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開軋溫度對鈮微合金化熱成型鋼氫致延遲開裂性能的影響

Effect of initial rolling temperature on the hydrogen-induced delayed fracture of Nb alloyed hot stamping steel

  • 摘要: 通過動態充氫恒載荷、氫滲透等實驗研究軋制工藝對鈮合金化熱成型鋼的氫致延遲開裂性能的影響.隨著開軋溫度從1000℃降低到950℃,熱成型鋼的氫擴散系數降低,氫致延遲開裂性能提高,耐腐蝕性能下降.透射電鏡觀察發現開軋溫度為1000℃時MX型析出相尺寸為30 nm;開軋溫度為950℃時熱成型鋼的MX型析出相尺寸為5 nm左右,可以觀察到直徑為50 nm Cr2C3析出相.作為氫陷阱的納米析出相是提高實驗鋼氫致延遲開裂性能的主要因素.析出相不同的原因是開軋溫度為1000℃時MX型析出相發生熟化現象,進一步抑制Cr2C3的析出.

     

    Abstract: The effect of initial rolling temperature on the hydrogen-induced delayed fracture resistance of Nb alloyed hot stamping steel was studied by the constant load test and the electrochemical hydrogen permeation method. When the initial rolling temperature drops from 1000℃ to 950℃,the hydrogen diffusion coefficient and the corrosion resistance of the steel decrease,but the hydrogen-induced delayed fracture resistance increases. TEM test shows that when the initial rolling temperature is 1000℃,the MX precipitated phase has an average size of 30 nm,and the Cr2C3 precipitated phase can be observed with an average size of 100 nm; when the initial rolling temperature is 950℃,the MX precipitated phase has an average size of 5 nm. The main reason leading to the improvement of delayed fracture resistance is the hydrogen trapping effect of the MX precipitated phase. The reason for the difference of precipitated phases is that a higher rolling start temperature will prompt the coarsening of the MX precipitated phase,which will suppress the precipitation of the Cr2C3 phase.

     

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