High-abrasion-resistance composite alloy ring piece and preparing technology thereof

A composite alloy, high wear-resistant technology, applied in metal material coating process, ion implantation plating, coating, etc., can solve the problem of affecting the quality and service life of finished products, affecting production efficiency and economic benefits, and the cost of hard alloy materials Advanced problems, to achieve the effect of improved mechanical properties, excellent mechanical properties, and high surface density

Inactive Publication Date: 2017-11-17
ANHUI TONGSHENG RING
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

However, the cost of cemented carbide materials is relatively high, and the process is difficult to process, which greatly affects production efficiency and economic benefits. Therefore, in the prior art, cemented carbide is often used for pl...

Method used

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Examples

Experimental program
Comparison scheme
Effect test

Embodiment 1

[0022] A high wear-resistant composite alloy ring, characterized in that it includes an annular alloy steel base material, a transitional infiltrated layer, and a hard alloy cladding layer, the thickness of the transitional infiltrated layer is 0.28mm, and the thickness of the cemented carbide cladding layer is 1.6mm.

[0023] in:

[0024] The ring-shaped alloy steel substrate includes the following percentage components: C 0.82%, Si 0.48%, Mn 0.9%, Cr7.5%, Ni 16%, Cu 1.6%, N 0.08%, W 1.2%, and the balance is Fe And unavoidable impurities, also include Ti1.6%, B 0.5%, RE 0.3%, wherein RE is Ce, Pr composition.

[0025] The transitional infiltrated layer is W-Mo-Nb-Ti nickel-based alloy, and the content of each component in the transitional infiltrated layer is as follows: W 8%, Mo 8%, Nb 10%, Ti 15%, Ni balance.

[0026] The cemented carbide cladding layer includes the following percentages of raw materials: 25% WC, 12% NbC, 10% TiN, 4% fumed white carbon black, and the rest...

Embodiment 2

[0032] A high wear-resistant composite alloy ring, characterized in that it includes an annular alloy steel base material, a transitional infiltrated layer, and a hard alloy cladding layer, the thickness of the transitional infiltrated layer is 0.45mm, and the thickness of the cemented carbide cladding layer is 2.1mm.

[0033] in:

[0034] The ring-shaped alloy steel substrate includes the following percentage components: C 0.73%, Si 0.45%, Mn 1.2%, Cr7.2%, Ni 18%, Cu 1.4%, N 0.03%, W 1.4%, and the balance is Fe And unavoidable impurities, also include Ti3.8%, B 1.4%, RE 0.4%, where RE is Ce, Sc, Y composition.

[0035] The transitional infiltrated layer is W-Mo-Nb-Ti nickel-based alloy, and the content of each component in the transitional infiltrated layer is as follows: W 14%, Mo 8%, Nb 11%, Ti 22%, Ni balance.

[0036] The cemented carbide cladding layer includes the following percentages of raw materials: 30% of WC, 10% of NbC, 8% of TiN, 3% of fumed white carbon black,...

Embodiment 3

[0039] A high wear-resistant composite alloy ring, characterized in that it includes an annular alloy steel base material, a transitional infiltrated layer, and a hard alloy cladding layer, the thickness of the transitional infiltrated layer is 0.63mm, and the thickness of the cemented carbide cladding layer is 3mm.

[0040] in:

[0041] The ring-shaped alloy steel substrate includes the following percentage components: C 0.69%, Si 0.56%, Mn 1.4%, Cr8%, Ni 14%, Cu 1.5%, N 0.05%, W 1%, the balance is Fe and not Avoided impurities also include Ti 2.5%, B2.2%, RE 0.2%, wherein RE is Ce.

[0042] The transitional infiltrated layer is W-Mo-Nb-Ti nickel-based alloy, and the contents of each component in the transitional infiltrated layer are as follows: W 15%, Mo 6%, Nb 8%, Ti 20%, Ni balance.

[0043] The cemented carbide cladding layer includes the following percentages of raw materials: 25% WC, 8% NbC, 4% TiN, 2% fumed white carbon black, and the rest of NiC. The purity of the ...

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Abstract

The invention proposes a high-wear-resistant composite alloy ring and its preparation process, which includes an annular alloy steel base material, a transitional infiltrated layer, and a hard alloy cladding layer. The transitional infiltrated layer has a thickness of 0.2-0.7mm and is hard The thickness of the alloy cladding layer is 1-3mm. Through reasonable raw material ratio and coating selection, arc-added glow ion plating technology and synchronous laser cladding technology are used to treat the base material respectively, and a composite alloy with three-layer structure is obtained. The ring, base material, permeable layer and cladding layer are well combined, have excellent wear resistance, corrosion resistance, toughness and stability, high surface density, significantly improved mechanical properties, and effectively prolong the service life of the product.

Description

technical field [0001] The invention relates to the technical field of metal rings, in particular to a high wear-resistant composite alloy ring and a preparation process thereof. Background technique [0002] Ring parts are an important mechanical part in modern production equipment, and its quality is directly related to the service life of the main parts. With the continuous development of economy and technology, the requirements for equipment and mechanical components are constantly increasing in actual production. It is of great significance to improve the wear resistance, temperature resistance and mechanical properties of ring parts for production work. [0003] Cemented carbide is an alloy material made of high-hardness refractory metal carbide powder as the main phase and high-temperature sintering with transition metals as the binder phase. It has many excellent properties such as high strength, high hardness, and high toughness. Therefore, it is widely used in cut...

Claims

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Application Information

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IPC IPC(8): C22C38/04C22C38/02C22C38/42C22C38/44C22C38/50C22C38/54C22C19/03C22C29/00C23C14/16C23C14/32C23C24/10
CPCC22C38/04C22C19/03C22C29/00C22C38/001C22C38/005C22C38/02C22C38/42C22C38/44C22C38/50C22C38/54C23C14/16C23C14/32C23C24/103
Inventor 蔡锟赵卓
Owner ANHUI TONGSHENG RING
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