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固溶處理對S32707特超級雙相不銹鋼析出相、組織及性能影響

Solution treatment effect on precipitates, microstructure, and properties of S32707 hyper-duplex stainless steel

  • 摘要: 通過Thermo-Calc熱力學計算、OM和FE-SEM觀察、力學性能和腐蝕性能試驗對不同固溶溫度下的特超級雙相不銹鋼進行分析和研究。結果表明:σ相和非平衡氮化物是固溶水冷組織中的主要析出相,當固溶溫度低于1050 ℃時,σ相優先沿雙相界面析出,顯著降低雙相不銹鋼的沖擊韌性;當固溶溫度高于1100 ℃,非平衡氮化物開始在鐵素體晶粒內部析出,且隨著固溶溫度的升高,非平衡氮化物析出數量增加。這是由于固溶水冷過程中氮在鐵素體中的溶解度快速降低,過飽和的氮來不及擴散到相鄰奧氏體中,只能以氮化物的形式析出。隨固溶溫度升高,鐵素體含量增加,奧氏體含量降低,實驗鋼的強度增加,沖擊韌性降低。在1080~1120 ℃之間固溶時,雙相比例接近1∶1,S32707特超級雙相不銹鋼具有優良的綜合力學性能和耐晶間腐蝕性能。

     

    Abstract: Duplex stainless steel (DSS) has been widely used in some harsh environments, such as flue gas shedding and seawater desalination, because of its high strength and corrosion resistance. These excellent properties rely on a high alloy content (Cr, Mo, N, etc.) and perfect dual-phase equilibrium. The dual-phase equilibrium mainly includes dual-phase proportion balance, properties balance, and absence of clear secondary phase in the solid solution structure. As one of the main developmental directions of DSS, hyper-duplex stainless steel (HDSS) has attracted much attention in recent years. In this paper, the effects of solution treatment on precipitates, microstructure, and properties of S32707 HDSS were studied by Thermo-Calc thermodynamic calculation, OM and FE-SEM observation, mechanical properties, and corrosion property tests. The results showed that σ phase and non-equilibrium nitrides were the main precipitates of solution-treated HDSS. When the solution temperature was lower than 1050 ℃, the σ phase precipitated preferentially along the dual-phase boundaries, which significantly reduced the impact toughness of HDSS. When the solution temperature was higher than 1100 ℃, non-equilibrium nitrides precipitated in ferrite grains, and the number of non-equilibrium nitrides increased with an increase in solution temperature. The reason for the non-equilibrium nitride precipitation was that the nitrogen content in the ferrite increased with an increase in temperature. This led to the supersaturation of nitrogen in the ferrite grains during the rapid cooling process. Under such conditions, the finely dispersed non-equilibrium nitrides precipitated in the ferrite grains. With increasing solution temperature, the content of the ferrite increased, the content of austenite decreased, the strength increased, and the impact toughness decreased. The optimal solution temperature of HDSS was 1080?1120 ℃. Under this condition, the ratio of duplex was close to 1∶1, and the S32707 hyper duplex stainless steel presented excellent comprehensive mechanical properties and intergranular corrosion resistance.

     

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