TY - JOUR
T1 - Centimeter-scale-diameter Co-based bulk metallic glasses with fracture strength exceeding 5000 MPa
AU - Zhang, Tao
AU - Yang, Qin
AU - Ji, Yun Fei
AU - Li, Ran
AU - Pang, Shu Jie
AU - Wang, Jian Feng
AU - Xu, Tao
PY - 2011/12
Y1 - 2011/12
N2 - Co48-xFexCr15Mo14C15B6Er2 (x = 2.5 and 5) bulk metallic glasses (BMGs) with critical size (dc) up to 15 mm in diameter were synthesized by copper mold casting. Co43Fe5Cr15Mo14C15B6Er2 BMG has a wide supercooled liquid region (84 K) and ultrahigh fracture strength exceeding 5000 MPa, which is the highest value for reported metallic glasses with dc exceeding 1 cm. Furthermore, the Poisson ratio, Young modulus, shear modulus and bulk modulus of this alloy were evaluated to be 0.31, 217 GPa, 82 GPa and 214 GPa, respectively. The ideal configurational entropy of Co48-xFexCr15Mo14C15B6Er2 (x = 0 and 5) has been calculated. The introduction of the similar element Fe in the Fe-free Co-Cr-Mo-C-B-Er alloy will be beneficial to increasing the ideal configurational entropy and depressing the critical cooling rate to achieve greater glass-forming ability. The combination of superior glass-forming ability and ultrahigh fracture strength makes the present Co48-xFexCr15Mo14C15B6Er2 (x = 2.5 and 5) BMGs promising candidates as advanced structural materials.
AB - Co48-xFexCr15Mo14C15B6Er2 (x = 2.5 and 5) bulk metallic glasses (BMGs) with critical size (dc) up to 15 mm in diameter were synthesized by copper mold casting. Co43Fe5Cr15Mo14C15B6Er2 BMG has a wide supercooled liquid region (84 K) and ultrahigh fracture strength exceeding 5000 MPa, which is the highest value for reported metallic glasses with dc exceeding 1 cm. Furthermore, the Poisson ratio, Young modulus, shear modulus and bulk modulus of this alloy were evaluated to be 0.31, 217 GPa, 82 GPa and 214 GPa, respectively. The ideal configurational entropy of Co48-xFexCr15Mo14C15B6Er2 (x = 0 and 5) has been calculated. The introduction of the similar element Fe in the Fe-free Co-Cr-Mo-C-B-Er alloy will be beneficial to increasing the ideal configurational entropy and depressing the critical cooling rate to achieve greater glass-forming ability. The combination of superior glass-forming ability and ultrahigh fracture strength makes the present Co48-xFexCr15Mo14C15B6Er2 (x = 2.5 and 5) BMGs promising candidates as advanced structural materials.
KW - Co alloys
KW - bulk metallic glass
KW - glass forming ability
KW - mechanical properties
UR - https://www.scopus.com/pages/publications/83055179394
U2 - 10.1007/s11434-011-4765-8
DO - 10.1007/s11434-011-4765-8
M3 - 文章
AN - SCOPUS:83055179394
SN - 1001-6538
VL - 56
SP - 3972
EP - 3977
JO - Chinese Science Bulletin
JF - Chinese Science Bulletin
IS - 36
ER -