Cushion Device and LCD Module Packing Device Having Cushion Device
A cushion device and a liquid crystal display module packing device having the cushion device are proposed. The cushion device comprises a bottom cushion unit, which comprises a bottom cushion plate and a spacing unit set up on the bottom cushion plate and between two ends of the bottom cushion plate, and a plurality of spacing grooves padded with cushion units on the spacing unit. Supporting effects of the spacing unit brings down thickness of the cushion unit, so that cost of packing is reduced due to decreased usage of packing material and increased utility of packing space; besides, cost of packing is further reduced because the spacing unit is reusable.
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1. Field of the Invention
The present invention relates to a packing field, more particularly, to a cushion device and a liquid crystal display (LCD) module packing device comprising the cushion device.
2. Description of the Prior Art
Electronic products are characterized of complexity, high value and speedy update etc., and complex supply chains exist among manufactures. As to conventional production and marketing patterns, electronic products are mostly produced, assembled and sealed at different places, so that electronic components and semi-finished products have to be shipped among different manufacturers. In the filed of liquid crystal display (LCD) production, an LCD production comprises a assemble process, i.e. assembling LCD modules, governor circuits and shell respectively. Components are produced and sealed before sequential assembling of the whole LCD device. As part of the process, LCD modules are finished and sealed in LCD modules packages before shipped to correspondent assemble unit in package.
However, in this packing method of LCD module, the material used in internal cushion device is Expandable Polyethylene (EPE, namely purple cotton). EPE is an expanded and soft material, which means it easily deforms under pressure from external forces. To reduce the risk of mutual collision between LCD modules, the EPE between the installation grooves 3121 and the spacing grooves 3131 is usually designed to be really thick, which results in unnecessary material and space consuming leading to decrease of overall installation, hence significantly increase costs of packing and transportation.
SUMMARY OF THE INVENTIONAccording to the present invention, a cushion device comprises a bottom cushion unit, which comprises a bottom cushion plate and a spacing unit set up on the bottom cushion plate and between two ends of the bottom cushion plate, and a plurality of spacing grooves padded with cushion units on the spacing unit.
Preferably, the spacing unit comprises a side spacing plate and a plurality of spacing plates set up parallel on the side spacing plate at interval, and a spacing groove is formed between two neighboring spacing plates.
Preferably, a bottom end of the spacing plate occupies a larger space than that of a top end of the spacing plate in order to strengthen the bottom end of the spacing plate.
Preferably, the bottom end of the spacing plate is a triangle structure.
Preferably, an outer shape of the cushion unit matches a shape of the spacing groove, and an installation groove is set up on the cushion unit.
Preferably, the spacing unit is plastic products made from plastic extruding arts.
Preferably, the cushion unit is Expandable Polyethylene.
Preferably, the spacing unit is fixed on the bottom cushion plate through adhering or engaging.
Preferably, the cushion device further comprises a top cushion unit which has corresponding structure to the bottom cushion unit.
According to the present invention, a liquid crystal display module packing device comprises a packing case and a cushion device inside the packing case. The cushion device comprises a bottom cushion unit, which comprises a bottom cushion plate and a spacing unit set up on the bottom cushion plate and in between the two ends of the bottom cushion plate, and a plurality of spacing grooves padded with cushion units are set up on the spacing unit.
Preferably, the spacing unit comprises a side spacing plate and a plurality of spacing plates set up parallel on the side spacing plate at interval, and a spacing groove is formed between two neighboring spacing plates.
Preferably, a bottom end of the spacing plate occupies a larger space than that of a top end of the spacing plate in order to strengthen the bottom end of the spacing plate.
Preferably, the bottom end of the spacing plate is a triangle structure.
Preferably, an outer shape of the cushion unit matches a shape of the spacing groove, and an installation groove is set up on the cushion unit.
Preferably, the spacing unit is plastic products made from plastic extruding arts.
Preferably, the cushion unit is Expandable Polyethylene.
Preferably, the spacing unit is fixed on the bottom cushion plate through adhering or engaging.
Preferably, the cushion device further comprises a top cushion unit which has corresponding structure to the bottom cushion unit.
Preferably, the packing case can be a paper case or a plastic case.
The present invention provides an LCD module packing device to protect LCD modules, in which a cushion device works through coordination of a supporting hard spacing unit and a cushioning soft cushion unit. Supporting effects of the spacing unit brings down thickness of the cushion unit, so that cost of packing is reduced due to decreased usage of packing material and increased utility of packing space; besides, cost of packing is further reduced because the spacing unit is reusable.
The present invention is described in detail in conjunction with the accompanying drawings and embodiments.
Please refer to
The bottom cushion unit 210 comprises a bottom cushion plate 211 and a spacing unit 212 set up on the two ends of the bottom cushion plate 211. The spacing unit 212 is fixed on the bottom cushion plate 211 by adhering or engaging, and comprises a side spacking plate 2121 and a plurality of spacing plates 2122 set up parallel on the side spacing plate 2121 at interval. A spacing groove 2123 is formed between two neighboring spacing plates 2122 and is padded with a cushion unit 213. To avoid collision and tilting of LCD modules in transportation, the cushion unit 213 is padded in the spacing groove 2123 and matchingly engages with the spacing groove 2123. An installation groove 2131 is set up in the cushion unit 213 to place the LCD module.
The spacing unit 212 preferably applies plastic products made from plastic extruding arts, whose advantages in light weight, transportation convenience, performance stability and high crushing resistance, thus is capable of providing excellent supporting to LCD module to prevent mutual collision; besides, these plastic products are reusable, which leads to cost reduction of packing The cushion unit 213 preferably applies Expandable Polyethylene (EPE) material, which is soft, thus is capable of providing excellent cushion to the LCD module to prevent the LCD module from damage.
To further improve supporting strength of the spacing unit 212, a bottom end A of the spacing plate 2122 occupies a larger space of that of a top end B of the spacing plate 2122, thus the bottom end A of the spacing plate 2122 is strengthened. As
The packing case can be a paper case or a plastic case, the latter one is preferred in the embodiment. The plastic case has better structure than the paper case, besides it is reusable and sustainable, moisture proof or water proof, so that provides better protection. In addition, reusable packing cases reduce packing cost.
The packing of the LCD module processes in sequence. The bottom cushion unit 210 is placed at the bottom plate of the packing case at first, the LCD module is placed in the installation groove 2131 secondly, and last the top cushion unit is set up on the LCD module. Packing is then finished.
In sum, the present invention provides an LCD module packing device to protect LCD modules, in which a cushion device works through coordination of a supporting hard spacing unit and a cushioning soft cushion unit. Supporting effects of the spacing unit brings down thickness of the cushion unit, so that cost of packing is reduced due to decreased usage of packing material and increased utility of packing space; besides, cost of packing is further reduced because the spacing unit is reusable.
Those skilled in the art will readily observe that numerous modifications and alterations of the device and method may be made while retaining the teachings of the invention. Accordingly, the above disclosure should be construed as limited only by the metes and bounds of the appended claims.
Claims
1. A cushion device comprising a bottom cushion unit, which comprises a bottom cushion plate and a spacing unit set up on the bottom cushion plate and between two ends of the bottom cushion plate, and a plurality of spacing grooves padded with cushion units on the spacing unit.
2. The cushion device of claim 1, wherein the spacing unit comprises a side spacing plate and a plurality of spacing plates set up parallel on the side spacing plate at interval, and a spacing groove is formed between two neighboring spacing plates.
3. The cushion device of claim 2, wherein a bottom end of the spacing plate occupies a larger space than that of a top end of the spacing plate in order to strengthen the bottom end of the spacing plate.
4. The cushion device of claim 3, wherein the bottom end of the spacing plate is a triangle structure.
5. The cushion device of claim 1, wherein an outer shape of the cushion unit matches a shape of the spacing groove, and an installation groove is set up on the cushion unit.
6. The cushion device of claim 1, wherein the spacing unit is plastic products made from plastic extruding arts.
7. The cushion device of claim 1, wherein the cushion unit is Expandable Polyethylene.
8. The cushion device of claim 1, wherein the spacing unit is fixed on the bottom cushion plate through adhering or engaging.
9. The cushion device of claim 1, wherein the cushion device further comprises a top cushion unit which has corresponding structure to the bottom cushion unit.
10. A liquid crystal display module packing device comprising a packing case and a cushion device inside the packing case, wherein the cushion device comprises a bottom cushion unit, which comprises a bottom cushion plate and a spacing unit set up on the bottom cushion plate and in between the two ends of the bottom cushion plate, and a plurality of spacing grooves padded with cushion units are set up on the spacing unit.
11. The liquid crystal display module packing device of claim 10, wherein the spacing unit comprises a side spacing plate and a plurality of spacing plates set up parallel on the side spacing plate at interval, and a spacing groove is formed between two neighboring spacing plates.
12. The liquid crystal display module packing device of claim 11, wherein a bottom end of the spacing plate occupies a larger space than that of a top end of the spacing plate in order to strengthen the bottom end of the spacing plate.
13. The liquid crystal display module packing device of claim 12, wherein the bottom end of the spacing plate is a triangle structure.
14. The liquid crystal display module packing device of claim 10, wherein an outer shape of the cushion unit matches a shape of the spacing groove, and an installation groove is set up on the cushion unit.
15. The liquid crystal display module packing device of claim 10, wherein the spacing unit is plastic products made from plastic extruding arts.
16. The liquid crystal display module packing device of claim 10, wherein the cushion unit is Expandable Polyethylene.
17. The liquid crystal display module packing device of claim 10, wherein the spacing unit is fixed on the bottom cushion plate through adhering or engaging.
18. The liquid crystal display module packing device of claim 10, wherein the cushion device further comprises a top cushion unit which has corresponding structure to the bottom cushion unit.
19. The liquid crystal display module packing device of claim 10, wherein the packing case can be a paper case or a plastic case.
Type: Application
Filed: Oct 11, 2013
Publication Date: Apr 16, 2015
Applicant: Shenzhen China Star Optoelectronics Technology Co., Ltd. (Shenzhen, Guangdong)
Inventors: Liang Yue (Shenzhen), Shihhsiang Chen (Shenzhen)
Application Number: 14/116,133
International Classification: B65D 85/48 (20060101); B65D 81/113 (20060101);