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Effect of Silicon Addition on High-Temperature Solid Particle Erosion-Wear Behaviour of Mullite-SiC Composite Refractories Prepared by Nitriding Reactive

机译:通过氮化反应制备的莫来石复合耐火材料的高温固体颗粒腐蚀行为的硅加制效果

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摘要

Solid particle erosion-wear experiments on as-prepared mullite-SiC composite refractories by nitriding reactive sintering were performed at elevated temperatures, using sharp black SiC abrasive particles at an impact speed of 50 m/s and the impact angle of 90° in the air atmosphere. The effects of silicon powder addition and erosion temperature on the erosion-wear resistance of mullite-SiC composite refractories were studied. The test results reveal that Si powders caused nitriding reaction to form β-sialon whiskers in the matrix of mullite-SiC composite refractories. The erosion-wear resistance of mullite-SiC composite refractories was improved with the increase of silicon powder addition and erosion temperature, and the minimum volume erosion rate was under the condition of 12% silicon added and a temperature of 1400°C. The major erosion-wear mechanisms of mullite-SiC composite refractories were brittle erosion at the erosion temperature from room temperature to 1000°C and then plastic deformation from 1200°C to 1400°C.
机译:通过在升高的温度下在升高的温度下进行氮气反应性烧结的固体颗粒侵蚀磨损实验,在升高的温度下,使用锋利的黑色SiC磨料颗粒,其冲击速度为50m / s的冲击速度和空气中90°的冲击角度大气层。研究了硅粉加成和腐蚀温度对莫来石复合耐火材料侵蚀耐磨性的影响。试验结果表明,Si粉末在莫来钛矿复合耐火材料的基质中形成氮化反应以形成β-唾液晶须。莫来石 - SiC复合材料耐火材料的侵蚀耐磨性用硅粉末添加和侵蚀温度的升高提高,并且最小体积侵蚀率的溶液中加入12%的硅的状况和1400℃的温度下下。 Mullite-SiC复合耐火材料的主要侵蚀机制在室温至1000℃下的侵蚀温度下易腐蚀,然后从1200℃至1400℃的塑性变形。

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