Dash Manmath Kumar, Mythili R, John Rahul, Saroja S, Dasgupta Arup
Metallurgy and Materials Group, Indira Gandhi Centre for Atomic Research, Pudupattinam, India.
IGCAR, HBNI, Kalpakkam-603102, India.
Microsc Microanal. 2019 Dec;25(6):1401-1406. doi: 10.1017/S1431927619014703.
This paper aims at understanding the texture evolution in extruded oxide dispersion strengthened 18Cr ferritic steel during high-temperature uniaxial compression testing at 1,423 K at a strain rate of 0.01/s based on extensive electron back scatter diffraction characterization. The α-fiber texture is observed along the extrusion direction (ED) in the initial microstructure. The flow curves generated during uniaxial compression test are used to determine the associated hardening parameters. In addition, the degree of texture evolution after deformation along the ED and the transverse direction (TD) with respect to the initial condition has been predicted using VPSC-5 constitutive model. The prediction shows that the deformation along the ED produces a dominant γ-fiber texture in contrast to the TD. This is in agreement with the experimental results where γ-fiber texture is observed, due to enhanced dynamic recrystallization at high-temperature deformation.
本文旨在基于广泛的电子背散射衍射表征,了解在1423 K、应变速率为0.01/s的高温单轴压缩试验过程中,挤压态氧化物弥散强化18Cr铁素体钢的织构演变。在初始微观结构中,沿挤压方向(ED)观察到α纤维织构。单轴压缩试验期间生成的流动曲线用于确定相关的硬化参数。此外,使用VPSC-5本构模型预测了相对于初始状态,沿ED和横向方向(TD)变形后的织构演变程度。预测结果表明,与TD方向相比,沿ED方向的变形产生了占主导地位的γ纤维织构。这与实验结果一致,在实验中观察到了γ纤维织构,这是由于高温变形时动态再结晶增强所致。