TY - JOUR
T1 - Extension of high cycle fatigue life by the formation of nano-sized martensite particles at intersections of dislocations in an austenitic stainless steel
AU - Inamura, T.
AU - Shimojo, M.
AU - Takashima, K.
AU - Higo, Y.
PY - 2001
Y1 - 2001
N2 - A new fatigue strengthening method which is applicable for both the micro-sized materials and ordinary-sized materials have been proposed. Dislocations are pinned at their intersections by the formation of nano-crystals after cold work in this strengthening method. Nano-sized α′-martensite particles, the diameter of which was approximately 5 nm, were formed by a cryogenic treatment at a certain temperature above Msαb (martensite burst starting temperature) in a commercially available 316-type austenitic stainless steel. These nano-particles are considered to be formed at intersections of dislocations. Fatigue life tests using ordinary-sized specimens revealed that high cycle fatigue life of the 316-type austenitic stainless steel was extended by the cryogenic treatment and this is considered to be due to the pinning of dislocations by the formation of nano-sized α′-martensite particles.
AB - A new fatigue strengthening method which is applicable for both the micro-sized materials and ordinary-sized materials have been proposed. Dislocations are pinned at their intersections by the formation of nano-crystals after cold work in this strengthening method. Nano-sized α′-martensite particles, the diameter of which was approximately 5 nm, were formed by a cryogenic treatment at a certain temperature above Msαb (martensite burst starting temperature) in a commercially available 316-type austenitic stainless steel. These nano-particles are considered to be formed at intersections of dislocations. Fatigue life tests using ordinary-sized specimens revealed that high cycle fatigue life of the 316-type austenitic stainless steel was extended by the cryogenic treatment and this is considered to be due to the pinning of dislocations by the formation of nano-sized α′-martensite particles.
KW - Fatigue life extension
KW - Nano-sized α′-martensite
KW - Pinning dislocations
UR - http://www.scopus.com/inward/record.url?scp=0034866324&partnerID=8YFLogxK
UR - http://www.scopus.com/inward/citedby.url?scp=0034866324&partnerID=8YFLogxK
M3 - Conference article
AN - SCOPUS:0034866324
SN - 0272-9172
VL - 634
SP - B3.13.1-B3.13.6
JO - Materials Research Society Symposium - Proceedings
JF - Materials Research Society Symposium - Proceedings
T2 - Structure and Mechanical Properties of Nanophase Materials- Theory and Computer Si,ulation v.s Experiment
Y2 - 28 November 2000 through 30 November 2000
ER -