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Deformation-induced ferrite transformation in a low carbon Nb-Ti microalloyed steel

机译:低碳Nb-Ti微合金钢中的变形诱导铁素体相变

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摘要

Laboratory thermomechanical processing (TMP) using single pass hot compression experiments on a low carbon Nb-Ti microalloyed steel have been carried out to study the effects of strain and strain rate on deformation-induced ferrite production through strain-induced transformation (SIT) at a temperature just above Ar_3. The results show that the occurrence of SIT during deformation at 845 deg C causes a dynamic softening behaviour in hot flow curves. With increasing strain from 0.25 to 0.8, higher volume fractions of strain-induced ferrite grains are obtained. The amount of strain rate plays an important role in the occurrence of SIT. Increasing the strain rate from 0.001 to 0.1 s~(-1) leads to an increase in the amount of minimum strain required for the initiation of SIT. Moreover, deformation to a strain of 0.8 with a strain rate of 0.1 s_(-1) produces equiaxed and homogeneous ultrafine ferrite grains of about 2 mu m.
机译:已经对低碳Nb-Ti微合金钢进行了单程热压缩实验,进行了实验室热机械处理(TMP),以研究应变和应变速率通过在一定温度下的应变诱发相变(SIT)对变形诱发的铁素体产生的影响。温度刚好高于Ar_3。结果表明,在845℃变形期间发生SIT会在热流曲线中引起动态软化行为。随着应变从0.25增加到0.8,可以获得更高体积分数的应变感应铁素体晶粒。应变率的大小在SIT的发生中起重要作用。将应变速率从0.001 s〜(-1)增加到0.1 s〜(-1)会导致引发SIT所需的最小应变增加。此外,以0.1 s _(-1)的应变速率变形到0.8的应变会产生约2微米的等轴且均匀的超细铁素体晶粒。

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