Comparison of texture evolution in low carbon steel fabricated by plane strain and multi-directional forging of the martensite starting structure

Q4 Materials Science
Mahdi Saalari
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引用次数: 1

Abstract

It has been clarified that deformation and annealing of martensite starting structure can produce ultrafine grained structure in low carbon steel. This study aims to investigate the texture evolution and mechanical properties of samples with martensite structure deformed by two different forging processes. The martensitic steel samples were forged by plane strain compression and multi-directional forging up to the same true strain of 2. All samples were then annealed at 450 and 550°C for 30 min. It was found that the active slip systems in BCT crystalline structure of martensite acted like ferrite steel. After multi-directional forging of martensitic steel, the yield and ultimate strength greatly increased to 1278 and 1658 MPa, respectively. During annealing, in the plane strain compressed sample, the 'oriented nucleation' and in the multi-directional forged specimen, 'selective growth' theory was dominant.
马氏体起始组织平面应变和多向锻造低碳钢组织演变的比较
研究表明,马氏体起始组织的变形和退火可以在低碳钢中产生超细晶粒组织。本研究旨在研究两种不同锻造工艺下马氏体组织试样的织构演变和力学性能。通过平面应变压缩和多向锻造将马氏体钢样品锻造至相同的真实应变2。然后将所有样品在450和550°C下退火30分钟。发现马氏体BCT晶体结构中的活性滑移系统的作用类似于铁素体钢。马氏体钢经多向锻造后,其屈服强度和极限强度分别大大提高到1278和1658MPa。在退火过程中,在平面应变压缩试样中,“定向成核”和在多向锻造试样中,以“选择性生长”理论为主。
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来源期刊
International Journal of Microstructure and Materials Properties
International Journal of Microstructure and Materials Properties Materials Science-Materials Science (all)
CiteScore
0.70
自引率
0.00%
发文量
27
期刊介绍: IJMMP publishes contributions on mechanical, electrical, magnetic and optical properties of metal, ceramic and polymeric materials in terms of the crystal structure and microstructure. Papers treat all aspects of materials, i.e., their selection, characterisation, transformation, modification, testing, and evaluation in the decision-making phase of product design/manufacture. Contributions in the fields of product, design and improvement of material properties in various production processes are welcome, along with scientific papers on new technologies, processes and materials, and on the modelling of processes.
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