简介概要

Precipitation Characteristics and Mechanism of Vanadium Carbides in a V-Microalloyed Medium-Carbon Steel

来源期刊:Acta Metallurgica Sinica2018年第11期

论文作者:Xiao-Lin Pan Minoru Umemoto

文章页码:1197 - 1206

摘    要:The precipitation characteristics and mechanism of vanadium carbides during isothermal transformation at 650 ℃ in a V-microalloyed medium-carbon steel were investigated through scanning electron microscopy and transmission electron microscopy as well as dilatometry test. Five morphologies of vanadium carbides were found to precipitate at different nucleation sites during the transformation. Two kinds of interphase precipitation form simultaneously in both pro-eutectoid and pearlitic ferrites. The linear arrays of fine interphase precipitates are parallel to the c/a interface, and the fine needles of interphase precipitates are perpendicular to the c/a interface. The vanadium carbides of long or short fibers, coarse particles and fine particles form in both pro-eutectoid and pearlitic ferrites, displaying different precipitation distributions and orientation relationships with ferrite. The precipitation mechanisms of vanadium carbide precipitates with different modes were proposed, and the precipitation sequence of various vanadium carbide precipitates was finally ascertained.

详情信息展示

Precipitation Characteristics and Mechanism of Vanadium Carbides in a V-Microalloyed Medium-Carbon Steel

Xiao-Lin Pan1,Minoru Umemoto2

1. School of Metallurgy, Northeastern University2. Department of Mechanical Engineering, Toyohashi University of Technology

摘 要:The precipitation characteristics and mechanism of vanadium carbides during isothermal transformation at 650 ℃ in a V-microalloyed medium-carbon steel were investigated through scanning electron microscopy and transmission electron microscopy as well as dilatometry test. Five morphologies of vanadium carbides were found to precipitate at different nucleation sites during the transformation. Two kinds of interphase precipitation form simultaneously in both pro-eutectoid and pearlitic ferrites. The linear arrays of fine interphase precipitates are parallel to the c/a interface, and the fine needles of interphase precipitates are perpendicular to the c/a interface. The vanadium carbides of long or short fibers, coarse particles and fine particles form in both pro-eutectoid and pearlitic ferrites, displaying different precipitation distributions and orientation relationships with ferrite. The precipitation mechanisms of vanadium carbide precipitates with different modes were proposed, and the precipitation sequence of various vanadium carbide precipitates was finally ascertained.

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