Efficient integrated machining method for preparing high-strength and high-toughness magnesium alloy sheet with controllable bimodal structure
A high-strength, high-toughness, integrated processing technology, used in metal processing equipment, manufacturing tools, metal rolling, etc., to improve strength, increase single-pass reduction, and reduce energy consumption and costs.
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Embodiment 1
[0025] refer to Figure 1-6 , This example uses AZ91 (Mg-9wt%Al-1wt%Zn) magnesium alloy as the test material.
[0026] Firstly, the as-cast AZ91 magnesium alloy is wire cut into a cuboid block of 49mm×49mm×100mm, figure 1 It is the metallographic structure of solution treated AZ91. Then it was placed in the RD-ECAP mold and heated to 300°C for 30 minutes, and then subjected to 16 passes of ECAP processing. After ECAP processing, the average grain size was about 8 microns, such as figure 2 . The prepared ultra-fine grained AZ91 magnesium alloy and the non-ECAP solid solution AZ91 magnesium alloy were rolled in a single pass with 70% reduction, and the microstructure obtained was as follows: image 3 As shown, after the ultra-fine grain AZ91 measured by EBSD is hot-rolled with a reduction of 70% in a single pass, the grain area distribution diagram is as follows Figure 4 Shown, and the above three materials were subjected to tensile tests, the results are as follows Figu...
Embodiment 2
[0028] In this embodiment, AZ91 (Mg-9wt%Al-1wt%Zn) magnesium alloy is used.
[0029] The difference between the processing technology and that of Example 1 is that the single-pass reduction in S4 is 60%. Also obtained the bimodal structure, the microstructure map and the grain area distribution map measured by EBSD, such as Image 6 shown.
[0030] In Examples 1 to 2, bimodal microstructures were obtained in AZ91 magnesium alloys processed through the combination of equal channel angular extrusion, extrusion blanking and single-pass high-reduction rolling.
[0031]Ultra-fine-grained magnesium alloys with fine structure and good performance can be prepared by ECAP processing technology, especially in terms of improving the plasticity / superplasticity of magnesium alloys, it has been confirmed by many experiments. The invention makes full use of the characteristics of good plastic deformation ability of the ultra-fine-grained magnesium alloy after ECAP, combines with the subseq...
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