通过激光焊接和实时高频电阻加热制造的高强度低合金钢接头

IF 6.7 2区 材料科学 Q1 ENGINEERING, INDUSTRIAL Journal of Materials Processing Technology Pub Date : 2024-08-27 DOI:10.1016/j.jmatprotec.2024.118573
Zheng Ye , Biaobiao Yang , Wanli Wang , Jian Yang , Jihua Huang
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引用次数: 0

摘要

对于高强度低合金钢的激光焊接来说,如何在软化和硬化之间取得平衡仍然是一个巨大的挑战。例如,为避免软化,通常采用低热输入焊接,但这会使接头反向硬化,并引入氢致裂纹等不希望出现的焊接缺陷。这项工作提出了一种简单而稳健的加工技术,即高频电子激光焊接。激光热源与高频电热源相结合,平衡了热输入分布,协调了高强度低合金钢焊接中软化与硬化的矛盾。作为一种对焊接软化和硬化敏感的结构材料,S690QL 钢被采用来展示新工艺的根本性进步。由于高频电流的集肤效应和邻近效应改善了热输入分布并调节了高频热输入比例,热影响区的马氏体含量大大降低,同时晶粒尺寸被限制在较低值。在 47.1 % 的高频热输入比例下,整个热影响区分布着较低的贝氏体。因此,接头的软化和硬化问题同时得到了改善:接头的抗拉强度几乎与母材相当,焊缝和热影响区的冲击能分别达到 77.6 J 和 66.2 J。
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High strength low alloy steel joint fabricated by laser welding with real-time high-frequency resistance heating

The balance between softening and hardening is still a great challenge for the laser welding of the high strength low alloy steel. For example, welding with low heat input was commonly used to avoid softening, but it would inversely harden the joint and introduce the undesired welding defects such as hydrogen-induced cracks. This work proposed a simple and robust processing technique, denominated High Frequency electric cooperated Laser Welding. Laser heat source was combined with high-frequency electric heat source to balance heat input distribution and reconcile the contradiction between softening and hardening in the welding of high strength low alloy steel. As a structural material sensitive to welding softening and hardening, S690QL steel was adopted to show the fundamental advancement of the new process. Benefitted from the skin effect and proximity effect of high-frequency current that improve the heat input distribution and the regulation of the high-frequency heat input proportion, the martensite content in the heat affected zone was greatly reduced, whilst the grain size was limited to a low value. Under the high-frequency heat input proportion of 47.1 %, lower bainite distributed throughout the heat affected zone. The softening and hardening issues of the joint therefore have been improved simultaneously: the tensile strength of the joint was almost equal to that of the base material, the impact energy of weld seam and the heat affected zone reached 77.6 J and 66.2 J respectively.

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来源期刊
Journal of Materials Processing Technology
Journal of Materials Processing Technology 工程技术-材料科学:综合
CiteScore
12.60
自引率
4.80%
发文量
403
审稿时长
29 days
期刊介绍: The Journal of Materials Processing Technology covers the processing techniques used in manufacturing components from metals and other materials. The journal aims to publish full research papers of original, significant and rigorous work and so to contribute to increased production efficiency and improved component performance. Areas of interest to the journal include: • Casting, forming and machining • Additive processing and joining technologies • The evolution of material properties under the specific conditions met in manufacturing processes • Surface engineering when it relates specifically to a manufacturing process • Design and behavior of equipment and tools.
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