6 series low alloy composition with high long-term thermal stability and preparation method thereof
A thermally stable, low-alloy technology, which is applied in the field of low-alloy composition and its preparation to improve the long-term thermal stability of 6-series aluminum alloys, can solve the problems of restricting the export of high-end auto parts and mechanical properties, and achieve reduction Effects of parking effect, slow diffusion growth rate, and low nucleation temperature
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Embodiment 1
[0028] A method for preparing a 6-series low-alloy composition aluminum profile, comprising the steps of:
[0029] A. Calculate the amount of each aluminum alloy raw material and prepare the aluminum alloy raw material according to the ratio. The mass percentage ratio of each element of the 6 series aluminum alloy raw material is as follows:
[0030] element Si Fe Cu mn Mg Zr Cr Ti Impurities Al content 0.45 0.10 0.04 0.03 0.50 0.04 0.03 0.07 0.02 margin
[0031] Add the prepared aluminum alloy raw materials into the melting furnace for refining, on-line degassing, and on-line filtration, and then smelt them into liquid aluminum alloys, and melt and cast the liquid aluminum alloys into aluminum alloy casting rods. The ingredients of aluminum alloy raw materials follow the following process: Throw it into the smelting furnace for smelting, and use flux to refine and cover it. After feeding, stir when aluminum water appears in the fu...
Embodiment 2
[0042] The difference between Example 2 and Example 1 is that the mass percentage ratio of each element of the 6-series aluminum alloy raw material in step A is as follows:
[0043] element Si Fe Cu mn Mg Zr Cr Ti Impurities Al content 0.49 0.09 0.05 0.02 0.52 0.04 0.03 0.08 0.02 margin
[0044] Example 2 The mechanical property data of the aluminum alloy profiles after artificial aging and heat treatment at 150°C for different times are shown in Table 2.
[0045] Table 2
[0046] Heat treatment 0h Heat treatment 240h Heat treatment 480h Heat treatment 720h Heat treatment 1000h Yield strength (MPa) 225 220 213 208 209 Tensile strength (MPa) 240 234 230 228 224 Elongation at break (%) 14.0 14.0 13.5 13.5 14.0
[0047] It can be seen from Table 2 that after artificial aging, the aluminum alloy profile with low alloy composition is heat-treated at 150°C for 1000 hours, the yield s...
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