发明名称 FIBER-REINFORCED CERAMIC COMPOSITE MATERIAL COMPRISING A MATRIX WITH A NANOLAYERED MICROSTRUCTURE
摘要 A fiber-reinforced ceramic matrix composite material exhibiting increased matrix cracking strength and fracture toughness is produced by sequentially depositing a plurality of 5-500 nanometer-thick layers of a primary ceramic matrix material phase periodically separated by 1-100 nanometer-thick intermediate layers of a secondary matrix material phase onto the reinforcing fibers upon their consolidation. The resultant nanolayered matrix enhances the resistance to the onset of matrix cracking, thus increasing the useful design strength of the ceramic matrix composite material. The nanolayered microstructure of the matrix constituent also provides a unique resistance to matrix crack propagation. Through extensive inter-layer matrix fracture, debonding and slip, internal matrix microcracks are effectively diverted and/or blunted prior to their approach towards the reinforcing fiber, thus increasing the apparent toughness of the matrix constituent. This unique toughening mechanism serves to dampen energetic co-planar macrocrack propagation typically observed in conventionally manufactured ceramic matrix composites wherein matrix cracks are usually deflected at the fiber/matrix interphase region.
申请公布号 US2005181192(A1) 申请公布日期 2005.08.18
申请号 US20020261475 申请日期 2002.09.30
申请人 STEFFIER WAYNE S. 发明人 STEFFIER WAYNE S.
分类号 B32B17/12;B32B18/00;B32B27/04;C04B35/565;C04B35/628;C04B35/80;D04H1/00;D04H1/42;D04H3/00;D04H13/00;(IPC1-7):B32B17/12 主分类号 B32B17/12
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