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Formation of a nanocrystalline layer on the surface of stone wool fibers

机译:在石棉纤维表面形成纳米晶层

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摘要

In the present paper, we report a simple approach for creating a nanocrystalline layer on the surface of stone wool fibers (SWFs) with a basalt-like composition. The approach is based on a preoxidation process of the SWFs in atmospheric air at a temperature around the glass transition temperature () for various durations. During preoxidation, the network-modifying ions diffuse from the interior toward the surface of SWFs and react with oxygen on the surface to form oxides. This diffusion process is accompanied by an inward diffusion of electron holes via the oxidation process of Fe to Fe. It is found that the diffusion of Mg is dominant in the overall diffusion process. The main phase of the nanocrystalline layer is identified to be periclase (MgO) crystals. The thickness of the nanocrystalline layer can be varied by adjusting the temperature and the duration of preoxidation. The nanocrystalline layer plays a significant role in enhancing the high-temperature stability of the SWFs.
机译:在本文中,我们报告了一种在玄武岩样成分的石棉纤维(SWF)表面上创建纳米晶体层的简单方法。该方法基于SWF在大气中在玻璃化转变温度()附近大约持续不同时间的预氧化过程。在预氧化过程中,网络修饰离子从SWF的内部向表面扩散,并与表面上的氧气反应形成氧化物。该扩散过程伴随着电子空穴通过Fe到Fe的氧化过程向内扩散。发现在整个扩散过程中,Mg的扩散占主导地位。纳米晶体层的主要相被确定为过镁(MgO)晶体。可以通过调节温度和预氧化的持续时间来改变纳米晶体层的厚度。纳米晶体层在增强SWF的高温稳定性中起重要作用。

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