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Effects of Oxide Particles and Solute Elements on Austenite Grain Growth in Fe-0.05mass%C and Fe-10mass%Ni Alloys

机译:Fe-0.05mass%C和Fe-10mass%Ni合金中氧化物颗粒和溶质元素对奥氏体晶粒长大的影响

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摘要

The inhibition effects of oxide particles and solute elements on austenite grain growth have been studied in an Fe-0.05mass%C and Fe-10mass%Ni alloys deoxidized with Mn-Si, Ti, Mg, Zr and Ce as a function of content of soluble deoxidant elements and holding time at 1 200℃. Total surface area of austenite grains per unit volume which is inversely proportional to austenite grain size is analyzed as a function of total surface area of particles per unit volume and content of soluble deoxidant elements. It is found that in Mn-Si, Ti and Mg deoxidations, the austenite grain size is controlled only by the effect of particle pinning, while in Zr and Ce deoxidations the austenite grain size is controlled by both particle pinning and solute drag. The inhibition effect of soluble Zr and Ce increases significantly with increasing their contents. The effect of particle dragging in Ce deoxidation increases with increasing the holding time at 1 200℃. The contribution of particle pinning, particle dragging and solute drag to austenite grain growth is estimated as a function of deoxidant elements and holding time at 1 200℃.
机译:在Mn-Si,Ti,Mg,Zr和Ce脱氧的Fe-0.05mass%C和Fe-10mass%Ni合金中,研究了氧化物颗粒和溶质元素对奥氏体晶粒生长的抑制作用。可溶性脱氧元素,保持时间为1200℃。分析每单位体积的奥氏体晶粒的总表面积与奥氏体晶粒尺寸成反比,它是每单位体积的颗粒总表面积与可溶性脱氧元素含量的函数。发现在Mn-Si,Ti和Mg脱氧中,奥氏体的晶粒尺寸仅受颗粒钉扎的影响,而在Zr和Ce脱氧中,奥氏体晶粒尺寸由颗粒的钉扎和溶质阻力共同控制。可溶性Zr和Ce的含量随其含量的增加而显着增加。 Ce脱氧中的颗粒拖曳效应随着在1200℃下的保持时间的增加而增加。根据脱氧元素和在1200℃下的保持时间,估计了钉扎,颗粒拖曳和溶质拖曳对奥氏体晶粒长大的贡献。

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