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Control of the interface reaction between silicon carbide and iron

机译:控制碳化硅与铁之间的界面反应

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Two methods of the oxidation of silicon carbide (SiC) and alloying the Fe matrix with Cr had been investigated to control the interface reaction between SiC and Fe. The oxide membrane on the SiC piece is thermodynamically stable, and effectively controls the interface reaction between SiC and Fe. However, the interface of the oxidized-SiC/Fe couple is instable at 1273 K. The point-like reaction zone was generated when the couple was annealed for 5 h. The reaction zone is mainly composed of Fe3Si, Cr3Si, M7C3-type carbide (M = Cr, Fe), and the graphitic carbon precipitates, when the SiC/Fe-20 Cr alloy couple was annealed at 1373 K for 20 h. The structure of the reaction zone is the SiC reaction zone (SRZ), the metal reaction zone (MRZ) from the SiC side to the Fe side. The SRZ has high Si, Fe concentrations, and a low Cr concentration. The bright matrix of the SRZ is mainly composed of Fe3Si, in which the carbon precipitations are distributed randomly. The MRZ has no carbon precipitates, which is only composed Of M7C3. The interface reaction of SiC/Fe-20 Cr follows a parabolic kinetics with the reaction rate constant, K = 1.9 x 10(-4) exp(-(235 x 10(3))/RT) (m(2)s(-1)). Compared with that of SiC/Fe, the interface reaction kinetics of SiC/Fe-20 Cr has a higher Q value and a lower K-0 value. The interface reaction of SiC/Fe-20 Cr is reduced. It is attributed to that the MRZ inhibits the transport of the Fe atoms in the reaction zone during the annealing process. (C) 2002 Elsevier Science B.V. All rights reserved. [References: 19]
机译:为了控制SiC与Fe的界面反应,研究了两种氧化碳化硅(SiC)和使Fe基体与Cr合金化的方法。 SiC片上的氧化膜具有热力学稳定性,可有效控制SiC和Fe之间的界面反应。但是,氧化后的SiC / Fe偶对的界面在1273 K时不稳定。当退火5 h时,会生成点状反应区。当SiC / Fe-20 Cr合金对在1373 K退火20 h时,反应区主要由Fe3Si,Cr3Si,M7C3型碳化物(M = Cr,Fe)和石墨碳沉淀物组成。反应区的结构是SiC反应区(SRZ),即从SiC侧到Fe侧的金属反应区(MRZ)。 SRZ具有较高的Si,Fe浓度和较低的Cr浓度。 SRZ的亮矩阵主要由Fe3Si组成,其中碳沉淀随机分布。机读区没有碳沉淀物,仅由M7C3组成。 SiC / Fe-20 Cr的界面反应遵循抛物线动力学,反应速率常数为K = 1.9 x 10(-4)exp(-(235 x 10(3))/ RT)(m(2)s( -1))。与SiC / Fe相比,SiC / Fe-20 Cr的界面反应动力学具有较高的Q值和较低的K-0值。 SiC / Fe-20 Cr的界面反应减少。这归因于在退火过程中,MRZ抑制了Fe原子在反应区中的传输。 (C)2002 Elsevier Science B.V.保留所有权利。 [参考:19]

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