Temperature dependence of activation volume on Cu content of ultra-low carbon steel
Зависимость объема активации от температуры и содержания Cu в ультранизкоуглеродистой стали
2017-08-16
SCID: 54.1/jky5vdf4
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Cu contentactivation volumedislocation-solute interactioneffective stress–temperature curveultra-low carbon steel
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Abstract (AI)
The temperature dependence of the yield stress, effective stress and activation volume on the Cu content in steel was assessed using polycrystalline ultra-low carbon steels with 0.5, 1 and 2 mass% Cu added. A small hump was seen in the effective stress–temperature curve for ultra-low carbon steel, which has also been reported for high-purity single-crystal iron. The effective stress was found to decrease with increasing the Cu content. The activation volume was found to be linearly related to the temperature at low temperatures for all types of specimens considered. The activation volume was found to increase abruptly at a certain temperature, which increased with increasing the Cu content. The change in the relationship of the activation volume to temperature is discussed in this paper with respect to the thermally activated process of dislocation glide from the Peierls mechanism to the interaction between dislocations and solute Cu atoms.
Key Findings
1
Activation volume increases abruptly at a specific temperature, and that transition temperature increases with higher Cu content.
2
Activation volume is linearly related to temperature at low temperatures for all tested specimens.
3
Effective stress decreases as Cu content increases (0.5, 1, 2 mass% Cu).
4
Effective stress–temperature curve of ultra-low carbon steel shows a small hump similar to high-purity single-crystal iron.
5
The change in activation-volume versus temperature behavior is attributed to a transition from Peierls-controlled dislocation glide to dislocation–solute Cu atom interactions.
Research Object
Polycrystalline ultra-low carbon steel alloys with varying Cu content (0.5, 1 and 2 mass% Cu)
Research Subject
Temperature dependence of yield stress, effective stress and activation volume as a function of Cu content, including the temperature at which activation-volume behavior changes (transition from Peierls-controlled dislocation glide to dislocation–solute Cu interaction)
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2017-08-16
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