Surface tension and density of copper–Zirconium alloys in contact with fluoride refractories

The surface tension and density of copper–zirconium alloys were measured over a wide range of zirconium concentration (from 7.182 to 74.0 at.%) at temperatures between 1000 and 1250∘C by the “large drop” method in cups made on calcium fluoride. The surface tension and density polytherms are straight...

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Vydáno v:Journal of materials science Ročník 40; číslo 9-10; s. 2367 - 2369
Hlavní autoři: Krasovskyy, V. P., Naidich, Y. V., Krasovskaya, N. A.
Médium: Journal Article Konferenční příspěvek
Jazyk:angličtina
Vydáno: Heidelberg Springer 01.05.2005
Springer Nature B.V
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ISSN:0022-2461, 1573-4803
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Abstract The surface tension and density of copper–zirconium alloys were measured over a wide range of zirconium concentration (from 7.182 to 74.0 at.%) at temperatures between 1000 and 1250∘C by the “large drop” method in cups made on calcium fluoride. The surface tension and density polytherms are straight lines with negative temperature coefficients. The excess volume of mixing is negative, the maximum decrease in volume, observed for a 47.0 at.% Zr alloy, being 3.4%
AbstractList The surface tension and density of copper-zirconium alloys were measured over a wide range of zirconium concentration (from 7.182 to 74.0 at.%) at temperatures between 1000 and 1250DGC by the "large drop" method in cups made on calcium fluoride. The surface tension and density polytherms are straight lines with negative temperature coefficients. The excess volume of mixing is negative, the maximum decrease in volume, observed for a 47.0 at.% Zr alloy, being 3.4%
The surface tension and density of copper-zirconium alloys were measured over a wide range of zirconium concentration (from 7.182 to 74.0 at.%) at temperatures between 1000 and 1250 super([compfn])C by the 'large drop' method in cups made on calcium fluoride. The surface tension and density polytherms are straight lines with negative temperature coefficients. The excess volume of mixing is negative, the maximum decrease in volume, observed for a 47.0 at.% Zr alloy, being 3.4%
The surface tension and density of copper–zirconium alloys were measured over a wide range of zirconium concentration (from 7.182 to 74.0 at.%) at temperatures between 1000 and 1250∘C by the “large drop” method in cups made on calcium fluoride. The surface tension and density polytherms are straight lines with negative temperature coefficients. The excess volume of mixing is negative, the maximum decrease in volume, observed for a 47.0 at.% Zr alloy, being 3.4%
Author Krasovskyy, V. P.
Naidich, Y. V.
Krasovskaya, N. A.
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  givenname: N. A.
  surname: Krasovskaya
  fullname: Krasovskaya, N. A.
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Cites_doi 10.13182/NSE64-A18328
10.1023/A:1006688713685
10.1016/0925-8388(95)02136-1
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Issue 9-10
Keywords Liquid solid interface
Composition effect
Copper base alloys
High temperature
Experimental study
Calcium fluorides
Density
Binary alloys
Temperature effects
Copper alloys
Surface tension
Refractories
Zirconium base alloys
Transition element alloys
Cup
Zirconium alloys
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Snippet The surface tension and density of copper–zirconium alloys were measured over a wide range of zirconium concentration (from 7.182 to 74.0 at.%) at temperatures...
The surface tension and density of copper-zirconium alloys were measured over a wide range of zirconium concentration (from 7.182 to 74.0 at.%) at temperatures...
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SubjectTerms Alloys
Applied sciences
CALCIUM FLUORIDE
Condensed matter: structure, mechanical and thermal properties
Contact
Copper
Copper base alloys
DENSITY
Exact sciences and technology
Fluid surfaces and fluid-fluid interfaces
FLUORIDES
IMPACT TESTS
Materials science
Metals. Metallurgy
Physics
REFRACTORIES
Straight lines
Surface energy (surface tension, interface tension, angle of contact, etc.)
SURFACE TENSION
Surfaces and interfaces; thin films and whiskers (structure and nonelectronic properties)
Zirconium
Zirconium alloys
Title Surface tension and density of copper–Zirconium alloys in contact with fluoride refractories
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