• CN:11-2187/TH
  • ISSN:0577-6686

机械工程学报 ›› 2026, Vol. 62 ›› Issue (4): 180-189.doi: 10.3901/JME.260116

• 材料科学与工程 • 上一篇    

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高镁铝合金焊接接头软化行为对焊接残余应力的影响研究

郑文健1,2, 胡铭汇1, 余洋2, 冯道臣1, 闫德俊2, 杨建国1   

  1. 1. 浙江工业大学机械工程学院 杭州 310023;
    2. 中船黄埔文冲船舶有限公司广东省舰船先进焊接技术企业重点实验室 广州 510715
  • 收稿日期:2025-02-04 修回日期:2025-09-12 发布日期:2026-04-02
  • 作者简介:郑文健,男,1985年出生,博士,副研究员,博士研究生导师。主要研究方向为材料科学工程多尺度模拟仿真、氢能源与金属材料交互作用等。E-mail:zwj0322@zjut.edu.cn
    胡铭汇,男,2000年出生。主要研究方向为焊接数值计算。E-mail:221122020548@zjut.edu.cn
    杨建国(通信作者),男,1975年出生,博士,教授,博士研究生导师。主要研究方向为焊接结构力学与可靠性、疲劳断裂、结构完整性、数值模拟等。E-mail:yangjg@zjut.edu.cn
  • 基金资助:
    国家自然科学基金(52375391)、浙江省“尖兵”“领雁”研发攻关计划(2023C01244)和浙江省博士后科研择优(ZJ2023055)资助项目。

Study on the Influence of Softening Behavior of High Magnesium Aluminum Alloy Welded Joint on Welding Residual Stress

ZHENG Wenjian1,2, HU Minghui1, YU Yang2, FENG Daochen1, YAN Dejun2, YANG Jianguo1   

  1. 1. College of Mechanical Engineering, Zhejiang University of Technology, Hangzhou 310023;
    2. Guangdong Provincial Key Laboratory of Advanced Welding Technology for Ships, CSSC Huangpu Wenchong Shipbuilding Company Limited, Guangzhou 510715
  • Received:2025-02-04 Revised:2025-09-12 Published:2026-04-02

摘要: 在高镁铝合金焊接过程中由于热输入量大,焊接接头通常会出现软化现象。为了研究高镁铝合金焊接接头的软化机理以及软化行为对焊接残余应力的影响,对焊接接头进行显微硬度测试,焊缝区和热影响区出现了不同程度的软化,通过微观表征发现造成这种现象的主要原因是由于弥散强化和固溶强化的削弱所导致。通过分析硬度变化趋势,并结合有限元模拟焊接过程中的温度场,建立软化程度受焊接峰值温度影响的软化模型。将此软化模型应用到应力场计算中,并与盲孔法测量焊接残余应力值进行比对。结果表明,在考虑软化模型时,残余应力在焊缝区、热影响区出现不同程度的降低,与实验结果相比,考虑软化模型焊接残余应力数值更加接近实验测量值。

关键词: 高镁铝合金, 固溶强化, 弥散强化, 软化模型, 焊接残余应力, 有限元模拟

Abstract: In the high magnesium aluminum alloy welding process, due to the large heat input, welding joints often show softening phenomena. In order to study the softening mechanism of high magnesium aluminum alloy welding joints and the influence of softening behavior on welding residual stresses, microhardness tests were conducted on the welding joints, and softening of different degrees was found in the weld zone and heat-affected zone. Microscopic characterization revealed that the main reason for this phenomenon was the weakening of dispersion strengthening and solute strengthening. By analyzing the trend of hardness change and combining finite element simulation of temperature field during welding process, a softening model that is affected by welding peak temperature was established. This softening model was applied to the calculation of stress field and compared with the measured welding residual stress value by blind hole method. The results show that when considering the softening model, the residual stress in the weld zone and heat-affected zone decreases to different degrees, and the calculated welding residual stress value considering the softening model is closer to the measured value than the experimental measurement value.

Key words: high magnesium aluminum alloy, solid solution strengthening, dispersion strengthening, softening model, welding residual stress, finite element simulation

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