The present invention relates to a mobile terminal including a glass panel and a touch panel provided on a rear side of the glass panel and to the method for manufacturing the mobile terminal.
Conventionally, mobile terminals each including a glass panel and a touch panel provided on a rear side of the glass panel have been known. Referring to, e.g., an example illustrated in FIG. 11, in a mobile terminal device 101 of Patent Document 1, a design panel 103 whose rear surface is bonded to a touch panel 104 is fitted into a frame-shaped recessed part 107 on a front side of a housing 102. In the mobile terminal device 101 of this type, the width of the design panel 103 is greater than that of the touch panel 104, and a protruding part of the design panel 103 is, with a double-sided tape 109, an adhesive, etc., bonded to a frame-shaped part of the recessed part 107 of the housing 102.
It is desirable to ensure as large display area A as possible. However, since there is a clearance C between a side wall of the recessed part 107 and a side surface of the design panel 103 in the conventional mobile terminal device 101, sufficient waterproof properties should be ensured by, e.g., the double-sided tape 109. Thus, in the case where, e.g., the area (width) of the double-sided tape 109 with which the design panel 103 is bonded to the housing 102 is small, there are disadvantages that the bonding strength of the double-sided tape 109 to the housing 102 becomes lower and that the waterproof properties cannot be ensured.
In order to bond a touch panel to a rear surface of a glass panel, the glass panel bonded to the touch panel may be integrally molded with a housing. However, in this case, it is also necessary to print an adhesive on the rear surface of the glass panel to ensure adhesiveness. Without a certain adhesive printing area, bonding strength cannot be ensured, and a wiring part of the touch panel cannot be sufficiently covered by the adhesive printing area. For such reasons, there is still a disadvantage that a large display area cannot be ensured.
The present invention has been made in view of the foregoing, and is intended to ensure as large display area as possible and ensure the strength of bonding between a glass panel and a resin housing.
According to the present invention, in order to accomplish the foregoing, when insert molding is performed for a glass panel bonded to a touch panel, resin is inserted into a corner space formed between the touch panel and the glass panel.
Specifically, a first aspect of the invention is intended for a mobile terminal including a glass panel and a touch panel provided on a rear side of the glass panel. The width of the touch panel is greater than that of the glass panel. In the state in which the touch panel is bonded to a rear surface of the glass panel, the touch panel and the glass panel are integrally molded with a housing such that a corner space formed between a protruding part of the touch panel and a side surface of the glass panel is covered by resin forming the housing.
According to the foregoing configuration, the resin is, by insert molding, injected into the corner space formed between the glass panel and the touch panel bonded to the rear surface of the glass panel and having a larger width. A wedge effect exhibited by the resin to exhibit a wedge effect allows the glass panel not to be easily detached due to drop impact and torsional load. Moreover, since the wedge effect improves strength, a large bonding region required in conventional cases is not necessary, and a display area can be expanded.
A second aspect of the invention is intended for the mobile terminal of the first aspect of the invention, in which the resin covering the corner space and a touch panel wiring area overlap with each other as viewed from front.
That is, although the touch panel wiring area should be positioned outside the display area, the touch panel wiring area can be, according to the foregoing configuration, positioned at the space formed on the rear side of the area where the corner space is covered by the resin, and therefore the display area can be further expanded.
A third aspect of the invention is intended for the mobile terminal of the first or second aspect of the invention, in which a transparent optical adhesive tape bonding the touch panel to the rear surface of the glass panel is extended to the protruding part of the touch panel, and is bonded to the resin.
According to the foregoing configuration, since the resin and the touch panel are also bonded together with the transparent optical adhesive tape at the corner space, not only bonding strength is further improved, but also the flexibility of the transparent optical adhesive tape significantly improves a waterproof effect. Thus, bonding strength and waterproof properties can be ensured even if a bonding area between the corner space and the resin is narrowed due to expansion of the display area.
A fourth aspect of the invention is intended for the mobile terminal of any one of the first to third aspects of the invention, in which the length of the touch panel is greater than that of the glass panel, and the touch panel and the glass panel are integrally molded with the housing such that a corner space formed between part of the touch panel protruding in a length direction and the side surface of the glass panel is also covered by the resin forming the housing.
According to the foregoing configuration, the resin exhibits the wedge effect not only in a width direction but also in a longitudinal direction, thereby further increasing the strength and expanding the display area.
A fifth aspect of the invention is intended for the mobile terminal of any one of the first to fourth aspects of the invention, in which the touch panel further includes a glass plate, and the ratio of the thickness of the glass plate to the thickness of the glass panel is about 1:1.
According to the foregoing configuration, since a load applied to the housing is equally distributed to the glass panel and the touch panel, the strength is improved. Note that a ratio of about 1:1 means not only that the thickness of the glass plate and the thickness of the glass panel are completely equal to each other, but also that one of the thickness of the glass plate or the thickness of the glass panel is, to a certain degree, greater than the other one of the thickness of the glass plate or the thickness of the glass panel.
A sixth aspect of the invention is intended for the mobile terminal of any one of the first to fifth aspects of the invention, in which the ratio of the length of the protruding part of the touch panel to the thickness of the glass panel is about 1:1.
According to the foregoing configuration, since a load applied to the housing is equally distributed to the glass panel and the touch panel, the strength is improved. Note that a ratio of about 1:1 means not only that the length of the protruding part of the touch panel and the thickness of the glass panel are completely equal to each other, but also that one of the length of the protruding part of the touch panel or the thickness of the glass panel is, to a certain degree, greater than the other one of the length of the protruding part of the touch panel or the thickness of the glass panel.
A seventh aspect of the invention is intended for the method for manufacturing a mobile terminal including a touch panel on a rear side of a glass panel, which includes a preparation step of preparing the glass panel and the touch panel having a width greater than that of the glass panel; a bonding step of bonding the touch panel to a rear surface of the glass panel; and an insert molding step of mounting the glass panel bonded to the touch panel on a mold, inserting resin into a corner space formed between a protruding part of the touch panel and a side surface of the glass panel, and insert-molding a housing out of the resin.
According to the foregoing configuration, the resin is, by insert molding, injected into the corner space formed between the glass panel and the touch panel bonded to the rear surface of the glass panel and having a larger width. Such a simple method allows the resin to exhibit a wedge effect, and therefore the glass panel is not easily detached due to drop impact and torsional load. Moreover, since the wedge effect improves strength, a large bonding region required in conventional cases is not necessary, and a display area can be expanded.
As described above, according to the present invention, the width of the touch panel is set greater than that of the glass panel, and the touch panel and the glass panel are integrally formed with the housing such that the corner space formed between the protruding part of the touch panel and the side surface of the glass panel is covered by the resin forming the housing in the state in which the touch panel is bonded to the rear surface of the glass panel. Thus, while ensuring as large display area as possible without increasing the outer size of the terminal, the bonding strength between the glass panel and the resin housing and waterproof properties can be ensured.
Embodiments of the present invention will be described below with reference to drawings.
Referring to
Specifically, in the mobile phone 1 of the present embodiment, the horizontal width x1 of the touch panel 4 is, referring to
In the state in which the touch panel 4 is bonded to the rear surface of the glass panel 3 with the transparent optical adhesive tape 6, a corner space 7 is formed between each of right and left protruding parts of the touch panel 4 and a side surface of the glass panel 3. Such right and left corner spaces 7 are covered by resin forming the housing 2. In the present embodiment, a corner space 7 is also formed between each of upper and lower protruding parts of the touch panel 4 and the side surface of the glass panel 3 as described above. The upper and lower corner spaces 7 are also covered by resin forming the housing 2. An upper surface of the housing 2 and an upper surface of the glass panel 3 are at the same height, and therefore the upper surfaces of the housing 2 and the glass panel 3 are continuous to each other. Thus, since a clearance C formed in conventional cases is not formed, dust is not accumulated in the clearance C, and the appearance of the mobile phone 1 is not degraded.
The touch panel 4 also includes the glass plate. The ratio of the thickness of such a glass plate to the thickness of the glass panel 3 is about 1:1, and such thicknesses are, e.g., about 0.5 mm. Note that a ratio of about 1:1 means not only that the thickness of the glass plate is completely equal to the thickness of the glass panel 3, but also that the thickness of one of the glass plate or the glass panel 3 may be, to a certain degree, greater than the other one of the glass plate or the glass panel 3. A sufficient thickness of the touch panel 4 is 0.2 mm under normal circumstances. However, the thickness of the touch panel 4 is intentionally increased to distribute a load applied to the housing 2 equally to the glass panel 3 and the touch panel 4. Thus, strength is improved.
Moreover, the ratio of the length of the protruding part of the touch panel 4 to the thickness of the glass panel 3 is about 1:1. For example, the length of the protruding part of the touch panel 4 is about 0.5 mm which is equal to the thickness of the glass panel 3. Note that a ratio of about 1:1 means not only that the length of the protruding part of the touch panel 4 is completely equal to the thickness of the glass panel 3, but also one of the length of the protruding part of the touch panel 4 or the thickness of the glass panel 3 may be, to a certain degree, greater than the other one of the length of the protruding part of the touch panel 4 or the thickness of the glass panel 3. That is, there is a possibility that an extremely-large length of the protruding part of the touch panel 4 causes deviation of force applied to the housing 2 to the side close to the touch panel 4 and damages the touch panel 4, but a load is distributed equally to the glass panel 3 and the touch panel 4 in such a manner that the length of the protruding part of the touch panel 4 is set substantially equal to the thickness of the glass panel 3.
The touch panel 4 further includes a touch panel wiring area 4a formed of a transparent conductive member such as an indium oxide (ITO) film. However, in the present embodiment, resin covering the corner space 7 and the touch panel wiring area 4a partially overlap, referring to
Next, the method for manufacturing the mobile phone 1 according to the present embodiment will be described.
First, at a preparation step, a glass panel 3 cut into a plate shape is prepared as illustrated in
Next, at a bonding step illustrated in
Then, referring to
Next, at a mold clamping step illustrated in
Then, referring to
Next, referring to
Finally, referring to
As just described, the resin 14 is, by insert molding, injected into the corner space 7 formed between the glass panel 3 and the touch panel 4 bonded to the rear surface of the glass panel 3 and having a larger width. Such a simple method allows the resin 14 to exhibit a wedge effect, and therefore the glass panel 3 is not easily detached due to drop impact and torsional load. Moreover, since the wedge effect improves strength, a large bonding region required in conventional cases is not necessary, and the display area A can be expanded.
Further, the resin 14 exhibits the wedge effect not only in a width direction but also in a longitudinal direction, thereby further increasing the strength and expanding the display area A.
Thus, according to the mobile phone 1 of the present embodiment, the width of the touch panel 4 is set greater than that of the glass panel 3, and the touch panel 4 and the glass panel 3 are integrally formed with the housing 2 such that the corner space 7 formed between the protruding part of the touch panel 4 and the side surface of the glass panel 3 is covered by the resin forming the housing 2 in the state in which the touch panel 4 is bonded to the rear surface of the glass panel 3. Thus, while ensuring as large display area A as possible, the bonding strength between the glass panel 3 and the resin housing 2 can be ensured.
Referring to
First, in an example of the first embodiment illustrated in
In a first variation illustrated in
In a second variation illustrated in
That is, in the present embodiment, the transparent optical adhesive tape 6 bonding the touch panel 4 to a rear surface of a glass panel 3 is extended so as to cover across substantially the entirety of a protruding part of the touch panel 4, and is bonded to resin 14 (i.e., a housing 2).
Since the resin 14 and the touch panel 4 are also bonded together with the transparent optical adhesive tape 6 at a corner space 7, bonding strength is further improved. In addition, the flexibility of the transparent optical adhesive tape 6 significantly improves a waterproof effect.
Thus, in the present embodiment, bonding strength and waterproof properties can be further ensured even if a bonding area between the corner space 7 and the resin is narrowed due to expansion of a display area A.
The foregoing embodiments of the present invention may have the following configurations.
That is, in the foregoing embodiments, the mobile terminal is the mobile phone 1. However, the mobile terminal may be personal handy-phone systems (PHSs), personal digital assistants (PDAs), smartphones, personal computers, mobile tools, electronic dictionaries, electronic calculators, game machines, etc as long as each of the foregoing includes a glass panel and a touch panel bonded to a rear side of the glass panel.
Note that the foregoing embodiments have been set forth merely for the purposes of preferred examples in nature, and are not intended to limit the scope, application, and use of the invention. Moreover, the techniques described in the foregoing embodiments can be combined together, and can be also combined into a new technique.
As described above, the present invention is useful for a mobile terminal such as a mobile phone including a glass panel and a touch panel bonded to a rear side of the glass panel.
Number | Date | Country | Kind |
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2012-110400 | May 2012 | JP | national |
Filing Document | Filing Date | Country | Kind |
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PCT/JP2013/002969 | 5/8/2013 | WO | 00 |