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首页> 外文期刊>Journal of Ceramic Science and Technology >Measurement of the Volume Expansion of SiC Refractories Induced by Molten Salt Corrosion
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Measurement of the Volume Expansion of SiC Refractories Induced by Molten Salt Corrosion

机译:熔盐腐蚀引起的SiC耐火材料体积膨胀的测量

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Corrosion tests of oxide-bonded SiC-based refractory cylinders with molten salts (mainly CaSO4, K2SO4) were performed at high temperature to enable better understanding of the corrosion mechanisms operating in these materials. Salt pellets were placed on the upper surface of small refractory cylinders. After they had been melted, the corrosive product soaked into the pores of the refractory cylinders and partially corroded the SiC phase. SEMEDS analyses showed that CaSiO3 was the main new phase formed, growing from SiC aggregates into the pores. The shapes of the initial and corroded cylinders were measured at room temperature using a 3D coordinate measuring machine equipped with a laser-plane sensor. These measurements enabled monitoring of the evolution of the residual radial deformation versus the depth from the surface in contact with the salt pellets, and consequently the characterisation of the local volume expansion induced by the phase change. Coupling SEM-EDS analyses with 3D digitising revealed the link between the corrosion product and the volume expansion.
机译:在高温下对氧化物键合的SiC基耐火钢瓶与熔融盐(主要为CaSO4,K2SO4)进行了腐蚀测试,以更好地了解这些材料中的腐蚀机理。将盐粒放置在小型耐火圆筒的上表面。将其熔化后,腐蚀性产品会浸入耐火钢瓶的孔中,并部分腐蚀SiC相。 SEMEDS分析表明,CaSiO3是形成的主要新相,从SiC聚集体生长到孔中。使用配备有激光平面传感器的3D坐标测量机在室温下测量初始圆柱体和腐蚀圆柱体的形状。这些测量使得能够监测残余径向变形相对于与盐粒接触的表面的深度的演变,并因此表征由相变引起的局部体积膨胀。带有3D数字化的SEM-EDS耦合分析揭示了腐蚀产物与体积膨胀之间的联系。

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