首页> 外文会议>International Symposium on Eco-Materials Processing amp; Design; 20060108-11; Chengdu(CN) >Formation of Ultra Fine Ferrite and Determination of Critical Strain in the Strain Induced Dynamic Transformation for 0.22C-Mn Steel
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Formation of Ultra Fine Ferrite and Determination of Critical Strain in the Strain Induced Dynamic Transformation for 0.22C-Mn Steel

机译:0.22C-Mn钢的超细铁素体形成及应变诱导动态转变的临界应变确定

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摘要

The low carbon steel of 0.22wt% carbon was tested to estimate the dynamic phase transformation behavior from austenite to ferrite. The samples were deformed at just above Ar_3 temperature by hot torsion at condition of strain rate (0.5/sec) and strain (5.0). The flow curve obtained at just above Ar_3 significantly differed from others due to dynamic transformation. Based on the analysis of flow stress curve and observation of micro-structure evolution, the initiation and finish points of strain induced dynamic transformation (SIDT) could be determined. An inflection point observed at early deformation range (0.2-0.3) from the work-hardening rate and stress plot meant that new ferrite grains were nucleated in austenite matrix and these nuclei could be also confirmed by optical microscope. Subsequently in strain range of 0.7-1.0, the flow stress had the maximum value and new fine ferrite grains were dynamically generated inside untransformed austenite grains as well as prior austenite grains. The dynamic phase transformation induced by deformation made eventually fine ferrite grains under 3 μm and decreased stress level with a fixed gradient.
机译:测试了含碳量为0.22wt%的低碳钢,以估算从奥氏体到铁素体的动态相变行为。在应变速率(0.5 / sec)和应变(5.0)的条件下,通过热扭转使样品在恰好高于Ar_3的温度下变形。由于动态转换,在Ar_3上方刚获得的流动曲线与其他曲线明显不同。基于流变应力曲线的分析和微观结构演变的观察,可以确定应变诱发动态转变(SIDT)的起始点和终点。从加工硬化率和应力图可知,在早期变形范围(0.2-0.3)处观察到拐点,这意味着新的铁素体晶粒在奥氏体基体中成核,并且这些核也可以通过光学显微镜确认。随后在0.7-1.0的应变范围内,流动应力达到最大值,并且在未转变的奥氏体晶粒以及先前的奥氏体晶粒内部动态生成新的细铁素体晶粒。变形引起的动态相变最终使3μm以下的铁素体晶粒细化,并以固定的梯度降低了应力水平。

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