By L. Franks
Papers from the yankee Ceramic Society's thirty first overseas convention on complex Ceramics and Composites, held in Daytona seashore, Florida, January 21-26, 2007. issues comprise obvious ceramics for impression resistance, defense opposed to mine blast and fragments, demanding situations dealing with ceramic armor brands, novel fabric strategies and improvement of legitimate armor layout and characterization instruments to foretell functionality for air and flooring autos in addition to the person soldier.
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Extra resources for Advances in Ceramic Armor III: Ceramic Engineering and Science Proceedings
CONCLUSIONS 1. Employing plasma pressure compaction (P'C ") technique, near theoretically dense boron carbide ceramic disks were produced at significantly lower processing time and temperatures than in traditional sintering methods. Lowering in sintering temperature and time resulted in the development of fine-grained microstructure. 7. Dynamic indentations resulted in a consistent decrease of Iiardness and fracture toughness as well as greater extent of damage compared to static indentations for all the grain sizes.
Transmission electron micrograph of the starting boron carbide powder particles. Fig. 2. Consolidated boron carbide disk aiid test samples for indentiition. Advances in Ceramic Armor Ill 31 Static and Dynamic indentation Response of Fine Grained Boron Carbide Specimens of rectangular cross section of4mni x 3 n m and of length 2511ini were used to investigate the rate dependent indentation fracture characteristics on the loading surface. The 4mm x 3Illnl loading surfaces of each specimen were polished metallographically to perform static and dynamic Vickers indentation experiments.
SEM niicroyraphs of sintered boron carbide samples at 1750'C for various consolidation times: (a) 2 min: (b) 5 min and (c) 30 min. Advances in Ceramic Armor 111 33 Static and Dynamic Indentation Response of Fine Grained Boron Carbide Fig. 5. Optical micrographs of the sintered (at I750 "C) and etched boron carbide samples. The average grain sizes are indicated on the optical micrographs. Z Comparison of static and dynamic indentation hardness The results of static and dynaniic hardness nieasurements for the three grain sizes are presented in Fig.
Advances in Ceramic Armor III: Ceramic Engineering and Science Proceedings by L. Franks