The Influence of Flash Welding Parameters on the Microstructure and Mechanical Performance of Dissimilar Steel Welded Joints

IF 2.2 4区 材料科学 Q3 MATERIALS SCIENCE, MULTIDISCIPLINARY Journal of Materials Engineering and Performance Pub Date : 2024-09-05 DOI:10.1007/s11665-024-09859-9
Xin Jia, Lin Wang, Zhenduo Ma, Zhiwei Yang, Jianping Xu, Junjie Wang
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Abstract

In the present paper, duplex stainless steel was utilized as an insert for welding high manganese steel frog to high-carbon steel rail under three flash welding processes. The effect of the number of flashes and upsetting force on mechanical performance and microstructure of the welded joints was studied. The results showed that the impact energy of the inserts after welding experienced a significant reduction in the 524-6 (with the number of flashes reduced to 6) and 772-8 (with the upsetting force increased to 772 kN) welded joints compared to the 524-8 welded joint (with an upsetting force of 524 kN and 8 flashes). The other mechanical performances of the welded joints under the three states did not differ significantly. No cracks were observed in the transition regions between the high manganese steel and the insert in any of the three welded joints. Nevertheless, notable micro-voids were present in the 524-6 welded joint. The ferrite in the insert of the 524-6 joint was distributed in a horizontal streamline and continuous strip shape. Conversely, in the 524-8 and 772-8 welded joints, the ferrite was distributed in an arch bridge shape. However, the arch amplitude of the ferrite bridge in the insert of the 772-8 welded joint was larger, and the center of the insert was contained a greater number of ferrites. Furthermore, the severe stress concentration in the middle of the insert of the 524-6 and 772-8 welded joints, coupled with the large amount of ferrite in the middle of the insert of the 772-8 welded joint, were the primary reasons for the diminished impact energy of the insert for these two joints.

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闪光焊接参数对异种钢焊接接头微观结构和机械性能的影响
本文利用双相不锈钢作为嵌件,在三种闪光焊接工艺下将高锰钢蛙板焊接到高碳钢导轨上。研究了闪光次数和镦粗力对焊接接头机械性能和微观结构的影响。结果表明,与 524-8 焊接接头(镦粗力为 524 kN,8 次闪光)相比,524-6 焊接接头(闪光次数减少到 6 次)和 772-8 焊接接头(镦粗力增加到 772 kN)焊接后插入件的冲击能量显著降低。三种状态下焊点的其他机械性能差异不大。在三个焊点中,均未在高锰钢和插入件之间的过渡区域发现裂纹。不过,在 524-6 焊点中出现了明显的微空洞。524-6 焊点插入件中的铁素体呈水平流线型和连续条状分布。相反,在 524-8 和 772-8 焊点中,铁素体呈拱桥状分布。不过,772-8 焊点插入件中铁素体桥的拱形振幅更大,插入件中心含有更多铁素体。此外,524-6 和 772-8 焊接接头插入件中部的严重应力集中,加上 772-8 焊接接头插入件中部的大量铁素体,是这两个接头插入件冲击能量降低的主要原因。
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来源期刊
Journal of Materials Engineering and Performance
Journal of Materials Engineering and Performance 工程技术-材料科学:综合
CiteScore
3.90
自引率
13.00%
发文量
1120
审稿时长
4.9 months
期刊介绍: ASM International''s Journal of Materials Engineering and Performance focuses on solving day-to-day engineering challenges, particularly those involving components for larger systems. The journal presents a clear understanding of relationships between materials selection, processing, applications and performance. The Journal of Materials Engineering covers all aspects of materials selection, design, processing, characterization and evaluation, including how to improve materials properties through processes and process control of casting, forming, heat treating, surface modification and coating, and fabrication. Testing and characterization (including mechanical and physical tests, NDE, metallography, failure analysis, corrosion resistance, chemical analysis, surface characterization, and microanalysis of surfaces, features and fractures), and industrial performance measurement are also covered
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