Results 231 to 240 of about 3,618 (265)
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Columbium-vanadium alloy system
JOM, 1954On the basis of microscopic studies, melting-point observations, and X-ray analyses, a phase diagram is proposed for the Cb-V system. A complete series of solid solutions is formed with a minimum in the solidus at 1810°C near 35 wt pct Cb. No compounds or intermediate phases were found in the system above 650°C.
H. A. Wilhelm +2 more
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EXPLORATION OF VANADIUM-BASE ALLOYS
1955Abstract : This is the third annual report. The oxidation study on vanadium alloys has been further pursued and the conclusion has been reached that satisfactory oxidation resistance at elevated temperature of vanadium-base alloys cannot be rendered by alloying alone but possibly by electroplating. Major efforts have been directed toward evaluating the
WILLIAM ROSTOKER, ALBERT S. YAMAMOTO
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Study on low-vanadium Ti–Zr–Mn–Cr–V based alloys for high-density hydrogen storage
International Journal of Hydrogen Energy, 2022Panpan Zhou +2 more
exaly
Properties of Vanadium-Columbium Alloys
Journal of The Electrochemical Society, 1960The development of a series of V--Nb alloys is described. The exploitation of this alloy system allows the design of high-strength, low-density compositions possessing good aqueous corrosion resistance in boiling, oxidizing, or reducing acids and sufficient oxidation resistance to allow their fabrication by conventional hot-working techniques in air ...
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Titanium-Vanadium Binary Alloys
1983Ti-V has played a dominant role in the early development of type-II superconductivity. Since the late 1950’s when the results of transition temperature measurements were first reported, Ti-V has been subjected to both critical field and critical current measurement. The alloy has been investigated in both bulk and thin-film form, in the non-equilibrium
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Vanadium is an optimal element for strengthening in both fcc and bcc high-entropy alloys
Acta Materialia, 2020Binglun Yin, F Maresca
exaly
PILOT EVALUATION OF VANADIUM ALLOYS
1963Abstract : Experimental vanadium-columbium base alloys were fabricated to sheet from 200-gram arcmelted ingots. The composition V-60w/o Cb1w/o Zr-0.075w/o C had ultimate tensile strength values of 97,000, 77,000, and 20,000 psi at 1800, 2000, and 2400 F, respectively.
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