1. Field of the Invention
The invention relates to a method for manufacturing a casing and, more particularly, to a casing of a portable electronic device and a method for manufacturing the same.
2. Description of the Prior Art
So far casings of various portable electronic devices (e.g. notebook, tablet personal computer, etc.) are manufactured by injection molding. To strengthen the casing, a strengthening member (e.g. iron member) maybe placed into a mold first and then a plastic material is injected into the mold such that the plastic material and the strengthening member are combined with each other by insert molding. After the plastic material and the strengthening member are combined with each other, an outer surface always has a drop height (e.g. gap or overflowed material) such that a manufacturer must process the outer surface with additional surface treatment (e.g. spackle or grinding by abrasive paper) first and then the manufacturer can spray paint on the outer surface or process the outer surface with other appearance treatments. The aforesaid surface treatment always takes lots of labor and time such that the manufacture cost is increased.
The invention provides a method for manufacturing a casing and a casing of a portable electronic device so as to solve the aforesaid problems.
According to an embodiment of the invention, a method for manufacturing a casing comprises steps of providing a film; attaching a strengthening plate onto the film; placing the film and the strengthening plate into a mold; and injecting a plastic material into the mold such that the plastic material and the strengthening plate are combined with each other.
In this embodiment, the method of the invention may further comprise step of cutting an edge of the film.
In this embodiment, the method of the invention may further comprise steps of removing the film and spraying paint on surfaces of the plastic material and the strengthening plate.
According to another embodiment of the invention, a casing of a portable electronic device comprises a film, a strengthening plate and a plastic material. The film has a recess. The strengthening plate is disposed in the recess. The plastic material is disposed in the recess and combined with the strengthening plate.
As mentioned in the above, the invention attaches the strengthening plate onto the film first, places the film and the strengthening plate into the mold together, and then injects the plastic material into the mold such that the plastic material and the strengthening plate are combined with each other. After insert molding, the film can prevent a drop height between an outer surface of the plastic material and the strengthening plate effectively since the film is attached on the outer surface of the plastic material and the strengthening plate. In other words, after manufacturing the casing of the portable electronic device of the invention by insert molding, the invention does not need additional surface treatment (e.g. grinding by abrasive paper). Therefore, the invention can save lots of labor and time from surface treatment so as to reduce the manufacture cost.
These and other objectives of the present invention will no doubt become obvious to those of ordinary skill in the art after reading the following detailed description of the preferred embodiment that is illustrated in the various figures and drawings.
Referring to
In this embodiment, the casing 10 of the portable electronic device 1 is manufactured using a mold 3 by insert molding. To manufacture the casing 10 of the portable electronic device 1, first of all, step S10 is performed to provide a film 100. In this embodiment, the film 100 may be made of, but not limited to, polyethylene terephthalate (PET), polycarbonate (PC) or poly(methyl methacrylate) (PMMA). Afterward, step S12 is performed to attach a strengthening plate 102 onto the film 100. In this embodiment, the strengthening plate 102 may be made of, but not limited to, carbon fabric or metal (e.g. iron). It should be noted that the strengthening plate 102 can be adhered onto the film 100 by an adhesive while attaching the strengthening plate 102 onto the film 100 and then the adhesive is baked so as to attach the strengthening plate 102 onto the film 100 tightly. The aforesaid adhesive may be, but not limited to, 2K adhesive containing hardening agent.
Then, step S14 is performed to place the film 100 and the strengthening plate 102 into a mold 3. As shown in
Then, step S16 is performed to open the mold 3 so as to take out a semi-manufactured product consisting of the film 100, the strengthening plate 102 and the plastic material 104. After taking the semi-manufactured product out, step S18 may be performed to cut an edge of the film 100 so as to finish the casing 10 of the portable electronic device 1, as shown in
It should be noted that if the film 100 is kept on the casing 10, the casing 10 comprises the film 100, the strengthening plate 102 and the plastic material 104 correspondingly. As shown in
Three embodiments in the following are used for describing related parameters set by the invention.
The invention can take a mixture of PA and 45% GF to be the aforesaid plastic material 104, take carbon fabric to make the aforesaid strengthening plate 102, and take PET to make the aforesaid film 100. In this embodiment, the temperature of the plastic material 104 may be between 310° C. and 330° C., the temperature of the male mold 30 and the female mold 32 may be about 130° C., the speed for injecting the plastic material 104 may be between 30% and 40%, and the temperature and time for baking the strengthening plate 102 and the film 100 may be about 60° C. and 30 minutes, respectively.
The invention can take a mixture of PC and ABS to be the aforesaid plastic material 104, take carbon fabric to make the aforesaid strengthening plate 102, and take PET to make the aforesaid film 100. In this embodiment, the temperature of the plastic material 104 may be between 250° C. and 260° C., the temperature of the male mold 30 and the female mold 32 may be about 70° C., the speed for injecting the plastic material 104 may be between 30% and 40%, and the temperature and time for baking the strengthening plate 102 and the film 100 may be about 60° C. and 30 minutes, respectively.
The invention can take a mixture of PPS and 45% GF to be the aforesaid plastic material 104, take carbon fabric to make the aforesaid strengthening plate 102, and take PET to make the aforesaid film 100. In this embodiment, the temperature of the plastic material 104 may be between 310° C. and 330° C., the temperature of the male mold 30 and the female mold 32 may be about 130° C., the speed for injecting the plastic material 104 may be between 30% and 40%, and the temperature and time for baking the strengthening plate 102 and the film 100 may be about 60° C. and 30 minutes, respectively.
It should be noted that the material of the film 100 can be selected according to the plastic material 104. For example, a film capable of resisting high temperature is selected for a high temperature plastic material and a film capable of resisting low temperature is selected for a low temperature plastic material. Furthermore, the parameters adapted for insert molding can be set according to the material of the film 100, the material of the strengthening plate 102 and the plastic material 104.
Referring to
As mentioned in the above, the invention attaches the strengthening plate onto the film first, places the film and the strengthening plate into the mold together, and then injects the plastic material into the mold such that the plastic material and the strengthening plate are combined with each other. After insert molding, the film can prevent a drop height from being formed on an outer surface of the plastic material and the strengthening plate effectively since the film is attached on the outer surface of the plastic material and the strengthening plate. In other words, after manufacturing the casing of the portable electronic device of the invention by insert molding, the invention can spray paint on the surface of the casing or process the surface of the casing with other appearance treatments directly without additional surface treatment (e.g. spackle or grinding by abrasive paper). Therefore, the invention can save lots of labor and time from surface treatment so as to reduce the manufacture cost.
Those skilled in the art will readily observe that numerous modifications and alterations of the device and method may be made while retaining the teachings of the invention. Accordingly, the above disclosure should be construed as limited only by the metes and bounds of the appended claims.
Number | Date | Country | Kind |
---|---|---|---|
201210307206.X | Aug 2012 | CN | national |