首页> 外文学位 >Deformation mechanisms in advanced structural ceramics due to indentation and scratch processes.
【24h】

Deformation mechanisms in advanced structural ceramics due to indentation and scratch processes.

机译:由于压痕和刮擦过程而导致的高级结构陶瓷的变形机制。

获取原文
获取原文并翻译 | 示例

摘要

Plasma pressure compaction technique was used to develop boron carbide (B4C) and zirconium diboride-silicon carbide (ZrB2-SiC) composite. B4C ceramics are extensively used as body armor in military and civilian applications, and ZrB2-SiC composite has been recognized as a potential candidate for high-temperature aerospace applications. In this dissertation, processing parameters, quasistatic and high-strain rate mechanical response, and fundamental deformation mechanisms of these materials have been investigated.;In the case of B4C, the rate sensitivity of indentation hardness was determined using a dynamic indentation hardness tester that can deliver loads in 100 micros. By comparing dynamic hardness with the static hardness, it was found that B4C exhibits a lower hardness at high-strain rate, contrary to known behavior in many structural ceramics. However, these results are consistent with the ballistic testing of B4C armors as reported in recent literature. This behavior was further investigated using a series of spectroscopic techniques such as visible and UV micro-Raman, photoluminescence and infrared. These studies not only confirmed that structural transformation occurred during indentation experiments similar to that in ballistic testing of B4C but also suggested a greater degree of structural changes under dynamic loading compared to static loading.;Due to the potential application as external heat shields in supersonic vehicles, scratch studies were conducted on the ZrB2-SiC composite. These studies revealed metal-like slip-line patterns which are indeed an unusual in brittle solids at room-temperature. Utilizing classical stress field solutions under combined normal and tangential loads, a rationale was developed for understanding the formation of scratch-induced deformation features. Also, an analytical framework was developed, combining the concept of 'blister field' and the 'secular equation' relating Raman peaks to strain, to measure scratch-induced residual stress employing micro-Raman spectroscopy. Transmission electron microscopic investigations confirmed the existence of dislocations within the ZrB2 phase. It has been argued here that readily detectable slipline patterns are reflection of metallicity in chemical bonding present in ZrB2 ceramics which has also been suggested in recent literature from chemical bonding and electronic structure investigations.
机译:等离子体压力压实技术用于开发碳化硼(B4C)和二硼化锆-碳化硅(ZrB2-SiC)复合材料。 B4C陶瓷在军事和民用应用中被广泛用作防弹衣,ZrB2-SiC复合材料已被公认为是高温航空航天应用的潜在候选者。本文研究了这些材料的加工参数,准静态和高应变速率机械响应以及基本变形机理。在B4C情况下,使用动态压痕硬度测试仪测定压痕硬度的速率敏感性,提供100微米的负载。通过将动态硬度与静态硬度进行比较,发现B4C在高应变速率下表现出较低的硬度,这与许多结构陶瓷的已知行为相反。但是,这些结果与最近文献报道的B4C装甲的弹道测试一致。使用一系列光谱技术,例如可见光和紫外微拉曼光谱,光致发光和红外光谱,进一步研究了这种行为。这些研究不仅证实了压痕实验中发生的结构转变类似于B4C的弹道测试,而且还表明与静态载荷相比,动态载荷下的结构变化程度更大;由于在超音速飞行器中作为外部隔热屏的潜在应用,对ZrB2-SiC复合材料进行了划痕研究。这些研究表明,类似金属的滑移线图案在室温下对于脆性固体确实是不寻常的。利用在组合法向和切向载荷下的经典应力场解,开发了一种原理来理解划痕引起的变形特征的形成。此外,还建立了一个分析框架,结合了“泡罩场”的概念和将拉曼峰与应变相关的“世俗方程”的概念,以利用微拉曼光谱法测量刮擦引起的残余应力。透射电子显微镜研究证实了ZrB2相内位错的存在。在此已论证,易于检测到的滑移线图案反映了ZrB2陶瓷中化学键合中的金属性,这在最近的文献中也已从化学键合和电子结构研究中提出。

著录项

  • 作者

    Ghosh, Dipankar.;

  • 作者单位

    University of Florida.;

  • 授予单位 University of Florida.;
  • 学科 Engineering Mechanical.;Engineering Materials Science.
  • 学位 Ph.D.
  • 年度 2009
  • 页码 188 p.
  • 总页数 188
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号