Abstract
This paper describes an approach to escape from the classic strength-toughness trade-off in bulk ceramics using the dual composite architectural concept. The key questions addressed by the research were: can dual composite architectures be fabricated? -how do dual composite architectures affect the physical properties of ceramics? -do dual composite architectures affect the mechanical behavior of composites? -do dual composite architectures have increased damage tolerance at elevated temperatures? These questions were answered positively. Reinforcing granules dispersed in loose powder mixtures were hot-pressed to obtain fully dense dual composite architectures with target overall composition. Defined sub-composites (labeled granule and matrix) of similar compositions, but differing engineered microstructures, were successfully retained. The brittle-to-ductile transition of MoSi 2 above 1400 K enabled the simultaneous increase in both strength and toughness, and values of up to 440 MPa and 11.5 MPa√m, respectively, were experimentally determined at 1773 K.
| Original language | American English |
|---|---|
| Pages (from-to) | 2961-2970 |
| Number of pages | 10 |
| Journal | Journal of the European Ceramic Society |
| Volume | 38 |
| Issue number | 8 |
| DOIs | |
| State | Published - Jul 1 2018 |
Keywords
- Dual Composite Architectures
- Fracture Toughness
- Hot-Pressing
- Microstructure-Final
- Strength
- ZrB2
Disciplines
- Ceramic Materials
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