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Ferrite Grain Refinement by Large Reduction per Pass in Nonrecrystallization Temperature Region of Austenite

机译:奥氏体非再结晶温度范围内的一次通过大幅度减少铁素体晶粒细化

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摘要

In order to clarify the effects of reduction per pass in non-recrystallization temperature region of austenite (γ) on ferrite (α) grain size of low carbon steels, isothermal hot compression tests have been performed. The hot deformations have been carried out by the constant reduction per pass of 10, 20 or 30% under the cumulative reduction of 30 or 50% in the non-recrystallization region. The α grain size is decreased about 15% with increasing the reduction per pass from 10 to 30% under the cumulative reduction of 50%. At this time, the α nucleation site density, which is defined as the number of γ grain boundaries, deformation bands and annealing twin boundaries per unit length of deformation direction, is increased about 30%. It is estimated that the increase in the α nucleation site density is caused by the increase in deformation bands. Furthermore, the number of α nuclei per unit length of γ grain boundaries is increased about 10% with increasing the reduction per pass from 10 to 30% under the cumulative reduction of 30%. It has been clarified by the calculation that the α grain refinement by the large reduction per pass is mainly caused by the increase in the α nucleation site density, which is led by the increase in deformation bands.
机译:为了弄清楚奥氏体(γ)的非再结晶温度区域的每道次减少量对低碳钢的铁素体(α)晶粒尺寸的影响,已进行了等温热压缩试验。在非再结晶区域中,在30%或50%的累积减少下,每次通过的恒定减少量为10%,20%或30%,从而进行了热变形。在累积减少50%的情况下,随着每次通过的减少量从10%增加到30%,α晶粒尺寸减少约15%。此时,定义为每单位变形方向长度的γ晶界,变形带和退火孪晶边界的数量的α成核部位密度增加约30%。据估计,α形核位点密度的增加是由变形带的增加引起的。此外,在累积减少30%的情况下,随着每道次的减少从10%增加到30%,每单位长度γ晶界的α核数目增加约10%。通过计算已经澄清,通过一次大的减少而对α晶粒的细化主要是由于形变带的增加导致α成核点密度的增加。

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