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1.
Zusammenfassung Es wird das thermoelastische Spannungsfeld in einem Halbraum erhalten, erzeugt durch eine willkürlich verteilte, sich längs des Randes gleichförmig rasch bewegenden Wärmequelle. Dabei wird angenommen, dass Wärme aus dem elastischen Halbraum durch Konvektion abgeleitet wird. Es wird die zweidimensionale entkoppelte Theorie verwendet. Als Beispiel wird ein Problem der elasto-hydrodynamischen Schmierung betrachtet.

This work was sponsored by the Office of Naval Research, U.S. Navy.  相似文献   

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Using Hankel and Laplace transforms we solve an axisymmetric dynamic problem of thermoelasticity for a round plate under the action of an annular heat source. We carry out a numerical study of the temperature field and stresses.Translated fromMatematicheskie Metody i Fiziko-Mekhanicheskie Polya, Issue 31, 1990, pp. 58–60.  相似文献   

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We present an improvement to the previously given [1] method of solving certain problems with a moving boundary. We shall investigate an unsteady heat transfer in a semi-infinite region with a moving boundary at a specified temperature and zero initial conditions.  相似文献   

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Based on Tresca's yield condition and the associated flow rule, the stress distribution in a circular disk of elastic-perfectly plastic material exposed to a circular heat source is discussed. After a certain time of exposure, stress image points of the plastic region migrate from one side regime through a corner to another side regime of the Tresca hexagon.
Zusammenfassung Untersucht wird die Spannungsverteilung in einer elastisch-idealplastischen Kreisscheibe zufolge einer ringförmigen Wärmequelle. Zugrundegelegt ist die Trescasche Fließbedingung nebst zugeordneter Fließregel. Nach einer gewissen Erhitzungsdauer wandern Spannungsbildpunkte des plastischen Bereichs von einem Seitenregime durch die Ecke in ein anderes Seitenregime des TrescaSechsecks.
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We consider the second boundary value problem of heating a massive body by a highly concentrated moving band heat source of high power. Leading terms of inner and outer asymptotic expansions of the solution are constructed, and the behavior of the solution is studied in a neighborhood of the heat source.  相似文献   

9.
In this paper the thermal stresses in a plate with transversely isotropic material have been obtained by the method of Hankel transforms. Three cases of surface temperature over a circular region of exposure with flux of heat, paraboloidal distribution and constant temperature with surface radiation have been considered. Numerical results are presented for the case of surface radiation.  相似文献   

10.
Zusammenfassung Die Arbeit behandelt das stationäre thermoelastische Spannungsfeld, das in einem Halbraum durch eine Wärmequelle an der Grenzebene erzeugt wird, während für den Rest der Grenzebene eine Strahlungsbedingung gilt. Die Lösung wird mit Hilfe von Hankel-Transformationen erhalten, und es stellt sich heraus, dass der Spannungszustand eben sowie parallel zur Oberfläche ist.  相似文献   

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The nonsteady temperature stresses are determined for an annular plate, an infinite plate with a circular opening, and a circular plate, whose coefficients of heat transfer from the lateral surfaces are functions of temperature.Physico-Mechanical Institute, Academy of Sciences of the Ukrainian SSR, L'vov. Translated from Mekhanika Polimerov, No. 5, pp. 949–950, September–October, 1971.  相似文献   

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We describe an algorithm of determining quasistatic thermal stresses in multiply connected plates with heat transfer, induced by the disturbance of heat flow near holes. Our approach is based on the Laplace transformation and a modified relation of its numerical conversion. The boundary-value problems for the Helmholtz equation, from which the Laplace transform is determined, are solved using the method of boundary integral equations. We solve the integral equations by the method of mechanical quadratures. The results of calculation of nonstationary temperature fields and stresses induced by them in a strip with small holes of different shape are also presented. Translated from Matematychni Metody ta Fizyko-Mekhanichni Polya, Vol. 51, No. 1, pp. 105–111, January–March, 2008.  相似文献   

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This paper deals with the solutions of steady as well as unsteady three-dimensional incompressible thermal boundary layer equations and the study of the response of heat transfer when there is a parabolic flow over a moving flat plate. The components of velocity in boundary layer are discussed by Sarma and Gupta and those results are used to analyse thermal boundary layer equations. A general analysis is made from which we deduce (i) Solutions of two-dimensional thermal boundary layer on a moving flat plate, (ii) Solutions of thermal boundary layer on a yawed flat plate, (iii) Solutions of thermal boundary layer when there is a parabolic flow over a moving flat plate by giving different values to β and Cx. Solutions are developed for large and small times and curves are drawn representing the variations of heat transfer from the plate with time for all the cases. The limiting time is also calculated.  相似文献   

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Zusammenfassung Wenn eine Wärmequelle, z. B. eine Flamme, unter einer Schicht homogener Flüssigkeit bewegt wird, so kann eine mittlere Geschwindigkeit in der Flüssigkeit verursacht werden, und zwar entgegengesetzt zur Bewegungsrichtung der Flamme.Hier wird eine geschichtete Flüssigkeit betrachtet. Besondere Aufmerksamkeit wird den Verhältnissen gewidmet, bei denen Wellen in Resonanz entstehen. Die mittlere Geschwindigkeit wird dann von den Wellen beherrscht und hat im Wesentlichen die gleiche Richtung wie die Bewegung der Wärmequelle. Die Möglichkeit einer Strahlstruktur der Bewegung ist vorhanden.  相似文献   

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The aim of this paper is to study the transient wave propagations in a non-homogeneous anisotropic thermoviscoelastic thick strip placed in a constant primary magnetic field and subjected to a moving heat source. The governing equations for temperature and displacement fields are solved by means of a dual reciprocity boundary element method (DRBEM). In the case of plane deformation, a numerical scheme for the implementation of the method is presented and the numerical computations are carried out for the temperature, displacement components and thermal stress components. The validity of DRBEM is examined by considering a magneto-thermo-visco-elastic thick strip occupies a rectangular region and good agreement is obtained with existent results. The results obtained are presented graphically to show the effect of inhomogeneity on the displacement components and thermal stress components. Relevant results of previous investigations are deduced as special cases from this study.  相似文献   

20.
The generalized thermoelastic theory with thermal relaxation, in the context of Lord and Shulman theory, is used to investigate the magneto-thermoelastic problem of a thin slim strip placed in a magnetic field and subjected to a moving plane of heat source. The generalized magneto-thermoelastic coupled governing equations are formulated. By means of the Laplace transform and numerical Laplace inversion, the governing equations are solved. Numerical calculations for the considered variables are performed and the obtained results are presented graphically. The effects of moving heat source speed and applied magnetic field on temperature, stress and displacement are studied. It is found from the graphs that the temperature, thermally induced displacement and stress in the strip are found to decrease at large heat source speed, and the magnetic field significantly influences the variations of non-dimensional displacement and stress. However, it has no effect on the non-dimensional temperature.  相似文献   

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