| Article ID | Journal | Published Year | Pages | File Type |
|---|---|---|---|---|
| 7176408 | Journal of Materials Processing Technology | 2018 | 17 Pages |
Abstract
The strength differential effect (SDE), i.e., the difference between the flow stress of uniaxial tension and compression, of a dual-phase steel sheet with a tensile strength of 980â¯MPa (DP980) was measured using an in-plane uniaxial tension-compression test apparatus for sheet metals. The SDE data were obtained for a logarithmic total strain range of 0â¤|ε|â¤0.086 in both the rolling (RD) and transverse (TD) directions of the test material. It was observed that the magnitude of the compressive flow stress,ÏC, was consistently higher than that of the tensile flow stress, ÏT, for a strain range of |ε|>0.009 in both the RD and TD; the amount of SDE, defined as ÏCâÏT/ÏTÃ100 (%), at |ε|=0.086 was 5.2% in the RD and 6.2% in the TD. Moreover, in order to validate the SDE, a novel test apparatus for obtaining the pure bending moment M versus curvature κ (i.e., Mâκ) diagram was designed and manufactured. The obtained Mâκ curves were consistent with those based on the elastoplastic numerical analysis considering the SDE. Thus, the SDE of the test material is experimentally validated using the pure bending test.
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Physical Sciences and Engineering
Engineering
Industrial and Manufacturing Engineering
Authors
Taiki Maeda, Nobuyasu Noma, Toshihiko Kuwabara, Frédéric Barlat, Yannis P. Korkolis,
