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Co-Cr-RE aluminium alloy material with high strength and heat resistance and preparation method thereof

An aluminum alloy material, co-cr-re technology, applied in the field of aluminum alloy materials of microalloying elements and rare earth elements and its preparation, can solve the problems of high thermal cracking tendency, poor reusability of waste materials and slag materials, and high temperature strength of products low level problem

Inactive Publication Date: 2012-05-02
GUIZHOU HUAKE ALUMINUM MATERIAL ENG TECH RES
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

[0025] The technical problem to be solved by the present invention is to solve the existing problems in the field of high-strength aluminum alloys, such as extensive melt treatment process, poor quality, large thermal cracking tendency, poor casting performance, low product yield, low high-temperature strength, waste materials and slag recycling. For technical problems such as poor usability, under the guidance of high-quality melt, solid solution and phase diagram theory, by optimizing the formula of main alloy elements Cu, Mn and rare earth elements, the temperature range of the quasi-solid phase of the alloy is reduced, and the hot cracking tendency during casting and the high temperature of the product are solved. The general problem of low strength (including instantaneous strength and durable strength); optimize the low-cost multi-element microalloying element formula to create material basic conditions for the cultivation and fine-graining of high-temperature phases and strengthening phases in solid solutions; and optimize Melting and heat treatment technology to realize sufficient cultivation of high-temperature phase and strengthening phase in solid solution and full play of fine-graining effect

Method used

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  • Co-Cr-RE aluminium alloy material with high strength and heat resistance and preparation method thereof
  • Co-Cr-RE aluminium alloy material with high strength and heat resistance and preparation method thereof
  • Co-Cr-RE aluminium alloy material with high strength and heat resistance and preparation method thereof

Examples

Experimental program
Comparison scheme
Effect test

Embodiment 1

[0103] Example 1: Cu-1.0%, characteristic microalloying elements-Co, Cr, basic microalloying rare earth elements-lanthanum La

[0104] (1) Weigh the various alloying elements required according to the ingredient calculation table, as follows.

[0105]

[0106] (2) Add an appropriate amount of aluminum ingots to the melting furnace, heat it to melt it completely and keep it warm at 700-800°C; in order to prevent the melt from inhaling too much air, the melting process should be as short as possible in a closed environment Finish.

[0107] (3) Add Al-Mn, Al-Ti, Al-Co, Al-Cr, Al-Zr master alloys or mixed metal additives (including salt compounds) according to the formula ratio, and then add Cu pure metal and Al-Cd master alloy or mixed metal additives, then add B and rare earth element La, and stir evenly.

[0108] Mixed metal additives refer to cake-shaped or massive non-sintered powder metallurgy products for adding and adjusting alloy components, including manganese, copp...

Embodiment 2

[0114] Example 2: Cu-4.2%, characteristic microalloying elements-Co, Cr, basic microalloying rare earth elements La, Ce mixed rare earth

[0115] (1) Weigh the various alloying elements required according to the ingredient calculation table, as follows.

[0116]

[0117] (2) Add an appropriate amount of aluminum ingots to the melting furnace, heat it to melt it completely and keep it warm at 700-800°C; in order to prevent the melt from inhaling too much air, the melting process should be as short as possible in a closed environment Finish.

[0118] (3) Add Al-Mn, Al-Ti, Al-Co, Al-Cr, Al-Zr master alloys or mixed metal additives (including salt compounds) according to the formula ratio, and then add Cu pure metal and Al-Cd master alloy or mixed metal additives, then add B and rare earth elements La, Ce mixed rare earth, and stir evenly.

[0119] Mixed metal additives refer to cake-shaped or massive non-sintered powder metallurgy products for adding and adjusting alloy compon...

Embodiment 3

[0125] Example 3: Cu-5.1%, characteristic microalloying elements-Co, Cr, basic microalloying rare earth element Eu

[0126] (1) Weigh the various alloying elements required according to the following ingredient calculation table, as follows.

[0127]

[0128] (2) Add an appropriate amount of aluminum ingots to the melting furnace, heat it to melt it completely and keep it warm at 700-800°C; in order to prevent the melt from inhaling too much air, the melting process should be as short as possible in a closed environment Finish.

[0129] (3) Add Al-Mn, Al-Ti, Al-Co, Al-Cr, Al-Zr master alloys or mixed metal additives (including salt compounds) according to the formula ratio, and then add Cu pure metal and Al-Cd master alloy or mixed metal additives, then add B and rare earth element Eu, and stir evenly.

[0130] Mixed metal additives refer to cake-shaped or massive non-sintered powder metallurgy products for adding and adjusting alloy components, including manganese, coppe...

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Abstract

The invention discloses an aluminium alloy material with high strength and heat resistance and a preparation method thereof. The aluminium alloy material comprises the following ingredients in percentage by weight: 1.0-10.0% of Cu, 0.05-1.5% of Mn, 0.01-0.5% of Cd, 0.01-0.5% of Ti, 0.01-0.2% of B, 0.01-1.0% of Zr, 0.01-1.0% of Co, 0.01-1.0% of Cr, 0.05-5% of RE and the balance of A1. In the invention, superior melt, solid solution and phase diagram theories are adopted as guidance. A formula of alloy main elements Cu, Mn and Re is preferably selected to reduce the temperature range of alloy quasi solid phases and solve the problems of large heat crack tendency during casting, low product high-temperature strength and the like; and a formula of multielement micro-alloying elements is preferably selected, basic material conditions are provided for the culture and grain refinement action of high-temperature phases and strengthening phases in the solid solution, and the aluminium alloy material with high strength and heat resistance is finally developed.

Description

technical field [0001] The invention relates to an aluminum alloy material and a preparation method thereof, in particular to an aluminum alloy material containing microalloying elements and rare earth elements and a preparation method thereof. Background technique [0002] Aluminum alloy is a relatively young metal material, which only began to be used industrially in the early 20th century. During World War II, aluminum was mainly used in the manufacture of military aircraft. After the war, due to the sharp decrease in the demand for aluminum in the military industry, the aluminum industry began to develop civilian aluminum alloys, expanding its application scope from the aviation industry to the construction industry, container packaging industry, transportation industry, electric power and electronics industry, Various sectors of the national economy such as machinery manufacturing and petrochemicals are applied to people's daily lives. At present, aluminum is used in ...

Claims

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Application Information

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Patent Type & Authority Patents(China)
IPC IPC(8): C22C21/00C22C21/12C22C1/02C22C1/03C22C1/06C22F1/04C22F1/057
Inventor 车云张中可门三泉陈新孟
Owner GUIZHOU HUAKE ALUMINUM MATERIAL ENG TECH RES