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形變誘導析出在SAF2205超塑組織細化中的作用

Effect of Strain-Induced Transformation on Grain Refinement of SAF2205 during Superplastic Deformation

  • 摘要: 運用變形能、相變溫度、原始晶粒尺寸與金屬組織細化之間的關系,提出了控制σ相析出的新方法.在此基礎上,用分段恒溫拉伸的方法,對SAF2205鋼恒溫熱拉伸后的性能和微觀組織進行了實驗研究.研究結果表明:采用變溫的恒溫熱拉伸方法,通過快速冷卻,使σ相的析出發生在變形過程中,細小、彌散分布的σ相可以抑制晶粒的長大;為了保證σ相的形變誘導析出,實現雙相不銹鋼的低溫超塑性變形,需要采用較快的冷卻速度.

     

    Abstract: A theoretic equation of deformation work, phase transformation temperature, initial grain size and metal structure was analyzed, and a method of controlling the precipitation of σ phase was provided. On this basis, the properties and microstructures of SAF2205 duplex stainless steel during isothermal hot tensile tests were investigated by means of stepped isothermal tension. The result shows that, with the method of fast cooling and temperature-changed isothermal hot tension, the precipitation of σ phase can happen during the deformation, and the tiny and dispersed σ phase can limit the growth of the grains. In order to realize the strain-induced precipitation of σ phase and the superplastic deformation of duplex stainless steel in lower temperatures, a faster cooling velocity needs to be applied.

     

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