A kind of al-ni-y-ca series aluminum-based amorphous alloy and preparation method thereof
An amorphous alloy, al-ni-y-ca technology, applied in the field of amorphous alloys, can solve the problems of high price, high cost, unsuitable for industrial production, etc., achieve low cost, increase melt bulk density, Effect of suppressing the diffusion of Al atoms
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Embodiment 1
[0048] Embodiment 1: prepare Al 84.5 Ni 7 Y 8 Ca 0.5 amorphous alloy
[0049] Al by nominal composition 84.5 Ni 7 Y 8 Ca 0.5 (Al 85-x Ni 7 Y 8 Ca x (x=0.5)) carries out batching, adopts the experimental procedure and the condition of comparative example to prepare and obtain composition to be Al 84.5 Ni 7 Y 8 Ca 0.5 The alloy thin strip, the vacuum is 2Pa; X-ray diffraction (XRD) carries out phase analysis, the result shows that the alloy thin strip has an amorphous structure, see attached figure 1 Curve 2; Differential scanning calorimetry (DSC) carries out thermal stability analysis, and the result shows that Al 84.5 Ni 7 Y 8 Ca 0.5 T of amorphous ribbon g and T x 523K, 547K, see attached figure 2 Curve 9, than Al 85 Ni 7 Y 8 Improve 10K, 17K; the parameter ΔT that characterizes the ability of amorphous formation x 24K, than Al 85 Ni 7 Y 8 Improvement by 41.2%.
Embodiment 2
[0050] Embodiment 2: prepare Al 84 Ni 7 Y 8 Ca 1 amorphous alloy
[0051] Al by nominal composition 84 Ni 7 Y 8 Ca 1 (Al 85-x Ni 7 Y 8 Ca x (x=1)) carries out batching, adopts the experimental procedure and the condition preparation of comparative example to obtain composition to be Al 84 Ni 7 Y 8 Ca 1 The alloy thin strip, the vacuum is 1Pa; X-ray diffraction (XRD) carries out phase analysis, the result shows that the alloy thin strip has an amorphous structure, see the attached figure 1 Curve 3; Differential scanning calorimetry (DSC) carries out thermal stability analysis, and the result shows that Al 84 Ni 7 Y 8 Ca 1 T of amorphous ribbon g and T x 518K, 548K, see attached figure 2 Curve 10, compared to Al 85 Ni 7 Y 8 Improvement of 5K, 18K; parameter ΔT characterizing the ability of amorphous formation x 32K, than Al 85 Ni 7 Y 8 Improvement by 88.2%.
Embodiment 3
[0052] Embodiment 3: prepare Al 83.5 Ni 7 Y 8 Ca 1.5 amorphous alloy
[0053] Al by nominal composition 83.5 Ni 7 Y 8 Ca 1.5 (Al 85-x Ni 7 Y 8 Ca x (x=1.5)) carry out batching, adopt the experimental procedure of comparative example and the condition to prepare and obtain composition and be Al 83.5 Ni 7 Y 8 Ca 1.5 The alloy thin strip, the vacuum degree is 0.5Pa; X-ray diffraction (XRD) conducts phase analysis, the result shows that the alloy thin strip has an amorphous structure, see attached figure 1 Curve 4; Differential scanning calorimetry (DSC) carries out thermal stability analysis, and the result shows that Al 83.5 Ni 7 Y 8 Ca 1.5 T of amorphous ribbon g and T x 529K, 555K, see attached figure 2 Curve 11, ratio Al 85 Ni 7 Y 8 Improve 16K, 25K; the parameter ΔT that characterizes the ability of amorphous formation x 26K, than Al 85 Ni 7 Y 8 Improvement by 52.9%.
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