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Corrosion Resistance of β-SiAlON-Based Ceramics Against Molten Steel

机译:β-SiAlON基陶瓷对钢水的耐蚀性

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The corrosion resistance of sialons made from commercial powders (AlN, Al_2O_3 and Si_3N_4) and from powder precursor produced by carbothermal reduction and nitridation of raw aluminosilicate (pyrophyllite) in molten steel were investigated. The corroded zone in sialon made from raw pyrophyllite (P1) is more then two times deeper compared to the corroded zone of sialon made from commercial powders (C1). The corrosion zone of sample P1 is on the average 610 μm deep, while in sample Cl it is only 260 μm. The main corrosion products are γ-Al_2O_3 and iron silicides. The phase compositions were estimated by neutron Rietveld refinement.
机译:研究了由商用粉末(AlN,Al_2O_3和Si_3N_4)以及通过碳热还原并将铝硅酸盐(叶蜡石)在钢水中进行碳热还原和氮化制得的粉末前驱体制成的赛隆的耐蚀性。与由商用粉末(C1)制成的赛隆的腐蚀区相比,由原始叶蜡石(P1)制成的赛隆的腐蚀区深度要大两倍。样品P1的腐蚀区平均深度为610μm,而样品C1中的腐蚀区仅为260μm。主要腐蚀产物是γ-Al_2O_3和硅化铁。相组成通过中子Rietveld精制估算。

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