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Processing - microstructure relationships of chemically vapor deposited zirconia fiber coating for environmentally durable silicon carbide/silicon carbide composites.

机译:加工-环境耐用的碳化硅/碳化硅复合材料的化学气相沉积氧化锆纤维涂层的微观结构关系。

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摘要

In SiC/SiC ceramic matrix composites, toughness is obtained by adding a fiber coating which provides a weak interface for crack deflection and debonding between the fiber and the matrix. However, the most commonly used fiber coatings, carbon and boron nitride, are unstable in oxidative environments. In the present study, the feasibility of using a chemically vapor deposited zirconia (CVD-ZrO 2) fiber coating as an oxidation-resistant interphase for SiC/SiC composites was investigated. The feasibility of the CVD-ZrO2 coating as a useful interphase for SiC/SiC composites was investigated with emphasis on developing critical processing-microstructure relationships.; A study of morphological evolution in the CVD-ZrO2 coating suggested that a size-controlled displacive phase transformation from tetragonal ZrO2 (t-ZrO2) to monoclinic ZrO2 (m-ZrO2) was the key mechanism responsible for the weak interface behavior exhibited by the ZrO2 coating. The pre-delamination occurred as a result of (i) continuous formation of t-ZrO2 nuclei on the deposition surface; (ii) martensitic transformation of the tetragonal phase to a monoclinic phase upon reaching a critical grain size; and (iii) development of significant compressive hoop stresses due to the volume dilation associated with the transformation.; We also discovered that low oxygen partial pressure in the CVD reactor was required for the nucleation of t-ZrO2 and was ultimately responsible for the delamination behavior. The effects of oxygen partial pressure on the nucleation behavior of the CVD-ZrO2 coating was systematically studied by intentionally adding the controlled amount of O2 into the CVD chamber. Characterization results suggested that the number density of t-ZrO2 nuclei apparently decreased with increasing the oxygen partial pressure from 0.004 to 1.6 Pa. Also, the coating layer became more columnar and contained larger m-ZrO2 grains. The observed relationships between the oxygen partial pressure and the morphological characteristics of the ZrO 2 coating were explained in the context of the grain size and oxygen deficiency effects which have been previously reported to cause the stabilization of the t-ZrO2 phase in bulk ZrO2 specimens.
机译:在SiC / SiC陶瓷基复合材料中,韧性是通过添加纤维涂层来获得的,该涂层为裂纹偏转和纤维与基体之间的剥离提供了较弱的界面。但是,最常用的纤维涂层碳和氮化硼在氧化环境中不稳定。在本研究中,研究了使用化学气相沉积氧化锆(CVD-ZrO 2 )纤维涂层作为SiC / SiC复合材料的抗氧化界面的可行性。研究了CVD-ZrO 2 涂层作为SiC / SiC复合材料有用的中间相的可行性,重点是发展关键的加工-微观结构关系。对CVD-ZrO 2 涂层的形貌演化的研究表明,四方ZrO 2 t -ZrO 2 )到单斜ZrO 2 m -ZrO 2 )是导致弱界面行为的关键机制ZrO 2 涂层表现出来的。发生预分层是由于(i)在沉积表面上连续形成 t -ZrO 2 核; (ii)达到临界晶粒尺寸后,四方相马氏体转变为单斜晶相; (iii)由于与转换相关的体积膨胀而产生明显的压缩环向应力。我们还发现, t -ZrO 2 的成核需要CVD反应器中的低氧分压,并最终导致分层行为。通过有意地将受控量的O 2 添加到CVD室中,系统地研究了氧分压对CVD-ZrO 2 涂层成核行为的影响。表征结果表明, t -ZrO 2 原子核的数密度随着氧气分压从0.004增加到1.6 Pa而明显降低。包含较大的 m -ZrO 2 晶粒。氧分压与ZrO 2 涂层的形貌特征之间观察到的关系是根据晶粒尺寸和缺氧效应的原因来解释的,这些效应先前已被报道会导致的稳定化。 ZrO 2 样品中的> t -ZrO 2 相。

著录项

  • 作者

    Lee, Jinil.;

  • 作者单位

    Stevens Institute of Technology.;

  • 授予单位 Stevens Institute of Technology.;
  • 学科 Engineering Materials Science.
  • 学位 Ph.D.
  • 年度 2003
  • 页码 172 p.
  • 总页数 172
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 工程材料学;
  • 关键词

  • 入库时间 2022-08-17 11:44:58

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