Seal agent coating device
09770735 · 2017-09-26
Assignee
- Boe Technology Group Co., Ltd. (Beijing, CN)
- HEFEI BOE OPTOELECTRONICS TECHNOLOGY CO., LTD. (Hefei, Anhui Province, CN)
Inventors
Cpc classification
B05C5/0266
PERFORMING OPERATIONS; TRANSPORTING
B05C5/004
PERFORMING OPERATIONS; TRANSPORTING
B05C5/001
PERFORMING OPERATIONS; TRANSPORTING
B05C5/0212
PERFORMING OPERATIONS; TRANSPORTING
B05C5/0262
PERFORMING OPERATIONS; TRANSPORTING
International classification
B05C5/00
PERFORMING OPERATIONS; TRANSPORTING
B05B7/16
PERFORMING OPERATIONS; TRANSPORTING
Abstract
A seal agent coating device is disclosed, comprising: a storage cavity, a nozzle, a connecting duct and a power driven component, wherein: the nozzle comprises a nozzle cavity and a mouth, the mouth being located at the lower part of the nozzle cavity and matching with the shape of the seal agent coating area of the substrate; the connecting duct interconnects the storage cavity and the nozzle cavity; the power driven component can squeeze the seal agent in the storage cavity into the nozzle cavity via the connecting duct, thereby squeezing it out via the mouth.
Claims
1. A seal agent coating device, comprising: a storage cavity, a nozzle, a connecting duct and a power driven component, wherein the nozzle comprises a nozzle cavity and a mouth, the mouth being located at a lower part of the nozzle cavity and matching with a shape of the seal agent coating area of the substrate; the connecting duct interconnects the storage cavity and the nozzle cavity; the power driven component is configured to squeeze the seal agent in the storage cavity into the nozzle cavity via the connecting duct, thereby squeezing it out via the mouth, and wherein the nozzle is a frame shaped nozzle, at least one pair of opposite frame borders of the frame shaped nozzle are length adjustable frame borders.
2. The seal agent coating device as claimed in claim 1, wherein the connecting duct comprises an upper duct and a lower duct, the upper duct is connected with the storage cavity, the lower duct is connected with the nozzle cavity, the upper duct and the lower duct are detachably connected through a fastener.
3. The seal agent coating device as claimed in claim 2, wherein the lower duct comprises several branch ducts respectively connected with the nozzle cavity.
4. The seal agent coating device as claimed in claim 3, wherein the branch ducts are horizontally or obliquely arranged.
5. The seal agent coating device as claimed in claim 4, wherein the nozzle has a shrink mouth structure, a sectional shape of the nozzle cavity comprises an inverted triangle or an inverted peach shape.
6. The seal agent coating device as claimed in claim 5, wherein the power driven component comprises a piston arranged in the storage cavity, or the power driven component comprises a charging pipe for charging gas into a cavity part of the storage cavity.
7. The seal agent coating device as claimed in claim 3, wherein an on-off valve is arranged on at least one of the branch ducts.
8. The seal agent coating device as claimed in claim 7, wherein the nozzle has a shrink mouth structure, a sectional shape of the nozzle cavity comprises an inverted triangle or an inverted peach shape.
9. The seal agent coating device as claimed in claim 2, wherein the nozzle has a shrink mouth structure, a sectional shape of the nozzle cavity comprises an inverted triangle or an inverted peach shape.
10. The seal agent coating device as claimed in claim 9, wherein the power driven component comprises a piston arranged in the storage cavity, or the power driven component comprises a charging pipe for charging gas into a cavity part of the storage cavity.
11. The seal agent coating device as claimed in claim 3, wherein the nozzle has a shrink mouth structure, a sectional shape of the nozzle cavity comprises an inverted triangle or an inverted peach shape.
12. The seal agent coating device as claimed in claim 11, wherein the power driven component comprises a piston arranged in the storage cavity, or the power driven component comprises a charging pipe for charging gas into a cavity part of the storage cavity.
13. The seal agent coating device as claimed in claim 1, wherein the length adjustable frame border comprises a first frame border portion, a second frame border portion and a transitional connecting portion, the first frame border portion and the second frame border portion are telescopically connected with two ends of the transitional connecting portion respectively, or the length adjustable frame border comprises a first frame border portion and a second frame border portion, the first frame border portion is telescopically connected with the second frame border portion.
14. The seal agent coating device as claimed in claim 13, wherein the nozzle has a shrink mouth structure, a sectional shape of the nozzle cavity comprises an inverted triangle or an inverted peach shape.
15. The seal agent coating device as claimed in claim 1, wherein an exterior of the nozzle cavity is configured with a heating muff.
16. The seal agent coating device as claimed in claim 15, wherein the nozzle has a shrink mouth structure, the sectional shape of the nozzle cavity comprises an inverted triangle or an inverted peach shape.
17. The seal agent coating device as claimed in claim 1, wherein the nozzle has a shrink mouth structure, a sectional shape of the nozzle cavity comprises an inverted triangle or an inverted peach shape.
18. The seal agent coating device as claimed in claim 17, wherein the power driven component comprises a piston arranged in the storage cavity, or the power driven component comprises a charging pipe for charging gas into a cavity part of the storage cavity.
Description
BRIEF DESCRIPTION OF DRAWINGS
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REFERENCE SIGNS
The Prior Art Part
(8) 1—gas outlet; 2—storage cavity; 3—nozzle; 4—conduit
The Embodiment Part of this Disclosure
(9) 11—storage cavity; 12—nozzle; 13—connecting duct; 14—fastener; 15—on-off valve; 16—heating muff; 17—piston; 121—nozzle cavity; 122—mouth; 131—upper duct; 132—lower duct; 1321—branch duct; 12a—first frame border portion; 12b—second frame border portion; 12c—transitional connecting portion.
DETAILED DESCRIPTION OF THE DISCLOSURE
(10) In order to shorten the process time of the seal agent coating, increase the coating efficiency and improve the uniformity of the thickness of the seal agent coating, the embodiment of this disclosure provides a seal agent coating device. In order to make the purposes, the technical solutions and the advantages of this disclosure clearer, this disclosure will be further explained in detail with the embodiments as follows.
(11) As shown in
(12) the nozzle 12 comprises a nozzle cavity 121 and a mouth 122, the mouth 122 being located at the lower part of the nozzle cavity 121 and matching with the shape of the seal agent coating area of the substrate; the connecting duct 13 interconnects the storage cavity 11 and the nozzle cavity 121; the power driven component can squeeze the seal agent in the storage cavity 11 into the nozzle cavity 121 via the connecting duct 13, thereby squeezing it out via the mouth 122.
(13) In the embodiment of this disclosure, “the mouth 122 matching with the shape of the seal agent coating area of the substrate” can be understood as: within certain error range, the distribution shape of the mouth 122 is same as the shape of the seal agent coating area of the substrate, the opening width of the mouth 122 is equal to the coating width of the seal agent.
(14) The seal agent coating device can be installed on a seal agent coating machine, specifically, the storage cavity 11 is fixed on a connecting plate, the connecting plate is fixedly connected with a related structure member of the seal agent coating machine, thereby realizing installation of the seal agent coating device.
(15) The specific shape of the nozzle 12 is not limited, however, preferably, the nozzle 12 has a shrink mouth structure, the sectional shape of the nozzle cavity 121 may be an inverted triangle or an inverted peach shape etc., the mouth 122 is located at the lowest part of the nozzle cavity 121.
(16) The specific type of the power driven component is not limited, for example, as shown in
(17) In the technical solution of the embodiment of this disclosure, the mouth 122 of the nozzle 12 matches with the shape of the seal agent coating area of the substrate, when the power driven component drives the seal agent to flow into the connecting duct 13 and the nozzle cavity 121 and finally squeeze out from the mouth 122, the seal agent can be integrally coated on the seal agent coating area of the substrate (i.e.: the seal agent coating area on the substrate is coated with seal agent simultaneously), compared with the prior art, this solution significantly shortens the process time of the seal agent coating and improves the coating efficiency. In addition, since the seal agent is integrally coated so as to form a closed loop, there will not be the start end and the finish end of the coating, thus, the coating overlapping can be avoided, thereby improving uniformity of the thickness of the seal agent coating.
(18) In the embodiment of this disclosure, the specific design form of the connecting duct 13 is not limited, as long as it can interconnect the storage cavity 11 and the nozzle cavity 121, the above beneficial effect can be achieved.
(19) As shown in
(20) As shown in
(21) As shown in
(22) Since the substrate is generally a rectangle, the seal agent coating area on the substrate is a rectangular frame, correspondingly, the nozzle 12 designed in the embodiment of this disclosure is also a frame shaped nozzle. Preferably, one or two pairs of opposite frame borders of the frame shaped nozzle are length adjustable frame borders. By adjusting the frame border length of the frame shaped nozzle, the seal agent coating device can be adapted for seal agent coating on substrates of different sizes, the application range is relatively wide, which can save the device cost greatly.
(23) As shown in
(24) It is worth mentioning that the length adjustable frame border structure is not limited to the above embodiment. In another embodiment of this disclosure, the length adjustable frame border may also comprise a first frame border portion and a second frame border portion, the first frame border portion is telescopically connected with the second frame border portion. Similar as the principle of the above embodiment, when the the length of the frame border needs to be increased, the first frame border portion is enabled to extend from the set length of the second frame border portion; when the length of the frame border needs to be reduced, the first frame border portion is enabled to retract to the set length of the second frame border portion. It shows that this design is also applicable in seal agent coating on substrates of various sizes, which does not have to replace the nozzle and the lower duct.
(25) As shown in
(26) As shown in
(27) Apparently, the skilled person in the art can make various modifications and variants to this disclosure without departing from the spirit and scope of this disclosure. In this way, provided that these modifications and variants of this disclosure belong to the scopes of the claims and equivalent technologies thereof, this disclosure also intends to cover these modifications and variants.