Martensitic transformations in Ti-(16–26 at%) Nb alloys View Full Text


Ontology type: schema:ScholarlyArticle     


Article Info

DATE

1996-01

AUTHORS

T. Ahmed, H. J. Rack

ABSTRACT

Martensitic phase transformations in the solution-treated and water-quenched binary Ti-Nb alloys in the range of 16–26 at% Nb, were examined. An ordered, base-centred orthorhombic martensite was observed for alloys containing up to 23.4 at% Nb. The substructure of this martensite was generally composed of twins and stacking faults, the presence of antiphase boundaries observed in the plates indicating that the martensite underwent ordering during quenching. Both order-disorder and Ms temperatures were observed to be affected by total interstitial content, higher contents increasing both temperatures. Increasing the niobium content to above 23.4% resulted in retention of the β phase, this phase containing either athermal ω or “diffuse” ω depending upon niobium and total interstitial concentration. Finally, the microhardness of the Ti-Nb alloys examined was observed to decrease with increase in niobium and decrease in total interstitial content. More... »

PAGES

4267-4276

References to SciGraph publications

  • 1988-07. The compctition between martensite and omega in quenched Ti-Nb alloys in METALLURGICAL TRANSACTIONS A
  • 1972-06. The formation of the ω phase in Ti-Nb alloys in METALLURGICAL TRANSACTIONS A
  • 1964-02. The Titanium–Niobium System in NATURE
  • 1973-07. An X-ray examination of deformation in β Ti-V alloys in METALLURGICAL TRANSACTIONS A
  • 1982. Martensite Formation and Decomposition in Alloys of Titanium Containing β-Stabilizing Elements in TITANIUM AND TITANIUM ALLOYS
  • 1980-12. Structural effects in the superconductor NbTi65 in JOURNAL OF LOW TEMPERATURE PHYSICS
  • 1971-09. Strength increase in Ti 35 Wt Pct Nb through step-aging in METALLURGICAL TRANSACTIONS A
  • 1979-03. Martensitic transformations in Ti-Mo alloys in JOURNAL OF MATERIALS SCIENCE
  • Journal

    TITLE

    Journal of Materials Science

    ISSUE

    16

    VOLUME

    31

    Author Affiliations

    Identifiers

    URI

    http://scigraph.springernature.com/pub.10.1007/bf00356449

    DOI

    http://dx.doi.org/10.1007/bf00356449

    DIMENSIONS

    https://app.dimensions.ai/details/publication/pub.1023867430


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