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Effect of ferrite grain size on tensile deformation behavior of a ferrite-cementite low carbon steel

机译:铁素体晶粒度对铁素体-渗碳体低碳钢拉伸变形行为的影响

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Stress-strain curves for ferrite-cementite (FC) steels with ferrite grain sizes between 0.47 and 13.6 μm were studied by tensile tests with strain rates of 10~3 10°, and 3.3 x 10~(-4) s~(-1) at 296 K. The stress-strain curves for the FC steels are categorized into two different types. In one type, the Lueders deformation is interrupted due to the onset of necking, and in the other type, the Lueders band propagates throughout the gage section of a tensile specimen followed by work-hardening. The lower yield and flow stresses increase while uniform and total elongations decrease with a decrease in ferrite grain size. The effect of ferrite grain size on flow stress is hardly dependent on strain rate. These experimental results reveal that the grain refinement strengthening contributes mainly to an increase in the athermal stress component.
机译:通过拉伸试验,以10〜3 10°和3.3 x 10〜(-4)s〜(-1)的拉力试验研究了铁素体-晶铁(FC)钢的铁素体-晶铁(FC)钢的应力-应变曲线。 )在296K。FC钢的应力-应变曲线分为两种。在一种类型中,由于颈缩的开始,Lueders变形被中断,而在另一种类型中,Lueders带在整个拉伸试样的标距部分传播,然后进行加工硬化。随着铁素体晶粒尺寸的减小,较低的屈服应力和流动应力增大,而均匀和总伸长率减小。铁素体晶粒尺寸对流动应力的影响几乎不取决于应变率。这些实验结果表明,晶粒细化强化主要是导致无热应力成分的增加。

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