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Evaluation of deformation and recrystallization behavior in oxide dispersion strengthened 18Cr ferritic steel

机译:氧化物分散中变形和再结晶行为的评价强化18CR铁素体钢

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This paper presents the results of an experimental study aimed to obtain an ultrafine equiaxed grain distribution in 18Cr oxide dispersion strengthened (ODS) ferritic steel through cold working and annealing starting with an initial columnar grain structure with a predominant alpha-fibre texture in a product consolidated from the alloy powders during extrusion at high temperatures. Deformation along the extruded direction (ED) resulted in the retention of alpha-fibre texture, while deformation in the transverse direction (TD) showed a shear banded structure with a reduced percentage of alpha-fibre texture. Differential Scanning Calorimetry (DSC) analysis of the deformed steel established the occurrence of two significant events during heating namely recovery and recrystallization, whose temperatures were influenced by the heating rate. The recovery and recrystallization domains have been distinctly observed at 1350 K and 1420 K respectively at a low heating rate of 7 K min(-1). The resultant microstructure showed very coarse elongated grains interspersed with regions of ultrafine (<1 mu m) equiaxed grains, due to the incomplete recovery. The deformed steel was subjected to a two step heat treatment designed based on the above inputs with an aim to reduce the microstructural anisotropy in longitudinal direction. The microstructure of the heat treated steel showed randomization of the initial <1 1 0>//ED alpha-fibre texture, which improved further with repeated deformation and two step heat treatment cycles. A gradual increase in hardness during the above cycles was observed reflecting the increase in dislocation density which offers the propensity to achieve an ultrafine grained microstructure.
机译:本文介绍了一种实验研究的结果,其旨在通过冷加工和退火以初始柱状晶粒结构引起的18Cr氧化物分散体的超细等式晶粒分布加强(ODS)铁素体钢,其在固结的产品中具有主要的α-纤维纹理。从高温挤出过程中的合金粉末。沿挤出方向(ED)的变形导致α-纤维纹理的保持,而横向(Td)的变形显示剪切带状结构,其α-纤维纹理的百分比减少。变形钢的差分扫描量热法(DSC)分析在加热时建立了两种显着事件的发生,即恢复和再结晶,其温度受加热速率的影响。在7 k min(-1)的低加热速率下,分别在1350k和1420 k下显着地观察回收和重结晶结构域。由于不完全恢复,所得的微观结构显示出非常粗细长的晶粒与超细(<1μm)等菱形的区域相互作用。对变形的钢进行了基于上述输入设计的两步热处理,目的是在纵向上减小微观结构各向异性。热处理钢的微观结构显示出初始<11 0 // EDα-纤维纹理的随机化,其进一步改善了重复变形和两步热处理循环。观察到在上述循环期间的硬度逐渐增加,反映了脱位密度的增加,其提供了实现超细颗粒微观结构的倾向。

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