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A mechanism of slagline wear of ggaphite-bonded zirconia submerged nozzle during continuous casting of steel

机译:钢铁连续铸造过程中基因键合氧化锆浸没喷嘴的机制

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Polished and thin sections from used graphite-bonded CaO-stabilized zirconia submerged entry nozzles were observed under the optical microscopes and by means of the electron optics. A new mechanism for the excessive slagline attack is advanced as follows: Once graphite dissolves in the metal, the slag comes in contract with zirconia particles embedded in the graphite bond which have been receded in contour. The graphite bond reduces SIO_2, Na_2O MgO and probably B_2O_3 in the mold flux to SiO, Na, Mg and B. The gaseous products diffuse into ZrO_2 particles through their pores and oxidize to form lowmelting compounds, thus destabilizing the zirconia. In addition, the compounds etch grain boundaries, resulting in loose particles with well-defined roundness. Fresh slag penetrates the weakended particles and breaks then down into pieces, which are, in turn, dispersed into the slag. When the slag reaches the graphite-rich region, the metal replaces the slag. The process then repeats itself.
机译:在光学显微镜下观察到来自二手石墨键合的CaO稳定的氧化锆浸没进入进入喷嘴的抛光和薄切片。通过电子光学介绍。过度渣土攻击的新机制如下:一旦石墨溶解在金属中,炉渣就与嵌入在轮廓中的石墨键中的氧化锆颗粒中的合同。石墨键将SiO_2,Na_2O MgO和模具助焊剂中的B_2O_3减少到SiO,Na,Mg和B中。气态产物通过孔扩散到Zro_2颗粒中并氧化以形成低熔化化合物,从而使氧化锆变得稳定。另外,化合物蚀刻晶界,导致具有明确均定义的圆度的松散颗粒。新鲜炉渣穿透疲劳的颗粒并断裂成碎片,然后又分散到炉渣中。当炉渣到达富石墨区域时,金属取代了炉渣。然后该过程重复自己。

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