Melt Time-Temperature Treatment Affecting the Amorphous Ribbons' Properties of the HTS-42 Solder. APPLIED MECHANICS, FLUID AND SOLID MECHANICS. editor / J Tan. Vol. 871 Trans Tech Publications Ltd., 2014. pp. 147-151 (Advanced Materials Research).
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keywords = "Amorphous ribbon, Critical temperature, Electrical resistivity, Experimental melting, High speed melting, Kinematic viscosity, Magnetic susceptibility, Soldered joint, Ultimate strength",
author = "Vladimir Tsepelev and Viktor Konashkov and Vladimir Vyukhin and Arkadi Povodator and Ann Latipova",
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Tsepelev, V, Konashkov, V, Vyukhin, V, Povodator, A & Latipova, A 2014, Melt Time-Temperature Treatment Affecting the Amorphous Ribbons' Properties of the HTS-42 Solder. in J Tan (ed.), APPLIED MECHANICS, FLUID AND SOLID MECHANICS. vol. 871, Advanced Materials Research, vol. 871, Trans Tech Publications Ltd., pp. 147-151, International Conference on Applied Mechanics, Fluid and Solid Mechanics (AMFSM 2013), Singapore, 15/11/2013. https://doi.org/10.4028/www.scientific.net/AMR.871.147

Melt Time-Temperature Treatment Affecting the Amorphous Ribbons' Properties of the HTS-42 Solder. / Tsepelev, Vladimir; Konashkov, Viktor; Vyukhin, Vladimir; Povodator, Arkadi; Latipova, Ann.

APPLIED MECHANICS, FLUID AND SOLID MECHANICS. ed. / J Tan. Vol. 871 Trans Tech Publications Ltd., 2014. p. 147-151 (Advanced Materials Research; Vol. 871).

Research output: Chapter in Book/Report/Conference proceedingConference contributionResearchpeer-review

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T1 - Melt Time-Temperature Treatment Affecting the Amorphous Ribbons' Properties of the HTS-42 Solder

AU - Tsepelev, Vladimir

AU - Konashkov, Viktor

AU - Vyukhin, Vladimir

AU - Povodator, Arkadi

AU - Latipova, Ann

PY - 2014

Y1 - 2014

KW - Amorphous ribbon

KW - Critical temperature

KW - Electrical resistivity

KW - Experimental melting

KW - High speed melting

KW - Kinematic viscosity

KW - Magnetic susceptibility

KW - Soldered joint

KW - Ultimate strength

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SN - 978-3-03785-967-4

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T3 - Advanced Materials Research

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BT - APPLIED MECHANICS, FLUID AND SOLID MECHANICS

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Tsepelev V, Konashkov V, Vyukhin V, Povodator A, Latipova A. Melt Time-Temperature Treatment Affecting the Amorphous Ribbons' Properties of the HTS-42 Solder. In Tan J, editor, APPLIED MECHANICS, FLUID AND SOLID MECHANICS. Vol. 871. Trans Tech Publications Ltd. 2014. p. 147-151. (Advanced Materials Research). https://doi.org/10.4028/www.scientific.net/AMR.871.147