The present invention relates to a packaging structure, and more particularly to a packaging structure of liquid crystal panel.
Refer to
On account of the lack of the prior art, the object of the present invention is to provide a packaging structure to prevent the liquid crystal panel moving in the vertical direction and the horizontal direction.
The present invention is provided a packaging structure of liquid crystal panel for packaging the liquid crystal panels during transporting. The packaging structure comprises a plurality of storage grooves. The liquid crystal panels are placed in the packaging structure. The packaging structure further comprises two mutual attraction pads which set on the upper and lower sides of the liquid crystal panel. The pads are provided for preventing the liquid crystal panel swaying and impacting on the side wall of the storage groove during transporting.
Perfectly, the pads comprises a magnetic element and a barrier layer, the barrier layer is provided for insulating the magnetic element and the liquid crystal panel. The liquid crystal panel will be attracted and adhered on the barrier layer with the magnetic element. The pad comprises an upper pad and a lower pad. The magnetic element comprises a magnet and a metal sheet which are respectively embedded in the upper pad and the lower pad. The liquid crystal panel would not be moving or swaying in vertical direction limited by mutual attracted between the magnet and the metal sheet, and also not be moving or swaying in horizontal direction with the closely attaching of the barrier layer and the liquid crystal panel.
Perfectly, the upper pad comprises two barrier layers and the metal sheet, wherein the metal sheet is embedding between the two barrier layers. The lower pad comprises the barrier layer and the magnet adhering on the bottom of the storage groove.
Perfectly, the upper pad comprises two barrier layers and the magnet, wherein the magnet is embedding between the two barrier layers. The lower pad comprises the barrier layer and the metal sheet adhering on the bottom of the storage groove.
Perfectly, a plurality of liquid crystal panel is provided for separating by the upper pad and the lower pad, which are parallel overlapped and embedded into the storage grooves.
Perfectly, the barrier layer is made of silica gel or polyurethane which the friction coefficient is 15-20μ.
Perfectly, the barrier layer and metal sheet are adhering together with adhesive. On the upper pad, the width of the barrier layer and the metal sheet are the same, the width of the upper pad and the liquid crystal panels are also the same as.
Compared to the prior art, in the packaging structure of liquid crystal panel of the present invention, the liquid crystal panel is compressed tightly by the upper pad and the lower pad. The liquid crystal panel can be attracted and attached between the two barrier layers with the mutual attraction from the magnetic elements of the upper pad and the lower pad, and therefore the liquid crystal panel cannot be moved or swayed in vertical direction during transporting. Furthermore, the barrier layer is made of a material with anti-static and high friction coefficient, so the liquid crystal panel cannot be moved or swayed in horizontal direction with high friction from the barrier layer and the liquid crystal panel. Therefore, the moving and swaying of the liquid crystal panel will be limited effectively in the storage groove, and then avoiding it damaging on impacting to the storage groove, and safely protecting it during transporting.
During transporting, in order to protect the packaging liquid crystal panel and prevent it from damaging by swaying to the storage groove, the present invention provides a packaging structure to prevent the liquid crystal panel moving and swaying during transporting. Refer to
Refer to
The pads comprise an upper pad 22a and a lower pad 22b. With packaging, the liquid crystal panel 20 is clamped between the upper pad 22a and the lower pad 22b for fixed steadily. The magnetic element 220 and the barrier layer 221 are separately embedded into the upper pad 22a and the lower pad 22b. The magnetic element 220 comprises a magnet 220a and a metal sheet 220b which are separately embedded in the upper pad 22a and the lower pad 22b.
In the first embodiment, the upper pad 22a comprises two barrier layers 221 and a metal sheet 220b which is embedded between the barrier layers 221. The barrier layer 221 below the metal sheet 220b is adhered to the liquid crystal panel 20. The liquid crystal panel 20 can be packaged between the two barrier layers 221. The lower pad 22b comprises the barrier layers 221 and the metal sheet 220a. The magnet 220a is adhered on the bottom of the storage groove 10. The barrier layer 221 of the lower pad 22b is adhered to the barrier layer 221. The barrier layer 221 and metal sheet 220b are adhering together with adhesive. In the upper pad 22a, the width of the barrier layer 221 and the metal sheet 220b are the same, the width of the upper pad 22a and the liquid crystal panel 20 is the same. The magnet 220a and the metal sheet 220b of the upper pad 22a and the lower pad 22b are mutual attracted in vertical direction. The liquid crystal panel 20 can be compressed by the upper pad 22a and the lower pad 22b, so that it can be limited in vertical direction during transporting. The magnet 220a is insulated from the metal sheet 220b and the liquid crystal panel 20 by the bather layer 221 of the upper pad 22a and the lower pad 22b. Therefore, the liquid crystal panel 20 cannot be moved in horizontal direction. The bather layer 221 is made of a material with anti-static and high friction coefficient. For example, the barrier layer is made of silica gel or polyurethane, the friction coefficient of the barrier layer is 15-20μ, perfectly, the friction coefficient is 18μ. The liquid crystal panel 20 cannot be moving and swaying by the high friction force during transporting.
The multilayer liquid crystal panel 20 can be separated by the upper pads 22a and the lower pads 22b and then be placed in the storage groove 10 in parallel. Accordingly, there is at least one liquid crystal panel 20 setting in the storage groove 10. The adjoined liquid crystal panels 20 are separated by the pads. Not only prevent the mutual colliding, and also the packed rate is improved.
In the second embodiment, the upper pad 22a comprises two bather layers 221 and the magnet 220a which is embedded between the barrier layers 221. The lower pad 22b comprises the barrier layer 221 and the metal sheet 220b, wherein the metal sheet 220b is adhered on the bottom of the storage groove 10. The liquid crystal panel 20 cannot be moving and swaying in vertical direction with the attraction between the upper pad and the lower pad, and in horizontal direction by the high friction force of the bather layer 221 during transporting.
In the third embodiment, the magnetic element 220 are the mutual attracting magnets which embedded in the upper pad 22a and the lower pad 22b.
In the packaging structure of liquid crystal panel of the present invention, the liquid crystal panel is compressed tightly by the upper pad and the lower pad. The liquid crystal panel can be attracted and attached between the two barrier layers with the mutual attraction from the magnetic elements of the upper pad and the lower pad, and therefore the liquid crystal panel cannot be moved or swayed in vertical direction during transporting. Furthermore, the barrier layer is made of a material with anti-static and high friction coefficient, so the liquid crystal panel cannot be moved or swayed in horizontal direction with high friction from the barrier layer and the liquid crystal panel. Therefore, the moving and swaying of the liquid crystal panel will be limited effectively in the storage groove, and then avoiding it damaging on impacting to the storage groove, and safely protecting it during transporting.
Number | Date | Country | Kind |
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201410033493.9 | Jan 2014 | CN | national |
Filing Document | Filing Date | Country | Kind |
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PCT/CN2014/071861 | 1/31/2014 | WO | 00 |