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Phases, microstructures, and microchemistry of silicon carbide-based ceramics.

机译:碳化硅基陶瓷的相,微结构和微化学。

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摘要

Pure SiC. Transparent, translucent and opaque regions of high purity bulk SiC grown by chemical vapor deposition (CVD) were characterized for physical properties as well as for microstructure and chemical purity to correlate the degree of optical transparency with other material characteristics. A good correlation was obtained between SiC IR transmission and its microstructure. The transparent material was characterized by pure, essentially defect-free, {dollar}beta{dollar}-SiC (cubic) grains was highly oriented, with a {dollar}langle 111rangle{dollar} direction parallel to the deposition surface. The translucent material of various colors was mostly cubic in structure but contained large amounts of twins. Opaque CVD SiC was randomly oriented, and contained one directional disorder with hexagonal ({dollar}alpha{dollar}-SiC) symmetry in the majority of grains and high density of dislocations elsewhere.; The SiC-AlN system. Formation of solid solutions and their stability have been investigated. Early stages of transformation from the cubic phase were determined. Thin stacking fault lamellae developed first, followed by formation of twin bands, enhanced by the presence of ALN. Hexagonal ({dollar}alpha{dollar}) polytypes with AlN in solid solution formed, with transitional ordered or disordered regions at the transformation interface. The diffusion mechanism in the SiC-AlN system was investigated, finding (1) Strong coupling of Al-N and Si-C pairs in the diffusion process and Diffusion Rate of SiC in AlN {dollar}>{dollar} Diffusion Rate of AlN in SiC; (2) Neutron diffusion study indicated that Si and C atoms are replaced with Al and N atoms receptively; (3) AlN solubility in SiC is proportional to hexagonality; (4) AlN is located only at the hexagonal-type SiC layer in SiC-AlN polytypes.; SiC-matrix composites. The effects of microstructural parameters on toughness of SiC matrix composite with TiC particles have been investigated. Fracture toughness increased considerably by addition of TiC particles to SiC. The principal mechanisms for toughening in the SiC-TiC system were found to be crack deflection and crack bridging, with a possible contribution from microcracking. Microchemical analysis revealed limited mutual solubilities of TiC and SiC: the solubility of SiC in TiC. TiC did not have an effect on SiC phase stability.
机译:纯SiC。通过化学气相沉积(CVD)生长的高纯度块状SiC的透明,半透明和不透明区域具有物理性质以及微观结构和化学纯度的特征,以使光学透明度与其他材料特性相关。 SiC红外透射率与其微观结构之间具有良好的相关性。透明材料的特征在于纯净的,基本无缺陷的{dollar} beta {dollar} -SiC(立方)晶粒高度定向,其中{dollar} langle 111rangle {dollar}方向平行于沉积表面。各种颜色的半透明材料大多为立方结构,但包含大量孪晶。不透明的CVD SiC是随机取向的,并且在大多数晶粒中具有六边形({dollar} alpha {dollar} -SiC)对称性且在其他位置的位错密度高,具有一种方向性紊乱。 SiC-AlN系统。研究了固溶体的形成及其稳定性。确定了从立方相转变的早期阶段。首先出现薄堆叠断层,然后形成双带,ALN的存在增强了双带。形成具有AlN固溶体的六边形({dollar} alpha {dollar})多型,在转化界面处有过渡有序或无序区域。研究了SiC-AlN体系中的扩散机理,发现(1)Al-N和Si-C对在AlN扩散过程中的强耦合以及SiC在AlN中的扩散速率。碳化硅; (2)中子扩散研究表明,Si和C原子被Al和N原子取代; (3)AlN在SiC中的溶解度与六边形成正比; (4)AlN仅位于SiC-AlN多型体中的六方型SiC层处。 SiC基复合材料。研究了微观结构参数对含TiC颗粒的SiC基复合材料韧性的影响。通过向SiC中添加TiC颗粒,断裂韧性大大提高。发现在SiC-TiC系统中增韧的主要机理是裂纹挠曲和裂纹桥接,这可能是微裂纹造成的。微观化学分析表明,TiC和SiC的相互溶解度有限:SiC在TiC中的溶解度。 TiC对SiC相稳定性没有影响。

著录项

  • 作者

    Kim, Yongil.;

  • 作者单位

    University of Illinois at Urbana-Champaign.;

  • 授予单位 University of Illinois at Urbana-Champaign.;
  • 学科 Engineering Materials Science.
  • 学位 Ph.D.
  • 年度 1994
  • 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

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