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攪拌摩擦加工IF鋼的組織性能

Microstructure and mechanical properties of friction stir processed IF steel

  • 摘要: 對3 mm厚的DC04冷軋IF鋼板進行攪拌摩擦加工,研究加工區域的微觀組織與力學性能.在旋轉速度為950 r·min-1,加工速度為60 mm·min-1時,采用加工后強制冷卻技術可獲得光滑平整且沒有缺陷的加工表面.攪拌摩擦加工后組織顯著細化,加工中心的平均顯微硬度約為HV 135.6,是母材硬度的1.4倍,表面細晶層硬度最高可達到HV 312.8,細晶層和過渡層的抗拉強度分別比母材的抗拉強度提高50.9%和47.6%,加工前后試樣的拉伸斷口均呈微孔聚合韌性斷裂特征.細晶強化對材料抗拉強度的提高起主要作用.

     

    Abstract: Friction stir processing was applied to cool-rolled DC04 IF steel plates with a thickness of 3 mm,and the microstructure and mechanical properties of the processed zone were investigated. A defect-free specimen with a shiny and smooth surface is fabricated at a tool rotation rate of 950 r·min-1 and a travel speed of 60 mm·min-1 using additional forced cooling technology after processing.A fine equiaxed grain structure can be obtained in the processed zone,which causes a higher hardness of HV 135.6,1.4 times as large as the base metal at the center of the processed zone,and the highest hardness of HV 312.8 in the surface. The ultimate tensile strength of processed samples with and without the surface fine-grained layer increases by 50.9% and 47.6% compared to that of the base material,respectively. The both fracture surfaces of samples before and after friction stir processing exhibit dimple ductile fracture characterization. Grain refinement is considered to be the main reason for improving the ultimate tensile strength.

     

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