An aluminum alloy machining method, an aluminum alloy shell and a mobile terminal
A technology of aluminum alloy casing and processing method, which is applied in the field of aluminum alloy casing and mobile terminal, and aluminum alloy processing, which can solve the problems that it is difficult to obtain a fine sandy appearance surface, and it is difficult to cover aluminum materials by sandblasting, so as to achieve fine and smooth effects. Solve the effect of low yield and high cost
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Embodiment 1
[0031] image 3 A schematic flow chart of an embodiment of the aluminum alloy processing method of the present invention is shown.
[0032] One embodiment of the present invention provides an aluminum alloy processing method, comprising:
[0033] In step S110, the first sandblasting treatment is performed on the aluminum alloy with multi-angular abrasives.
[0034] The first sandblasting treatment is performed on the aluminum alloy with multi-angular and strong abrasive abrasives. The multi-angular and strong abrasive can remove the defects on the surface of the aluminum alloy and achieve the effect of grinding, while avoiding the edge collapse caused by grinding. , deformation and other problems, improve the yield rate and reduce the cost.
[0035] Such as figure 2 As shown, by using multi-angular abrasive abrasives for sandblasting, there is no phenomenon such as edge sagging.
[0036] Sand blasting is the process of cleaning the surface of the substrate by the impact o...
Embodiment 2
[0055] Embodiment 2 provides a method for processing an aluminum alloy mobile phone casing.
[0056] First of all, the aluminum alloy mobile phone shell workpiece made of stamped aluminum or profile aluminum that does not need to be processed for the appearance surface is processed for related structures (no surface processing is involved), and the workpiece is stamped in turn (CNC is sometimes used to replace this step for profile aluminum), CNC Processing, pending surface treatment.
[0057] Secondly, carry out the sandblasting treatment for the first time to the aluminum alloy workpiece after CNC processing with multi-angular abrasive; utilize chemical method to remove described multi-angular abrasive on the surface of aluminum alloy workpiece; use zirconia to remove described multi-angular abrasive The surface of the aluminum alloy workpiece is subjected to the second sandblasting treatment. For the above process flow, reference may be made to the detailed description of ...
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Abstract
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