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銅包鋁絲材的旋鍛復合-拉拔成形與組織性能

Rotary swaging-drawing formation, microstructure, and properties of copper-clad aluminum composite micro-wires

  • 摘要: 采用"熱旋鍛-拉拔"方法制備了直徑為φ65 μm、包覆銅層厚度較均勻、表面質量高和界面結合質量良好的銅包鋁復合微絲,研究了合理熱旋制度、熱旋復合成形銅包鋁線材的組織和界面結合狀態以及中間退火和拉拔對線材組織與性能的影響.結果表明:合理的旋鍛制度為旋鍛溫度350℃,單道次變形量40%,旋鍛后形成了動態再結晶組織和厚度為0.7 μm的界面擴散層.復合線材的合理退火工藝參數為350℃/30 min (退火溫度350℃、退火時間30 min),該條件下退火后線材延伸率達到最高值35.7%,界面擴散層厚度約為2.1 μm,退火后銅層和鋁芯發生再結晶,組織內部形成等軸晶組織.當退火溫度超過350℃時,銅層和鋁芯晶粒長大,界面擴散層厚度增加,從而導致線材的延伸率下降.將單道次變形量控制在15%~20%,經過粗拉,制備了φ0.96 mm的絲材;粗拉后不進行退火處理,將單道次變形量控制在8%~15%,經過細拉,制備了表面光潔、直徑為φ65 μm的復合微絲.在拉拔過程中,銅層和鋁芯均出現〈111〉絲織構.

     

    Abstract: Copper-clad aluminum wires are extensively applied in aerospace, telecommunications, national defense industry, and other fields, because of the combined advantages of the excellent conductivity, thermal conductivity, and low contact resistance of copper and the low density, corrosion resistance, and low costs of aluminum. In this study, a composite wire with high interfacial bonding quality was obtained by hot rotary swaging, which can be utilized in manufacturing to achieve high efficiency and high quality because of its feature of the large single-pass deformation. The processed wire was then prepared by drawing into micro-wires, and given this, a simple, inexpensive, and highly efficient method for preparing micro-wires was developed in this study. Copper-clad aluminum wires with a diameter of φ65 μm, uniformly thick coating, glossy surface, and good interfacial bonding were prepared by the hot rotary swaging-drawing method. The rotary swaging parameters and the microstructure and interfacial bonding of the composite wire were studied, and the effects of drawing and intermediate annealing on its microstructure and properties were discussed. The results show that the reasonable swaging parameters are 350℃ swaging temperature with 40% single-pass deformation. After the rotary swaging, dynamic recrystallization microstructures and interface diffusion layer with thickness of 0.7 μm are formed. The optimum annealing parameter is 350℃/30 min (350℃ annealing temperature with 30 min annealing time), under which the elongation reaches 35.7%, the thickness of interface diffusion layer is 2.1 μm, and the copper layer and the aluminum core are recrystallized with the formation of equiaxed grains. When the annealing temperature exceeds 350℃, copper and aluminum grains and the interface layer thickness increase, which will lead to a lower wire elongation. A wire of φ0.96 mm is fabricated by a 15%-20% single-pass deformation, and then the φ65 μm diameter wire is manufactured by an 8%-15% single-pass deformation without annealing. In the drawing process, 〈111〉 silk texture appears in the copper layer and the aluminum core.

     

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