The effect of SiC whisker on the performances of Al2O3 matrixceramics mould for hollow turbine blade

Z. Lu, Y. X. Fan, D. Yang, D. C. Li
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引用次数: 4

Abstract

To improve the room-temperature and medium-temperature bending strengths of Al2O3 matrix ceramic mould for hollow turbine blade, SiC whisker was added. The samples' microstructure and phase were tested by Scanning Electron Microscope and X-Ray Diffraction, the relationship between the bending strength and phase were mainly analyzed. The result shows that the room-temperature bending strength of pre-sintering samples at 1250°C was respectively 19.6MPa and 54.75MPa when the content of SiC whisker was 4wt% and 8wt%. The medium-temperature bending strength of samples was respectively 1.56MPa to 0.91Mpa and 1.85MPa to 1.02MPa when the content of SiC whisker was 4wt% and 8wt% during 400°C to 600°C, and was the lowest at 500°C. After pre-sintering at 1250°C, the shrinkage of the samples with 4wt% and 8wt% SiC whisker was -0.06% and 0.7% respectively. It is possible to fabricate high-performance Al2O3 matrix ceramic mould for hollow turbine blade.
SiC晶须对Al2O3基陶瓷空心涡轮叶片模具性能的影响
为了提高空心涡轮叶片Al2O3基陶瓷模具的室温和中温抗弯强度,在模具中加入了SiC晶须。采用扫描电镜和x射线衍射测试了试样的显微组织和物相,重点分析了试样的抗弯强度与物相的关系。结果表明:当SiC晶须含量为4wt%和8wt%时,预烧结样品在1250℃时的室温抗弯强度分别为19.6MPa和54.75MPa;在400℃~ 600℃,SiC晶须含量为4wt%和8wt%时,试样的中温抗弯强度分别为1.56MPa ~ 0.91Mpa和1.85MPa ~ 1.02MPa,在500℃时最低。在1250℃预烧结后,含4wt% SiC晶须和8wt% SiC晶须的样品收缩率分别为-0.06%和0.7%。制备高性能的氧化铝基空心涡轮叶片陶瓷模具是可能的。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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