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Investigation on High Strength Hot-rolled Plates by Quenching-partitioning-tempering Process Suitable for Engineering

机译:适用于工程的高强热轧板淬火-分区-回火工艺研究

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Designed Fe-0.25C-1.5Mn-1.2Si-1.5Ni-0.05Nb (mass%) hot-rolled plates with different thicknesses are subjected to a novel quenching-partitioning-tempering (Q-P-T) process suitable for engineering with water quenching followed by salt bath tempering or water quenching followed by air cooling. A passing underwater quenching equipment (PUQE) is specially designed for realization of the Q-P-T process suitable for engineering. The tensile results show that the Q-P-T samples exhibit both high yield strength of over 900 MPa and elongation of over 15%. Microstructural characterization indicates that the high strength is attributed to the dislocation-type lath martensite or bainite and the dispersively distributed NbC-carbides in the martensite matrix, and the adequate elongation results from the flake-like retained austenite between martensite laths. In addition, effects of the retained austenite in Q-P-T steels on mechanical properties and the feasibility of Q-P-T processes for engineering industry applications are discussed.
机译:将设计好的厚度不同的Fe-0.25C-1.5Mn-1.2Si-1.5Ni-0.05Nb(质量%)热轧板进行新颖的淬火-分区-回火(QPT)工艺,该工艺适用于水淬后的工程盐浴回火或水淬,然后空冷。通过的水下淬火设备(PUQE)专为实现适用于工程的Q-P-T工艺而设计。拉伸结果表明,Q-P-T样品既具有超过900 MPa的高屈服强度,又具有超过15%的伸长率。显微组织表征表明,高强度归因于位错型板条马氏体或贝氏体以及马氏体基体中分散分布的NbC碳化物,马氏体板条之间的片状残留奥氏体产生了足够的伸长率。此外,还讨论了Q-P-T钢中残留奥氏体对机械性能的影响以及Q-P-T工艺在工程行业中的可行性。

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