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Twin-roll strip casting: A competitive alternative for the production of high-manganese steels with advanced mechanical properties

机译:双辊薄带连铸:生产具有先进机械性能的高锰钢的有竞争力的替代品

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摘要

In this work, a high-manganese Fe-29Mn-0.3C TWIP steel was produced by twin-roll strip casting and subjected to additional thermo-mechanical treatment. The evolution of microstructure and texture in each processing condition was investigated and correlated with the corresponding mechanical properties. Due to pronounced microsegregations, chemical gradients and an inhomogeneous microstructure in the as-cast and hot-rolled material, regions of strongly varying stacking fault energy caused undesired austenite-martensite transformation and inhomogeneous mechanical properties. The specimens after additional cold rolling and annealing at temperatures as low as 900 ℃ revealed a microstructure with a homogeneous grain size distribution and significantly reduced microsegregations. The resulting mechanical properties were comparable to those of industrial advanced high strength steels and TWIP steel produced by conventional processing, where energy-consuming homogenization is necessary. Therefore, twin-roll strip casting offers the possibility for cost-effective processing of TWIP steel with competitive mechanical properties.
机译:在这项工作中,通过双辊薄带连铸生产了高锰含量的Fe-29Mn-0.3C TWIP钢,并对其进行了额外的热机械处理。研究了每种加工条件下微观结构和织构的演变,并将其与相应的机械性能相关联。由于铸态和热轧材料中明显的微偏析,化学梯度和不均匀的微观结构,堆垛层错能变化很大的区域会引起不希望的奥氏体-马氏体转变和不均匀的机械性能。在低至900℃的温度下进行额外的冷轧和退火后,试样显示出具有均匀晶粒尺寸分布且显着减少的微观偏析的显微组织。所产生的机械性能可与需要进行耗能均质化的常规加工生产的工业高级高强度钢和TWIP钢相比。因此,双辊薄带连铸为具有竞争机械性能的TWIP钢的经济高效加工提供了可能性。

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