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首页> 外文期刊>CERAMICS INTERNATIONAL >Enhancement of the compressive strength of highly porous Al_2O_3 foam through crack healing and improvement of the surface condition by dip-coating
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Enhancement of the compressive strength of highly porous Al_2O_3 foam through crack healing and improvement of the surface condition by dip-coating

机译:通过裂纹愈合提高高孔隙度Al_2O_3泡沫的抗压强度,并通过浸涂改善表面状况

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摘要

Highly porous ceramic foams with open or closed cells have a wide variety of industrial applications, such as high-temperature filtration, absorption, catalyst support, lightweight materials, and high-temperature structural components. The mechanical strength of these highly porous ceramics decreases when the porosity in the foam reaches 90%. This work investigated the preparation of a highly porous Al_2O_3 substrate with a porosity of approximately 90% using a direct foaming technique, and coatings were deposited onto the substrate using Al_2O_3 slips prepared with powders of different particle sizes via a dip-coating process. Upon coating the surfaces of the foam, the surface condition was improved, and cracks were healed, producing a versatile material with good compressive strength. The interface between the Al_2O_3 coatings with different particle sizes and the substrate was analysed by observing the microstructure of the specimens, and their compressive strengths were compared with the compressive strength of an uncoated specimen after sintering at 1600 °C and 1700 °C for 1 h.
机译:具有开孔或闭孔的高度多孔的陶瓷泡沫具有广泛的工业应用,例如高温过滤,吸收,催化剂载体,轻质材料和高温结构部件。当泡沫中的孔隙率达到90%时,这些高度多孔陶瓷的机械强度会降低。这项工作研究了使用直接发泡技术制备孔隙率约为90%的高孔隙度Al_2O_3基材的方法,并使用Al_2O_3料浆通过浸涂工艺将不同粒径的粉末制备成涂层,并将涂层沉积在基材上。涂覆泡沫表面后,表面状况得到改善,裂缝得到了修复,从而生产出具有良好抗压强度的通用材料。通过观察试样的微观结构分析了不同粒径的Al_2O_3涂层与基体之间的界面,并将其抗压强度与未涂层试样在1600°C和1700°C烧结1 h后的抗压强度进行了比较。 。

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