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Effect of Bi on the microstructure and mechanical properties of Sn-Zn alloys processed by rolling

机译:BI对轧制加工Sn-Zn合金微观结构和力学性能的影响

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摘要

Sn-Zn based alloys including Sn-3Zn, Sn-3Zn-lBi, and Sn-3Zn-5Bi were prepared by casting and rolling, in efforts to assess their feasibility for the application as cladding materials in detonating and explosive cords. It was found that Bi significantly refined the solidification microstructure, changing the configuration of Sn-Zn eutectic from well-aligned Zn-rich precipitates/needles to misaligned Zn-rich flakes. During deformation, second phases like Zn-rich precipitates and Bi particles, and Bi solutes were effective in grain refinement since second phase particles provided more sites for nucleation and more obstacles to growth of new recrystallized grains. Tensile results revealed that Bi addition enhanced both strength and ductility of the rolled Sn-Zn-Bi alloys. The Sn-3Zn5Bi alloy possessed superior strength and ductility (UTS: 84.4 MPa; Yield strength: 68.3 MPa; Elongation: 75.2%) due to its finest and most homogeneous equiaxed grains. Based on decent mechanical properties, the Sn-Zn-Bi alloys could be well qualified for the application as cladding materials.
机译:通过铸造和轧制制备包括SN-3ZN,SN-3ZN-LBI和SN-3ZN-5BI在内的SN-Zn基合金,以便在努力评估其适用于爆炸和爆炸帘线中的覆层材料作为包层材料的可行性来制备。发现BI显着地精制凝固微观结构,从而改变了Sn-Zn共晶的富良抗沉淀物/针头的构型,以未对准的Zn的薄片。在变形期间,富含富含Zn的沉淀物和Bi颗粒等第二次相对于晶粒细化有效,因为第二相颗粒提供了更多的成核的位点和对新的重结晶颗粒的生长产生的障碍物。拉伸结果表明,BI添加增强了轧制的Sn-Zn-Bi合金的强度和延展性。 SN-3ZN5BI合金具有优异的强度和延展性(UTS:84.4MPa;屈服强度:68.3MPa;伸长:75.2%)由于其优质和最均匀的等式等颗粒。基于体面的机械性能,Sn-Zn-Bi合金可以很好地适用于应用作为包层材料。

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