屈服强度为890 MPa、屈服强度为贝氏体-马氏体的经济合金化船舶用钢在钒微合金化时的组织形成过程

O. Sych, S. V. Korotovskaya, N. S. Novoskoltsev, E. Khlusova
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引用次数: 0

摘要

研究了奥氏体晶粒在加热过程中的生长动力学,以及在热塑性变形的不同温度-变形条件下发生的动态和静态再结晶过程的特征。在保证屈服强度为890 MPa的低碳低合金钢中,研究了热加工奥氏体在连续冷却过程中的相变。建立了形成精细分散贝氏体-马氏体组织的边界温度-变形条件,并在此基础上开发了工业条件下生产厚板轧制产品的工艺模式。介绍了强度为890级的造船用节约合金钢35mm厚轧制薄板的结构和性能。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Structure forming processes in economically alloyed shipbuilding steel of 890 MPa yield strength level with a bainite-martensite structure when microalloyed with vanadium
The kinetics of growth of austenite grains during heating, the features of the processes of dynamic and static recrystallization occurring under various temperature-deformation regimes of hot plastic deformation have been studied. Phase transformations have been studied during continuous cooling of hot-worked austenite in a low-carbon low-alloy steel with a guaranteed yield strength of 890 MPa. As a result, the boundary temperature-deformation conditions for the formation of a finely dispersed bainite-martensite structure were established, on the basis of which technological modes for the production of thick-plate rolled products in industrial conditions were developed. The structure and properties of rolled sheets 35 mm thick from shipbuilding sparingly alloyed steel of strength level 890 are presented.
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