JOURNAL ARTICLE

Microstructure and mechanical properties of SiC Whisker reinforced ZrO2–Y2O3composites

F. YeT.C. LeiY. ZhouJiyan Dai

Year: 1995 Journal:   Materials Science and Technology Vol: 11 (6)Pages: 529-532   Publisher: Maney Publishing

Abstract

AbstractAbstractThe mechanical properties of 20 vol.-%SiC whisker reinforced ZrO2−V2O3 composites containing 2 and 6 mol.-% Y2O3 were measured at room temperature and the fracture surface was examined. The results indicate that the mechanical behaviour of the composites is strongly influenced by the Y2O3 content. The magnitude of the enhancement of the toughness in composites containing 2 mol.-% Y2O3 compared with unreinforced ZrO2−Y2O3 matrix is larger than that for the composites containing 6 mol.-% Y2O3. Crack propagation modes were characterised by crack deflection, whisker bridging, and whisker pullout. High resolution electron microscopic observations show that in composites containing 2 mol.-% Y2O3 the whiskers are directly bonded to the matrix. However, in composites containing 6 mol.-% Y2O3 there is always a thick amorphous layer at the interface, indicating that the high Y2O3 content has promoted the formation of interfacial amorphous layers. These interfacial amorphous layers strengthen the interfacial bonding, resulting in a composite with a low fracture toughness.MST/2043

Keywords:
Materials science Whisker Composite material Whiskers Microstructure Amorphous solid Fracture toughness Composite number Toughness Crystallography

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Topics

Advanced ceramic materials synthesis
Physical Sciences →  Materials Science →  Ceramics and Composites
Aluminum Alloys Composites Properties
Physical Sciences →  Engineering →  Mechanical Engineering
Concrete and Cement Materials Research
Physical Sciences →  Engineering →  Civil and Structural Engineering

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