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奥氏体不锈钢与耐磨钢的异种激光焊接:焊后热处理强化的微观组织演变及力学性能

Dissimilar Laser Welding of Austenitic Stainless Steel and Abrasion-Resistant Steel: Microstructural Evolution and Mechanical Properties Enhanced by Post-Weld Heat Treatment.

作者信息

Hietala Mikko, Jaskari Matias, Ali Mohammed, Järvenpää Antti, Hamada Atef

机构信息

Kerttu Saalasti Institute, University of Oulu, FI-85500 Nivala, Finland.

Materials and Mechanical Engineering Unit, University of Oulu, Pentti Kaiteran Katu 1, FI-90014 Oulu, Finland.

出版信息

Materials (Basel). 2021 Sep 26;14(19):5580. doi: 10.3390/ma14195580.

Abstract

In this study, ultra-high-strength steels, namely, cold-hardened austenitic stainless steel AISI 301 and martensitic abrasion-resistant steel AR600, as base metals (BMs) were butt-welded using a disk laser to evaluate the microstructure, mechanical properties, and effect of post-weld heat treatment (PWHT) at 250 °C of the dissimilar joints. The welding processes were conducted at different energy inputs (EIs; 50-320 J/mm). The microstructural evolution of the fusion zones (FZ) in the welded joints was examined using electron backscattering diffraction (EBSD) and laser scanning confocal microscopy. The hardness profiles across the weldments and tensile properties of the as-welded joints and the corresponding PWHT joints were measured using a microhardness tester and universal material testing equipment. The EBSD results showed that the microstructures of the welded joints were relatively similar since the microstructure of the FZ was composed of a lath martensite matrix with a small fraction of austenite. The welded structure exhibited significantly higher microhardness at the lower EIs of 50 and 100 J/mm (640 HV). However, tempered martensite was promoted at the high EI of 320 J/mm, significantly reducing the hardness of the FZ to 520 HV. The mechanical tensile properties were considerably affected by the EI of the as-welded joints. Moreover, the PWHT enhanced the tensile properties by increasing the deformation capacity due to promoting the tempered martensite in the FZ.

摘要

在本研究中,使用圆盘激光对超高强度钢,即冷硬化奥氏体不锈钢AISI 301和马氏体耐磨钢AR600作为母材进行对接焊接,以评估异种接头的微观结构、力学性能以及250℃的焊后热处理(PWHT)效果。焊接过程在不同的能量输入(EIs;50 - 320 J/mm)下进行。使用电子背散射衍射(EBSD)和激光扫描共聚焦显微镜检查焊接接头中熔合区(FZ)的微观结构演变。使用显微硬度计和通用材料测试设备测量焊件的硬度分布以及焊态接头和相应PWHT接头的拉伸性能。EBSD结果表明,焊接接头的微观结构相对相似,因为FZ的微观结构由含有少量奥氏体的板条马氏体基体组成。在50和100 J/mm的较低EIs下,焊接结构表现出明显更高的显微硬度(640 HV)。然而,在320 J/mm的高EIs下促进了回火马氏体的形成,显著降低了FZ的硬度至520 HV。焊态接头的EI对机械拉伸性能有相当大的影响。此外,PWHT通过促进FZ中的回火马氏体增加变形能力,从而提高了拉伸性能。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/725c/8509454/beda9af0f81a/materials-14-05580-g001.jpg

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