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低碳鋼中以氧化物為核心針狀鐵素體的形成

Nucleation of intragranular ferrite at oxide particles in low carbon steel

  • 摘要: 通過高溫熱擴散結合法系統地研究了在含CaO,CeO2的低碳鋼中晶內針狀鐵素體形核現象.實驗結果表明:鋼中針狀鐵素體的形核是由穩定的氧化物CaO,CeO2質點非均勻形核引起的.在CaO,CeO2氧化物周圍存在明顯應變區,它是晶內針狀鐵素體非均勻形核起支配作用的驅動力,可以在一個夾雜氧化物上多處形核,同時形成大量新的奧氏體/鐵素體高能內界面,提供發生激發形核的表面效應.氧化物尺寸在0.1~0.6μm范圍內對形成晶內針狀鐵素體效果最好.

     

    Abstract: The intragranular nucleation phenomena of ferrite in low carbon steels with oxides of CaO and CeO2 were studied using a method of hot diffusion bonding. The experimental results showed that the fine intragranular acicular ferrite structure in low carbon steels with oxides of CaO and CeO2 was induced by heterogeneous nucleation of ferrite plates at fine dispersed CaO and CeO2 particles. There were large thermally induced strain regions in the neighbourhood of CaO and CeO2. The presence of these regions provided dominant driving force for the nucleation of acicular ferrite, which led to multiple nucleations on the inclusion. Meanwhile a large quantity of new austenite/ferrite high energy interfaces formed, which provided the surface effect of the sympathetical nucleation. The optimum size of oxides for adequate nucleation of acicular ferrite was 0.1 to 0.6μm.

     

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