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Quantitative prediction of deformed austenite and transformed ferrite texture in hot-rolled steel sheet

Y. Tanaka, T. Tomida, V. Mohles

IOP Conference Series: Materials Science and Engineering, 82, -, (2015)

DOI: 10.1088/1757-899X/82/1/012057

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A model to quantitatively predict ferrite (α) textures in hot-rolled steel sheets has been developed. In this model, the crystal plasticity model, called "Grain Interaction model (GIA)", and the transformation texture model, called "Double K-S relation (DKS)", are linked together. The deformed austenite (γ) texture is predicted by GIA with taking not only the standard {111}<110> slip system but also non-octahedral slip systems into account. Then the transformed a texture is calculated by DKS, in which a nucleated α prefers to have orientation relationship near the Kurdjumov-Sachs relation with both of two neighboring γ grains. For validation, single pass hot-rolling tests on a C-Si-Mn steel were carried out. The comparison between the predicted and the experimental textures shows that the linked model (GIA & DKS) can lead to a remarkable reproduction of the texture of hot-rolled steel sheets.

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{"type":"article", "name":"y.tanaka20159", "author":"Y. Tanaka and T. Tomida and V. Mohles", "title":"Quantitative prediction of deformed austenite and transformed ferrite texture in hotrolled steel sheet", "journal":"IOP Conference Series: Materials Science and Engineering", "volume":"82", "OPTnumber":"1", "OPTmonth":"9", "year":"2015", "OPTpages":"-", "OPTnote":"", "OPTkey":"", "DOI":"10.1088/1757-899X/82/1/012057"}
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