improvement of tensile properties of low-carbon steels via short-time intercritical annealing

IF 1.1 Q3 METALLURGY & METALLURGICAL ENGINEERING
M. S. Mohsenzadeh
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Abstract

The effect of low volume fraction formation of martensite on the tensile properties of low carbon steel was evaluated. First, steel samples with ferrite-cementite microstructure were produced. The thermomechanical treatment used included austenitizing at 1000 °C and then quenching in ice brine solution, tempering the obtained martensitic structure for 1 h at 650 °C, 80% cold rolling, and re-tempering for 2 h at 650 °C. In order to form a low volume fraction of martensite, steel samples with ferrite-cementite microstructure were intercritically annealed for 30 seconds at 740 °C. As a result of intercritical annealing treatment, 6.2% martensite was formed. The results of tensile test showed that the formation of 6.2% martensite led to the elimination of yield point phenomenon and Lüders banding, decrease of yield stress and increase of true stress at maximum load, while true uniform strain did not change significantly. The work hardening rate also increased significantly. Based on the results of modeling of the flow behavior with the Holloman equation, the work hardening capability of the steel sample including ferrite-cementite decreased after a certain plastic strain, while the work hardening capacity remained constant with the formation of a low volume fraction of martensite in the microstructure.
短时临界间退火对低碳钢拉伸性能的改善
研究了低体积分数马氏体形成对低碳钢拉伸性能的影响。首先,制备具有铁素体-渗碳体微观结构的钢样品。采用的热处理包括1000℃奥氏体化,然后在冰盐水中淬火,650℃回火1 h, 80%冷轧,650℃再回火2 h。为了形成低体积分数的马氏体,将铁素体-渗碳体组织的钢样品在740℃下进行了30秒的临界退火。经临界间退火处理,形成6.2%的马氏体。拉伸试验结果表明,6.2%马氏体的形成消除了屈服点现象和 ders带状带,最大载荷下屈服应力降低,真应力增加,而真均匀应变变化不显著。加工硬化率也显著提高。基于Holloman方程的流动行为模拟结果表明,含铁素体-渗碳体的钢试样在达到一定塑性应变后加工硬化能力下降,而在微观组织中形成小体积分数的马氏体后加工硬化能力保持不变。
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来源期刊
Acta Metallurgica Slovaca
Acta Metallurgica Slovaca METALLURGY & METALLURGICAL ENGINEERING-
CiteScore
2.00
自引率
30.00%
发文量
22
审稿时长
12 weeks
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