Two Approaches to the Study of Temperature Effect on the Dissipative Properties of Materials

Author:

Petrosyan Tigran1

Affiliation:

1. National University of Architecture and Construction of Armenia

Abstract

In order to study the effect of temperature changes on the dissipative properties of materials, two approaches are used. The first approach implies introducing some temperature function under the sign of the integral in the heredity theory equation and simultaneously taking into account the dependence of the elastic modulus on temperature. As a result, based on experimental data on the thermal creep of soils, the expression for determining the hysteresis energy losses under the periodic voltage changes was obtained depending on temperature changes.According to the second approach, the expression for determining the hysteresis energy losses under isothermal conditions at different temperatures was obtained by introducing into the heredity theory equation an approximation of the experimental dependences of instantaneous deformation and temperature creep parameters for steel Kh18 N10T.

Publisher

Trans Tech Publications, Ltd.

Subject

Mechanical Engineering,Mechanics of Materials,General Materials Science

Reference22 articles.

1. A.V. Gurev, E.V. Miroshnikov, The form of mechanical hysteresis and the effect of preplastic deformation on energy dissipation, Naukova Dumka. (1974) 203-209.

2. Z.A. Mitskevich, Study of internal absorption in metals. Pub. of Higher Education Institutions, Mechanical Engineering. 6 (1961) 749-756.

3. E.S. Sorokin, To the Theory of Internal Friction in Vibrations of Elastic Systems, Stroyizdat, Moscow, (1960).

4. D.I. Shilkrut, A unified rheological hypothesis for describing the combined effect of hysteresis and hereditary phenomena on oscillatory processes in non-fully elastic systems, Pub. USSR AS. (1963) 93-109.

5. T.L. Petrosyan, Experimental study of the influence of the degree of asymmetry of the cycle on the forms and areas of the hysteresis loop of water-saturated clay soils during compression, Pub. NAS of Armenia, Earth sciences․ 46-2 (1993) 60-63.

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