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Microstructure and Mechanical Properties of a 1.6C (pet) Ultra-fine Grained Ultra-high Carbon Steel

机译:1.6C(宠物)超细晶粒超高碳钢的组织和力学性能

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With massive trials, spheroidized by austeniting at 810°C and cooling by l°C/min, a 1.6C (pet) Ultra-high Carbon Steel shows a microstructure of uniformly distributed fine carbides in the ultra-fine ferrite matrix. The grain size of ferrite matrix and spheroidized carbides are about 5um and 0.1 ~2um, respectively. Further investigation by TEM shows that much dislocation together with twins is obtained for the UHCS, and generally finer grains have higher dislocation density. The spheroidized steel exhibits high tensile strength of 910 MPa and high yielding strength of 653 MPa at room temperature, together with excellent elongation of 18.3%, which shows the UHCS can entirely satisfy certain grades of engineering materials and means the steel may substitute present engineering steel considering lower cost. Furthermore, the steel owns good high-temperature superplasticity, the elongation of 216% obtained at 800°C under a strain rate of 2.5X10"4. Initial analysis suggests that the superplastic deformation mechanics of the steel is grain boundary sliding and grain rotating (GBSR), coordinated by migration of dislocation.
机译:在大规模试验中,通过在810°C下奥氏体化并以1°C / min的速度进行球化,1.6C(pet)超高碳钢在超细铁素体基体中显示出均匀分布的细碳化物的微观结构。铁素体基体和球状碳化物的晶粒尺寸分别约为5um和0.1〜2um。 TEM的进一步研究表明,UHCS获得了很多位错和孪晶,并且通常,更细的晶粒具有更高的位错密度。球化钢在室温下表现出910 MPa的高抗拉强度和653 MPa的高屈服强度,以及18.3%的优异伸长率,这表明UHCS可以完全满足某些等级的工程材料,这意味着该钢可以替代现有的工程钢考虑降低成本。此外,该钢具有良好的高温超塑性,在800°C下以2.5X10“ 4的应变速率获得的伸长率为216%。初步分析表明,该钢的超塑性变形机理为晶界滑动和晶粒旋转( GBSR),由位错迁移进行协调。

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