焊丝中Ni元素含量对钛/钢异种材料焊接接头组织和性能的影响

Effect of Ni element content in welding wire on microstructure and mechanical properties of titanium/steel dissimilar material welded joints

  • 摘要:
    目的 钛/钢异种材料焊接在航空航天、石油化工及海洋工程等领域具有重要的工程应用价值。然而,由于钛与铁物理性质的差异,导致焊接接头性能严重恶化。针对生产过程中钛/钢异种材料焊接困难等问题,采用含Ni焊丝解决异种材料焊接问题和提升焊接质量。
    方法 该文采用熔化极气体保护焊接方法和不同Ni含量的Cu-Ni系焊丝对TC4钛合金和Q235钢进行异种材料焊接,研究焊丝中不同Ni含量对焊接接头微观组织和力学性能的影响。
    结果 试验结果表明,焊丝中高的Ni含量导致焊接过程不稳定,使得焊接接头性能降低;Ni含量对焊缝微观组织也有很大的影响,Ni含量较低时,TC4钛合金和Q235钢两侧焊缝分别形成富Ni和富Cu的树枝晶,熔合线两侧由于母材Fe和Ti元素的扩散,同时与Ni和Cu元素结合,形成了明显的焊接界面层;增加焊丝中Ni含量,焊缝微观组织由树枝晶向富Ni胞状组织和富Cu网状组织组合形成的微观组织转变,并且焊缝硬度提高。
    结论 研究可知,Ni元素能提高焊缝强度,但是高的Ni元素含量导致焊接过程不稳定,因此采用CuNi10焊丝能够得到较好的钛/钢异种材料焊接接头。

     

    Abstract: Objective Welding of titanium/steel dissimilar materials has significant engineering application value in fields such as aerospace, petrochemical industries, and marine engineering. However, due to physical property differences between titanium and steel, performance of welded joints is severely deteriorated. In response to challenges such as difficulties in welding titanium/steel dissimilar material during production process, Ni-containing welding wires are employed to address these issues and enhance welding quality. Methods Dissimilar materials of TC4 titanium alloy and Q235 steel were welded by gas shielded metal arc welding method and Cu-Ni welding wires with different Ni contents, and effect of different Ni contents in welding wires on microstructure and mechanical properties of welded joints was studied in this paper. Results The test results show that high Ni content in welding wire leads to instability of welding process, which reduces performance of welded joints. Ni content also has a great influence on microstructure of weld. When Ni content is low, Ni-rich dendrites and Cu-rich dendrites are formed on both sides of weld of TC4 titanium alloy and Q235 steel respectively. Due to Fe and Ti elements diffusion of base metal on both sides of fusion line, while combining with Ni and Cu elements, an obvious welding interface layer is formed. With the increase of Ni content in welding wire, microstructure of weld changes from dendrite to microstructure formed by the combination of Ni-rich cellular structure and Cu-rich network structure, and hardness of weld increases. Conclusion Research shows that Ni can enhance weld strength. However, excessive Ni content causes instability of welding process. Therefore, employing CuNi10 welding wire results in satisfactory dissimilar material welded joints between titanium and steel.

     

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