Preview

Voprosy Materialovedeniya

Advanced search
Open Access Open Access  Restricted Access Subscription Access

Resistive alloyed microwires based on Ni–Cu and Pd–Cu systems with alternating temperature coefficient of resistance

https://doi.org/10.22349/1994-6716-2018-96-4-130-135

Abstract

The article presents the results of comprehensive studies on the development of precision alloys for casting microwires with alternating temperature coefficient of resistance (TCR) based on Ni–Cu and Pd–Cu systems. The features of the appearance of negative TCR values in microwires are studied. The optimal compositions of the alloys of these systems, which ensure the steady flow of a specific casting process, have been experimentally determined. Recommendations on the practical application of the microwires are given.

About the Author

B. V. Farmakovsky
NRC “Kurchatov Institute” – CRISM “Prometey”
Russian Federation

Cand Sc. (Eng)

49 Shpalernaya St, 191015 St Petersburg



References

1. Farmakovsky, B.V., Ulin, I.V., Funktsionalnye materialy i pokrytiya – puti i nadezhdy [Functional materials and coverings – ways and hopes], Po puti sozidaniya, Gorynin, I.V., (Ed.), St Petersburg, V. 2, 2009, pp. 149–163.

2. Masailo, D.V., Farmakovsky, B.V., Kuznetsov, P.A., Mazeeva, A.K., Litye mikroprovoda v steklyannoi izolyatsii iz splavov na osnove medi s minimalnym temperaturnym koeffitsentom soprotivleniya [Alloyed microwires in glass isolation made of copper-based alloys with minimal temperature coefficient of resistance], Voprosy Mateirialovedeniya, 2013, No 3 (75), pp. 81–87.

3. Gorynin, I.V., Farmakovsky, B.V., Dlinnomernye litye mikroprovoda v steklyannoi izolyatsii s zhilkoi iz intermetallicheskikh soedinenii [Long alloyed microwires in glass insulation with intermetallic chord], Voprosy Materialovedeniya, 2015, 4 (84), pp. 58–61.

4. Zotov, S.K., Zambakhidze, D.S., Farmakovsky, B.V., Shub, V.V., Shamot, L.I., Issledovanie i razrabotka rezistivnykh splavov dlya litykh mikroprovodov [Research and Development of Resistive Alloys for Cast Microwires], Elektrotekhnicheskaya i priborostroitelnaya promyshlennost, 1976, No 1, pp. 1–8.

5. Krutko, Z.V., Anishchenko, T.I., Struktura i svoistva litogo mikroprovoda [Structure and properties of alloyed microwire], Voprosy Formirovaniya Metastabilnoi Struktury Splavov, Dnepropetrovsk, 1984, pp. 98–102.

6. Patent No 1075190, USSR, Device for resistance measurement. Publ.23.02.1984. Bulletin 7, p. 48

7. Patent No 2396621, Russian Federation. The way ofobtaining of nanostructured microwires. Publ. 17.11.2008.

8. Patent No 2393257, Russian Federation. Amorphous alloy for microwire alloying. Publ. 02.10.2008.

9. Patent No 2351672, Russian Federation. Amorphous resistive nickel-based alloy. Publ. 12.04.2007.

10. Patent No 2424349, Russian Federation. Amorphous nickel-based alloy for microwire alloying. Publ. 16.11.2009.


Review

For citations:


Farmakovsky B.V. Resistive alloyed microwires based on Ni–Cu and Pd–Cu systems with alternating temperature coefficient of resistance. Voprosy Materialovedeniya. 2018;(4(96)):130-135. (In Russ.) https://doi.org/10.22349/1994-6716-2018-96-4-130-135

Views: 376


ISSN 1994-6716 (Print)