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首页> 外文期刊>Journal of Alloys and Compounds: An Interdisciplinary Journal of Materials Science and Solid-state Chemistry and Physics >Microstructure evolution and properties of silica-based ceramic cores reinforced by mullite fibers
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Microstructure evolution and properties of silica-based ceramic cores reinforced by mullite fibers

机译:莫来石纤维增强二氧化硅陶瓷芯的微观结构演化与性能

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Composite ceramic cores reinforced by different contents of mullite fibers were prepared via injection molding. With increasing mullite fibers, the porosity showed near-exponential increase due to the accumulation of fibers, and the leaching rate showed the similar tendency attributed to the increasing porosity for the permeation of alkali solution. At room temperature or 1550 degrees C, the flexural strength increased as the fibers contents were below 3 wt%, due to the micro-cracking and fiber extraction; however, the flexural strength degraded as the mullite fibers contents was 4 wt%, due to the high porosity. Compared to the others, the ceramic cores with 3 wt% mullite fibers showed excellent properties, including apparent porosity of 35.2%, linear shrinkage of 0.81%, flexural strength being 25.5 MPa at room temperature and 22.3 MPa at 1550 degrees C, creep deformation of 0.12 mm and leaching rate of 0.34 g/ min, well meeting the demands of hollow blades casting. This paper may provide new guidance for high-property ceramic cores. (C) 2020 Elsevier B.V. All rights reserved.
机译:通过注射成型制备由莫来石纤维的不同含量增强的复合陶瓷芯。随着莫来石纤维的增加,由于纤维的积累,孔隙率显示出近指数增加,浸出速率显示出类似于碱溶液渗透的孔隙率的类似趋势。在室温下或1550℃下,由于微裂纹和纤维萃取,纤维含量低于3wt%的弯曲强度增加。然而,由于高孔隙率,随着莫来石纤维含量降解的弯曲强度为4wt%。与其他相比,具有3wt%莫来石纤维的陶瓷芯表现出优异的性能,包括表观孔隙率为35.2%,线性收缩率为0.81%,弯曲强度为25.5MPa,在室温下为25.5MPa,1550℃,蠕变变形0.12毫米和浸出率为0.34克/分钟,符合空心叶片铸造的需求。本文可以为高性陶瓷核提供新的新指导。 (c)2020 Elsevier B.v.保留所有权利。

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