By Narottam P. Bansal, J. P. Singh, Song Ko, Ricardo H. R. Castro, Gary Pickrell, Navin Jose Manjooran, Mani Nair, Gurpreet Singh
Contains contributed 38 papers from the next seven symposia held through the 2012 fabrics technology and expertise (MS&T’12) meeting:
- Innovative Processing and Synthesis of Ceramics, Glasses and Composites
- Advances in Ceramic Matrix Composites
- Solution dependent Processing for Ceramic Materials
- Novel Sintering procedures and information within the traditional Sintering and Grain Growth
- Nanotechnology for strength, Healthcare and Industry
- Dielectric Ceramic fabrics and digital Devices
- Controlled Synthesis, Processing, and purposes of constitution and useful Nanomaterials
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Additional resources for Processing and Properties of Advanced Ceramics and Composites V: Ceramic Transactions, Volume 240
Kostov, K. A. Weidenmann, A. Nagel, A. Wanner, Internal load transfer in a metal matrix composite with a three dimensional interpenetrating structure, Ada Mater, 59, 1424-1435 (2011) 11 S. Roy, O. Stoll, K. A. Weidenmann, A. Nagel, A. Wanner, Analysis of the elastic properties of an interpenetrating AISH2-AI2O3 composite using ultrasound phase spectroscopy, Compos Sci Technol, 71,962-968(2011) 12 S. Roy, J. Gibmeier, V. Kostov, K. A. Weidenmann, A. Nagel, A. Wanner, Internal load transfer and damage evolution in a 3D interpenetrating metal/ceramic composite, Mater Sci Eng A, 551, 272-279 (2012) 13 F.
The propensity of the crack to propagate along the laminar plies is more in presence of higher in-plane voids and the progress of these cracks across the fiber tows in the direction of applied load causes crack diversion leading to gracious failure. The temperature plays a major role for the oxidation kinetics and significant strength reduction (approx 85%) is observed for the thermally soaked specimens at Ts of 1273 K irrespective of the quenching rate. The gradual decrease in the flexural strength for the thermal fatigue exposed specimens with increase in the Tf from 1073 to 1473 K is in correlation with the higher amount of interface oxidation.
INTRODUCTION Alumina ceramics brazed to a platinum wire pin has a long and high reliability history in implantable devices, due to biocompatibility of both platinum and alumina. Strong bonding between metal and ceramic is the most important factor to develop a hermetic device. The bonding mechanism between platinum and alumina is mostly belived to be solid-state ceramicmetal diffusion bonding. However, despite the different reaction mechanisms and products that have already been reported for the Pt/Al203 system, the exact bonding mechanism between them is not clear [1-13].