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Dynamic Transformation Behavior of a Deformed High Carbon Steel at Temperatures Above the Ae3

机译:Ae 3 以上温度下变形高碳钢的动态转变行为

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The dynamic transformation behavior of deformed austenite was studied in a 0.79%C high carbon steel over the temperature range 743–823°C. The experiments were carried out in torsion under an atmosphere of argon and 5% H_(2). All these temperatures are above the orthoequilibrium Ae_(3) temperature of the steel. Strains of 0.25–4 were applied at a strain rate of 4 s~(–1). The experimental parameters were varied in order to determine the effects of strain and temperature on the formation of strain-induced ferrite and cementite. The critical strain for dynamic transformation was about 0.20. The volume fractions of the transformed phases increased with strain and decreased with temperature. The observed ferrite structures are Widmanst?tten in nature and appear to have formed displacively. The carbon diffusion times required for formation of the observed spheroidal cementite particles were calculated; these are consistent with the occurrence of interstitial diffusion during deformation. Similar calculations indicate that substitutional diffusion does not play a role during dynamic transformation.
机译:研究了0.79%C高碳钢在743–823°C温度范围内变形奥氏体的动态转变行为。实验在氩气和5%H_(2)的气氛下扭转进行。所有这些温度都高于钢的原平衡Ae_(3)温度。应变率为0.25–4的应变为4 s〜(–1)。为了确定应变和温度对应变诱发的铁素体和渗碳体形成的影响,改变了实验参数。动态转变的临界应变约为0.20。转变相的体积分数随应变增加而随温度降低。观察到的铁素体结构本质上是Widmansttten,似乎是位移形成的。计算形成观察到的球形渗碳体颗粒所需的碳扩散时间。这些与变形过程中间隙扩散的发生是一致的。相似的计算表明,替代扩散在动态变换过程中不起作用。

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