TY - JOUR
T1 - Influence of thermomechanical processing and heat treatments on tensile and Charpy impact properties of B and Cu bearing high-strength low-alloy steels
AU - Hwang, Byoungchul
AU - Lee, Chang Gil
PY - 2010/6
Y1 - 2010/6
N2 - High-strength low-alloy steels containing different B and Cu contents were fabricated by thermomechanical processing and heat treatments such as accelerated cooling, intercritical annealing, and tempering, and then tensile and Charpy impact tests were conducted on them in order to investigate the mechanical properties in terms of yield strength, deformability, and toughness. The test results revealed that the B-added acceleratedly cooled specimens composed mostly of lath martensite had relatively high yield strength, poor deformability and low-temperature toughness in contrast to the B-free acceleratedly cooled specimens consisting mainly of granular bainite and degenerate upper bainite. When the B-added acceleratedly cooled specimens were tempered, the yield strength increased to a certain degree and the low-temperature toughness was remarkably improved, but the deformability severely deteriorated. However, the B-added intercritically annealed specimens provided an attractive balance of yield strength, deformability, and low-temperature toughness due to the dual-phase microstructure of fine ferrite and martensite with lath type morphology.
AB - High-strength low-alloy steels containing different B and Cu contents were fabricated by thermomechanical processing and heat treatments such as accelerated cooling, intercritical annealing, and tempering, and then tensile and Charpy impact tests were conducted on them in order to investigate the mechanical properties in terms of yield strength, deformability, and toughness. The test results revealed that the B-added acceleratedly cooled specimens composed mostly of lath martensite had relatively high yield strength, poor deformability and low-temperature toughness in contrast to the B-free acceleratedly cooled specimens consisting mainly of granular bainite and degenerate upper bainite. When the B-added acceleratedly cooled specimens were tempered, the yield strength increased to a certain degree and the low-temperature toughness was remarkably improved, but the deformability severely deteriorated. However, the B-added intercritically annealed specimens provided an attractive balance of yield strength, deformability, and low-temperature toughness due to the dual-phase microstructure of fine ferrite and martensite with lath type morphology.
KW - Charpy impact properties
KW - Heat treatment
KW - High-strength low-alloy steels
KW - Tensile properties
KW - Thermomechanical processing
UR - http://www.scopus.com/inward/record.url?scp=77952882890&partnerID=8YFLogxK
U2 - 10.1016/j.msea.2010.03.106
DO - 10.1016/j.msea.2010.03.106
M3 - Article
AN - SCOPUS:77952882890
SN - 0921-5093
VL - 527
SP - 4341
EP - 4346
JO - Materials Science and Engineering: A
JF - Materials Science and Engineering: A
IS - 16-17
ER -