表面涂油量对铝合金螺柱焊熔池形貌及力学性能的影响

Influence of surface oil coating amount on morphology of welding pools and mechanical properties in stud welding of aluminum alloys

  • 摘要:
    目的 旨在研究铝合金表面涂油量对螺柱焊接头组织及性能的影响。
    方法 以汽车板常用AA5182铝合金为基板,利用宏观形貌、晶粒组织、力学性能及断口分析,研究表面涂油量从0~1.00 mg/m2变化过程中螺柱焊组织及力学性能的变化。
    结果 结果表明,螺柱焊焊接接头分为焊缝区、熔合区和热影响区。焊缝区为等轴晶粒组织,熔合区为柱状晶粒组织,热影响区宽度较小,且晶粒未发生明显长大。随着基板涂油量的增加,螺柱焊熔池气孔数量及大小均显著提高,当涂油量增加到0.50 mg/m2时,焊接熔池存在较多的气孔缺陷,且熔池外溢显著,螺柱法兰完全熔化。熔池产生明显的焊接飞溅,气孔数量及尺寸显著增大。随着基板表面涂油量的增加,焊接接头的抗拉力从3 815 N降低到3 168 N,降低了17.0%;破坏扭矩从9.18 N·m降低到6.94 N·m,降低了24.4%。
    结论 基板表面涂油量对螺柱焊焊接熔池气孔缺陷和接头力学性能影响显著,为保证螺柱焊接头的连接质量,铝合金基板表面涂油量应小于0.50 mg/m2

     

    Abstract: Objective The influence on microstructure and properties of stud welded joints in relation to oil coating amount on aluminum alloy surfaces was investigated. Methods Using AA5182 aluminum alloy that commonly used for automotive panels as the substrate, by means of macroscopic morphologies, grain microstructure, mechanical properties, and fracture analysis, changes of microstructure and mechanical properties of stud welding during the variation of surface oil coating amount from 0 to 1.00 mg/m2 were studied. Results The results indicated that stud welded joints were divided into weld zones, fusion zones, and heat affected zones. Weld zones exhibited equiaxed grain microstructure, while fusion zones displayed columnar grain microstructure. The width of heat affected zones was relatively small, and there was no significant grain growth. As oil coating amount applied to the substrate increased, the number and size of pores in the stud welding pools increased dramatically. As oil coating amount increased to 0.50 mg/m2, there existed more pore defects in the welding pools, and welding pools overflowed significantly, which caused the flange of stud melting completely. Welding pools produced obvious welding spatter, and the number and size of pores increased significantly. With the increase of oil coating amount on the substrate surface, tensile resistance of welded joints decreased from 3 815 N to 3 168 N with a decrease of 17.0%, and destructive torque decreased from 9.18 N·m to 6.94 N·m with a decrease of 24.4%. Conclusion Oil coating amount on the substrate surface had significant impact on porosity defects and mechanical properties in stud welding. To ensure joining quality of stud welding, oil coating amount on the aluminum alloy surface should be less than 0.50 mg/m2.

     

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