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Effect of Pre-quenching Process on Microstructure and Mechanical Properties in a Nb-microalloyed Low Carbon Q-P Steel

机译:淬火工艺对铌微合金低碳Q-P钢组织和力学性能的影响

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摘要

A refined microstructure consisting of martensite and retained austenite at room temperature has been produced in a Nb-microalloyed low carbon Si-Mn steel by a novel heat-treatment, pre-quenching prior to quenching and partitioning processes (Q&Q-P). The results showed that compared with the conventional quenching and partitioning steel the mechanical properties of steel obtained by the novel treatment have been significantly improved, with a good combination of ultimate tensile strength (1000MPa) and total elongation (above 30%). Meanwhile, the volume fraction of retained austenite has been increased. It was found that the improvement of mechanical properties was mainly attributed to the enhanced TRIP effect due to the relatively high fraction of metastable retained austenite at room temperature. The increased stability of austenite results from the C and Mn partitioning during inter-critical annealing, which increased the chemical stability of austenite. The formation of refined austenite at inter-critical annealing also had a positive effect on the stability of the austenite. As a consequence, the volume fraction of retained austenite at room temperature was significantly increased. Compared with the Q-P steel, the Q&Q-P steel exhibited higher work hardening exponents during the stage of TRIP effect and had the higher ductility.
机译:在Nb微合金化的低碳Si-Mn钢中,通过新颖的热处理,淬火和分配(Q&Q-P)之前的预淬火处理,在室温下形成了由马氏体和残余奥氏体组成的细化组织。结果表明,与传统的淬火和分区钢相比,通过新处理获得的钢的机械性能得到了显着改善,极限抗拉强度(1000MPa)和总伸长率(大于30%)的良好组合。同时,残余奥氏体的体积分数增加了。已经发现,由于在室温下较高比例的亚稳态残留奥氏体,机械性能的改善主要归因于TRIP效应的增强。奥氏体稳定性的提高是由于在临界间退火过程中碳和锰的分配,从而提高了奥氏体的化学稳定性。在临界退火中形成精制奥氏体也对奥氏体的稳定性具有积极的影响。结果,室温下残余奥氏体的体积分数显着增加。与Q-P钢相比,Q&Q-P钢在TRIP效应阶段表现出更高的加工硬化指数,并且具有更高的延展性。

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