TWIP钢等径通道挤压后微观组织及力学本构模型研究

    Research on Microstructure and Mechanical Constitutive Model of TWIP Steel after Equal Channel Angular Pressing

    • 摘要: 为解决孪晶诱导塑性变形钢(TWIP)屈服强度较低的缺点,通过等径通道挤压技术对TWIP进行了晶粒细化。在微观组织分析与力学性能测试的基础上,通过Ludwik,Hollomon以及Swift本构模型对拉伸真应力-真应变曲线进行了拟合。结果表明:1道次和2道次ECAP挤压后晶粒在剪切方向拉长,并引入了大量亚晶粒。同时,随变形的进行,产生了厚度较小的变形孪晶与二次孪晶。4道次ECAP挤压后,位错和孪晶活动导致微观结构进一步细化。随挤压道次的增加,TWIP钢的屈服强度以及极限抗拉强度升高,而塑性与抗拉韧性不断下降。通过Ludwik、Hollomon以及Swift这3种本构模型对真应力-真应变曲线的拟合程度较好,获得了相应拟合参数,拟合所得参数有助于有限元模拟。经ECAP处理后,应变硬化指数n值明显下降。

       

      Abstract: In order to solve the problems of low yield strength of twinning induced plasticity(TWIP) steel, the grain refinement of TWIP steel were processed by equal channel angular pressing(ECAP). Based on the microstructure analysis and mechanical properties testing, the true stress-true strain curves were fitted by Ludwik, Hollomon and swift constitutive models. The results show that after one pass and two pass of ECAP, the grains elongate in the shear direction, and a large number of sub grains are introduced. At the same time, with the progress of the deformation, the deformation twins and secondary twins with low thickness are produced. After four passes of ECAP, the dislocation and twinning activities lead to further refinement of microstructure. With the increase of ECAP passes, the yield strength and ultimate tensile strength of TWIP steel increase, while the plasticity and tensile toughness decrease. Three constitutive models, Ludwik, Hollomon and swift, were used to fit the true stress-true strain curve well, and the corresponding fitting parameters were obtained. The fitting parameters are helpful to the finite element simulation. After ECAP process, the strain hardening exponent n decreases significantly.

       

    /

    返回文章
    返回