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Home Industrial Technologies Technology for Increasing the Durability of Structural Materials by Combined Energy Action Using Synergetic Effects

Technology for Increasing the Durability of Structural Materials by Combined Energy Action Using Synergetic Effects

Purpose

Treatment of structural materials by combined energy action using physical fields of different nature to increase the longevity and reliability of units in different industries.

Description

Combined energy loading with the use of high-intensity sources triggers self-organizing processes in the structural materials being treated, thus greatly increasing their durability.

Innovative Aspect and Main Advantages

The high energy efficiency of the self-organizing processes and the reduced level of energy and matter outflow reduce, in comparison with traditional technologies, the energy intensity of the process, thus providing the resource saving and environmental appropriateness of the technology.

Combine d energy treatment setup
Fig. 1 Combine d energy treatment setup

Average creep-rupture life of an untreated (1) and a treated (2) AMg6M alloy specimen
Fig. 2 Average creep-rupture life of an untreated
(1) and a treated (2) AMg6M alloy specimen

Stage of Development

Laboratory research.
A technology of combined energy loading of AMg6M aluminium- magnesium alloy specimens has been developed. The technology offers a significant (35-fold) increase in the average creep-rupture life.

Contact Details

Institute of Technical Mechanics of NASU and NSAU
Contact person: D.Sc., Professor, Evgeny S. Pereverzev
Address: 15, Leshko-Popelya str., 49005, Dnepropetrovsk, Ukraine
Tel: (+38 0562) 472 555
Fax: (+38 0562) 473 413
E-mail: This e-mail address is being protected from spambots. You need JavaScript enabled to view it

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