首页> 外文期刊>Key Engineering Materials >Ultra-High Temperature Ceramics (UHTCs) via Reactive Sintering
【24h】

Ultra-High Temperature Ceramics (UHTCs) via Reactive Sintering

机译:通过反应烧结的超高温陶瓷(UHTC)

获取原文
获取原文并翻译 | 示例
           

摘要

Current high temperature ceramics, such as ZrO_2, Si_3N_4 and SiC, cannot be used at temperatures over 1600℃due to their low melting temperature or dissociation temperature. For ultra-high temperature applications over 1800℃, materials with high melting points, high phase composition stability, high thermal conductivity, good thermal shock and oxidation resistance are needed. The transition metal diborides, mainly include ZrB_2 and HfB_2, have melting temperatures of above 3000℃, and can basically meet the above demands. However, the oxidation resistance of diboride monolithic ceramics at ultra-high temperatures need to be improved for the applications in thermal protection systems for future aerospace vehicles and jet engines. On the other hand, processing science for making high performance UHTCs is another hot topic in the UHTC field. Densification of UHTCs at mild temperatures through reactive sintering is an attracting way due to the chemically stable phase composition and microstructure as well as clean grain boundaries in the obtained materials. Moreover, the stability studies of the materials in phase composition and microstructures at ultra high application temperatures is also critical for materials manufactured at relatively low temperature. Furthermore, the oxidation resistance in simulated reentry environments instead of in static or flowing air of ambient pressure should be evaluated. Here we will report the concept, advantages and some recent progress on the reactive sintering of diboride-based composites at mild temperatures.
机译:目前的高温陶瓷,如ZrO_2,Si_3N_4和SiC,由于其较低的熔化温度或解离温度而不能在1600℃以上的温度下使用。对于1800℃以上的超高温应用,需要具有高熔点,高相组成稳定性,高导热性,良好的热冲击和抗氧化性的材料。过渡金属二硼化物主要包括ZrB_2和HfB_2,其熔融温度在3000℃以上,基本可以满足上述要求。然而,为了在未来的航空航天器和喷气发动机的热保护系统中的应用,需要提高二硼化物单片陶瓷在超高温下的抗氧化性。另一方面,用于制造高性能UHTC的处理科学是UHTC领域的另一个热门话题。由于所获得材料中化学成分稳定的相组成和微观结构以及晶界清洁,UHTC在中等温度下通过反应烧结致密化是一种吸引人的方式。此外,对于在相对较低的温度下制造的材料,在超高应用温度下材料在相组成和微结构中的稳定性研究也至关重要。此外,应评估在模拟折返环境中而不是在环境压力下的静态或流动空气中的抗氧化性。在这里,我们将报告在温和的温度下二硼化物基复合材料的反应烧结的概念,优点和一些最新进展。

著录项

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