Long-Term Thermal Stability of Binary Cu50.3Zr49.7 Bulk Metallic Glass
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Abstract
We investigate the kinetics and thermal stability of a simple Cu50.3Zr49.7 binary bulk metallic glass (BMG). The long-term thermal stability of Cu50.3Zr49.7 BMG is evaluated by a newly developed method from an extension of Vogel--Fulcher--Tammann analysis. The method has been proven to be valid in Cu50.3Zr49.7 or even other BMGs.
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DING Ding, XIA Lei, SHAN Shao-Tai, DONG Yuan-Da. Long-Term Thermal Stability of Binary Cu50.3Zr49.7 Bulk Metallic Glass[J]. Chin. Phys. Lett., 2008, 25(1): 306-309.
DING Ding, XIA Lei, SHAN Shao-Tai, DONG Yuan-Da. Long-Term Thermal Stability of Binary Cu50.3Zr49.7 Bulk Metallic Glass[J]. Chin. Phys. Lett., 2008, 25(1): 306-309.
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DING Ding, XIA Lei, SHAN Shao-Tai, DONG Yuan-Da. Long-Term Thermal Stability of Binary Cu50.3Zr49.7 Bulk Metallic Glass[J]. Chin. Phys. Lett., 2008, 25(1): 306-309.
DING Ding, XIA Lei, SHAN Shao-Tai, DONG Yuan-Da. Long-Term Thermal Stability of Binary Cu50.3Zr49.7 Bulk Metallic Glass[J]. Chin. Phys. Lett., 2008, 25(1): 306-309.
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