Fe-0.7wt.%C-2.3wt.%Si-0.3wt的等温回火相变行为。% Mn钢

Sang-Yun Shin, Do-Hoon Lee, Seo-Eun Kim, B. Ye
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引用次数: 1

摘要

在Fe-0.7wt.%C-2.3wt.%Si-0.3wt中等温回火相变行为。对%Mn钢进行了研究。每个试样在900℃下进行60分钟的高温热处理,然后在380℃下进行2分钟至256分钟不等的等温热处理。等温热处理后,使用光学金相、x射线衍射和图像分析进行I阶段和II阶段的演变。铁素体和奥氏体的x射线衍射图和晶格参数的变化表明,残余奥氏体在第二阶段演化过程中分解为铁素体和碳化物;铁素体的数量在第I阶段逐渐增加。第一阶段奥氏体数量增加,第二阶段奥氏体数量减少。总体而言,第一阶段和第二阶段组织体积分数和碳化物形成的变化符合奥氏体组织的高温等温回火反应。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
The Austempering Transformation Behavior of Fe-0.7wt.%C-2.3wt.%Si-0.3wt.%Mn Steel
The austempering transformation behavior in Fe-0.7wt.%C-2.3wt.%Si-0.3wt.%Mn steel is investigated. Each specimen was aus-tenitized for 60 min at 900 o C, and austempered at 380 o C for different time periods varying from 2 min to 256 min. After the austempering heat treatment, the Stage I and II evolutions are performed using optical metallography, X-ray diffraction and image analyses. Variations in the X-ray diffraction patterns and lattice parameters of the ferrite and austenite demonstrate that the residual austenite decomposes into ferrite and carbide during the Stage II evolution; moreover the amount of ferrite increases during the Stage I evolution. While the amount of austenite increases during Stage I, it dicreases during Stage II. Overall, the variations in the volume fractions of the microstructure and carbide formation in stages I and II meet high temperature austempering reaction of the ausferrite microstructure.
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