Effect of the Rate of Thermal Loading on the State of Stress of Viscoelastic Laminated Structures [Previously Titled: Influence of Thermal Loading Rate on the Stressed State of Viscoelastic Laminated Structures.]

Previously abstracted from the original as item 9005-C1-D-1229. The problem of stress concentration during uniform thermal loading in the region of free end surfaces of thin-walled laminated structures, whose structural elements are a thermorheologically microheterogeneous material, is considered. T...

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Veröffentlicht in:Mechanics of composite materials 1989-11, Vol.25 (6), p.790-795
Hauptverfasser: Pestrenin, V M, Pestrenina, I V, Iblaminova, D R, Simonova, O A, Myalitsin, A G, Skachkov, A P
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container_end_page 795
container_issue 6
container_start_page 790
container_title Mechanics of composite materials
container_volume 25
creator Pestrenin, V M
Pestrenina, I V
Iblaminova, D R
Simonova, O A
Myalitsin, A G
Skachkov, A P
description Previously abstracted from the original as item 9005-C1-D-1229. The problem of stress concentration during uniform thermal loading in the region of free end surfaces of thin-walled laminated structures, whose structural elements are a thermorheologically microheterogeneous material, is considered. The thermoviscoelastic solution is constructed by the non-linear approximation method with the use of a mixed finite-element method for numerical realisation of the corresponding thermoelastic problem. Specific results were obtained for structures made of carbon-reinforced plastic whose viscoelasticity is governed by the EDT-10 binder. The stresses' fields were studied in relation to the cooling rate from the naturally unstressed state at a temperature of 120 deg C near the circular opening of a spherical shell and near a free end of a circular cylindrical shell.
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The problem of stress concentration during uniform thermal loading in the region of free end surfaces of thin-walled laminated structures, whose structural elements are a thermorheologically microheterogeneous material, is considered. The thermoviscoelastic solution is constructed by the non-linear approximation method with the use of a mixed finite-element method for numerical realisation of the corresponding thermoelastic problem. Specific results were obtained for structures made of carbon-reinforced plastic whose viscoelasticity is governed by the EDT-10 binder. 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The problem of stress concentration during uniform thermal loading in the region of free end surfaces of thin-walled laminated structures, whose structural elements are a thermorheologically microheterogeneous material, is considered. The thermoviscoelastic solution is constructed by the non-linear approximation method with the use of a mixed finite-element method for numerical realisation of the corresponding thermoelastic problem. Specific results were obtained for structures made of carbon-reinforced plastic whose viscoelasticity is governed by the EDT-10 binder. 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The problem of stress concentration during uniform thermal loading in the region of free end surfaces of thin-walled laminated structures, whose structural elements are a thermorheologically microheterogeneous material, is considered. The thermoviscoelastic solution is constructed by the non-linear approximation method with the use of a mixed finite-element method for numerical realisation of the corresponding thermoelastic problem. Specific results were obtained for structures made of carbon-reinforced plastic whose viscoelasticity is governed by the EDT-10 binder. The stresses' fields were studied in relation to the cooling rate from the naturally unstressed state at a temperature of 120 deg C near the circular opening of a spherical shell and near a free end of a circular cylindrical shell.</abstract><tpages>6</tpages></addata></record>
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title Effect of the Rate of Thermal Loading on the State of Stress of Viscoelastic Laminated Structures [Previously Titled: Influence of Thermal Loading Rate on the Stressed State of Viscoelastic Laminated Structures.]
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