The disclosure relates to a liquid crystal panel processing field, and more particularly to a liquid crystal panel package with water absorption ability.
At present, the most commonly used materials for the packaging of open cells are foam cushioning materials, such as Expandable Polyethylene (EPE) and Expanded polypropylene (EPP). The packaging method is basically a sealed way, that is, closely stacking each box, wrapping in the periphery of the stack with a stretch film, and covering the polyethylene (PE) waterproof film on the top. However, it is found that, after a product is shipped to and unpacked at a destination, mist or water droplets sometimes are formed inside the stretch film or even inside the box. These water mist or water droplets could result in the problem, such as short-circuit, of the electronic devices on the liquid crystal panels, and therefore the reliability is reduced.
The reason for the above problems is that there are manufacturing tolerances in the box, and a certain gap is formed after stacking. Water vapor in the external environment could entering the package through the stretch film and the gap between the boxes. At present, the common practice is to place desiccant in the box to absorb the moisture in the box, but the effect is normal. If the external water vapor can be prevented from infiltrating into the box and a structure capable of absorbing moisture can be provided on the path of infiltration of water vapor, the phenomenon of water mist or water droplets in the box will be greatly reduced.
The technique problem to be solved by the present disclosure is to overcome the drawbacks of the existed technology and provide a liquid crystal package to prevent the external moisture from entering the package.
In order to achieve the object above, the present disclosure adopts the technique solutions below:
A liquid crystal panel package with water absorption ability, comprising a box body and a water absorbent, wherein a containing groove is formed on the box body, the water absorbent is disposed within the containing groove and expands to partially protrude out of the containing groove after absorbing moisture in air, and the protruded part of the water absorbent is configured to abut another liquid crystal panel package stacked with the box body.
In one embodiment, the containing groove is formed on a surface of the box body, the surface faces the aforementioned another liquid crystal panel package, and a direction in which an opening of the container groove faces is parallel to a direction in which the box body and the aforementioned another liquid crystal panel package are stacked.
In one embodiment, a number of the containing groove and a number of the water absorbent are both plural.
In one embodiment, an inner wall of the containing groove is provided with a protrusion.
In one embodiment, an angle between an inner wall and a bottom surface of the containing groove is an acute angle.
In one embodiment, an inner wall of the containing groove is provided with a concave portion, and, after the water absorbent absorbs moisture and expands, a part of the expanded water absorbent fills into the concave portion.
In one embodiment, a number of the concave portion is two, and the two concave portions are formed respectively on opposite two inner walls of the containing groove.
In one embodiment, a material of the water absorbent is superabsorbent resin material,
The liquid crystal panel package with water absorption ability disclosed in the disclosure provides the water absorbent on box body so that the water absorbent expands and closely contacts with another liquid crystal panel package stacked thereon after absorbing moisture to fully fill the gap between the stacked two box bodies, and thereby prevents moisture from entering the package.
The objects, technique solutions and advantages of the embodiments of the present disclosure will be clearly and fully described below accompanying with the drawings of the embodiments. Obviously, the embodiments described below are only for explaining but not for limiting the present invention.
As shown in
Specifically, as shown in
Specifically, the box body 10 has a frame-like structure, preferably a rectangular frame, the containing groove 11 is a loop structure arranged around the boundary frame 12 of the box body 10. Correspondingly, the shape of the water absorbent 20 is matched with the loop structure of the containing groove 11. Therefore, after the water absorbent 20 absorbs water and expands, the water absorbent 20, the box body 10 and other liquid crystal panel packages stacked above the box body 10 form a sealing structure to prevent outside moistures from entering the box.
In one embodiment, there are a plurality of containing groove 11. As shown in
As a preferred embodiment, a material of the water absorbent 20 is selected to be superabsorbent resin material, which provides better absorption and high water-retention and would not release the absorbed water while being squeezed. In addition, the superabsorbent resin material is with good elasticity after absorbing water, so that the water absorbent 20 is ensured to be closely contact with the packages and is used as a buffer during transporting the package.
As shown in
In one embodiment, the amount of the concave portion 11a is two and the two concave portion 11a are provided respectively on opposite two inner walls of the containing groove 11, so that the water absorbent 20 can be fixed on the opposite two inner walls to further prevent the water absorbent 20 from falling off from the box body 10.
As showing in
In other embodiment, the inner walls of the containing groove 11 could be a ladder shape, and, after the water absorbent 20 absorbs water and expands, the containing groove 11 could limit movement of the water absorbent 20 in the stacking direction,
As shown in
The liquid crystal panel package with water absorption ability disclosed in the disclosure provides the water absorbent on box body so that the water absorbent expands and closely contacts with another liquid crystal panel package stacked thereon after absorbing moisture to fully fill the gap between the stacked two box bodies, and thereby prevents moisture from entering the package.
The foregoing contents are detailed description of the disclosure in conjunction with specific preferred embodiments and concrete embodiments of the disclosure are not limited to the description. For the person skilled in the art of the disclosure, without departing from the concept of the disclosure, simple deductions or substitutions can be made and should be included in the protection scope of the application.
Number | Date | Country | Kind |
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201711420922.8 | Dec 2017 | CN | national |
The present application is a National Phase of International Application Number PCT/CN2018/073275, filed Jan. 18, 2018, and claims the priority of China Application No. 201711420922.8, filed Dec. 25, 2017.
Filing Document | Filing Date | Country | Kind |
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PCT/CN2018/073275 | 1/18/2018 | WO | 00 |