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Germanium-containing nickel-free non-phosphorus large-sized palladium-based amorphous alloy and preparation method thereof

An amorphous alloy, large-size technology, applied in the field of germanium-containing, nickel-free, phosphorus-free, large-size palladium-based amorphous alloy and its preparation field

Active Publication Date: 2018-03-09
UNIV OF SCI & TECH BEIJING
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

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Problems solved by technology

However, according to literature and patent searches, there has been no public report so far that has both high glass forming ability and plastic deformation ability. The germanium-containing palladium-based amorphous alloy system, and the design of the alloy composition without phosphorus and nickel in the system helps to simplify the palladium-based alloy. and broaden its application prospects in wearable luxury goods and biomedical materials

Method used

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  • Germanium-containing nickel-free non-phosphorus large-sized palladium-based amorphous alloy and preparation method thereof
  • Germanium-containing nickel-free non-phosphorus large-sized palladium-based amorphous alloy and preparation method thereof
  • Germanium-containing nickel-free non-phosphorus large-sized palladium-based amorphous alloy and preparation method thereof

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preparation example Construction

[0063] Another object of the present invention is to provide the preparation method of above-mentioned alloy, and this method specifically comprises the following steps:

[0064] Preparation method (1): Preparation of master alloy without glass coating and purification, and preparation of amorphous alloy by copper mold suction casting, the steps include:

[0065] Step 1. Ingredients: convert metal Pd, Cu, Ag and non-metallic Si and Ge with a purity of 99.0wt%-99.99wt% into mass according to the atomic percentage of the above expression, remove the oxide skin on the surface of the raw material, and use industrial ethanol Clean the raw materials and weigh them according to their required quality;

[0066] Step 2. Master alloy smelting: stack the raw materials treated in step 1 in the order of melting point in a non-consumable vacuum electric arc furnace or cold crucible suspension furnace, and place them in a vacuum below 10 -3 After Pa is filled with high-purity argon (not les...

Embodiment 1

[0078] Embodiment 1: Preparation of Pd-Cu-Si-Ge series amorphous alloy:

[0079] Design Pd a Cu b Ge c Si d Ag e Amorphous alloy composition, where a=77.5, b=6, c=16.5, 8.5, 4, 8, 12.5, d=0, e=0. Get the composition as Pd 77.5 Cu 6 Ge 16.5 , Pd 77.5 Cu 6 Si 8 Ge 8.5 , Pd 77.5 Cu 6 Si 12.5 Ge 4 alloy.

[0080] Figure 1 shows the alloy Pd 77.5 Cu 6 Ge 16.5 , Pd 77.5 Cu 6 Si 8 Ge 8.5 The XRD pattern of the 2mm sample prepared by the preparation method (3), figure 2 Alloy Pd 77.5 Cu 6 Si 12.5 Ge 4 The XRD patterns of the 2mm and 4mm samples prepared by the preparation method (2) have only the typical diffuse scattering peaks of amorphous, indicating that the prepared alloys are all in the amorphous phase, and the alloy system can be prepared by the preparation method (3). Amorphous alloys with dimensions not less than 2 mm, Pd 77.5 Cu 6 Si 12.5 Ge 4 Through the preparation method (2), the alloy can prepare an amorphous alloy with a critical size no...

Embodiment 2

[0082] Embodiment 2: the preparation of Pd-Cu-Si-Ge-Ag series amorphous alloy:

[0083] Design Pd a Cu b Ge c Si d Ag e Amorphous alloy composition, where a=77.5, b=5,4,3, c=4, d=12.5, e=1,2,3. Get the composition as Pd 77.5 Cu 5 Si 12.5 Ge 4 Ag 1 , Pd 77.5 Cu 4 Si 12.5 Ge 4 Ag 2 , Pd 77.5Cu 3 Si 12.5 Ge 4 Ag 3 alloy.

[0084] Figure 5 Alloy Pd 77.5 Cu 5 Si 12.5 Ge 4 Ag 1 , Pd 77.5 Cu 4 Si 12.5 Ge 4 Ag 2 The XRD pattern of the 8mm sample prepared by the preparation method (3), Figure 6 for with Figure 5 The corresponding SEM photos, Figure 7 Alloy Pd 77.5 Cu 3 Si 12.5 Ge 4 Ag 3 The XRD pattern of the 8mm sample prepared by the preparation method (3), and the 4mm sample prepared by the preparation method (1), Figure 8 for with Figure 7 Corresponding to the SEM photo, the XRD pattern has only the typical diffuse scattering peak of the amorphous, and the corresponding SEM photo also shows a single amorphous phase composition of the al...

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Abstract

The invention discloses a germanium-containing nickel-free non-phosphorus large-sized palladium-based amorphous alloy and a preparation method thereof. The alloy comprises, in atomic percent, 73-80% of Pd, 0-8% of Cu, 0-18% of Si, 2-20% of Ge and 0-6% of Ag. The alloy mainly has the advantages that the alloy is free from nickel and phosphorus, potential biological toxicity is greatly reduced, biological compatibility is improved, the smelting preparation method is simple and convenient, the alloy has strong amorphous forming ability, a glass-coated medium process is used for purification, water quenching and rapid cooling, the palladium-based amorphous alloy with the critical size of 1-8mm can be prepared, components with the strongest glass formation ability can be prepared into the amorphous alloy with the critical size not smaller than 4mm by an electric arc melting copper mold suction-casting method, the amorphous alloy with the critical size not smaller than 8mm can be prepared bya preparation mode 3, and the alloy has plastic deformation capacity higher than 3% and has a 40-60K super-cooled liquid region.

Description

technical field [0001] The invention belongs to the field of bulk amorphous alloys, and specifically relates to a large-sized palladium-based amorphous alloy containing germanium, nickel-free, and phosphorus-free and a preparation method thereof. The critical size of the alloy involved is between 1-8mm, and the plastic deformation capacity is not low at 3%. technical background [0002] Amorphous alloys (metallic glasses) are different from the long-range ordered arrangement of atoms in traditional metal materials. They have a random arrangement of atomic structures and have the characteristics of long-range disorder and short-range order. There are no grain boundaries, Defects such as dislocations are metal materials that have emerged in recent years and are expected to be used as a new generation of structural and functional applications. Compared with traditional crystalline alloys, amorphous alloys have excellent properties such as high strength, high hardness, high ela...

Claims

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Application Information

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Patent Type & Authority Applications(China)
IPC IPC(8): C22C45/00B22D18/06
CPCC22C45/003B22D18/06C22C1/11
Inventor 吕昭平曹迪周捷吴渊王辉刘雄军
Owner UNIV OF SCI & TECH BEIJING