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首页> 外文期刊>Journal of the European Ceramic Society >On the melting behaviour of calcium monoxide under different atmospheres: A laser heating study
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On the melting behaviour of calcium monoxide under different atmospheres: A laser heating study

机译:一氧化钙在不同气氛下的熔融行为:激光加热研究

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The melting behaviour of calcium monoxide has been revisited by quasi-containerless laser heating under controlled atmosphere. The current results suggest that the large discrepancy in the literature data for the melting temperature of CaO is probably linked to the influence of the environmental oxidising/reducing conditions. The CaO solidification point measured in this work is (3222 ± 25) K in an oxidising environment, in agreement with previous research performed under similar conditions. In a reducing atmosphere, the liquid/solid transition occurs at a slightly, but systematically lower, less accurately reproducible temperature, (3192 ± 40) K. These phase transition temperatures are not depending on the external pressure, up to 0.3 MPa. In the latter case, radiance and optical spectroscopy measurements revealed a more abundant formation of colour centres, i.e. a higher concentration of oxygen defects in the material, which can affect the thermodynamic stability of the solid at very high temperatures. A similar behaviour may be expected to occur in multi-component material systems including CaO.
机译:一氧化钙的熔化行为已在受控气氛下通过准无容器激光加热得到了重新考虑。目前的结果表明,有关CaO熔融温度的文献数据差异很大,可能与环境氧化/还原条件的影响有关。这项工作中测得的CaO凝固点在氧化环境中为(3222±25)K,这与先前在类似条件下进行的研究一致。在还原性气氛中,液/固转变发生在稍低但系统地较低,可再现性较低的温度下(3192±40)K。这些相变温度不取决于外部压力,最高为0.3 MPa。在后一种情况下,辐射度和光谱学测量显示出色心的形成更加丰富,即材料中氧缺陷的浓度更高,这会影响固体在非常高的温度下的热力学稳定性。可以预料在包括CaO的多组分材料系统中会发生类似的行为。

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