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首页> 外文期刊>Steel Research International >Microstructual Evolution of a Nb-Microalloyed Advanced High Strength Steei Treated by Quenching-Partitioning-Tempering Process
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Microstructual Evolution of a Nb-Microalloyed Advanced High Strength Steei Treated by Quenching-Partitioning-Tempering Process

机译:淬火-分区-回火工艺处理的Nb微合金高强度高强钢的组织演变

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摘要

The recently developed "quenching and partitioning" heat treatment and "quenching-partitioning-tempering" heat treatment are novel processing technologies, which are designed for achieving advanced high strength steels (AHSS) with combination of high strength and adequate ductility. Containing adequate amount of austenite phase is an important characteristic of the above steel, and the partitioning treatment is a key step in Q&P or Q-P-T process during which the austenite phase is enriched with carbon and achieves thermal stability. However, the microstructural evolution of the steel during the partitioning process is rather complicated. In present study, evolution of complex microstructure in a low carbon steel containing Nb during the Q-P-T process has been studied in detail. The microstructural evolution of the steel was investigated in terms of X-ray diffraction, scanning electron microscope and transmission electron microscope. The experimental results show that the Nb-microalloyed steel demonstrates a complex multiphase microstructure which consists of lath martensite with high dislocation density, retained austenite, alloy carbide, transition carbide, and a few twin martensite after the Q-P-T process. The experimental results can be helpful for the design of Q-P-T heat treatment and for the control of mechanical properties of Q-P-T steel.
机译:最近开发的“淬火和分区”热处理和“淬火-分区-回火”热处理是新颖的加工技术,旨在实现具有高强度和足够延展性的先进高强度钢(AHSS)。含有足够量的奥氏体相是上述钢的重要特征,在Q&P或Q-P-T工艺中,分隔处理是奥氏体相富含碳并达到热稳定性的关键步骤。但是,在分配过程中钢的微观组织演变相当复杂。在本研究中,已经详细研究了Q-P-T过程中含Nb的低碳钢中复杂组织的演变。通过X射线衍射,扫描电子显微镜和透射电子显微镜研究了钢的组织演变。实验结果表明,铌微合金钢表现出复杂的多相组织,该组织由高位错密度的板条马氏体,残留奥氏体,合金碳化物,过渡碳化物和经过Q-P-T处理的少量双马氏体组成。实验结果可为Q-P-T热处理的设计和Q-P-T钢的力学性能的控制提供帮助。

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