Hot compression deformation behavior and processing map of pure nickel N6
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摘要: 利用Gleeble-3800熱模擬試驗機對純鎳N6在變形溫度800~1100℃,應變速率5~40 s-1,應變量70%條件下進行了高溫塑性變形壓縮試驗,分析純鎳N6高溫高應變速率熱變形行為,得到了材料在不同變形參數條件下的組織變化規律及流變應力變化曲線,利用動態材料模型繪制出了純鎳N6在不同應變條件下的熱加工圖.通過對組織及熱加工圖的分析研究,得出變形溫度為1000~1100℃,應變速率為5~7 s-1或20~40 s-1以及變形溫度為800~900℃,應變速率為5~10 s-1為純鎳N6材料高溫高應變速率熱變形的兩個合理變形參數區間,在參數區間內N6組織均勻;而流變失穩區變形參數條件下得到的組織比較紊亂,晶粒大小不一.純鎳N6熱變形后的晶粒尺寸隨變形溫度升高及應變速率減小而增大.Abstract: Hot compression deformation experiment of pure nickel N6 was conducted on a Gleeble-3800 thermomechanical simulator at a deformation temperature range of 800 to 1100℃, a deformation rate range of 5 to 40 s-1 and at a deformation of 70%. The hot deformation behavior of this material was analyzed at high temperature and high deformation rate. The microstructural evolution and the flow stress curves were obtained at different deformation parameters. The processing maps were drawn by using the dynamic material model. Through analyzing the microstructures and the processing maps, two reasonable regions are introduced for processing pure nickel N6:the deformation temperature range of 1000 to 1100℃ and the deformation rate range of 5 to 7 s-1 or 20 to 40 s-1; the deformation temperature range of 800 to 900℃ and the deformation rate range of 5 to 10 s-1. In these two regions, the microstructure of pure nickel N6 is uniform, while in the region of rheological instability the microstructure is disordered and the grain size is varied. The grain size of pure nickel N6 after hot deformation goes up as the deformation temperature rises or the deformation rate declines.
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Key words:
- pure nickel /
- hot deformation /
- processing maps /
- dynamic recrystallization /
- rheological behavior
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