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首页> 外文期刊>Journal of the European Ceramic Society >In situ fabrication of highly-dense Al_2O_3/YAG nanoeutectic composite ceramics by a modified laser surface processing
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In situ fabrication of highly-dense Al_2O_3/YAG nanoeutectic composite ceramics by a modified laser surface processing

机译:改进的激光表面处理原位制备高密度Al_2O_3 / YAG纳米共晶复合陶瓷

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摘要

Alumina-matrix eutectic in situ composite ceramics present excellent high-temperature mechanical properties, which have been considered as promising next-generation ultra-high temperature structural materials. A modified laser surface processing is developed to in situ fabricate highly-dense A1_2O_3/YAG bulk nanoeutectic ceramics with large size and homogeneous three-dimensional network of nanoeutectic microstructure by introducing two-side remelting and high-temperature preheating. The crack and porosity are avoided, and the eutectic structure achieves a good continuous growth between two solidified layers. The eutectic phases show sharp interface bonding with a defined orientation relationship. The dislocations and crack deflection at high-density phase interfaces importantly contribute to the enhanced fracture toughness.
机译:氧化铝基共晶原位复合陶瓷具有出色的高温机械性能,被认为是有前途的下一代超高温结构材料。通过引入双面重熔和高温预热,开发了一种改良的激光表面处理技术,以原位制备具有大尺寸且均匀的三维纳米共晶纳米结构的高密度Al 2 O 3 / YAG块状纳米共晶陶瓷。避免了裂纹和孔隙,并且共晶结构在两个凝固层之间实现了良好的连续生长。共晶相显示出尖锐的界面结合,具有确定的取向关系。高密度相界面处的位错和裂纹变形对提高断裂韧性起重要作用。

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