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Groove Design and Microstructure Research of Ultra-Fine Grain Bar Rolling

机译:超细晶粒棒材轧制的沟槽设计和组织研究

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New flat-oval groove rolling process of multi-direction deformation is proposed to manufacture ultra-fine grain bar. Application of new groove series can introduce uniform large plastic strain into whole cross section of the material, and meanwhile satisfy the requirements of shape and size. Principle of grain refinement, based on experimental research of small specimen, is that grain refinement of ferrite is mainly dynamic recrystallization when low-carbon alloy steel is at low temperature deformation. Relationship of grain size and z-factor is also obtained through experimental research, as well as ultra-fine ferrite grain less than 1 micron. To predict strain, shape, dimensions and grain size of the material in rolling process, numerical simulation model of the warm groove bar rolling process is established via nonlinear finite element method, and distribution of grain size of the final section is obtained via finite element subroutine. The result indicates that ultra-fine grain bar rolling can accomplish at low temperature region.
机译:提出了一种多方向变形的扁椭圆槽轧制新工艺,以制造超细晶粒棒材。新沟槽系列的应用可以在材料的整个横截面上引入均匀的大塑性应变,同时满足形状和尺寸的要求。基于小试样实验研究的晶粒细化原理是,低碳合金钢在低温变形时,铁素体的晶粒细化主要是动态再结晶。还通过实验研究获得了晶粒尺寸与z因子的关系,以及小于1微米的超细铁素体晶粒。为了预测材料在轧制过程中的应变,形状,尺寸和晶粒尺寸,采用非线性有限元方法建立了温槽棒材轧制过程的数值模拟模型,并通过有限元子程序获得了最终截面的晶粒尺寸分布。 。结果表明,超细晶棒轧制可在低温区域完成。

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