Effect of thermal ageing on tensile-plastic flow and work hardening parameters of Indian reduced activated Ferritic Martensitic steel

IF 0.9 4区 材料科学 Q3 METALLURGY & METALLURGICAL ENGINEERING
K. C. Sahoo, K. Laha
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引用次数: 0

Abstract

Effect of thermal ageing (873 K/5000 h) on microstructure, tensile-plastic flow and work hardening parameters of normalized and tempered (N&T) 1.4W-0.06Ta Indian Reduced Activated Ferritic Martensitic (INRAFM) steel was investigated. Hollomon, Ludwigson and Voce equations were used to explain the tensile-plastic flow response of the INRAFM steel over a wide temperature range of 300-873 K. Variations of strain hardening exponent was found to increase on ageing due to increase in work hardening capability of aged steel while strain hardening coefficient decreased on ageing. TEM specimens extracted near the tensile tested specimen of different temperatures were used to correlate the formation and movement of dislocation debris structure of both N&T and thermal aged specimens. Tensile plastic flow behavior at different temperatures was appropriately represented by Hollomon. Ludwigson and Voce equations and best fitting was adjudged by the goodness of fit (i.e. lowest ?2 values). Both yield strength (YS) and ultimate tensile strength (UTS) were fitted by the initial stress and saturation stress respectively as per the Voce constitutive equation and variations of initial stress and saturation stress with temperature were observed for N&T and aged steel. The absolute value of Voce strain component (nv) decreases due to ageing exhibiting two-stage behaviour with increase in temperature. The acceleration of recovery process was found lower at high temperature in case of steel subjected to thermal ageing as compared to N&T steel. Voce relation has been successfully used to predict the yield stress (YS) and ultimate tensile strength (UTS) of both thermal aged and N&T IN-RAFM steel at different temperatures.
热时效对印度还原活化铁素体马氏体钢拉伸塑性流动和加工硬化参数的影响
研究了873 K/5000 h热时效对正火回火(N&T) 1.4W-0.06Ta印度还原活化铁素体马氏体(INRAFM)钢组织、拉伸塑性流动和加工硬化参数的影响。采用Hollomon、Ludwigson和Voce方程解释了INRAFM钢在300-873 K宽温度范围内的拉伸-塑性流动响应。随着时效钢加工硬化能力的提高,应变硬化指数的变化幅度增大,而应变硬化系数随时效而减小。利用在不同温度下拉伸试样附近提取的TEM试样,对比了N&T和热时效试样的位错碎片结构的形成和运动。不同温度下的拉伸塑性流动行为用Hollomon表示。Ludwigson和Voce方程和最佳拟合是通过拟合优度(即最低?2值)来判断的。根据Voce本构方程分别用初始应力和饱和应力拟合屈服强度(YS)和极限抗拉强度(UTS),观察了N&T和时效钢的初始应力和饱和应力随温度的变化规律。随着温度的升高,声应变分量的绝对值随老化而减小,表现为两阶段老化。与N&T钢相比,经热时效处理的钢在高温下恢复过程的加速速度较低。利用voice关系式成功地预测了热时效和N&T IN-RAFM钢在不同温度下的屈服应力(YS)和极限抗拉强度(UTS)。
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来源期刊
CiteScore
2.00
自引率
40.00%
发文量
19
审稿时长
2 months
期刊介绍: University of Belgrade, Technical Faculty in Bor, has been publishing the journal called Journal of Mining and Metallurgy since 1965 and in 1997 it was divided in two independent journals dealing with mining and metallurgy separately. Since 2009 Journal of Mining and Metallurgy, Section B: Metallurgy has been accepted in Science Citation Index Expanded. Journal of Mining and Metallurgy, Section B: Metallurgy presents an international medium for the publication of contributions on original research which reflect the new progresses in theory and practice of metallurgy. The Journal covers the latest research in all aspects of metallurgy including hydrometallurgy, pyrometallurgy, electrometallurgy, transport phenomena, process control, solidification, mechanical working, solid state reactions, materials processing, surface treatment and relationships among processing, structure, and properties of materials.
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