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Structure and Properties of a Low-Carbon, Microalloyed, Ultra-High-Strength Steel

机译:低碳微合金超高强度钢的组织和性能

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The current study concerns the development of a low-carbon, microalloyed ultra-high-strength steel on a pilot scale. The continuous cooling transformation has been evaluated, and a flat top “C” curve with a mixed microstructure of bainite and martensite has been obtained at a lower transformation temperature. The steel has been processed thermomechanically, followed by air cooling and water quenching. In addition, a variation in microstructure and mechanical properties at different finish rolling temperatures has been studied. Although a mixture of granular bainite and bainitic ferrite with interlath and intralath precipitation of NbC/NbC(N)/TiC(N) particles are the characteristic microstructural feature of air-cooled steel, the lath martensitic structure along the fine NbC/NbC(N)/TiC(N) precipitate is obtained in case of a water-quenched steel. The high-strength value obtained in the current steel is caused by the accumulated contribution of fine-grained, pancaked austenite, highly dislocated fine lath martensitic structure along with the presence of tiny precipitates of microalloy carbide/carbonitride.
机译:当前的研究涉及中试规模的低碳,微合金超高强度钢的开发。对连续冷却相变进行了评估,并在较低的相变温度下获得了具有贝氏体和马氏体混合组织的平顶“ C”曲线。对钢进行了热机械加工,然后进行空气冷却和水淬。另外,研究了在不同精轧温度下组织和机械性能的变化。尽管粒状贝氏体和贝氏体铁素体的混合以及层间和内部析出的NbC / NbC(N)/ TiC(N)颗粒是风冷钢的特征显微组织特征,但板条马氏体组织沿NbC / NbC(N在水淬钢的情况下会获得)/ TiC(N)沉淀。当前钢中获得的高强度值是由细晶粒,薄饼状奥氏体,高位错细板条马氏体组织的累积贡献以及微合金碳化物/碳氮化物的微小析出物引起的。

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