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钇补强颗粒弥散陶瓷复合材料增韧机制的微观结构表征
引用本文:许崇海,赵彤,王毅,程强,李林. 钇补强颗粒弥散陶瓷复合材料增韧机制的微观结构表征[J]. 中国陶瓷, 2001, 37(2): 1-3,22
作者姓名:许崇海  赵彤  王毅  程强  李林
作者单位:1. 山东轻工业学院机电工程系,济南 250100
2. 山东轻工业学院机电工程系,
摘    要:在Al2O3/(W,Ti)C陶瓷复合材料中适量添加稀土元素钇能显著提高其断裂韧性。本文运用SEM与TEM技术,从微观结构的角度探讨了其增韧机制。表明,由于稀土钇的添加,使材料内部形成不同程度的强弱界面,它们与扩展中的裂纹相互作用,使得裂纹桥联、裂纹分支、裂纹偏转以及微裂纹增韧机制得到明显增加和加强,从而以多种增韧机制及其协同作用共同提高稀土补强Al2O3/(W,Ti)C陶瓷复合材料的断裂韧性。

关 键 词:陶瓷复合材料 稀土元素 微观结构表征 增韧机制 钇 补强
文章编号:1001-9642(2001)02-0001-03

Microstructural Characterization of the Toughening Mechanisms of the Particle Dispersed Ceramic Composite Material Reinforced with Yttrium
XU Chong-hai ZHAO Tong WANG Yi CHENG Qiang LI Lin. Microstructural Characterization of the Toughening Mechanisms of the Particle Dispersed Ceramic Composite Material Reinforced with Yttrium[J]. China Ceramics, 2001, 37(2): 1-3,22
Authors:XU Chong-hai ZHAO Tong WANG Yi CHENG Qiang LI Lin
Abstract:The fracture toughness of the Al-2O-3(W,Ti)C ceramic composite material can be increased with the addition of rare earth yttrium,Both SEM and TEM being used for the observation and analysis of the crack propagation patterns,the toughening mechanisms are discussed in detail microstructurally. Results show that both strong and weak interfaces,formed as a result of the addition of yttrium,interact with the propagating cracks,which lead to the increase of the fracture toughness of the Al-2O-3/(W,Ti)C ceramic composite through several toughening mechanisms such as multigrain bridging,crack deflection,crack branching and microcracking,etc.and their synergism toughening mechanisms.
Keywords:ceramic composite  material  rare earth element  microstructure  toughening mechanism
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