首页> 外文期刊>Journal of Materials Engineering and Performance >The Strain-Hardening Behavior of Partially Austenitized and the Austempered Ductile Irons with Dual Matrix Structures
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The Strain-Hardening Behavior of Partially Austenitized and the Austempered Ductile Irons with Dual Matrix Structures

机译:双矩阵结构的部分奥氏体和奥氏体球墨铸铁的应变强化行为

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In the current study, an unalloyed ductile iron containing 3.50 C wt.%, 2.63 Si wt.%, 0.318 Mn wt.%, and 0.047 Mg wt.% was intercritically austenitized (partially austenitized) in two-phase regions (α + γ) at different temperatures for 20 min and then was quenched into salt bath held at austempering temperature of 365 °C for various times to obtain different ausferrite plus proeutectoid ferrite volume fractions. Fine and coarse dual matrix structures (DMS) were obtained from two different starting conditions. Some specimens were also conventionally austempered from 900 °C for comparison. The results showed that a structure having proeutectoid ferrite plus ausferrite (bainitic ferrite + high-carbon austenite (retained or stabilized austenite)) has been developed. Both of the specimens with ~75% ausferrite volume fraction (coarse structure) and the specimen with ~82% ausferrite volume fraction (fine structure) exhibited the best combination of high strength and ductility compared to the pearlitic grades, but their ductility is slightly lower than the ferritic grades. These materials also satisfy the requirements for the strength of the quenched and tempered grades and their ductility is superior to this grade. The correlation between the strain-hardening rates of the various austempered ductile iron (ADI) with DMS and conventionally heat-treated ADI microstructures as a function of strain was conducted by inspection of the respective tensile curves. For this purpose, the Crussard-Jaoul (C-J) analysis was employed. The test results also indicate that strain-hardening behavior of ADI with dual matrix is influenced by the variations in the volume fractions of the phases, and their morphologies, the degree of ausferrite connectivity and the interaction intensities between the carbon atoms and the dislocations in the matrix. The ADI with DMS generally exhibited low strain-hardening rates compared to the conventionally ADI.
机译:在当前的研究中,在两相区(α+γ)内对含有3.50 C wt。%,2.63 Si wt。%,0.318 Mn wt。%和0.047 Mg wt。%的未合金球墨铸铁进行了奥氏体化(部分奥氏体化) )在不同的温度下保持20分钟,然后淬火到在365°C的奥氏体温度下保持不同时间的盐浴中,以获得不同的奥氏体和共析铁素体的体积分数。从两个不同的起始条件获得了精细和粗糙的双矩阵结构(DMS)。某些样品也按常规从900°C进行回火以作比较。结果表明,已经开发了具有共析铁素体铁素体和奥氏体(贝氏体铁素体+高碳奥氏体(残留或稳定的奥氏体))的组织。与珠光体等级相比,奥氏体体积分数〜75%的试样(粗组织)和奥氏体体积分数〜82%的试样均具有高强度和延展性的最佳组合,但延展性略低比铁素体不锈钢这些材料还满足淬火和回火钢种的强度要求,并且其延展性优于该钢种。通过检查各自的拉伸曲线,可以得出带有DMS的各种奥氏体球墨铸铁(ADI)与常规热处理的ADI微结构之间的应变硬化率之间的相关关系。为此,使用了Crussard-Jaoul(C-J)分析。测试结果还表明,双相ADI的应变硬化行为受相体积分数及其形态,奥氏体连接度和碳原子与位错之间相互作用强度的变化的影响。矩阵。与传统的ADI相比,带有DMS的ADI通常显示出较低的应变硬化速率。

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