Microstructural Evolution and Mechanical Properties of Zr-Cu-Ni-Al Bulk Metallic Glasses by the Bridgman Solidification

被引:0
|
作者
J. L. Cheng
G. Chen
H. W. Xu
F. Xu
Y. L. Du
机构
[1] Ministry of Education,Engineering Research Center of Materials Behavior and Design
[2] Nanjing University of Science and Technology,undefined
[3] Jiangsu Institute of Advanced Materials,undefined
关键词
Bulk Metallic Glass; Glass Formation; Spherical Cell; Localize Shear Band; Bridgman Technique;
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摘要
The microstructural evolution was experimentally studied at a withdrawal velocity between 6 and 0.1 mm/s by a Bridgman technique in Zr51.7Cu30Ni8.3Al10. Our results indicate that the Zr51.7Cu30Ni8.3Al10 alloy can be considered as the ZrCu-Zr2Cu pseudo-binary eutectic system, and the glass-forming ability (GFA) is correlated with the (L → ZrCu + Zr2Cu) pseudo-binary eutectic reaction. This understanding has important implications and guidance for designing and fabricating new Zr-Cu-Ni-Al bulk metallic glasses (BMGs) with superior glass formation. Moreover, compressive tests were also performed on these samples. The results show that as the precipitation of crystal, plastic strain decreases. It indicates that the precipitated crystal cannot block the fast propagation of the localized shear bands and the macroscopically brittle failure.
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页码:2620 / 2624
页数:4
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