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首页> 外文期刊>Metallurgical and materials transactions. A, physical metallurgy and materials science >Recrystallization in Oxide-Dispersion Strengthened Mechanically Alloyed Sheet Steel
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Recrystallization in Oxide-Dispersion Strengthened Mechanically Alloyed Sheet Steel

机译:氧化物弥散强化机械合金钢板的再结晶

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Systematic annealing at temperatures between 1300℃ and 1380℃ was applied to sheets of INCOLOY MA-956, an oxide-dispersion strengthened (ODS), mechanically alloyed, iron-base steel containing (in mass percent) 20.8Cr, 5.0Al, 0.5Y_2O_3, and 0.5Ti. The billets, comprised of hot iso-statically pressed ("hipped"), mechanically alloyed powder, were hot- and cold-rolled to produce a 0.5-mm-thick sheet with a strong (100)<110> deformation texture. Light and transmission electron microscopy established that recrystallization initiated by nucleation at the sheet centerline. Initial rapid growth of the centerline-nucleated grains, designated stage Ⅰ, resulted in plate-shaped grains oriented parallel to the rolling plane at the sheet centerline. Subsequent growth, designated stage Ⅱ, was developed by planar growth fronts through the sheet thickness at a slower rate. The final product was a very coarse grain structure, sometimes with only a single grain through the sheet thickness. The recrystallization kinetics were typified by an incubation time, a temperature dependance characterized by an activation energy of 506 kJ/mole, and a decreasing rate of boundary migration with increasing time at temperature. The microstructural evolution is discussed in terms of the influences of deformation texture, residual stress, dislocation substructure, and oxide dispersion on the recrystallization process.
机译:将INCOLOY MA-956板材进行系统退火,温度范围为1300℃至1380℃,INCOLOY MA-956是一种氧化物弥散强化(ODS)机械合金化的铁基钢,含有(以质量百分比计)20.8Cr,5.0Al,0.5Y_2O_3和0.5Ti。对由热等静压(机械加工),机械合金化粉末组成的坯料进行热轧和冷轧,以生产0.5毫米厚的板材,并具有很强的(100)<110>变形织构。光和透射电子显微镜确定,通过在片材中心线处的成核作用引发了重结晶。中心线形核晶粒的初期快速生长,称为阶段Ⅰ,导致板状晶粒平行于薄板中心线的轧制平面取向。随后的生长,称为阶段Ⅱ,是通过平面生长前沿以较慢的速度穿过薄板厚度而形成的。最终产品是非常粗糙的晶粒结构,有时整个板厚只有一个晶粒。重结晶动力学的特征在于温育时间,以506 kJ / mol的活化能为特征的温度依赖性以及在温度下随时间增加边界迁移率的降低。从变形织构,残余应力,位错亚结构和氧化物弥散对再结晶过程的影响来讨论微观组织的演变。

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