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首页> 外文期刊>Materials Science and Engineering. A, Structural Materials: Properties, Microstructure and Processing >Effect of warm cross-wedge rolling on microstructure and mechanical property of high carbon steel rods
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Effect of warm cross-wedge rolling on microstructure and mechanical property of high carbon steel rods

机译:楔楔热轧对高碳钢棒材组织和力学性能的影响

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摘要

High carbon steel rods with a microduplex structure was fabricated by warm cross-wedge rolling (WCWR) using fully lamellar pearlite starting material. The microstructures and mechanical properties at different locations over the cross-section of the rolled rod were investigated using scanning electron microscopy (SEM), transmission electron microscopy (TEM) and mini-tensile tests. The results show that after WCWR, the microstructure from the surface to 1/4R of the rod was refined, and the sizes of cementite particles and equiaxed ferrite grains were about 0.1-0.2 and 0.3-0.4 μm, respectively. The spheroidization/recrystallization of cementite/ferrite was non-uniform from the surface to the center, and the cementite/ferrite near the surface experienced more complete spheroidization/recrystallization. After WCWR, the change in strength and microhardness over the cross-section of the rod was not so distinct from the surface to the center. However, the elongation (EL) and the percentage of reduction in area (RA) of the rod decreased gradually from the surface to the center. This change can be linked to the non-uniform distribution of equivalent strain and strain rate, which also decreased from the surface to the center.
机译:采用全片状珠光体起始材料,通过温楔轧制(WCWR)制成具有微双相结构的高碳钢棒。使用扫描电子显微镜(SEM),透射电子显微镜(TEM)和微拉伸试验研究了轧制棒材横截面上不同位置的显微组织和力学性能。结果表明,WCWR后,棒的表面至1 / 4R的组织得到细化,渗碳体颗粒和等轴铁素体晶粒的尺寸分别约为0.1-0.2和0.3-0.4μm。渗碳体/铁素体的球化/再结晶从表面到中心是不均匀的,并且表面附近的渗碳体/铁素体经历了更完全的球化/再结晶。 WCWR后,棒的横截面强度和显微硬度从表面到中心变化不​​大。但是,杆的伸长率(EL)和面积减小率(RA)从表面到中心逐渐减小。这种变化可能与等效应变和应变率的不均匀分布有关,等效应变和应变率也从表面到中心减小。

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