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- W2027363605 abstract "A continuum damage mechanics (CDM) model was used to predict the development and distribution of creep damage in triaxially stressed regions of oxygen-doped copper samples at 500°C based on uniaxial creep tests performed on that same material. Axisymmetrically notched samples of oxygen-doped copper were subjected to slow, constant-displacement-rate tensile testing at 500°C and interrupted after various test times. High resolution synchrotron radiography was used to image the creep damage in the samples. The experimentally measured creep damage was then compared to the predictions from the continuum damage mechanics modeling for the same two sample geometries. The experimentally determined distribution of creep damage correlates very well with the model if the growth of damage is assumed to be controlled primarily by the maximum principal stress. Therefore, the growth of creep damage in oxygen-doped copper under the imposed stress conditions occurs by a diffusive mechanism." @default.
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- W2027363605 date "1994-01-01" @default.
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- W2027363605 title "A combined experimental and analytical investigation of creep damage development in copper" @default.
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- W2027363605 doi "https://doi.org/10.1016/0956-7151(94)90065-5" @default.
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