Residual stresses induced by elastoplastic unloading in a tube made of dispersion-hardened alloy O. V. Matvienko, O. I. Daneyko, T. A. Kovalevskaya
Material type: ArticleContent type: Текст Media type: электронный Subject(s): дисперсионно-упрочненные материалы | наночастицы | пластическая деформация | математические модели | деформационное упрочнение | остаточные напряженияGenre/Form: статьи в журналах Online resources: Click here to access online In: Russian physics journal Vol. 61, № 4. P. 730-742Abstract: The paper carries out research into elastoplastic unloading using methods of plasticity theory and solid mechanics. Residual stresses are measured in a heavy-walled tube made from a dispersion-hardened copper alloy. It is shown that residual radial stresses are insignificant after the unloading and do not exceed 0.5 MPa. When the ultimate plastic strength is achieved, the amount of residual tangential and axial stresses is almost 17% of the ultimate shear stress.Библиогр.: 33 назв.
The paper carries out research into elastoplastic unloading using methods of plasticity theory and solid mechanics. Residual stresses are measured in a heavy-walled tube made from a dispersion-hardened copper alloy. It is shown that residual radial stresses are insignificant after the unloading and do not exceed 0.5 MPa. When the ultimate plastic strength is achieved, the amount of residual tangential and axial stresses is almost 17% of the ultimate shear stress.
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