A kind of low-melting-point high-strength aluminum alloy powder solder and preparation method thereof
An aluminum alloy, high-strength technology, which is applied in the field of aluminum alloy brazing, can solve the problems of Al-Si brazing material constraints, etc., and achieve the effects of narrow melting zone, good brazing processability, and low process consumption
- Summary
- Abstract
- Description
- Claims
- Application Information
AI Technical Summary
Problems solved by technology
Method used
Examples
Embodiment 1
[0040] A method for preparing low-melting-point high-strength aluminum alloy powder solder, comprising the steps of:
[0041] Put the raw material into the vacuum induction furnace, draw the vacuum to 1.0×10 -2 Pa, filled with 0.06MPa pure argon for induction melting, fully alloyed and poured into the water-cooled copper mold in the furnace to obtain a cuboid master alloy ingot. In order to ensure that the composition of the ingot meets the design composition, attention must be paid to the loss of Ge, Zn, Sr, Bi and rare earth elements La, Ce and Yb during the smelting process.
[0042] The raw material is composed of Si, Cu, Ge, Ni, Zn, Sr, Bi, La, Ce, Yb, Al, wherein the mass fraction of Si is 8.6%, the mass fraction of Cu is 16.5%, and the mass fraction of Ge is 9.5% %, the mass fraction of Ni is 4.5%, the mass fraction of Zn is 4.0%, the mass fraction of Sr is 0.75%, the mass fraction of Bi is 0.35%, the mass fraction of La is 0.40%, the mass fraction of Ce is 0.55%, The...
Embodiment 2
[0048] A method for preparing low-melting-point high-strength aluminum alloy powder solder, comprising the steps of:
[0049] Put the raw material into the vacuum induction furnace, draw the vacuum to 1.0×10 -2 Pa, filled with 0.06MPa pure argon for induction melting, fully alloyed and poured into the water-cooled copper mold in the furnace to obtain a cuboid master alloy ingot. In order to ensure that the composition of the ingot meets the design composition, attention must be paid to the loss of Ge, Zn, Sr, Bi and rare earth elements La, Ce and Yb during the smelting process.
[0050] The raw material is composed of Si, Cu, Ge, Ni, Zn, Sr, Bi, La, Ce, Yb, Al, wherein the mass fraction of Si is 9.0%, the mass fraction of Cu is 16.5%, and the mass fraction of Ge is 9.5% %, the mass fraction of Ni is 5.0%, the mass fraction of Zn is 5.0%, the mass fraction of Sr is 0.75%, the mass fraction of Bi is 0.40%, the mass fraction of La is 0.45%, the mass fraction of Ce is 0.50%, The...
Embodiment 3
[0056] A method for preparing low-melting-point high-strength aluminum alloy powder solder, comprising the steps of:
[0057] Put the raw material into the vacuum induction furnace, draw the vacuum to 1.0×10 -2 Pa, filled with 0.06MPa pure argon for induction melting, fully alloyed and poured into the water-cooled copper mold in the furnace to obtain a cuboid master alloy ingot. In order to ensure that the composition of the ingot meets the design composition, attention must be paid to the loss of Ge, Zn, Sr, Bi and rare earth elements La, Ce and Yb during the smelting process.
[0058] The raw material is composed of Si, Cu, Ge, Ni, Zn, Sr, Bi, La, Ce, Yb, Al, wherein the mass fraction of Si is 9.5%, the mass fraction of Cu is 17.0%, and the mass fraction of Ge is 9.0% %, the mass fraction of Ni is 4.5%, the mass fraction of Zn is 4.5%, the mass fraction of Sr is 0.70%, the mass fraction of Bi is 0.40%, the mass fraction of La is 0.40%, the mass fraction of Ce is 0.55%, The...
PUM
| Property | Measurement | Unit |
|---|---|---|
| particle diameter | aaaaa | aaaaa |
| particle diameter | aaaaa | aaaaa |
| particle diameter | aaaaa | aaaaa |
Abstract
Description
Claims
Application Information
Login to View More