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Microstructure Evolution of HSLA Pipeline Steels after Hot Uniaxial Compression

机译:热单轴压缩后HSLA管线钢的组织演变

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摘要

The mechanical properties of the high-strength low-alloy pipeline steels were mainly controlled by the subsequent phase transformations after rolling. The influence of hot uniaxial compression on the phase transformation of acicular ferrite was explored by viewing of the deformation degree, the deformation temperature, and the strain rate. The results show that the increase of deformation amounts raises the transformation starting and finishing temperature during the subsequent cooling and also promotes the polygonal ferrite transformation, which leads to the decrease of Vickers hardness accordingly. With the increasing of the deformation temperature, the achieved microstructure becomes coarsened and thus decreases the hardness. As the strain rate increases, the microstructure is refined and thus the hardness increases gradually; increasing the strain rate appropriately is beneficial to the refinement of the microstructure.
机译:高强度低合金管线钢的力学性能主要受轧后相变的影响。通过观察变形程度,变形温度和应变速率,探讨了热单轴压缩对针状铁素体相变的影响。结果表明,变形量的增加在随后的冷却过程中提高了相变的开始和结束温度,并促进了多边形铁素体相变,从而导致维氏硬度相应降低。随着变形温度的升高,获得的显微组织变粗糙,从而降低了硬度。随着应变率的增加,显微组织会细化,因此硬度会逐渐增加。适当增加应变率有利于微结构的细化。

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