专利摘要:
The present invention relates to a packing device for a liquid crystal display module that the liquid crystal display module can cope with the packaging operation and automation line. The packing device for a liquid crystal display module of the present invention has a structure in which a cover mounted at both ends of the lower plate and the lower plate and an upper end of both side walls is integrated, and an insertion space into which the liquid crystal display module can be individually inserted is provided. A body portion; It is provided on the outer surface of the body portion having external protrusions to mitigate the impact from the outside. According to the present invention, since the packing device is integrated and completed by simply folding assembly process, the packaging process of the liquid crystal display module is simplified.
公开号:KR19990032915A
申请号:KR1019970054107
申请日:1997-10-22
公开日:1999-05-15
发明作者:박선임;김영수
申请人:구자홍;엘지전자 주식회사;
IPC主号:
专利说明:

Packing device for liquid crystal display module
The present invention relates to a packing device for a liquid crystal display module, and more particularly to a packing device for a liquid crystal display module that can cope with the packaging line and simplify the automation of the liquid crystal display module.
In general, in packaging the produced liquid crystal display module, consideration should be given to protecting the product when carrying out operations such as packing, loading, storage, transportation and unloading. To this end, conventionally, a liquid crystal display module is packaged by using a packing device made of cardboard. However, the conventional packing device for a liquid crystal display module has a form in which the plates constituting the packing device are separated and assembled by hand. Accordingly, not only the assembly process of the packing device is complicated, but also the use of corrugated cardboard as a material has a disadvantage in that it is not effective in mitigating impact. Hereinafter, the disadvantages will be described with reference to FIG. 1.
1 is an exploded perspective view illustrating a packaging process of a liquid crystal display module using a conventional packing apparatus for a liquid crystal display module. The packing apparatus for a liquid crystal display module shown in FIG. 1 includes an inner packing frame 6 having a storage space having a two-layer structure in which liquid crystal display modules 2 individually stored in a shielding bag 4 can be accommodated, respectively. ) And a packing frame 10 provided with a storage space having a five-layer structure for accommodating the inner packing frame 6.
In the packaging process of a conventional liquid crystal display module, the liquid crystal display module (2) is individually stored in the shielding bag (4) to prevent static electricity is stored in a two-layered storage space provided in the inner packing frame (6) It is done. At this time, the inner packing frame 6 in Figure 1 is a two-layer structure in which the front and rear and the right side is open, it has a longitudinal section of the '' shape. In addition, the open right side is the injection portion, the upper surface has a '凸' shape by cutting both corners of the right end. Here, corrugated cardboard is used as the material of the inner packing frame 6. Subsequently, the inner packing frame 6 in which the two liquid crystal display modules 2 are accommodated is respectively accommodated in the five-layer storage space provided in the packing frame 10.
When the structure of the packing frame 10 is described in detail, the packing frame 10 is parallel to the Y plate 12 having a 'C'-shaped cross section and a predetermined separation distance in the interior of the Y plate 12, respectively. It has six X plates 14 formed. As a result, the packing frame 10 is provided with five storage spaces. In FIG. 1, the right side opened from the packing frame 10 is an injection portion into which the inner packing frame 6 is inserted. In addition, the upper surface and the bottom surface of the packing frame 10 are formed with a stepped portion 12a having a 'c' shaped cross section by the Y plate 12, and an X on the outside of the front and rear surfaces of the packing frame 10. The wing part 12b is formed in the same position as the plate 14. These serve to mitigate the impact from the outside when the packing frame 10 is accommodated in the box 30. In addition, corner support means 16 for supporting the left edge portion formed by the stepped portion 12a are formed on the top and bottom surfaces of the packing frame 10, and on the right side of each of the six X plates 14. An insertion groove 14a is formed.
In addition, the packing apparatus of FIG. 1 includes a cover 18 inserted into each injection portion of the packing frame 10, a Z plate 20 to be inserted into a series of insertion grooves 14a formed in the plates 14, and Sheets 22 are inserted into spaces provided on the upper and lower surfaces of the packing device frame 10 to support the stepped portions 12a. When the inner packing frame 6, in which the liquid crystal display module 2 is accommodated, is accommodated in the five storage spaces through the injection part of the packing frame 10, the rectangular cover 18 is inserted into the injection parts of each layer. . Next, a Z plate 20 having a 'c' shaped cross section is inserted into a series of insertion grooves 14a formed in the X plates 14. At this time, the length of the Z plate 20 is equal to the length of the Y plate 12 including the height of the stepped portion 12a formed on the top and bottom surfaces of the packing frame 10. Sheets 22 also having a 'c'-shaped longitudinal section are inserted into spaces provided on the upper and lower surfaces of the packing frame 10, respectively, where the sheets 22 are formed at both corners of the left side of the packing frame ( The edge supporting means 16 of 10) is cut out to be inserted. Finally, the assembled packing frame 10 is put in a box 30 to finish the packaging.
In this way, the packaging device is used to package the liquid crystal display module, thereby protecting the product from external impact. However, since the packing device for the liquid crystal display module uses corrugated paper as a material, it is difficult to safely protect the product from external impact. In addition, the packing device has a disadvantage in that the assembly process is complicated because the structure is complicated and the plates are separately assembled, as shown in FIG. In addition, since the corrugated material is used and the plates are separated from each other, foreign matters such as dust are generated in the assembling process of the packing device. Recently, the packaging process of products is being automated along with the automation of production plants. Therefore, there is a need for a packing device for a liquid crystal display module that can cope with an automated line.
The present invention has been made to solve the above shortcomings, an object of the present invention is to provide a packing device for a liquid crystal display module that can more safely protect the product from external impact by using resins as the material of the packing device. will be.
Another object of the present invention is to provide a packing apparatus for a liquid crystal display module that can simplify packaging and reduce packaging time as a single mold.
Still another object of the present invention is to provide a packing apparatus for a liquid crystal display module that can correspond to an automated line of a factory.
1 is an exploded perspective view illustrating a packaging process of a liquid crystal display module using a conventional packing apparatus for a liquid crystal display module.
Figure 2 is a perspective view showing a packing device for a liquid crystal display module of the present invention.
Figure 3 is an exploded view showing a packing device for a liquid crystal display module of the present invention.
Figure 4 is an exploded perspective view showing a packaging process of the liquid crystal display module using the packing device for a liquid crystal display module of the present invention.
<Brief description of symbols for the main parts of the drawings>
2 liquid crystal display module 4 shielding bag
6: inner packing frame 10: packing frame
12: Y plate 12a: stepped portion
12b: wing 14: X plate
14a: notch 16: corner support means
18: cover 20: Z plate
22: sheet plate 30: box
40: packing device 42: packing frame
44: outer projection 46: fixed jaw
46a: slope 46b: stepped portion
48: injection part
In order to achieve the above object, the liquid crystal display module packing apparatus according to the present invention has a structure in which the cover mounted on the upper side of both side wall and both side wall mounted at both ends of the lower plate and the lower plate is integrated. A body part having an insertion space that can be inserted into the body; It is characterized in that it is provided on the outer surface of the body portion having external protrusions to mitigate the impact from the outside.
According to another aspect of the present invention, a packing apparatus for a liquid crystal display module includes a body in which a cover mounted at both ends of a lower plate and an upper end of a lower plate and a cover mounted at an upper end of both side walls is integrally provided. Wealth; Fixing jaws formed to face each other with a predetermined distance from the inner surface of the side walls so that the liquid crystal display module can be inserted separately; It has an injection portion having an inclined surface formed on both sides of the upper end of the fixing jaws.
According to another aspect of the present invention, a packing apparatus for a liquid crystal display module has a body in which an insertion space of a liquid crystal display module is provided in a structure in which a cover mounted at both ends of the lower and lower plates is integrated with each other. Wealth; Fixing jaws formed to face each other with a predetermined distance from the inner surface of the side walls so that the liquid crystal display module can be inserted separately; In order to mitigate the impact from the outside, the stepped parts are formed on the outer surface of the fixing jaws located at the end of both side walls.
Other objects and advantages of the present invention in addition to the above object will become apparent from the description of the preferred embodiment of the present invention with reference to the accompanying drawings.
Hereinafter, embodiments of the present invention will be described in detail with reference to FIGS. 2 to 4.
2 is a perspective view of a packing apparatus for a liquid crystal display module according to an exemplary embodiment of the present invention. In Fig. 2, the packing device 40 is a form in which both side walls 42b and 42d mounted at both ends of the lower plate 42c and the lid 42c mounted at the upper ends of both side walls 42b and 42d are integrated. Fixing jaw formed so that the liquid crystal display module can be individually inserted into the in-packing frame 42, the outer protrusions 44 formed on the outer surface of the Pakka frame 42, and the inner surfaces of both side walls 42b and 42d. Field 46 is provided.
The packing device 40 for the liquid crystal display module illustrated in FIG. 2 is a mold product, and resins such as expanded poly ethylene (EPE) or expanded poly propylene (EPP) are used as materials. The packing frame 42 is formed at the upper ends of both side walls 42b and 42d and both side walls 42b and 42d mounted at both ends of the lower plate 42c and the lower plate 42c to protect the liquid crystal display module from external impact. Each cover 42a mounted is constituted. Here, the lower plate 42c of the packing frame 42 has a rectangular cutout at its center portion. When the packing frame 42 is unfolded, the packing frame 42 is formed in a rectangular shape as shown in the expanded view of the packing device 40 shown in FIG. 3, and is folded to form a box having four sides as shown in FIG. 2 by folding four corners. . At this time, the packing frame 42 can be easily folded by having the inclined surface 43 of the corner portion of the four sides to be folded due to a predetermined thickness. Thus, the edge portion of the packing frame 42 has a 'V' shaped longitudinal section as shown in FIG. In addition, the sum of the widths of both lids 42a of the packing frame 42 is smaller than or equal to the vertical width of the packing device frame 42.
Each of the outer protrusions 44 formed in two transverse directions with a predetermined distance from each outer surface of the packing frame 42 serves to mitigate an external impact. Here, the outer protrusions 44 formed on the lower plate 42c of the packing frame 42 are located at both end portions of the outer surface, respectively, and have a cross-section of the '-' shape as shown in FIG. 3.
The fixing jaw 46 is formed to face each other with a predetermined distance from the inner surface of each of the side wall (42b, 42d) of the packing frame 42. In this case, 11 pairs of fixing jaws 46 are formed on the inner surfaces of both side walls 42b and 42d to individually insert 10 liquid crystal display modules. Accordingly, as shown in FIG. 1, a separate inner packing frame 6 surrounding the liquid crystal display module is not required. The upper ends of the fixing jaws 46 have inclined surfaces 46a at both ends, as shown in detail in FIG. This is to form the injection unit 48 into which the liquid crystal display module is inserted, so as to widen the injection unit 48 to easily insert or withdraw the liquid crystal display module. In addition, a stepped portion 46b having a predetermined step is formed on an outer surface of the two pairs of fixed jaws 46 positioned at both end portions of both side walls 42b and 42d. In other words, the pair of fixing jaw 46 has a stepped portion (46b) at both ends of the outer surface, as shown in B of Figure 3 has a '-' shaped longitudinal section. This serves to prevent deformation of the packing device 40 and to mitigate external shocks.
4 is an exploded perspective view illustrating a packaging process of a liquid crystal display module using the liquid crystal display module packing device 40.
In FIG. 4, the liquid crystal display module 2 is inserted into the shielding bag 4 to prevent static electricity, and the shielding bag 4 is individually inserted into a storage space provided in the packing device 40 of the present invention. When the ten liquid crystal display modules 2 are completely inserted into the packing device 40, the lid 42a of the packing frame 42 is closed and the packing device 42 is packed in a box.
In this way, the packaging process is simplified by packaging the liquid crystal display module by using an integrated packing device that is simply completed by the folding assembly process.
As described above, the packing device for a liquid crystal display module according to the present invention is integral and is completed by simply folding assembly process. Accordingly, the packaging process of the liquid crystal display module can be simplified and can correspond to the automation line of the factory. In addition, the packing device uses a resin material as a material and has a stepped portion at the outer protrusions and the outer fixing jaws to protect the product from external shocks.
Those skilled in the art will appreciate that various changes and modifications can be made without departing from the technical spirit of the present invention. Therefore, the technical scope of the present invention should not be limited to the contents described in the detailed description of the specification but should be defined by the claims.
权利要求:
Claims (13)
[1" claim-type="Currently amended] A packing device for a liquid crystal display module, comprising: a structure in which a cover mounted at both ends of lower and lower plates and upper ends of both side walls is integrally formed to provide an insertion space into which the liquid crystal display module can be individually inserted. A body portion; And an outer protrusion formed on an outer surface of the body to mitigate an impact from the outside.
[2" claim-type="Currently amended] The packing apparatus for a liquid crystal display module according to claim 1, further comprising fixing jaws corresponding to the inner surfaces of the side walls and having a predetermined distance to insert the liquid crystal display module separately.
[3" claim-type="Currently amended] 3. The packing apparatus of claim 2, wherein stepped portions are provided on outer surfaces of the fixing jaws formed at ends of both side walls of the fixing jaws to mitigate an impact from the outside. 4.
[4" claim-type="Currently amended] The packing apparatus of claim 2, wherein the upper end portions of the fixing jaws have inclined surfaces on both sides thereof.
[5" claim-type="Currently amended] The packing apparatus for a liquid crystal display module according to claim 1, wherein resin is used as a material of the packing apparatus.
[6" claim-type="Currently amended] A packing apparatus for a liquid crystal display module, comprising: a body portion having an insertion space of the liquid crystal display module in a structure in which a cover mounted at both ends of the lower plate and the lower plate and upper ends of both side walls is integrated; Fixing jaws formed to face each other with a predetermined distance from the inner surfaces of the side walls so that the liquid crystal display module can be inserted separately; And an injection part having an inclined surface formed on both sides of the upper ends of the fixing jaws.
[7" claim-type="Currently amended] The packing apparatus of claim 6, further comprising external protrusions formed on an outer surface of the body to mitigate an impact from the outside.
[8" claim-type="Currently amended] The liquid crystal display module packing apparatus of claim 6, wherein stepped portions are provided on outer surfaces of the fixed jaws formed at ends of the side walls of the fixing jaws to mitigate an impact from the outside.
[9" claim-type="Currently amended] 7. The packing apparatus for a liquid crystal display module according to claim 6, wherein resin is used as a material of the packing apparatus.
[10" claim-type="Currently amended] A packing apparatus for a liquid crystal display module, comprising: a body portion having an insertion space of the liquid crystal display module in a structure in which a cover mounted at both ends of the lower plate and the lower plate and upper ends of both side walls is integrated; Fixing jaws formed to face each other with a predetermined distance from the inner surfaces of the side walls so that the liquid crystal display module can be inserted separately; Packing device for a liquid crystal display module characterized in that it comprises stepped parts formed on the outer surface of the fixing jaws located at the end of the both side wall to mitigate the impact from the outside.
[11" claim-type="Currently amended] 11. The liquid crystal display module packing apparatus according to claim 10, further comprising external protrusions formed on an outer surface of the body to mitigate an impact from the outside.
[12" claim-type="Currently amended] The packing apparatus for a liquid crystal display module according to claim 10, wherein upper ends of the fixing jaws have inclined surfaces on both sides thereof.
[13" claim-type="Currently amended] The packing apparatus for a liquid crystal display module according to claim 10, wherein resin is used as a material of the packing apparatus.
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同族专利:
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引用文献:
公开号 | 申请日 | 公开日 | 申请人 | 专利标题
法律状态:
1997-10-22|Application filed by 구자홍, 엘지전자 주식회사
1997-10-22|Priority to KR1019970054107A
1999-05-15|Publication of KR19990032915A
2000-04-01|Application granted
2000-04-01|Publication of KR100246474B1
优先权:
申请号 | 申请日 | 专利标题
KR1019970054107A|KR100246474B1|1997-10-22|1997-10-22|Apparatus for packing liquid crystal display module|
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