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Effect of Alloying Elements on the Microstructure and Texture of Warm Rolled Steels

机译:合金元素对热轧钢组织和织构的影响

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The effect of Cr, B and P addition on microstructure and texture formation was studied in warm rolled at 640 and 710 deg C interstitial free (IF) and low carbon (LC) steels. Samples were characterised using Electron Back Scattering Diffraction analysis, optical and electron microscopy. The LC steel showed a decrease in the number of grains with shear bands compared with IF steel that deteriorated the deformation texture. The addition of chromium to the LC steel reversed this tendency. The increase in shear band frequency in the LC(Cr) steel appears to be due to the formation of coarse Cr_(23)C_6 car-bides and tine strain-induced Cr_(23)C_6 and Cr_3C_2 carbides. Chromium addition also led to an increase in grain thickness and thus in the tendency to form shear bands. The addition of phosphorus to the LC(Cr) steel did not improve the deformation texture significantly. The addition of boron to the LC(Cr) steel decreased the number of gamma-fibre grains and is therefore expected to reduce the formability after annealing. Short, long, intense short and intense long shear bands were observed. Their formation depended on grain size, as well as on the amount of work hardening and precipitation hardening. The long and short (but not the intense) shear bands were linked to the presence of the gamma-fibre after rolling. The main outcome of this work is that the addition of alloying elements affects the volume fraction of grains containing shear bands, the grain thickness and the shear band morphology; these, in turn, affect the texture of the steel, particularly after annealing.
机译:在640和710℃无间隙(IF)钢和低碳(LC)钢热轧中,研究了Cr,B和P添加对组织和织构的影响。使用电子反向散射衍射分析,光学和电子显微镜对样品进行表征。与IF钢相比,LC钢显示出具有剪切带的晶粒数量减少,从而使变形织构恶化。向LC钢中添加铬可以逆转这种趋势。 LC(Cr)钢中剪切带频率的增加似乎是由于形成了粗糙的Cr_(23)C_6硬质合金以及由应变引起的Cr_(23)C_6和Cr_3C_2碳化物。铬的添加还导致晶粒厚度的增加,从而导致形成剪切带的趋势。向LC(Cr)钢中添加磷不能显着改善变形织构。向LC(Cr)钢中添加硼会减少γ纤维晶粒的数量,因此有望降低退火后的可成形性。观察到短,长,强烈的短和强烈的长剪切带。它们的形成取决于晶粒尺寸,以及加工硬化和沉淀硬化的量。长和短(而不是强)剪切带与轧制后伽马纤维的存在有关。这项工作的主要结果是添加合金元素会影响含有剪切带的晶粒的体积分数,晶粒厚度和剪切带的形态。这些反过来会影响钢的织构,尤其是在退火后。

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