TY - JOUR
T1 - Synthesis, thermal stability and properties of [(Fe1-xCo x)72Mo4B24]94Dy 6 bulk metallic glasses
AU - Tao, Shan
AU - Ahmad, Zubair
AU - Jian, Hong
AU - Ma, Tianyu
AU - Yan, Mi
PY - 2011/3/3
Y1 - 2011/3/3
N2 - A series of [(Fe1-xCox)72Mo 4B24]94Dy6 (x = 0.1, 0.2, 0.3, 0.4 and 0.5 at.%) bulk metallic glasses (BMGs) in rod geometries with critical diameter up to 3 mm were fabricated by copper mold casting method. This alloy system exhibited good thermal stability with high glass transition temperature (Tg) 860 K and crystallization temperature (Tx) 945 K. The addition of Co was found to be effective in adjusting the alloy composition deeper to eutectic, leading to lower liquidus temperature (Tl). The [(Fe0.8Co0.2)72Mo4B 24]94Dy6 alloy showed the largest supercooled liquid region (ΔTx = Tx - Tg = 92 K), reduced glass transition temperature (Trg = Tg/T l = 0.622) and gamma parameter (γ = Tx/(T g + Tl) = 0.424) among the present system. Maximum compressive fracture strength of 3540 MPa and micro-Vickers hardness of 1185 kg/mm2 was achieved, resulting from the strong bonding structure among the alloy constituents. The alloy system possessed soft magnetic properties with high saturation magnetization of 56.61-61.78 A m2/kg and coercivity in the range of 222-264.2 A/m, which might be suitable for application in power electronics devices.
AB - A series of [(Fe1-xCox)72Mo 4B24]94Dy6 (x = 0.1, 0.2, 0.3, 0.4 and 0.5 at.%) bulk metallic glasses (BMGs) in rod geometries with critical diameter up to 3 mm were fabricated by copper mold casting method. This alloy system exhibited good thermal stability with high glass transition temperature (Tg) 860 K and crystallization temperature (Tx) 945 K. The addition of Co was found to be effective in adjusting the alloy composition deeper to eutectic, leading to lower liquidus temperature (Tl). The [(Fe0.8Co0.2)72Mo4B 24]94Dy6 alloy showed the largest supercooled liquid region (ΔTx = Tx - Tg = 92 K), reduced glass transition temperature (Trg = Tg/T l = 0.622) and gamma parameter (γ = Tx/(T g + Tl) = 0.424) among the present system. Maximum compressive fracture strength of 3540 MPa and micro-Vickers hardness of 1185 kg/mm2 was achieved, resulting from the strong bonding structure among the alloy constituents. The alloy system possessed soft magnetic properties with high saturation magnetization of 56.61-61.78 A m2/kg and coercivity in the range of 222-264.2 A/m, which might be suitable for application in power electronics devices.
KW - Bulk metallic glass
KW - Glass forming ability
KW - Soft magnetic property
KW - Thermal stability
UR - https://www.scopus.com/pages/publications/79551686687
U2 - 10.1016/j.jallcom.2010.12.109
DO - 10.1016/j.jallcom.2010.12.109
M3 - 文章
AN - SCOPUS:79551686687
SN - 0925-8388
VL - 509
SP - 3843
EP - 3846
JO - Journal of Alloys and Compounds
JF - Journal of Alloys and Compounds
IS - 9
ER -