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首页> 外文期刊>Materials Science and Engineering >Enhancement of grain structure and mechanical properties of a high-Mn twinning-induced plasticity steel bearing Al-Si by fast-heating annealing
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Enhancement of grain structure and mechanical properties of a high-Mn twinning-induced plasticity steel bearing Al-Si by fast-heating annealing

机译:快速加热退火的高MN Twinning诱导塑性钢轴承晶粒结构和力学性能的提高

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In this study, a cold-rolled Fe-0.01C-21.3Mn-3Al-3Si (wt.%) TWIP steel was undergone a fast-heating (FH) annealing at high temperatures of 1000-1200 °C and 2 s soaking time for grain refinement and controlling the phase structure and thereby to enhance the mechanical properties. For comparison, recrystallization annealing was conducted at lower temperatures of 650 and 700 °C for 180 s. The microstructural evolution of the FH annealed steel was surveyed using electron backscatter diffraction. The strain hardening behavior of the FH structures was studied by tensile tests. The tensile flow curves were also predicted by a phenomenological model based on the evolution of dislocation density during deformation. Fine mainly austenitic structure was promoted by FH annealing at 1000 and 1100 °C. At the lower temperatures of 650 and 700 °C, bands of finer grains, indicative of some inhomogeneity, were evident in the mostly austenitic recrystallized microstructure. However, at 1200 °C, the structure consisted of coarse austenite and ferrite with almost equal fractions. The FH annealed structures exhibited a remarkable improvement in the mechanical properties (a better combination of yield and tensile strength and ductility) compared to conventional long annealing cycles.
机译:在该研究中,在高温为1000-1200°C和2 S浸泡时间的高温下,冷轧Fe-0.01C-21.3Mn-3Al-3Si(Wt。%)Twip钢经历了快速加热(FH)退火用于晶粒细化并控制相位结构,从而提高机械性能。为了比较,在650和700℃的较低温度下进行重结晶退火180s。使用电子反向散射衍射进行调查FH退火钢的微观结构演化。通过拉伸试验研究了FH结构的应变硬化行为。还通过基于变形期间位错密度的演变的现象学模型来预测拉伸流曲线。优异的主要是奥氏体结构在1000和1100℃下通过FH退火促进。在650和700°C的较低温度下,在最奥氏体重结晶的微观结构中明显明显是一些粒细胞的细粒。然而,在1200℃下,该结构由粗奥氏体和铁氧体组成,具有几乎相等的级分。与常规的长退火循环相比,FH退火结构表现出显着改善的机械性能(更好的产率和抗粘连和延展性)。

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