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      On Nb Silicide Based Alloys: Alloy Design and Selection

      research-article
      Materials
      MDPI
      intermetallics, alloy design, creep, oxidation, high temperature alloys

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          Abstract

          The development of Nb-silicide based alloys is frustrated by the lack of composition-process-microstructure-property data for the new alloys, and by the shortage of and/or disagreement between thermodynamic data for key binary and ternary systems that are essential for designing (selecting) alloys to meet property goals. Recent publications have discussed the importance of the parameters δ (related to atomic size), Δχ (related to electronegativity) and valence electron concentration (VEC) (number of valence electrons per atom filled into the valence band) for the alloying behavior of Nb-silicide based alloys (J Alloys Compd 748 (2018) 569), their solid solutions (J Alloys Compd 708 (2017) 961), the tetragonal Nb 5Si 3 (Materials 11 (2018) 69), and hexagonal C14-NbCr 2 and cubic A15-Nb 3X phases (Materials 11 (2018) 395) and eutectics with Nb ss and Nb 5Si 3 (Materials 11 (2018) 592). The parameter values were calculated using actual compositions for alloys, their phases and eutectics. This paper is about the relationships that exist between the alloy parameters δ, Δχ and VEC, and creep rate and isothermal oxidation (weight gain) and the concentrations of solute elements in the alloys. Different approaches to alloy design (selection) that use property goals and these relationships for Nb-silicide based alloys are discussed and examples of selected alloy compositions and their predicted properties are given. The alloy design methodology, which has been called NICE (Niobium Intermetallic Composite Elaboration), enables one to design (select) new alloys and to predict their creep and oxidation properties and the macrosegregation of Si in cast alloys.

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          Most cited references114

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          Phase Analysis Studies on the Titanium-Oxygen System.

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            Theoretical Analysis of the Diffusion Processes Determining the Oxidation Rate of Alloys

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              The Freezing Points, Melting Points, and Solid Solubility Limits of the Alloys of Silver, and Copper with the Elements of the B Sub-Groups

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                Author and article information

                Journal
                Materials (Basel)
                Materials (Basel)
                materials
                Materials
                MDPI
                1996-1944
                18 May 2018
                May 2018
                : 11
                : 5
                : 844
                Affiliations
                Department of Materials Science and Engineering, The University of Sheffield, Sheffield S1 3JD, UK; p.tsakiropoulos@ 123456sheffield.ac.uk ; Tel.: +44-114-222-5960
                Article
                materials-11-00844
                10.3390/ma11050844
                5978221
                29783707
                a5b47f85-862e-4c1b-ac9f-16997f419caf
                © 2018 by the author.

                Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license ( http://creativecommons.org/licenses/by/4.0/).

                History
                : 25 April 2018
                : 11 May 2018
                Categories
                Article

                intermetallics,alloy design,creep,oxidation,high temperature alloys

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