Journal ArticleDOI
Electrical resistivity of some engineering alloys at low temperatures
TLDR
In this paper, low temperature electrical resistivities of Al, Ni, Cu, Ti and Fe alloys for different heat treated conditions were investigated. And they showed that the resistivities varied with the temperature.About:
This article is published in Cryogenics.The article was published on 1970-08-01. It has received 95 citations till now. The article focuses on the topics: Titanium alloy & Electrical resistivity and conductivity.read more
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Thermophysical properties of stainless steels
TL;DR: Experimental data available for the thermophysical properties of stainless steels have been searched, compiled, critically evaluated, analyzed, and correlated as mentioned in this paper, and particular attention was given to material characteristics such as alloy composition, microstructure, and conditioning treatments.
Electrical Resistivity and Thermal Conductivity of Nine Selected AISI stainless Steels
TL;DR: In this paper, the available experimental data and information on the electrical resistivity and thermal conductivity of nine selected AISI stainless steels were reviewed and the recommended values from near absolute zero (1 K) to above the melting point (into the molten state).
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Forced-convection heat transfer to supercritical helium.
TL;DR: In this paper, the authors measured experimentally forced convection heat transfer coefficients, over a wide range of operating conditions, for supercritical helium flowing in a small diameter straight tube, and determined a correlation that could be used to predict the heat transfer coefficient with accuracy sufficient for engineering calculations.
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Ac loss in striped (filamentary) ybco coated conductors leading to designs for high frequencies and field-sweep amplitudes
TL;DR: In this paper, the idea of subdividing YBCO "coated conductors" (YBCO, overlayer, and even underlayer) into such stripes suggested itself and implemented by burning grooves into samples of coated conductor using laser micromachining.
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Predicting the thermal conductivity of aluminium alloys in the cryogenic to room temperature range
TL;DR: In this article, a method of predicting the thermal conductivity of any aluminium alloy between the superconducting transition temperature (approximately 1/K) and room temperature, based on a measurement of thermal conductivities or electrical resistivities at a single temperature, is described.
References
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Journal ArticleDOI
Localized Magnetic Impurity States In Metals: Some Experimental Relationships
M. D. Daybell,W. A. Steyert +1 more
TL;DR: In this paper, it was shown that the recently observed low-temperature electron state arising from the Kondo effect in metals containing small numbers of transition element impurities is present over a much wider temperature range than is generally appreciated.
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Low-Temperature Transport Properties of Copper and Its Dilute Alloys: Pure Copper, Annealed and Cold-Drawn
Journal ArticleDOI
Ferromagnetic Solutes in Superconductors
TL;DR: The superconducting transition temperature of titanium was shown to increase by an order of magnitude at very small concentrations of chromium, manganese, iron, or cobalt as discussed by the authors.