Ag-Be-RE aluminium alloy material with high strength and heat resistance and preparation method thereof
An aluminum alloy material and heat-resistant technology, which is applied in the field of Ag-Be-RE high-strength heat-resistant aluminum alloy material and its preparation, can solve the problems of low high-temperature strength of the product, poor casting performance, and reduce the quasi-solid temperature range of the alloy. Achieve reasonable precipitation and distribution, and maintain the effect of purity
- Summary
- Abstract
- Description
- Claims
- Application Information
AI Technical Summary
Problems solved by technology
Method used
Image
Examples
Embodiment 1
[0103] Example 1: Cu-1.0%, characteristic microalloying elements-Be, Ag, 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-Be, Al-Ag, Al-Zr master alloy 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, coppe...
Embodiment 2
[0114] Example 2: Cu-4.2%, characteristic microalloying elements-Be, Ag, 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]
[0118] (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.
[0119] (3) Add Al-Mn, Al-Ti, Al-Be, Al-Ag, Al-Zr master alloy 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.
[0120] Mixed metal additives refer to cake-shaped or massive non-sintered powder metallurgy products for adding and adjusting a...
Embodiment 3
[0126] Example 3: Cu-5.1%, characteristic microalloying elements-Be, Ag, basic microalloying rare earth element Eu
[0127] (1) Weigh the various alloying elements required according to the following ingredient calculation table, as follows.
[0128]
[0129] (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.
[0130] (3) Add Al-Mn, Al-Ti, Al-Be, Al-Ag, Al-Zr master alloy 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.
[0131] Mixed metal additives refer to cake-shaped or massive non-sintered powder metallurgy products for adding and adjusting alloy components, including manganese, copper...
PUM
| Property | Measurement | Unit |
|---|---|---|
| tensile strength | aaaaa | aaaaa |
| tensile strength | aaaaa | aaaaa |
| tensile strength | aaaaa | aaaaa |
Abstract
Description
Claims
Application Information
Login to View More 