2013
DOI: 10.1016/j.intermet.2013.08.003
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A Ti–Zr–Be–Fe–Cu bulk metallic glass with superior glass-forming ability and high specific strength

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Cited by 43 publications
(22 citation statements)
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References 42 publications
(20 reference statements)
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“…The properties of the alloy melt were set as typical values of common BMGs prepared by this method. [19][20][21] The simulations were performed in ANSYS using the PLANE77 thermal solid elements. In the water quenching model, the element size was set as 0.5 mm.…”
Section: Simulationmentioning
confidence: 99%
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“…The properties of the alloy melt were set as typical values of common BMGs prepared by this method. [19][20][21] The simulations were performed in ANSYS using the PLANE77 thermal solid elements. In the water quenching model, the element size was set as 0.5 mm.…”
Section: Simulationmentioning
confidence: 99%
“…12,[19][20][21] T N was selected as ∼0.8T M . Then two series of data of cooling rate R versus diameter D could be obtained.…”
Section: B Evolution Of Cooling Rate With Increasing Sample Sizementioning
confidence: 99%
“…The specific strength values of Ti-based BMGs are universally over 3.5 × 10 5 N m kg −1 , which is significantly higher than the typical titanium alloy Ti-6Al-4V (2.6 × 10 5 N m kg −1 ) [4,5]. Ti-based BMGs also have many other outstanding properties, including good corrosion resistance [6,7], good biocompatibility [8][9][10], and good glass-forming-ability (GFA) [11,12], having potential applications in the fields of consumer electronics, automotive, biomedical devices, aerospace, and so on [13,14]. However, some Ti-based BMGs, especially the alloys with compositions within the range of best GFA in each alloy system, often show brittle deformation behaviors and the compression plasticity at room temperature is poor.…”
Section: Introductionmentioning
confidence: 99%
“…However, some Ti-based BMGs, especially the alloys with compositions within the range of best GFA in each alloy system, often show brittle deformation behaviors and the compression plasticity at room temperature is poor. For example, among Ti-Zr-Be-Fe-Cu BMG alloys, the GFA of Ti 37.31 Zr 22.75 Be 25.48 Fe 5.46 Cu 9 BMG is the best one, and the critical size of as-cast rod with full glassy structure is >32 mm in diameter, but its plasticity is relatively poor (less than 1%) [12]. If the Cu or Fe content of Ti-Zr-Be-Fe-Cu alloys changes (so-called alloying), then the plasticity would be greatly improved but the GFA would be obviously decreased [12,15,16].…”
Section: Introductionmentioning
confidence: 99%
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