Mg-Cu (Ag)-Gd Bulk metallic glass forming alloy: Phase selection of melt crystallization

Q Zheng - Science of Advanced Materials, 2012 - ingentaconnect.com
The solidification microstructure of the master alloys (MAs) and slowly cooled alloys (SCAs)
for Mg-Cu-Gd ternary system and the best glass former in Mg-Cu-Ag-Gd quaternary system …

Correlation of the glass formation and phase selection of the Mg-Cu-Gd bulk metallic glass forming alloys

JL Cheng, G Chen, W Zhao, ZZ Wang… - Journal of Non-Crystalline …, 2017 - Elsevier
The glass formation and microstructure evolution of Mg61Cu28Gd11 and alloys laying on
the line linking this composition to pure magnesium, ie alloys with fixed Cu: Gd ratio but …

The influence of Ag substitution for Cu on glass-forming ability and thermal properties of Mg-based bulk metallic glasses

L Zhang, R Li, J Wang, H Zhang, N Hua… - Journal of non-crystalline …, 2012 - Elsevier
A group of pseudo-ternary Mg–(Cu–Ag)–Dy bulk metallic glasses (BMGs) was developed by
copper mold casting. The glass-forming ability (GFA) is significantly improved by the …

Glass formation and crystallization behavior in Mg65Cu25Y10− xGdx (x= 0, 5 and 10) alloys

H Men, WT Kim, DH Kim - Journal of non-crystalline solids, 2004 - Elsevier
The glass forming ability and crystallization behavior of Mg65Cu25Y10− xGdx (x= 0, 5 and
10) alloys have been investigated. The glass forming ability (GFA) is significantly improved …

The effect of Ni substitution on the glass-forming ability and mechanical properties of Mg–Cu–Gd metallic glass alloys

G Yuan, A Inoue - Journal of Alloys and Compounds, 2005 - Elsevier
The effect of substitution of Ni for Cu on the glass forming ability and mechanical properties
was studied in Mg65Cu25− xNixGd10 (x= 0, 5, 10, 15, 20, 25) alloys by thermal analysis and …

Fabrication of ternary Mg–Cu–Gd bulk metallic glass with high glass-forming ability under air atmosphere

H Men, DH Kim - Journal of materials research, 2003 - cambridge.org
A new Mg65Cu25Gd10 alloy having significantly improved glass-forming ability (GFA) has
been developed. In this article, we show that the ternary Mg65Cu25Gd10 bulk metallic glass …

The effect of Ag addition on the glass-forming ability of Mg–Cu–Y metallic glass alloys

ES Park, HG Kang, WT Kim, DH Kim - Journal of Non-Crystalline Solids, 2001 - Elsevier
The effect of Ag substitution for Cu on the glass forming ability was studied in Mg65Cu25−
xAgxY10 (x= 0, 5, 10, 15, 20, 25) alloys by using thermal analysis and X-ray diffractometry …

Formation of Mg–Cu–Ni–Ag–Zn–Y–Gd bulk glassy alloy by casting into cone-shaped copper mold in air atmosphere

ES Park, DH Kim - Journal of Materials Research, 2005 - cambridge.org
A new Mg–Cu–Ni–Ag–Zn–Y–Gd alloy with significantly improved glass forming ability (GFA)
was developed in this work. Mg65Cu7. 5Ni7. 5Ag5Zn5Y5Gd5 bulk metallic glass (BMG) with …

Glass-forming ability for Mg-Cu-Nd alloys

KQ Qiu, QF Li, YL Ren, WH Jiang, XG Yuan - Metallurgical and Materials …, 2008 - Springer
The glass-forming ability (GFA), thermal stability, and mechanical properties of ternary Mg-
Cu-Nd alloys were investigated. The results show that the amorphous structure of about 3 …

Fabrication and mechanical properties of Mg65Cu15Ag5Pd5Gd10 bulk metallic glass

H Men, WT Kim, DH Kim - Materials Transactions, 2003 - jstage.jst.go.jp
Mg-TM-RE (TM: transition metal such as Ni, Cu, Zr; RE: rare-earth metal such as Y) alloy
systems exhibit a large undercooled liquid region and high glass forming ability (GFA) with …