TY - JOUR
T1 - Physical and mechanical properties of single crystals of Co-Al-W based alloys with L12 single-phase and L12fcc two-phase microstructures
AU - Inui, Haruyuki
AU - Tanaka, Katsushi
AU - Kishida, Kyosuke
AU - Okamoto, Norihiko L.
AU - Oohashi, Takashi
PY - 2009/11/17
Y1 - 2009/11/17
N2 - Single-crystal elastic constants of Co3(Al,W) with the cubic L12 structure have been experimentally measured by resonance ultrasound spectroscopy at liquid helium temperature. The values of all the three independent single-crystal elastic constants and polycrystalline elastic constants of Co3(Al,W) experimentally determined are 15-25% larger than those of Ni3(Al,Ta) but are considerably smaller than those previously reported. Two-phase microstructures with cuboidal L12 precipitates being well aligned parallel to <100> and well faceted parallel to (100) are expected to form very easily in Co-base superalloys because of the large value of E111|E100 and Cij of Co3(Al,W). This is indeed confirmed by experiment. Values of yield stress obtained for both [001] and [123] orientations of L1 2/fcc two-phase single crystals moderately decrease with the increase in temperature up to 800°C and then decrease rapidly with temperature above 800°C without any anomaly in yield stress. Slip on (111) is observed to occur for both orientations in the whole temperature range investigated.
AB - Single-crystal elastic constants of Co3(Al,W) with the cubic L12 structure have been experimentally measured by resonance ultrasound spectroscopy at liquid helium temperature. The values of all the three independent single-crystal elastic constants and polycrystalline elastic constants of Co3(Al,W) experimentally determined are 15-25% larger than those of Ni3(Al,Ta) but are considerably smaller than those previously reported. Two-phase microstructures with cuboidal L12 precipitates being well aligned parallel to <100> and well faceted parallel to (100) are expected to form very easily in Co-base superalloys because of the large value of E111|E100 and Cij of Co3(Al,W). This is indeed confirmed by experiment. Values of yield stress obtained for both [001] and [123] orientations of L1 2/fcc two-phase single crystals moderately decrease with the increase in temperature up to 800°C and then decrease rapidly with temperature above 800°C without any anomaly in yield stress. Slip on (111) is observed to occur for both orientations in the whole temperature range investigated.
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M3 - Conference article
AN - SCOPUS:70449449489
SN - 0272-9172
VL - 1128
SP - 369
EP - 374
JO - Materials Research Society Symposium - Proceedings
JF - Materials Research Society Symposium - Proceedings
T2 - 2008 MRS Fall Meeting
Y2 - 2 December 2008 through 5 December 2008
ER -