MICROSTRUCTURAL DESIGN OF PLATELET REINFORCED CERAMICS

Citation
W. Pompe et Ds. Wilkinson, MICROSTRUCTURAL DESIGN OF PLATELET REINFORCED CERAMICS, Journal de physique. IV, 3(C7), 1993, pp. 1889-1894
Citations number
20
Categorie Soggetti
Physics
Journal title
ISSN journal
11554339
Volume
3
Issue
C7
Year of publication
1993
Part
3
Pages
1889 - 1894
Database
ISI
SICI code
1155-4339(1993)3:C7<1889:MDOPRC>2.0.ZU;2-N
Abstract
Platelet reinforcement can increase the fracture toughness of ceramics . However, the responsible mechanisms are still not clearly understood . In this paper we examine the role of residual stresses due to therma l expansion mismatch. The residual stress distribution can be calculat ed using the effective-field approximation for ellipsoidal inclusions. The three main toughening mechanisms (crack deflection, crack bridgin g, and microcracking) are affected differently by residual stresses. W e show how the critical flaw size can be properly assessed once the ro le of residual stress is taken into account, and how the flaw size is related to microstructural features in the material. It follows that b y optimizing the ratio of grain size to platelet size, and by controll ing the residual stress distribution, the fracture toughness can be in creased by platelet reinforcement by more than 50% without a significa nt decrease in strength.