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首页> 外文期刊>Journal of the European Ceramic Society >Exploring processing, reactivity and performance of novel MAX phase/ ultra-high temperature ceramic composites: The case study of Ti3SiC2
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Exploring processing, reactivity and performance of novel MAX phase/ ultra-high temperature ceramic composites: The case study of Ti3SiC2

机译:新型最大相/超高温陶瓷复合材料的探索处理,反应性和性能:Ti3sic2的案例研究

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摘要

The reactivity behaviour between a MAX phase and ZrB2 or WC was explored with the aim of developing novel composites by merging the benefits of the individual constituents. Hot pressing of Ti3SiC2 with 30 vol% ZrB2 at 1450 degrees C led to notable microstructure re-assessment with formation of inter-locked sub-micrometric boride grains. This composite displayed enhanced hardness and showed a strength over 430 MPa up to 1200 degrees C, which is a great achievement considering the ductile behaviour of typical pure MAX compounds. However, addition of WC led to a highly porous composite with poor performance. These findings set a first basis for the progress of original light ceramics with combined hardness and failure tolerance over a broad temperature range.
机译:探索了MAX相与ZrB2或WC之间的反应性行为,目的是通过融合单个组分的优点来开发新型复合材料。在1450℃下,含30 vol%ZrB2的Ti3SiC2热压导致显著的微观结构重新评估,形成相互锁紧的亚微米级硼化物晶粒。这种复合材料显示出更高的硬度,在1200摄氏度下的强度超过430兆帕,考虑到典型纯MAX化合物的延展性,这是一项伟大的成就。然而,WC的加入导致了高孔隙率的复合材料性能较差。这些发现为在宽温度范围内同时具有硬度和耐破坏性的原始轻质陶瓷的发展奠定了第一个基础。

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