A kind of extrusion method of high-performance light alloy plate
An extrusion method and light alloy technology, applied in the field of metals and alloys, can solve the problems of severe anisotropy, failure to improve the texture of the magnesium alloy base surface, and uneven transverse structure and performance of composite materials, so as to achieve good combination and prevent The effect of magnesium-aluminum intermetallic compound formation
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Embodiment 1
[0028] The extrusion method of the high-performance light alloy plate in this embodiment comprises the following steps:
[0029] 1) Take a cylindrical magnesium alloy ingot and an aluminum alloy ingot of the same size respectively and cut them along the central axis;
[0030] 2) Cleaning step 1) The cut surface of the obtained semi-cylindrical magnesium alloy and aluminum alloy ingot is polished to smooth and smooth;
[0031] 3) stack the semi-cylindrical magnesium alloy and aluminum alloy ingots after step 2) grinding (the cutting planes are opposite, such as figure 1 shown) and fixed with aluminum wire (to avoid macroscopic relative sliding during the extrusion process, and the plates should be tightly fitted without gaps);
[0032] 4) heating the magnesium-aluminum composite block in step 3) to 380° C. for 1 hour, and then placing it in an extrusion device for extrusion; the magnesium-aluminum composite block is simultaneously extruded from an extrusion die to obtain a co...
Embodiment 2
[0037] The extrusion method of the high-performance light alloy plate in this embodiment comprises the following steps:
[0038] 1) Three ingot blocks of magnesium alloy and aluminum alloy whose sections can be completely overlapped, including two pieces of aluminum alloy and one piece of magnesium alloy;
[0039] 2) Cleaning and polishing the magnesium alloy and aluminum alloy ingot block of step 1);
[0040] 3) Stack the ingot blocks after step 2) grinding (such as figure 2 shown) and fixed with aluminum wire (to avoid macroscopic relative sliding during extrusion);
[0041] 4) heating the magnesium-aluminum composite block in step 3) to 380° C. for 1 hour, and then placing it in an extrusion device for extrusion; the magnesium-aluminum composite block is simultaneously extruded from an extrusion die to obtain a composite extruded sheet;
[0042] 5) Tempering at 400° C. to obtain the extruded plate in step 4) to obtain a product.
[0043] In this embodiment, the magnesiu...
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