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Investigation of the Oxidation Behaviour of Ti and Al in Inconel 718 Superalloy During Electroslag Remelting

机译:电渣重熔Inconel 718合金中Ti和Al的氧化行为研究

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摘要

In the current study, the thermodynamics of the slag-metal equilibrium reaction between Inconel 718 Ni-based alloy and CaF2-CaO-Al2O3-MgO-TiO2 electroslag remelting (ESR)-type slags were systematically investigated in the temperature range from 1773 to 1973 K (1500 to 1700 °C). The equilibrium Al content increased with increasing temperature, whereas the equilibrium Ti content decreased with increasing temperature at a fixed slag composition. The important factors for controlling the oxidation of Al and Ti in the Inconel 718 superalloy were TiO2 > Al2O3 > CaO > CaF2 > MgO in ESR-type slag and Al > Ti in a consumable electrode. The conventional method of sampling by means of a quartz tube could result in contamination of the molten metal and changes in the size of the “special reaction interface”. Therefore, a novel method was used in the present study to investigate the slag-metal reaction kinetics to accurately obtain the kinetic parameters. The mass transfer coefficient was determined by coupling with the kinetic model derived from the assumption that the reaction rate ([Al] + (TiO2) = [Ti] + (Al2O3)) was controlled by the mass transfer of [Ti], [Al], (TiO2) and (Al2O3) in the boundary layer, respectively.
机译:在当前的研究中,系统地研究了Inconel 718 Ni基合金与CaF2-CaO-Al2O3-MgO-TiO2电渣重熔(ESR)型渣之间的渣-金属平衡反应的热力学,其温度范围为1773至1973年K(1500至1700°C)。在固定炉渣组成下,平衡Al含量随温度升高而增加,而平衡Ti含量随温度升高而降低。控制Inconel 718合金中Al和Ti氧化的重要因素是ESR型炉渣中的TiO2> Al2O3> CaO> CaF2> MgO和可消耗电极中的Al> Ti。借助石英管的常规采样方法可能导致熔融金属的污染并改变“特殊反应界面”的尺寸。因此,本研究采用了一种新颖的方法来研究炉渣-金属反应动力学,以准确地获得动力学参数。通过与动力学模型耦合来确定传质系数,该动力学模型源自以下假设:反应速率([Al] +(TiO2)= [Ti] +(Al2O3))受[Ti],[Al边界层中的],(TiO2)和(Al2O3)。

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