超高強度低合金TRIP鋼の組織と機械的性質
This paper introduces the microstructure, retained austenite characteristics, strain-induced transformation-deformation mechanism and mechanical properties of transformation-induced plasticity (TRIP)-aided martensitic (TM) steels for the automotive applications. Because the microstructure consists o...
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Published in | 鉄と鋼 Vol. 103; no. 1; pp. 1 - 11 |
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Main Authors | , , |
Format | Journal Article |
Language | Japanese |
Published |
一般社団法人 日本鉄鋼協会
2017
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Online Access | Get full text |
ISSN | 0021-1575 1883-2954 |
DOI | 10.2355/tetsutohagane.TETSU-2016-064 |
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Abstract | This paper introduces the microstructure, retained austenite characteristics, strain-induced transformation-deformation mechanism and mechanical properties of transformation-induced plasticity (TRIP)-aided martensitic (TM) steels for the automotive applications. Because the microstructure consists of a wide lath-martensite structured matrix and a mixture of narrow lath-martensite and metastable retained austenite (MA-like phase), the TM steel produced a good combination of tensile strength and cold formability. If Cr and/or Mo were added into 0.2%C-1.5%Si-1.5%Mn steel to enhance its hardenability, the resultant TM steel achieved superior notch fatigue strength and impact and fracture toughness to conventional structural steel such as SCM420. These enhanced mechanical properties were found to be mainly caused by: (1) plastic relaxation of the stress concentration, which results from expansion strain on the strain-induced transformation of the metastable retained austenite; and (2) the presence of a large quantity of finely dispersed MA-like phase, which suppresses crack or void initiation and subsequent connection. |
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AbstractList | This paper introduces the microstructure, retained austenite characteristics, strain-induced transformation-deformation mechanism and mechanical properties of transformation-induced plasticity (TRIP)-aided martensitic (TM) steels for the automotive applications. Because the microstructure consists of a wide lath-martensite structured matrix and a mixture of narrow lath-martensite and metastable retained austenite (MA-like phase), the TM steel produced a good combination of tensile strength and cold formability. If Cr and/or Mo were added into 0.2%C-1.5%Si-1.5%Mn steel to enhance its hardenability, the resultant TM steel achieved superior notch fatigue strength and impact and fracture toughness to conventional structural steel such as SCM420. These enhanced mechanical properties were found to be mainly caused by: (1) plastic relaxation of the stress concentration, which results from expansion strain on the strain-induced transformation of the metastable retained austenite; and (2) the presence of a large quantity of finely dispersed MA-like phase, which suppresses crack or void initiation and subsequent connection. |
Author | 小林, 純也 杉本, 公一 北條, 智彦 |
Author_xml | – sequence: 1 fullname: 杉本, 公一 organization: 信州大学名誉教授 – sequence: 1 fullname: 北條, 智彦 organization: 岩手大学理工学部システム創成工学科 – sequence: 1 fullname: 小林, 純也 organization: 茨城大学工学部機械工学科 |
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ContentType | Journal Article |
Copyright | 2017 一般社団法人 日本鉄鋼協会 |
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DOI | 10.2355/tetsutohagane.TETSU-2016-064 |
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Snippet | This paper introduces the microstructure, retained austenite characteristics, strain-induced transformation-deformation mechanism and mechanical properties of... |
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SubjectTerms | mechanical property microstructure retained austenite strain-induced martensite transformation TRIP-aided martensitic steel |
Title | 超高強度低合金TRIP鋼の組織と機械的性質 |
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