A Combined Microscopy Study of the Microstructural Evolution of Ferritic Stainless Steel upon Deep Drawing: The Role of Alloy Composition

IF 3.3 Q2 ENGINEERING, MANUFACTURING Journal of Manufacturing and Materials Processing Pub Date : 2024-01-01 DOI:10.3390/jmmp8010006
A. Núñez, I. Collado, M. de la Mata, Juan F. Almagro, David L. Sales
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Abstract

Ferritic stainless steel (FSS) is widely used to manufacture deep-drawn products for corrosion resistance applications, being the alloy drawability strongly affected by its microstructural anisotropy. This study combines a variety of microscopy techniques enabling in-depth analyses of the microstructural evolution of two different FSSs correlated to their deep drawing performance. One of the steels has a good correspondence with the standard EN-1.4016 (AISI 430). The other is a modified version of the previous one with higher contents of the ferrite-stabilising elements Si and Cr, and lower contents of the austenite-stabilising elements C, N, and Mn. Electron Backscatter Diffraction results confirm that the microstructural properties and drawability of FSS in the deep drawing process are improved in the modified steel version. Scanning transmission electron microscopy under low-angle annular dark field conditions evidences that the deformation mechanism of FSS during deep drawing follows a microstructural distortion model based on the grain size gradient and shows a variation of the deformation texture depending on the alloy composition. This work demonstrates the potential of advanced microscopy techniques for optimising the processing and design of ferritic stainless steels, with slight variations in the alloy composition, for deep drawing applications.
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铁素体不锈钢深拉时微结构演变的组合显微镜研究:合金成分的作用
铁素体不锈钢(FSS)被广泛用于制造耐腐蚀深冲产品,其合金的可拉伸性受其微观结构各向异性的影响很大。本研究结合多种显微镜技术,深入分析了两种不同 FSS 的微观结构演变与其深拉性能的相关性。其中一种钢与 EN-1.4016 标准(AISI 430)有很好的对应关系。另一种是前一种的改进型,铁素体稳定元素 Si 和 Cr 含量较高,奥氏体稳定元素 C、N 和 Mn 含量较低。电子反向散射衍射结果证实,改良钢在深拉工艺中的微观结构特性和 FSS 的可拉伸性得到了改善。低角度环形暗场条件下的扫描透射电子显微镜证明,FSS 在深拉过程中的变形机制遵循基于晶粒尺寸梯度的微结构变形模型,并显示出变形纹理随合金成分而变化。这项工作表明,先进的显微镜技术具有优化铁素体不锈钢加工和设计的潜力,合金成分略有不同的铁素体不锈钢可用于深冲压应用。
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来源期刊
Journal of Manufacturing and Materials Processing
Journal of Manufacturing and Materials Processing Engineering-Industrial and Manufacturing Engineering
CiteScore
5.10
自引率
6.20%
发文量
129
审稿时长
11 weeks
期刊最新文献
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