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2 edition of Ternary phase equilibria in transition metal-boron-carbon-silicon systems. found in the catalog.

Ternary phase equilibria in transition metal-boron-carbon-silicon systems.

E. Rudy

Ternary phase equilibria in transition metal-boron-carbon-silicon systems.

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Published by Air Force Materials Laboratory .
Written in English


Edition Notes

SeriesTechnical reports -- No. AFML-TR-65-2. Part 4. Vol.2.
ContributionsUnited States. AirForce Materials Laboratory.
The Physical Object
PaginationV.P.
ID Numbers
Open LibraryOL19979233M

This banner text can have markup.. web; books; video; audio; software; images; Toggle navigation   Compilation and critical analysis of thermodynamic data for ternary alloy systems I. Ansara, J.P. Bros, P. Spencer the thermodynamic properties of solution and ternary phase equilibria. This is "Ternary Phase Equilibria in Transition Metal-Boron-Carbon- Silicon Systems, Part V Compendium of Phase diagram Data"


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Ternary phase equilibria in transition metal-boron-carbon-silicon systems. by E. Rudy Download PDF EPUB FB2

TERNARY PHASE EQUILIBRIA IN TRANSITION METAL-BORON-CARBON-SILICON SYSTEMS PART II. TERNARY SYSTEMS Volume XVII. Constitution of Ternory Ta-Mo-C Alloys E. RUDY ST. WINDISCH C. BRUKL Distribution of this document is unlimited.

It may be released to the Clearinghouse, Depart- ment of Commerce, for sale Ternary phase equilibria in transition metal-boron-carbon-silicon systems.

book the general :// ternary phase equilibria in transition metal--boron--carbon--silicon systems. part v. compendium of phase diagram ://   TERNARY PHASE EQUILIBRIA IN TRANSITION METAL-BORON-CARBON-SILICON SYSTEMS PART I. BINARY SYSTEMS Volume XIII.

The Zirconium-Silicon and Hafnium-Silicon Systems C. BRVKL AEROJET GENERAL CORPORATION TECHNICAL REPORT AFML-TR, PART I, VOLUME XIII MAY This document has been approved for public release and sale; its @article{osti_, title = {Ternary phase equilibria in transition metal- boron-carbon-silicon systems.

Part III. Special experimental techniques. Volume I. High temperature differential thermal analysis. Technical report}, author = {Heetderks, H.D. and Rudy, E. and Eckert, T.}, abstractNote = {A high sensitivity differential thermal analysis apparatus, capable of operating to temperatures Phase equilibria in the ternary system vanadium-niobium-carbon from C through the melting ranges of the cubic monocarbide solid solutions were established on the basis of X-ray, melting point and metallographic studies.

The phase equilibria above C are presented in a three-dimensional temperature-composition constitutional diagram, since the phase equilibria below C were not @article{osti_, title = {Ternary phase equilibria in transition metal-boron-carbon-silicon systems.

Part I. Related binary systems, Volume III. Systems Mo-B and W-B. Technical documentary report, 1 November June }, author = {Rudy, E.

and Windisch.}, abstractNote = {On the basis of X-ray, melting point, metallographic, and differential thermoanalytical studies on molybdenum ternary phase equilibria in transition metal-boron-carbon-silicon systems. part 5. compendium of phase diagram data [e. rudy] on *free* shipping on qualifying offers.

ternary phase equilibria in transition metal-boron-carbon-silicon systems. part 5. compendium of phase diagram data TERNARY PHASE EQUILIBRIA IN TRANSITION METAL-BORON-CARBON-SILICON SYSTEMS.

PART 2. TERNARY SYSTEMS. VOL. TA-HF-C SYSTEM [E. Rudy] on *FREE* shipping on qualifying :// dtic ad ternary phase equilibria in transition metal-boron-carbon-silicon systems. part 2.

ternary systems. volume constitution of ternary ta-mo-c alloys by defense technical information center dtic ad ternary phase equilibria in transition metal-boron-carbon-silicon systems.

part 1. related binary systems. volume 8. zr-b system dtic ad ternary phase equilibria in transition metal-boron-carbon-silicon systems. part ii. ternary systems. vol. the hafnium-iridium-boron system TERNARY PHASE EQUILIBRIA IN TRANSITION METAL-BORON-CARBON-SILICON SYSTEMS.

PART II. TERNARY SYSTEMS. VOLUME XIII. PHASE DIAGRAMS OF THE SYSTEMS TI-B-C, ZR-B-C, AND HF-B-C | E. Rudy | ISBN: | Kostenloser Versand für ternary phase equilibria in transition metal-boron-carbon-silicon systems. part ii. ternary systems. volume xiii. phase diagrams of the systems ti-b-c, zr-b-c, and hf-b-c [e.

rudy] on *free* shipping on qualifying offers. ternary phase equilibria in transition metal-boron-carbon-silicon systems. part ii. ternary systems. volume :// Ternary phase equilibria in transition metal-boron-carbon-silicon systems E.

Ruby, St. Windisch, Y.A. Chang (Technical report, AFML-TR) Air Force Materials Laboratory, Air Force Systems Command, Wright-Patterson Air Force Base, pt.

1, v. Ternary Phase Equilibria In Transition Metal-Boron-Carbon-Silicon Systems. Part I. Related Binary Systems. Volume V. Ta-C System. Partial Investigation In The Systems Nb-C And V-C. AFML TR Part 1 Volume 5 Ternary Phase Equilibria In Transition Metal-Boron-Carbon-Silicon Systems. Part I.

Related Binary Systems. Volume   TERNARY PHASE EQUILIBRIA IN TRANSITION METAL-BORON-CARBON-SILICON SYSTEMS PART II. TERNARY SYSTEMS Votum* XVI. V-Nb-C Systwn 1. CHANG Distribution of this document is unlimited.

It may be released to the Clearinghouse, Depart- ment of Commerce, for sale to the general :// This report contains a summary of phase diagram work conducted over the time period from 1 January through April Systems studied include binary transition metal systems, binary and ternary systems of refractory transition metals with carbon, boron, silicon, and nitrogen, and selected concentration-temperature sections of higher order systems involving the same :// Ternary Phase Equilibria In Transition Metal-Boron-Carbon-Silicon Systems.

Part II. Ternary Systems. Volume XIII. Phase Diagrams Of The Systems Ti-B-C, Zr-B-C, And Hf-B-C. AFML TR Part 2 Volume 13 Ternary Phase Equilibria In Transition Metal-Boron-Carbon-Silicon Systems.

Part II. Ternary Systems Based on the reported phase equilibria, the (ζ) phase is modeled as a linear compound with carbon content fixed at 40 at%, which leading to a two-sublattice model (Mo,Ta) C for its description.

The (shp) phase is considered as a binary stoichiometric compound since Compendium of Phase Diagram Data " in " Ternary Phase Equilibria in Transition Metal-Boron-Carbon-Silicon Systems ", Techn.

Rep. AFML-TR–2, Contact 3. Results and discussion Phase equilibria in the range bet-ween and Phase equilibria at within the ternary sys- tem U-B-C were established from about 60 ternary Fig. Isothermal section of the ternary system U-B-C at C. 76 P. Rogi el al. / The ternary system uranium-boron-carbon Phase equilibria in the Hf–B–C system were calculated by thermodynamic modeling.

The liquid phase was described as a substitutional solution using the Redlich–Kister formalism for the excess Gibbs energy and a reaction scheme was constructed for the entire ternary :// Systems studied include binary transition metal systems, binary and ternary systems of refractory transition metals with carbon, boron, silicon, and nitrogen, and selected concentration   Rudy, E.: Ternary Phase Equilibria in Transition Metal–Boron–Carbon–Silicon Systems: Part V.

Compendium of Phase Diagram Data. Technical Report Number AFML-TR (Air Force Materials Laboratory, Wright-Patterson Air Force Base, May ).

Phase equilibria for the ternary systems silicon-carbon-metal (metal = Ti through Ni, Zr through Pd and Hf through Pt) are compiled. Silicon carbide reacts with all these metals to form binary silicides and carbides as well as ternary phases in the systems with Ti, V, Cr, Mn, Zr, Nb, Mo, Hf and :// Request PDF | Boron - Carbon - Silicon | This document is part of Volume 11 `Ternary Alloy Systems: Phase Diagrams, Crystallographic and Thermodynamic Data', Subvolume E `Refractory Metal ternary phase equilibria in transition metal-boron-carbon-silicon systems By Part Iv, Thermochemical Calculations, Sogroupvolume I.

Thermodynamic Properties and Y. Chang Abstract E. Rudy, “Ternary Phase Equilibria in Transition Metal-Boron-Carbon-Silicon System, Part V, Compendium of Phase Diagram Data,” Tech.

Rep. AFML-TR, 29, – (). (Equi Diagram; Experimental;) Google Scholar Phase equilibria in the Nb-Nb 5Si 3-NbB region were studied in the melting (crystallization) range by means of light microscopy, XRD, SEM and EMPA on alloys after arc-melting and annealing at   Co-Cr-Fe isothermal section at °C [88Ray 60].

Reference cited in this section 88Ray: G.V. Raynor and V.G. Rivlin, Phase Equilibria in Iron Ternary Alloys, The Institute of Metals, London, (No.

4), Co-Cr-Ni (Cobalt - Chromium - Nickel) Ternary  › 百度文库 › 互联网. Relationships governing phase equilibria in refractory carbide-bearing systems of transition metals “Ternary phase equilibria in transition metal-boron-carbon-silicon system.

Part V,” in: Technical Report AFMZ-TR, Ohio (). and T. Velikanova, Algorithms for Calculating Phase Equilibria in Ternary Systems and Their Request PDF | Boron - Carbon - Chromium | This document is part of Volume 11 `Ternary Alloy Systems: Phase Diagrams, Crystallographic and Thermodynamic Data', Subvolume E `Refractory Metal The ternary system under study can be depicted as a dispersed liquid phase surrounded by a continuous antisolvent phase.

The smallest units of the system are single droplets of the dispersed phase in which the crystallization takes place (Fig. 3).Factors influencing the crystallization are mainly the phase equilibria between solvent and antisolvent, the solid solubility at the actual   Ternary phase equilibria in transition metal-boron-carbon-silicon systems (Part V).

Final Technical Report AFML TR Wright-Patterson Air Force Base (Ohio): Metals and Ceramics Division, Air Force Materials Laboratory; p. Rudy,Ternary Phase Equilibria in Transition Metal-Boron-Carbon-Silicon Systems, Part V, “Compendium of Phase Diagram Data,” Air Force Materials Laboratory, Air Force Systems Command, Wright-Patterson Air Force Base, OH, p ().

CrossRef Google Scholar According to the classification scheme of ternary metal borides, zig-zag boron-boron chains (B-B ∼– Å) with adjacent carbon atoms (B-C ∼ Å) appear to be the basic structural unit in borocarbides of composition MBC as has been shown for the structure types of ThBC, UBC and :// Ternary Phase Equilibria in Transition Metal - Boron - Carbon - Silicon Systems (Tech.

Doc. Report AFML-TR–2. Metals and Ceramics Division) (Wright-Patterson Air Force Base Ohio, USA: Air Force Materials Laboratory) p :// Ternary phase equilibria in transition metal-boron-carbon-silicon systems, pt. Edition/Format: Print book: EnglishView all editions and formats: Rating: (not yet rated) 0 with reviews - Be the first.

Subjects: Phase diagrams. Transition metal compounds. More like this: Similar Items   Compendium of phase diagram data:ternary phase equilibria in transition metal -boron - car bon -silicon systems Part 5 — air force materials laboratory, wright - patterson air force base[ R].

› 百度文库 › 互联网. @article{osti_, title = {TERNARY LAVES PHASES WITH TRANSITION ELEMENTS AND SILICON}, author = {Bardos, D.I. and Gupta, K.P. and Beck, P.A.}, abstractNote = {A search was made for Laves phases in alloys of the type A2(B/sub 3/Si), where silicon is substituted for 25% to the B-component, in systems in which the binary AB2 Laves phase does.

Phase equilibria in the ternary systems M–Si–N and M–B–N (M = Cu, Ag, Au, Zn, Cd, Al, In, Tl, Sn, Pb, Sb, and Bi) at temperatures 50– °C below the melting point of the metal components were investigated by means of x-ray powder analysis and are represented in the form of isothermal ://  Power Plants, ICAPPSan Diego, CA, [22] E.

Rudy, S. Windisch, Ternary phase equilibria in transition metal–boron– carbon–silicon systems, Part II. Ternary systems, vol. XIII. Phase diagrams of the systems Ti–B–C, Zr–B–C, and Hf–B–C,  › 百度文库 › 行业资料.Ceramics in the system ZrB 2 –Ta 5 Si 3 were studied as candidates for the development of new ultra high-temperature ceramic materials.

The ceramics were prepared by hot pressing at – °C in He. Mutual additions of ZrB 2 and Ta 5 Si 3 even in small amounts had significant densifying effects due to chemical interactions and solid solubility between the components, which have not