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首页> 外文期刊>Materials Science and Engineering. A, Structural Materials >Influence of thermomechanical treatment on microstructure and mechanical properties of a microalloyed (Nb + V) weather-resistant steel
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Influence of thermomechanical treatment on microstructure and mechanical properties of a microalloyed (Nb + V) weather-resistant steel

机译:热机械处理对微合金(Nb + V)耐候钢的组织和力学性能的影响

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摘要

The influence of thermomechanical treatment after soaking at 1000 and 1100℃ on the structure and properties of a microalloyed (Nb + V) weather-resistant steel has been studied. The steel contains 0.2% C, 1% Mn, 0.3% Si, 0.5% Cr, 0.45% Cu, 0.3 % Ni, 0.054% Nb and 0.046% V. It has been found that after soaking at 1000℃, the yield strength of the steel has increased considerably when rolled to 25 or 50% on decreasing the rolling temperature from 900 to 700℃. The UTS and hardness have not been significantly affected by the rolling temperatures between 800 and 900℃. However, there has been a considerable increase in UTS and hardness after rolling at 700℃. The steel has given ferrite-pearlite microstructure at all rolling temperatures studied. The ferrite grain size decreases with decreasing rolling temperature and increasing deformation. While the ferrite morphology is polygonal after rolling at 900 and 800℃, it is non-polygonal after rolling at 700℃. After soaking at 1100℃, the yield strength increases slightly after rolling 50% at 800℃ while the UTS increases markedly. The microstructure changes to that of mixed ferrite and granular bainite with the preponderance of martensite/austenite constituent as revealed by transmission electron microscopy. Thermomechanical treatment (with ≥ 50% deformation at ~800℃) is very effective in increasing YS and UTS.
机译:研究了在1000和1100℃下均热后的热机械处理对微合金化(Nb + V)耐候钢组织和性能的影响。该钢含有0.2%C,1%Mn,0.3%Si,0.5%Cr,0.45%Cu,0.3%Ni,0.054%Nb和0.046%V。发现在1000℃均热后,屈服强度为轧制温度从900℃降低到700℃时,轧制到25%或50%时,钢的含量已显着增加。在800到900℃之间的轧制温度对UTS和硬度没有显着影响。然而,在700℃下轧制后,UTS和硬度有了显着提高。在所有研究的轧制温度下,钢都具有铁素体-珠光体的显微组织。随着轧制温度的降低和变形的增加,铁素体晶粒尺寸减小。在900和800℃下轧制后,铁素体形态为多边形,而在700℃下轧制后为非多边形。在1100℃下均热后,在800℃下轧制50%后,屈服强度略有增加,而UTS则明显增加。透射电子显微镜显示,组织转变为混合铁素体和贝氏体,以马氏体/奥氏体成分为主。热机械处理(在〜800℃下变形≥50%)对提高YS和UTS非常有效。

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