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Bauschinger effect in microalloyed steels: part I. Dependence on dislocation-particle interaction

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posted on 2024-11-15, 06:58 authored by Andrii Kostryzhev, Martin Strangwood, Claire L Davis
The Bauschinger effect (yield stress decreasing at the start of reverse deformation after forward prestrain) is an important factor in strength development for cold metal forming technology. In steels, the magnitude of the Bauschinger effect depends on composition, through the presence of microalloy precipitates, and prior processing, through the size and distribution of microalloy precipitates and presence of retained work hardening. In this article, the microstructures of two (Nb- and Nb-V-microalloyed) steel plates, in terms of (Ti,Nb,V,Cu)-rich particle distributions and dislocation densities, have been quantitatively related to the Bauschinger parameters for the same processing conditions. For the 12- to 50-nm effective particle size range, the Bauschinger stress parameter increases with the particle number density and dislocation density increase. The relative influence of these two microstructure parameters is discussed.

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Citation

Kostryzhev, A. G., Strangwood, M. & Davis, C. L. (2010). Bauschinger effect in microalloyed steels: part I. Dependence on dislocation-particle interaction. Metallurgical and Materials Transactions A: Physical Metallurgy and Materials Science, 41 (6), 1399-1408.

Journal title

METALLURGICAL AND MATERIALS TRANSACTIONS A-PHYSICAL METALLURGY AND MATERIALS SCIENCE

Volume

41A

Issue

6

Pagination

1399-1408

Language

English

RIS ID

94311

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