Published January 1, 1991 | Version v1
Journal article

High temperature strengthening mechanism of hafnium carbide in a tungsten-rhenium matrix

  • 1. Department of Chemical, Bio and Materials Engineering, Arizona State University, Tempe, Arizona 85287-6006 (USA)

Description

The interrelationship between the testing temperature and HfC strength increment of an arc-melted W-3.6Re-0.4HfC was determined from 1950 K to 2980 K in a vacuum of better than 1.3x10-5 Pa (10-7 torr). The present research was focused on the characteristic temperature at which the rapid coarsening of HfC particles occurred and the effect of the second-phase particle size on the high temperature strength properties of this material. It was found that the HfC particle strengthening was effective in a W-Re matrix up to a characteristic temperature of 2450 K in the short-term tensile test. Carbon was found to be the rate-limiting solute in the HfC particle growth. The strength of HfC strengthened alloy at temperature above 0.5 Tm is proportional to the square root of particle volume fraction. The yield strengths of W-3.6Re-0.26HfC calculated based on the particle statistical distribution had good agreement with the experimental values from 1950 K to 2980 K. Besides, an addition of 0.26 percent HfC in tungsten resulted in about 28 percent increase in the activation energy of plastic deformation at high temperatures

Additional details

Publishing Information

Journal Title
AIP Conference Proceedings
Journal Volume
217
Journal Issue
1
Series
AIP Conf. Proc.
Journal Page Range
193-204
ISSN
0094-243X
CODEN
APCPC

Conference

Title
8. symposium on space nuclear power systems.
Dates
6-10 Jan 1991.
Place
Albuquerque, NM (USA).

INIS

Country of Publication
United States
Country of Input or Organization
United States
INIS RN
22075774
Subject category
S36: MATERIALS SCIENCE;
Resource subtype / Literary indicator
Conference
Descriptors DEI
HAFNIUM CARBIDES; MATRIX MATERIALS; MICROSTRUCTURE; PARTICLE SIZE; RHENIUM ADDITIONS; STRAIN HARDENING; TEMPERATURE DEPENDENCE; TENSILE PROPERTIES; TUNGSTEN ADDITIONS; VERY HIGH TEMPERATURE; YIELD STRENGTH
Descriptors DEC
CARBIDES; CARBON COMPOUNDS; CRYSTAL STRUCTURE; HAFNIUM COMPOUNDS; HARDENING; MATERIALS; MECHANICAL PROPERTIES; SIZE; TRANSITION ELEMENT COMPOUNDS

Optional Information

Secondary number(s)
CONF-910116--.