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Oxidation behavior of zirconium diboride-silicon carbide composites at high temperatures.

机译:二硼化锆-碳化硅复合材料在高温下的氧化行为。

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摘要

The ZrB2-SiC composite is a prominent member of Ultra-High Temperature Ceramics (UHTCs). Here the oxidation behavior of ZrB 2-SiC composites at temperatures between 1500-1900°C is studied. The structure and composition of complex oxide scales, formed at these temperatures, are characterized using microstructural and elemental analysis.;A novel method, called the Ribbon Method, was developed for testing UHTCs at high temperatures, rapidly at low cost. Self-supported UHTC ribbon specimens are resistively heated with a table-top apparatus to achieve temperatures from 900-2000°C. The Ribbon Method is a novel method for rapid oxidation characterization of UHTC at high temperatures and a valuable alternative to the current high temperature facilities for UHTCs. Oxidation studies with the Ribbon Method showed that a SiO2 rich borosilicate surface layer forms during the oxidation of the ZrB2-SiC composite and acts as a protective barrier at lower temperatures by hindering oxygen diffusion through the surface layer. The SiO2-rich surface layer starts to volatilize extensively at temperatures above 1700°C resulting in a decreases in the oxidation resistance of the composite.;A novel mechanism is proposed for the high temperature oxidation of ZrB 2-SiC based composites. This mechanism is based on liquid transport of oxide liquid solution formed during oxidation at temperatures around 1550°C. Patterns in borosilicate surface layer of oxidized ZrB2-SiC composites were discovered, showing evidence of liquid flow in the oxide film. These patterns, called here convection cells, are formed when a fluid B2O 3-rich borosilicate liquid containing dissolved ZrO2 is transported to the surface where the B2O3 is lost by evaporation, depositing ZrO2 in a viscous SiO2-rich liquid. The driving force for the liquid transport is proposed to be the large volume increase upon oxidation. Liquid transport of the oxide liquid solution is claimed to play a significant role in the formation of oxide scales of ZrB2-SIC composites and other boride-SiC based UTHC composites. Mass transport by liquid flow has not yet been reported for the high temperature oxidation of ZrB 2-SiC composites thus a novel mechanism for the high temperature oxidation of these materials is presented.
机译:ZrB2-SiC复合材料是超高温陶瓷(UHTC)的重要成员。在此研究了ZrB 2-SiC复合材料在1500-1900°C之间的氧化行为。使用微结构和元素分析对在这些温度下形成的复杂氧化皮的结构和组成进行了表征。研制了一种新的方法,称为“带状方法”,用于在高温下快速,低成本地测试UHTC。将自支撑的UHTC带状样品用台式设备电阻加热,以达到900-2000°C的温度。碳带法是一种用于在高温下快速表征UHTC的新颖方法,是当前UHTC高温设备的宝贵替代品。碳带法的氧化研究表明,在ZrB2-SiC复合材料的氧化过程中会形成富含SiO2的硼硅酸盐表面层,并在较低温度下通过阻止氧气扩散通过表面层而充当保护层。富含SiO2的表面层在高于1700°C的温度下开始大量挥发,从而导致复合材料的抗氧化性下降。;提出了ZrB 2-SiC基复合材料高温氧化的新机理。该机理是基于在氧化过程中在约1550°C的温度下形成的氧化物液体溶液的液体传输。在氧化的ZrB2-SiC复合材料的硼硅酸盐表面层中发现了图案,这表明液体在氧化膜中流动。当将含有溶解的ZrO2的富含B2O 3的硼硅酸盐液体运输到蒸发失去B2O3的表面,从而将ZrO2沉积在富含SiO2的粘性液体中时,就会形成这些称为对流单元的图案。提出用于液体输送的驱动力是在氧化时大量增加。据称氧化物液体溶液的液体传输在ZrB2-SIC复合材料和其他基于硼化物-SiC的UTHC复合材料的氧化皮形成中起重要作用。对于ZrB 2-SiC复合材料的高温氧化,尚未报道通过液体流动进行质量传输,因此提出了一种用于这些材料高温氧化的新机理。

著录项

  • 作者

    Karlsdottir, Sigrun N.;

  • 作者单位

    University of Michigan.;

  • 授予单位 University of Michigan.;
  • 学科 Engineering Materials Science.
  • 学位 Ph.D.
  • 年度 2007
  • 页码 205 p.
  • 总页数 205
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

  • 入库时间 2022-08-17 11:39:42

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