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Work-hardening and ductility enhancement mechanism of cold rolled multiphase TRIP steels SCIE SCOPUS KCI

Title
Work-hardening and ductility enhancement mechanism of cold rolled multiphase TRIP steels
Authors
Chung, JHJeon, JBChang, YW
Date Issued
2010-08
Publisher
KOREAN INST METALS MATERIALS
Abstract
The work hardening behavior of a high strength sheet steel has been studied in relation to the deformation induced martensitic transformation (DIMT) of retained austenite (gamma(R)). The work hardening rate was observed to decrease gradually in a continuously oscillating manner, leading to a significant ductility enhancement in these multiphase steels, in contrast to specimens without gamma(R). Ductility enhancement has been found to depend on the austenite stability (beta), with the largest tensile elongation of similar to 35 % exhibited in the case with the minimum value of beta. The DIMT has thus been interpreted in this study as the successive processes of accumulation and relaxation of internal strain energy produced during inelastic deformation, as has been prescribed by an internal variable theory. This process appears to be responsible for the locally fluctuating work hardening behavior. A new ductility enhancement mechanism is finally proposed in this connection to account for the observed work hardening as well as for the transformation behavior.
Keywords
metals; tensile test; phase transformation; ductility; work hardening; DUAL-PHASE STEEL; TRANSFORMATION-INDUCED PLASTICITY; RETAINED AUSTENITE; 0.4C-1.5SI-0.8MN STEEL; STAINLESS-STEEL; VOLUME FRACTION; FE-NI; MARTENSITE; MN; ALLOYS
URI
https://oasis.postech.ac.kr/handle/2014.oak/25409
DOI
10.1007/S12540-010-0803-3
ISSN
1598-9623
Article Type
Article
Citation
METALS AND MATERIALS INTERNATIONAL, vol. 16, no. 4, page. 533 - 541, 2010-08
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