INVESTIGATIONS ON THE TITANIUM ALLOY TiMo6A13 (in German)
Journal Article
·
· Technische Mitteilungen Krupp (West Germany) Divided into Tech. Mitt. Krupp, Forschungsber. and Tech. Mitt. Krupp, Werksber.
OSTI ID:4172096
ABS>The mechanical properties of a titanium alloy with 6% Mo and 3% Al under varying heat treatments and its tempering behavior were tnvestigated. After quenching from 800 deg C, the alloy- has a minimum hardness and yield point. In anneaiing at 400 deg C the hardness and strength reach a maximum but the ductility is very- iow. At higher innealing temperutures between 450 and 600 deg C a good combination of strength and ductility was obtained. The yield point ratio at the state oi the minimum yield point is 0.54% it is increased to about 90% by the annealing treatment. The tensile strength is between 110 and 130 kp/ mm/sup 2/. The alloy in the quenched state has a high symmetrical expansion which is of significance for cold working. The structural synthesis and the course of the precipitation in anneling were followed with optical and electron microscopes. (tr-auth)
- Research Organization:
- Originating Research Org. not identified
- NSA Number:
- NSA-14-012030
- OSTI ID:
- 4172096
- Journal Information:
- Technische Mitteilungen Krupp (West Germany) Divided into Tech. Mitt. Krupp, Forschungsber. and Tech. Mitt. Krupp, Werksber., Journal Name: Technische Mitteilungen Krupp (West Germany) Divided into Tech. Mitt. Krupp, Forschungsber. and Tech. Mitt. Krupp, Werksber. Vol. Vol: 17; ISSN TMKRA
- Country of Publication:
- Country unknown/Code not available
- Language:
- German
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Related Subjects
ALUMINUM ALLOYS
ANNEALING
COLD WORKING
CONFIGURATION
DUCTILITY
ELECTRON MICROSCOPY
EXPANSION
HARDNESS
HEAT TREATMENTS
HIGH TEMPERATURE
MECHANICAL PROPERTIES
METALS, CERAMICS, AND MATERIALS
MICROSCOPY
MOLYBDENUM ALLOYS
PRECIPITATION
PREPARATION
QUENCHING
TEMPERATURE
TEMPERING
TENSILE PROPERTIES
TITANIUM ALLOYS
ANNEALING
COLD WORKING
CONFIGURATION
DUCTILITY
ELECTRON MICROSCOPY
EXPANSION
HARDNESS
HEAT TREATMENTS
HIGH TEMPERATURE
MECHANICAL PROPERTIES
METALS, CERAMICS, AND MATERIALS
MICROSCOPY
MOLYBDENUM ALLOYS
PRECIPITATION
PREPARATION
QUENCHING
TEMPERATURE
TEMPERING
TENSILE PROPERTIES
TITANIUM ALLOYS