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首页> 外文期刊>材料とプロセス: 日本鉄鋼協会講演論文集 >Microstructural evolution during high Z-Large strain deformation of ultra-low carbon steel: Influence of initial (coarse versus ultrafine) grain size
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Microstructural evolution during high Z-Large strain deformation of ultra-low carbon steel: Influence of initial (coarse versus ultrafine) grain size

机译:超低碳钢在高Z大应变变形过程中的显微组织演变:初始(粗晶粒与超细晶粒)晶粒尺寸的影响

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摘要

Ferrite grain size produced by high Z large strain deformation is dependent only on the Zener-Hollomon parameter and is not dependent on the initial grain size of the material. The relation: d = 10~(10)Z~(-0.12) (Q_(gb)=155kJ/mol) was obtained for two initial microstructures with grain sizes varying by three orders of magnitude. Initial grain size affects the strain required for the formation of new ultrafine ferrite grains with finer initial grain size producing ultrafine grains at smaller strains compared to larger grains. Length fraction of high angle grain boundaries after high Z large strain deformation is higher for ultrafine grained initial microstructure, whereas, it is lower for coarse grained initial microstructure.
机译:高Z大应变变形产生的铁素体晶粒尺寸仅取决于Zener-Hollomon参数,而不取决于材料的初始晶粒尺寸。对于两个晶粒尺寸相差三个数量级的初始微观结构,获得了d = 10〜(10)Z〜(-0.12)(Q_(gb)= 155kJ / mol)的关系。初始晶粒尺寸会影响形成新的超细铁素体晶粒所需的应变,而新的超细铁氧体晶粒尺寸较小,与较大晶粒相比,会以较小的应变产生超细晶粒。 Z大应变变形后,高角度晶界的长度分数对于超细晶粒的初始显微组织较高,而对于粗晶粒的初始显微组织则较低。

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