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Experimental investigation and thermodynamic evaluation of the C-O-Zr ternary system

机译:C-O-ZR三元系统的实验研究和热力学评价

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摘要

The ZrCxOy oxycarbides are well-known relevant ceramic materials for ultra-high temperature applications. The intrinsic macroscopic properties of ZrCxOy being closely related to the C/O ratio, a detailed analysis of the C-O-Zr system has been undertaken experimentally in order to accurately determine the extent of the solid solution of oxygen within the oxycarbide phase at different synthesis temperatures. The obtained results were then used as diagrammatic data to extrapolate the ternary C-O-Zr phase equilibria diagram by the CALPHAD method, providing a predictive tool for the oxycarbide synthesis. The model proposed in the temperature range 1650-2000 degrees C is in fair agreement with results obtained in the literature. The chemical determination of the relative ratio between light elements (oxygen (O) and carbon (C)) being a difficult issue for most of the general applications, an accurate determination of the cell parameters of the different oxycarbide compositions has been performed to propose an abacus reporting the evolution of the cell parameter against the C/ O amount. The chemical composition of the oxycarbide is shown to be determined with an accuracy better that a few percent. It is also shown that the evolution of the cell parameter is not linear, indicative of a possible change of the ionocovalent character of the chemical bonds with the composition of ZrCxOy.
机译:ZrCxoy氧化物是用于超高温应用的众所周知的相关陶瓷材料。 Zrcxoy的固有宏观性质与C / O比密切相关,对CO-ZR系统进行了详细分析,以便在不同合成温度下准确地确定氧气相中的氧气固体溶液的范围。然后将得到的结果用作示意性数据以通过Calphad方法推断三元C-O-Zr相平纤维化图,为氧气合成提供预测工具。在1650-2000摄氏度中提出的模型与文献中获得的结果进行了公平的协议。光元素(氧(O)和碳(C)之间的相对比的化学测定是大多数一般应用的难题,已经进行了准确测定不同氧化碳组合物的细胞参数以提出算盘报告细胞参数的演变对C / O金额。显示氧化氢的化学成分,如百分比更好地测定。还表明细胞参数的进化不是线性的,指示化学键与Zrcxoy的组成的化学键的可能变化。

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  • 来源
    《RSC Advances》 |2016年第102期|共14页
  • 作者单位

    SPCTS CNRS UMR 7315 CEC 12 Rue Atlantis F-87068 Limoges France;

    SPCTS CNRS UMR 7315 CEC 12 Rue Atlantis F-87068 Limoges France;

    SPCTS CNRS UMR 7315 CEC 12 Rue Atlantis F-87068 Limoges France;

    SPCTS CNRS UMR 7315 CEC 12 Rue Atlantis F-87068 Limoges France;

    SPCTS CNRS UMR 7315 CEC 12 Rue Atlantis F-87068 Limoges France;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 化学;
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