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Enhanced Stability of Retained Austenite by Quenching and Double Partitioning Process

机译:通过淬火和双分隔过程提高保留奥氏体的稳定性

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In the present study, a novel quenching and double partitioning (Q&DP) process is proposed. The quenching and partitioning (Q&P) process was accompanied by a second partitioning process, which led to the enhanced stability of retained austenite. The chemical composition of the investigated steel was 0.24C-1.9Mn-1.85Si, without an excess addition of alloying elements. This process aims to enhance the stability of retained austenite by controlling martensitic transformation and carbon partitioning. By applying this process, the uniform and total elongation is increased, without obvious reduction in ultimate tensile strength. An optimum combination of strength and ductility (ultimate tensile strength: 1304MPa; total elongation: 23%) was achieved by quenching to 65°C and subsequent second partitioning treatment, after the first quenching to 300°C and partitioning process. The enhanced mechanical properties were attributed to the increased amount of stabilized film-like austenite.
机译:在本研究中,提出了一种新的淬火和双分配(Q&DP)过程。淬火和分配(Q&P)工艺伴随着第二分区过程,其导致了保持奥氏体的增强稳定性。所研究的钢的化学成分为0.24℃-1.9mn-1.85si,没有过量加入合金元素。该方法旨在通过控制马氏体转化和碳分配来增强保留奥氏体的稳定性。通过施加该过程,均匀和总伸长率增加,无明显降低极限拉伸强度。通过淬火至65℃和随后的第二分隔处理,实现了强度和延展性的最佳强度和延伸强度:1304MPa;总伸长率:23%),在第一次淬火至300℃并分配过程中。增强的机械性能归因于稳定的薄膜样奥氏体的量增加。

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