Manufacturing method of 6A02T651 aluminum alloy seam pipe for air separators
A technology for air separation and manufacturing method, which is applied in the manufacture of 6A02T651Ф411×30 aluminum alloy slit pipe, and the manufacturing field of 6A02T651 aluminum alloy slit pipe for low-temperature oxygen and nitrogen air separators, which can solve the problems of unsuitable preparation methods, etc., To achieve the effect of reducing the waiting time of the process, small dimensional dispersion, and improving the aesthetic sense
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Embodiment 1
[0025] a. The cast aluminum alloy is a six-series aluminum alloy round ingot, and the calculation of ingredients is based on the center line of step a to ensure that the composition of the ingot is controlled within the standard range; the slag is removed once after melting, and the slag is removed once after refining in the melting furnace 1. Slag removal once after refining in the holding furnace; degassing once after refining in the smelting furnace, degassing once after refining in the holding furnace, and degassing with a degasser after refining in the holding furnace. During the whole smelting and casting process, control the input of Fe content and try to avoid contact with iron during slag removal to reduce the adverse effect of iron on welding. The mass percentage of Si in the aluminum alloy ingot used is 1.05%, and Fe is ≤0.20%, Cu 0.52%, Mn or Cr 0.28%, Mg 0.81%, Zn ≤0.20%, Ti ≤0.15%, single impurity ≤0.05%, total impurity ≤0.15%, and the rest are Al; specifications ...
Embodiment 2
[0032] The difference between this embodiment and Example 1 is that the refining degree of the No. 6 aluminum alloy round ingot used in step a meets the requirement of primary oxide film, and other steps and parameters are the same as those of Example 1.
Embodiment 3
[0034] The difference between this embodiment and Example 1 is that the wool is homogeneous, the heating temperature is 540°C, and the temperature is kept for more than 12 hours. The oxide film is checked at low magnification, and the compound segregation is checked to meet the requirements of the primary oxide film. Other steps and parameters are the same as those in the example. 1 is the same.
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