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Microstructures and Properties of a Low-Carbon-Chromium Ferritic Stainless Steel Treated by a Quenching and Partitioning Process

机译:淬火-分配工艺处理的低碳铬铁素体不锈钢的组织和性能

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摘要

Low chromium ferritic stainless steel has great potential in automobile structures for improved strength. In this study, quenching and partitioning (Q-P) treatment was applied to a low-carbon-chromium ferritic stainless steel and compared with traditional heat treatment (quenching-tempering [Q-T] and annealing) in terms of microstructure, mechanical properties, corrosion resistance, and deformation of plate. The results show that the quenching and partitioning (Q-P) treatment has a series of advantages over conventional heat treatments (quenching-tempering and annealing). In terms of mechanical properties, it achieves a good match between strength and plasticity by combining the advantages of “soft state” with high elongation resulting from conventional annealing and high strength "hard state” through the traditional quenching-tempering process. The material possesses better crash safety; for the quenching-partitioning (Q-P) process, quenching-tempering process, and annealing process, the production of strength plasticity is about 16 GPa%, 15 GPa%, and 14 GPa%, respectively. The material has low yield strength, high work hardening index (compared with Q-T), a smooth tensile curve, and no yield plateau (compared with annealing), so it has better forming performance and processing surface, and the corrosion resistance has also improved. The pitting potential of the samples produced by the quenching treatment of Q-P and Q-T increased by about 0.2 V, which is about 20% higher than the one by the traditional annealing process.
机译:低铬铁素体不锈钢在汽车结构中具有提高强度的巨大潜力。在这项研究中,淬火和分配(QP)处理应用于低碳铬铁素体不锈钢,并与传统热处理(淬火回火[QT]和退火)相比,在微观结构,力学性能,耐腐蚀性,和板的变形。结果表明,淬火和分配(Q-P)处理相对于常规热处理(淬火回火和退火)具有一系列优势。在机械性能方面,它结合了传统退火带来的“软态”和高伸长率以及传统淬火回火工艺带来的高强度“硬态”优势,从而在强度和塑性之间实现了良好的匹配。碰撞安全性;对于淬火-分区(QP)工艺,淬火-回火工艺和退火工艺,强度可塑性分别约为16 GPa%,15 GPa%和14 GPa%,屈服强度低。 ,较高的加工硬化指数(与QT相比),平滑的拉伸曲线以及无屈服平稳期(与退火相比),因此具有更好的成型性能和加工表面,并且耐蚀性也得到了改善。通过QP和QT的淬火处理产生的金属增加了约0.2 V,这比传统退火工艺得到的高出约20%。

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