Cu-Cr-Zr合金搅拌摩擦焊接头微观组织与性能研究

    Microstructure and Properties of Friction Stir Welding Joint of Cu-Cr-Zr Alloy

    • 摘要: 采用搅拌摩擦焊(friction stir welding,FSW)方法焊接了4 mm厚的Cu-Cr-Zr合金板,FSW后对接头进行时效处理,分别研究FSW和时效处理对焊接接头微观组织、力学性能和导电性能的影响。结果表明:与母材相比,FSW接头焊核区(NZ)的显微硬度和导电性能均显著下降,主要是FSW过程中,搅拌针的剧烈搅拌作用使得材料发生严重的塑性变形,产生大量的热量,沉淀相Cr颗粒发生溶解,沉淀强化作用严重减弱。与FSW接头相比,时效处理后接头NZ的显微硬度和电导率均得到显著提升,主要是由于溶解在Cu基体中的沉淀相Cr颗粒重新析出并均匀分布在Cu基体中,沉淀强化作用明显增强,且对电子的散射几率减小。

       

      Abstract: Cu-Cr-Zr alloy plate with a thickness of 4 mm was welded by using friction stir welding(FSW). After FSW,aging treatment of the joint was carried out. The effect of FSW and aging treatment on the microstructure, mechanical properties and electrical conductivity of the welded joint was studied respectively. The results show that compared with those of base metal, the microhardness and conductivity of nugget zone of the FSW joint are significantly reduced. The main reason is that in the process of FSW, the violent stirring effect of stirring needle causes serious plastic deformation of the material and a lot of heat, the precipitation phase Cr particles are dissolved, and the precipitation strengthening effect is seriously weakened.Compared with those of the FSW joint, the microhardness and electrical conductivity of the joint after aging treatment are significantly increased. The reason is that the Cr particles dissolved in Cu matrix re-precipitate and evenly distribute in the Cu substrate, the precipitation strengthening effect is obviously enhanced, and the scattering probability of electrons decreases.

       

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