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随焊旋转冲击抑制6061-T6铝合金接头热影响区软化行为

Softening behavior in the heat-affected zone of 6061-T6 aluminum alloy joints inhibited by rotational impact with welding

  • 摘要: 针对6061-T6铝合金热影响区在焊接过程中,因局部加热峰值温度过高所导致的过时效软化问题,提出一种在焊接过程中采用随焊旋转冲击方法,对焊接接头过时效软化区进行加载而抑制焊接接头软化的新思路. 对随焊旋转冲击工艺作用下的接头热影响区,进行显微组织和硬度测试.结果表明:在随焊旋转冲击作用下,接头热影响区硬度明显提高,软化区内析出相尺寸减小且数量增加,软化程度得到抑制. 采用Material studio软件分析理想条件下6061铝合金主要的时效析出相相变与应力之间的关系,结果表明,β″相和β相在压力下的稳定性较好,β′相对压力更加敏感,在一定压力范围内发生了晶格常数畸变;随着作用力的增大,时效析出序列发生了改变.

     

    Abstract: The serious softening phenomenon can be observed in the heat-affected zone of 6061-T6 aluminum alloy during the welding process in order to inhibit this welding defect, the aging softening zone of the welded joint was loaded by the rotation impact during the welding process. To illustrate the performance of the heat-affected zone of welded joints under different process parameters, the microstructure, hardness and corrosion resistance tests were carried out. The results show that the hardness of the heat-affected zone of the joint increases significantly, the size and number of precipitated phases in the softening zone decrease and increase, and the softening degree is inhibited under the action of rotational impact with welding. The material studio software was used to analyze the relationship between the phase transformation and stress of the main aging precipitation phases of 6061 aluminum alloy under ideal conditions, and the calculation results showed that the stability of the β" phase and the β phase under pressure was better, and the relative pressure of β′ was more sensitive, and the lattice constant distortion occurred within a certain pressure range. With the increase of the force, the aging precipitation sequence changes.

     

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