A Room Temperature Joining Method of Alloys Based on Micro-arc Oxidation
A technology of micro-arc oxidation and connection method, applied in the direction of anodizing, coating, surface reaction electrolytic coating, etc., can solve the problems of softening of base metal and low strength of low-temperature brazing joints, so as to achieve high bonding strength and high connection efficiency , to solve the effect of low intensity
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Embodiment 1
[0031] Example 1: In this embodiment, the same metal 6061 aluminum alloy is connected by micro-arc oxidation, the electrolyte used is NaOH solution, and the main film-forming agent used is Na 2 SiO 3 .
[0032] In this embodiment, the use of micro-arc oxidation to connect 6061 aluminum alloys is carried out according to the following steps:
[0033] Step 1. Clean the surface of the 6061 aluminum alloy to be connected, remove the oil and impurities on the surface, polish the surface, and set the gap between the two metals to 100 μm. The schematic diagram of the assembly and device of the test piece is as follows figure 1 shown.
[0034] Step 2, configure the electrolyte according to the required requirements, the solute of the electrolyte is 5g / L NaOH, 12g / L Na 2 SiO 3 , the solvent is water, where Na 2 SiO 3 as the main film former.
[0035] Step 3. When assembling the joint, two pieces of aluminum alloy are connected to the positive electrode, and the carbon rod is con...
Embodiment 2
[0036] Example 2: In this embodiment, different aluminum alloys (6061 aluminum alloy and 5083 aluminum alloy) are connected by micro-arc oxidation, the electrolyte used is KOH solution, and the main film-forming agent used is NaAlO 2 .
[0037]In this embodiment, the connection of 6061 aluminum alloy and 5083 aluminum alloy using micro-arc oxidation is carried out according to the following steps:
[0038] Step 1. Clean the surfaces of 6061 aluminum alloy and 5083 aluminum alloy to be connected, remove oil and impurities on the surface, polish the surface, and set the gap between the two metals to 50 μm. The assembly diagram of the test piece is as follows figure 1 shown.
[0039] Step 2. Configure the electrolyte according to the required requirements. The solute of the electrolyte is 4g / L of KOH and 12g / L of NaAlO 2 , the solvent is water. where NaAlO 2 as the main film-forming agent.
[0040] Step 3. When assembling the joint, the aluminum alloy is connected to the pos...
Embodiment 3
[0041] Example 3: In this embodiment, the same magnesium alloy AZ91 (its chemical composition is: 8.56% Al, 0.82% Mn, 0.41% Zn, and the balance is Mg) is connected by micro-arc oxidation. The electrolyte is NaOH solution, and the main film-forming agent used is Na 2 SiO 3 .
[0042] In this embodiment, the use of micro-arc oxidation to connect the same kind of magnesium alloy AZ91 is carried out according to the following steps:
[0043] Step 1. Clean the surface of the magnesium alloy to be connected, remove the oil and impurities on the surface, polish the surface, and set the gap between the two metals to 80 μm. The assembly diagram of the test piece is as follows figure 1 shown.
[0044] Step 2, configure the electrolyte according to the required requirements, the solute of the electrolyte is 5g / L NaOH, 12g / L Na 2 SiO 3 , the solvent is water, in fact Na 2 SiO 3 as the main film former.
[0045] Step 3. When assembling the joint, the magnesium alloy is connected to...
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