Metal shell of electronic product and manufacturing method of metal shell
A technology for metal shells and electronic products, applied in the direction of anodic oxidation, etc., can solve the problems of uneven rough surface, low bonding strength, complicated operation, etc., and achieve the effect of improving the bonding effect, good die-casting performance, and simple process
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Embodiment 1
[0053] A method for manufacturing a metal casing of an electronic product in this embodiment includes the following steps:
[0054] Step (1), material preparation: prepare metal materials and plastic materials.
[0055] Step (2), casing forming: the metal material is processed by CNC to produce a metal structural part of the metal casing of the electronic product, and the metal structural part is formed with positioning holes or positioning columns and holes for assembly.
[0056] Step (3), roughening treatment: carry out surface roughening treatment on metal structural parts, roughening treatment includes pretreatment, anodic oxidation film forming treatment and roughening treatment steps, specifically:
[0057] Step (3.1) pre-treatment: Soak the metal structural parts in the degreasing agent at a temperature of 60°C for 500s; after being washed by the secondary overflow water, soak in the alkali etching agent for 20s at a temperature of 80°C; After running water washing, so...
Embodiment 2
[0069] The difference between this embodiment and Embodiment 1 lies in: step (3) and coarsening processing of this embodiment, specifically:
[0070] Step (3.1) Pretreatment: Soak the metal structural parts in the degreasing agent at a temperature of 65°C for 400s; after washing with the secondary overflow water, soak in the alkali etching agent for 22s at a temperature of 75°C; After running water washing, soak in nitric acid aqueous solution and neutralize for 35s at normal temperature, nitric acid aqueous solution is a mixture of nitric acid and water with a mass ratio of 1:1;
[0071] The degreasing agent is composed of the following raw materials in parts by weight: 16 parts of sodium bicarbonate, 9 parts of potassium silicate, 5 parts of isopropanol, 2 parts of triethanolamine, and 3 parts of LAS surfactant; the alkali etching agent consists of the following parts by weight Composition of raw materials: 22 parts of sodium hydroxide, 0.2 parts of sodium citrate, 0.2 parts...
Embodiment 3
[0082] The difference between this embodiment and Embodiment 1 lies in: step (3) and coarsening processing of this embodiment, specifically:
[0083] Step (3.1) pre-treatment: Soak the metal structure in the degreasing agent at a temperature of 70°C for 300s; after washing with secondary overflow water, soak it in an alkali etching agent for 24s at a temperature of 70°C; After running water washing, soak in nitric acid aqueous solution and neutralize for 40s at normal temperature, nitric acid aqueous solution is a mixture of nitric acid and water with a mass ratio of 1:1;
[0084] The degreasing agent is composed of the following raw materials in parts by weight: 18 parts of sodium bicarbonate, 10 parts of potassium silicate, 6 parts of isopropanol, 3 parts of triethanolamine, and 4 parts of LAS surfactant; the alkali etching agent consists of the following parts by weight Composition of raw materials: 24 parts of sodium hydroxide, 0.3 parts of sodium citrate, 0.3 parts of sod...
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