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首页> 外文期刊>Ceramic Engineering and Science Proceedings >THE EFFECT OF THE FIBER/MATRIX INTERFACE ON THE MECHANICAL PROPERTIES OF CERAMIC-REINFORCED ZIRCONIA PHOSPHATE-BASED MATRIX COMPOSITES
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THE EFFECT OF THE FIBER/MATRIX INTERFACE ON THE MECHANICAL PROPERTIES OF CERAMIC-REINFORCED ZIRCONIA PHOSPHATE-BASED MATRIX COMPOSITES

机译:纤维/基体界面对陶瓷增强磷酸锆基基体复合材料力学性能的影响

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摘要

Hot-pressed and phosphate-bonded zirconia phosphate-based matrix composites were fabricated for use as a composite faceplate in a sandwich structure radome wall. These composites were reinforced with either mullite whisker-mats or different grades of Nicalon SiC fibers (Nippon Carbon, Tokyo, Japan). The fibers were either in tow or cloth form and were uncoated or coated with thin debond layers of BN or C. The strength, fracture toughness, and retained up shock strength of the various composites were measured. These results were correlated with the resultant microstructure of the reinforcement/matrix interface. SEM and TEM revealed the presence of a wide variety of interphases including the formation of SiP{sub}2O{sub}7 reaction layers. The presence of intact debond coatings and semi-porous reaction layers led to composites with better strength and toughness. Degradation of some of these interphases during thermal up shocking of 1200℃ led to embrittlement of the composite faceplates.
机译:制备了热压和磷酸盐结合的氧化锆磷酸盐基复合材料,以用作三明治结构天线罩壁中的复合面板。这些复合材料用莫来石晶须垫或不同等级的Nicalon SiC纤维(Nippon Carbon,东京,日本)增强。纤维为丝束或布形式,未涂覆或涂覆有薄薄的BN或C脱胶层。测量了各种复合材料的强度,断裂韧性和保持的抗冲击强度。这些结果与增强/基体界面的最终微观结构相关。 SEM和TEM显示存在多种中间相,包括形成SiP {sub} 2O {sub} 7反应层。完整的脱胶涂层和半多孔反应层的存在导致复合材料具有更好的强度和韧性。在1200℃的热冲击过程中,这些中间相的某些降解导致复合面板变脆。

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