The present application claims priority from Taiwan Application No. 103105581, filed on Feb. 20, 2014 and entitled “TOUCH DISPLAY,” the contents of which are expressly incorporated herein by reference in their entirety.
1. Background of the Disclosure
The present invention generally relates to a touch display, and more particularly to a touch display with high bonding strength.
2. Description of Related Art
Touch screens, as input/output devices that adopt sensing technology and display technology, have been widely employed in electronic devices such as portable or hand-held electronic devices.
During the process of manufacturing the touch display 100, however, faulty products may occur when there is defective bonding, thereby reducing yield. Faulty products from defective bonding typically need be reworked, resulting in material loss and waste. Moreover, the touch display 100 according to the bonding architecture of
A need has thus arisen to propose a novel bonding structure, according to which disadvantages of the conventional touch display 100 may be reduced.
In view of the foregoing, it is an object of the embodiments of the present invention to provide a touch display which has an enhanced bonding strength and good light-transmittance, and has an improved yield and product lifetime.
According to one embodiment, a touch display includes a display panel, a touch panel, a first sealant, a surface adhesive and a second sealant. The touch panel is disposed above the display panel. The first sealant is disposed between the display panel and the touch panel, and is disposed on a periphery of the touch display. The surface adhesive is disposed between the display panel and the touch panel, and fills a space defined by the first sealant. The second sealant is disposed between the display panel and the touch panel, and surrounds the space defined by the first sealant.
In the embodiment, the touch display 200 includes a display panel 21 (e.g., a liquid crystal display panel) and a touch panel 22. The touch panel 22 is disposed above the display panel 21. A first sealant 23 is disposed between the display panel 21 and the touch panel 22, and is disposed on a periphery of, e.g. around or surrounding, an active area 201 of the touch display 200. The first sealant 23 may have a frame shape, which may be closed as shown in
A surface adhesive 24 is disposed between the display panel 21 and the touch panel 22, and fills a space defined by the first sealant 23. In one embodiment, at least one post (not shown), sustained between the display panel 21 and the touch panel 22, may be disposed within the space defined by the first sealant 23.
According to one aspect of the embodiment, a second sealant 25 is disposed outside of, e.g., around or surrounding, the space defined by the first sealant 23. The second sealant 25 may have a frame shape, which may be closed as shown in
The first sealant 23, the surface adhesive 24 and the second sealant 25 may be made of conventional optically-clear adhesive (OCA), which may be liquid or solid when being coated on or adhered with adherend. In an embodiment, one or more of the first sealant 23, the surface adhesive 24 and the second sealant 25 may be made of a pressure-sensitive adhesive (PSA), which forms a bond with the display panel 21 and the touch panel 22. For instance, bonding may occur when pressure is applied from the display panel 21 and the touch panel 22. In another embodiment, one or more of the first sealant 23, the surface adhesive 24 and the second sealant 25 may be made of ultra-violet curing adhesive, which forms a bond with the display panel 21 and the touch panel 22. For instance, bonding may occur when the ultra-violet curing adhesive is illuminated with ultra-violet light.
In a further embodiment, the second sealant 25 may include four L-shape adhesives of a type according to
In the embodiments discussed above, double sealants (i.e., the first sealant 23 and the second sealant 25) are disposed between the display panel 21 and the touch panel 22. However, a greater number of sealants may be disposed between the display panel 21 and the touch panel 22 in other embodiments. As at least double sealants 23 and 25 are utilized in the embodiments discussed above, bonding strengths greater than those associated with conventional touch displays may be obtained while maintaining good light-transmittance. Moreover, the first sealant 23, the surface adhesive 24 and the second sealant 25 are discussed in sequence to describe the touch display embodiments 200/300/400/500/501 with an emphasis on structure rather than process or sequence.
Although specific embodiments have been illustrated and described, it will be appreciated by those skilled in the art that various modifications may be made without departing from the scope of the present invention, which is intended to be limited solely by the appended claims.
Number | Date | Country | Kind |
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103105581 | Feb 2014 | TW | national |