SELECTING INDUCTION TYPE ELECTROMECHANICAL CONVERTER FOR ELECTRODYNAMIC PROCESSING OF WELDS
ARTICLE_12_PDF (Українська)

Keywords

electromechanics transformer of induction type
welding tensions
electrodynamic force
current density електромеханічний перетворювач індукційного типу
зварювальні напруження
електродинамічна сила
густина струму

How to Cite

[1]
Кондратенко, І., Жильцов, А., Пащин, М. and Васюк, В. 2017. SELECTING INDUCTION TYPE ELECTROMECHANICAL CONVERTER FOR ELECTRODYNAMIC PROCESSING OF WELDS. Tekhnichna Elektrodynamika. 5 (Aug. 2017), 083. DOI:https://doi.org/10.15407/techned2017.05.083.

Abstract

The features of electromechanics transformer construction of induction type are specified at application of it in a technological complex for electrodynamic treatment of the weld-fabricated connections, that consists in the simultaneous operating on a small limit area of surface of the weld-fabricated joint by impulsive electric current and mechanical force. Magnitude of current density and force, at which transformation of mechanical descriptions environments is possible, are indicated. Interrelationships of structural parameters of electromechanics transformer with by the size of electrodynamic force and current density at the set voltage magnitude on a capacity storage and width of discharge process are defined. It is defined that the diameter of contact mark at electrodynamic treatment of the weld-fabricated joints from aluminium alloys must make 2 - 2,5 mm. References 7, figures 5.

https://doi.org/10.15407/techned2017.05.083
ARTICLE_12_PDF (Українська)

References

Baranov Yu.V., Troytskyy O.A., Avraamov Yu.S., Shlyapyn A.D. Physical fundamentals of electropulse and electroplastic treatments and new materials. – Moskva: MGIU, 2001. – 844 p. (Rus)

Bolyukh V.F., Danko V.G. Linear electromechanical pulse action converters. – Kharkiv: Natsionalnyi Tekhnichnyi Universytet "KhPI", 2006. – 260 p. (Ukr)

Bolyukh V.F., Oleksenko S.V., Shchukin I.S. Comparative analysis of linear pulse electromechanical converters of electromagnetic and induction types // Tekhnichna Elektrodynamika. – 2016. – No 5. – Pp. 46 – 48. (Rus)

Burkin S.P., Shimov G.V., Andryukova E.A. Residual stresses in metal products. – Ekaterinburg: Izdatelstvo Uralskogo Universiteta, 2015. – 248 p. (Rus)

Lobanov L.M., Kondratenko I.P., Zhyltsov A.V., Karlov A.M., Pashchin N.A., Vasyuk V.V., Yashchuk V.Y. Unstady electrophysical processes in systems for reducing residual stress of welded joints // Tekhnichna Elektrodynamika. – 2016. – No 6. – Pp. 10–19. (Ukr)

Lobanov L.M., Pashchin N.A., Cherkashin A.V., Mikhoduy O.L., Kondarenko I.P. Efficiency of electrodynamic treatment of aluminum alloy Amg6 and its welded joints // Automaticheskaia svarka. – 2012. – No 1. – Pp. 3–7. (Rus)

Chernyshev G.N., Popov A.L., Kozintsev V.M., Ponomarev I.I. Residual stresses in deformable solids. – Moskva: Nauka, 1996. – 240 p. (Rus)

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