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首页> 外文期刊>Metallurgical and Materials Transactions, A. Physical Metallurgy and Materials Science >Microstructure and Mechanical Properties of V-Nb Microalloyed Ultrafine-Grained Dual-Phase Steels Processed Through Severe Cold Rolling and Intercritical Annealing
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Microstructure and Mechanical Properties of V-Nb Microalloyed Ultrafine-Grained Dual-Phase Steels Processed Through Severe Cold Rolling and Intercritical Annealing

机译:通过严重冷轧和跨临界退火处理V-NB微合金超细粒化双相钢的微观结构和力学性能

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摘要

Ultrafine-grained (UFG) dual-phase (DP) steel was produced by severe cold rolling (true strain of 2.4) and intercritical annealing of a low carbon V-Nb microalloyed steel in a temperature range of 1003 K to 1033 K (730 A degrees C to 760 A degrees C) for 2 minutes, and water quenching. The microstructure of UFG DP steels consisted of polygonal ferrite matrix with homogeneously distributed martensite islands (both of size < 1 A mu m) and a small fraction of the inter lath films of retained austenite. The UFG DP steel produced through intercritical annealing at 1013 K (740 A degrees C) has good combination of strength (1295 MPa) and ductility (uniform elongation, 13 pct). The nanoscale V- and Nb-based carbides/carbonitrides and spheroidized cementite particles have played a crucial role in achieving UFG DP microstructure and in improving the strength and work hardening. Analysis of work hardening behavior of the UFG DP steels through modified Crussard-Jaoul analysis showed a continuously varying work hardening rate response which could be approximated by 2 or 3 linear regimes. The transmission electron microscopy analysis on post tensile-tested samples indicated that these regimes are possibly related to the work hardening of ferrite, lath, and twin martensite, respectively.
机译:通过严重的冷轧(真菌为2.4)和低碳V-NB微合金钢的温度范围为1003k至1033k(730a度C至760℃)2分钟,并水淬火。 UFG DP钢的微观结构由多边形铁氧体基质组成,具有均匀分布的马氏体岛(尺寸<1 a mu m)和保留奥氏体的帧间薄膜的一小部分。通过1013 k(740℃)的跨临界退火产生的UFG DP钢具有良好的强度(1295MPa)和延性(均匀伸长,13pct)。纳米级V-和Nb基碳化物/碳氮化物和球化渗碳晶酯颗粒在实现UFG DP微观结构以及改善强度和工作硬化方面发挥了至关重要的作用。通过改进的Crussard-jaoul分析对UFG DP钢的工作硬化行为分析表明,连续改变的工作加固率响应响应,其可以近似2或3个线性制度。透射电子显微镜分析在张力后试验样品的分析表明,这些制度分别可能与铁氧体,板条和双马氏体的工作硬化有关。

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