ENCAPSULATION APPARATUS
20170279070 ยท 2017-09-28
Inventors
- Xinxin Wang (Beijing, CN)
- Ronggang Shangguan (Beijing, CN)
- Wenbin Jia (Beijing, CN)
- Rui Peng (Beijing, CN)
- Zhijie Ye (Beijing, CN)
- Lifang Song (Beijing, CN)
Cpc classification
H10K71/00
ELECTRICITY
B05B1/28
PERFORMING OPERATIONS; TRANSPORTING
International classification
Abstract
An encapsulation apparatus includes an attraction unit and n adhesive-dripping units, n being greater than or equal to 1. Each of the adhesive-dripping units contains adhesive glue, the adhesive glue including an absorbable substance. The attraction unit is disposed on a base platform, the attraction unit being configured to generate attraction for the absorbable substance in the adhesive glue sprayed out from a nozzle, such that the adhesive glue is sprayed to dotting positions of the adhesive glue on an encapsulation substrate in a preset spraying amount under the effect of the attraction.
Claims
1. An encapsulation apparatus, wherein the encapsulation apparatus comprises: an attraction unit and n adhesive-dripping units, n being greater than or equal to 1, wherein: each of the adhesive-dripping units contains adhesive glue, the adhesive glue including an absorbable substance; and the attraction unit is disposed on a base platform, and is configured to generate attraction for the absorbable substance in the adhesive glue sprayed out from nozzles of the adhesive-dripping units, such that the adhesive glue is sprayed to dotting positions of the adhesive glue on an encapsulation substrate in a preset spraying amount under the effect of the attraction.
2. The encapsulation apparatus of claim 1, wherein, the absorbable substance is a ferromagnetic substance; the attraction unit comprises a plurality of electromagnet groups arranged in an array, each of the electromagnet groups comprising n electromagnets, the n electromagnets being configured to generate attraction for the absorbable substance in the adhesive glue sprayed out from the nozzles after being energized, and to stop generating attraction for the absorbable substance in the adhesive glue sprayed out from the nozzle after being de-energized.
3. The encapsulation apparatus of claim 2, wherein, an orthogonal projection of each electromagnet on the encapsulation substrate corresponds to a dotting position of the adhesive glue on the encapsulation substrate.
4. The encapsulation apparatus of claim 1, wherein, the absorbable substance is a ferromagnetic substance; the attraction unit comprises a plurality of electromagnet groups arranged in an array, each of the electromagnet groups comprising two electromagnets, the two electromagnets being configured to generate attraction for the absorbable substance in the adhesive glue sprayed out from the nozzles after being energized, and to stop generating attraction for the absorbable substance in the adhesive glue sprayed out from the nozzle after being de-energized, the two electromagnets being located at opposite sides of the region of the orthogonal projection of the encapsulation substrate on the base platform, and operable such that the direction of the resultant force of the attractions generated by the two electromagnets for the absorbable substance in the adhesive glue is the same as the direction of gravity on the adhesive glue sprayed out from the nozzle.
5. The encapsulation apparatus of claim 2, characterized by one of the following: the plurality of electromagnet groups are disposed on a carrying surface of the base platform, the carrying surface being configured to carry the encapsulation substrate; and the plurality of electromagnet groups are disposed on a surface of the base platform opposite to the carrying surface.
6. The encapsulation apparatus of claim 5, wherein the encapsulation apparatus further comprises a current generating unit, the current generating unit is configured to generate currents of different magnitudes, the electromagnets in each electromagnet group are further configured to, after being energized, generate different attractions for the absorbable substance in the adhesive glue sprayed out from the nozzle under the control of the currents of different magnitudes.
7. The encapsulation apparatus of claim 5, wherein at least one electromagnet is circular-shaped.
8. The encapsulation apparatus of claim 7, wherein a diameter of the at least one electromagnet is 1 cm.
9. The encapsulation apparatus of claim 3, characterized by one of the following: the plurality of electromagnet groups are disposed on a carrying surface of the base platform, the carrying surface being configured to carry the encapsulation substrate; and the plurality of electromagnet groups are disposed on a surface of the base platform opposite to the carrying surface.
10. The encapsulation apparatus of claim 9, wherein the encapsulation apparatus further comprises a current generating unit, the current generating unit is configured to generate currents of different magnitudes, the electromagnets in each electromagnet group are further configured to, after being energized, generate different attractions for the absorbable substance in the adhesive glue sprayed out from the nozzle under the control of the currents of different magnitudes.
11. The encapsulation apparatus of claim 9, wherein at least one electromagnet is circular-shaped.
12. The encapsulation apparatus of claim 11, wherein a diameter of the at least one electromagnet is 1 cm.
13. The encapsulation apparatus of claim 4, characterized by one of the following: the plurality of electromagnet groups are disposed on a carrying surface of the base platform, the carrying surface being configured to carry the encapsulation substrate; and the plurality of electromagnet groups are disposed on a surface of the base platform opposite to the carrying surface.
14. The encapsulation apparatus of claim 13, wherein the encapsulation apparatus further comprises a current generating unit, the current generating unit is configured to generate currents of different magnitudes, the electromagnets in each electromagnet group are further configured to, after being energized, generate different attractions for the absorbable substance in the adhesive glue sprayed out from the nozzle under the control of the currents of different magnitudes.
15. The encapsulation apparatus of claim 13, wherein at least one electromagnet is circular-shaped.
16. The encapsulation apparatus of claim 15, wherein a diameter of the at least one electromagnet is 1 cm.
17. The encapsulation apparatus of claim 1, wherein, the adhesive glue is a dam filler glue.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
[0022] In order to describe the present disclosure, the following will briefly describe the accompanying drawings used in the description of the embodiments of the present disclosure. Obviously, the accompanying drawings in the following description are merely some embodiments of the present disclosure. To those of ordinary skill in the art, other embodiments may also be obtained based on these accompanying drawings without any creative effort.
[0023]
[0024]
[0025]
[0026]
[0027]
[0028]
[0029] The above accompanying drawings have illustrated embodiments of the present disclosure, and the following will describe them in detail. The accompanying drawings and the description are not intended to restrict the scope of the present disclosure in any way, but rather to describe the concept of the present disclosure for those skilled in the art by referring to specific embodiments.
DETAILED DESCRIPTION
[0030] In order to make the present disclosure more clear, the following will describe in more detail embodiments of the present disclosure.
[0031] Embodiments of the present disclosure provide an encapsulation apparatus. As shown in
[0032] Each of the adhesive-dripping units 200 contains adhesive glue, which includes an absorbable substance. Optionally, the adhesive glue is dam filler glue (i.e., filler glue).
[0033] The attraction unit 100 is disposed on a base platform 300, and the attraction unit 100 is configured to generate attraction for the absorbable substance in the adhesive glue 200 sprayed out from nozzles 210 of the glue ports of the adhesive-dripping units 200, so as to make the adhesive glue 211 spray to dotting positions M of the adhesive glue 211 on the encapsulation substrate 400 in a preset spraying amount from the nozzles 210 under the effect of the attraction.
[0034] To summarize, the encapsulation apparatus provided by an embodiment of the present disclosure comprises an attraction unit and n adhesive-dripping units; the adhesive-dripping units contain an absorbable substance; since the adhesive glue contains an absorbable substance, the attraction unit can generate attraction for the absorbable substance in the adhesive glue sprayed out from the nozzles of the glue ports of the adhesive-dripping units. The adhesive glue is sprayed to the dotting positions on the encapsulation substrate in a preset spraying amount from the nozzles under the effect of the attraction. Compared with the prior art, the adhesive glue is not easily adhered at the nozzles of the glue ports of the adhesive-dripping units, thus increasing the effect and efficiency of encapsulation.
[0035] In
[0036] Optionally, the absorbable substance is a ferromagnetic substance. As shown in
[0037] It should be noted additionally that as shown in
[0038] As shown in
[0039] Supposing the adhesive glue is filler glue, the process of encapsulating the OLED display by the encapsulation apparatus shown in
[0040] Then, in the same way, the encapsulation apparatus is used to spray filler glue to the other groups of dotting positions on the encapsulation substrate, thus finishing the dotting process of filler glue. Finally, the encapsulation substrate dotted with the filler glue and a base substrate provided with OLED devices are pressed together and cured, thus accomplishing the entire encapsulation process. In addition, when the dotting process of the filler glue is performed, currents of different magnitudes may be generated by the current generating unit, and the electromagnets in each electromagnet group generate different magnetism under the effect of the currents of different magnitudes, and generate different attractions for the ferromagnetic substance in the filler glue sprayed out from the nozzles of the glue ports of the n adhesive-dripping units, and the filler glue is accurately sprayed to the dotting positions on the encapsulation substrate from the nozzles under the effect of the different attractions. The main components of the dam sealant are epoxy resin, additives, optical initiators, and inorganic fillers; the main components of the filler glue are epoxy resin, additives, and optical initiators. The viscosity of the dam sealant is greater than that of the filler glue.
[0041] Embodiments of the present disclosure, by adding a ferromagnetic substance in the adhesive glue (e.g., filler glue), and setting electromagnets at positions under the encapsulation substrate corresponding to the dotting positions, using the current generating unit to generate currents of different magnitudes, which controls the magnetism of the electromagnets, so as to make the electromagnets generate different attractions for the ferromagnetic substance in the adhesive glue sprayed out from the nozzles of the glue ports of the adhesive-dripping units, provide that the adhesive glue is accurately sprayed to the dotting positions on the encapsulation substrate in a preset spraying amount under the effect of the attractions. Compared with the prior art, the adhesive glue is not easily adhered at the nozzles of the glue ports of the adhesive-dripping units, and glue will not be easily accumulated at the nozzles, thus enhancing the effect and efficiency of encapsulation of the OLED device.
[0042] Optionally, as shown in
[0043] Supposing that the adhesive glue is filler glue, the process of encapsulating the OLED display by the encapsulation apparatus shown in
[0044] Then, in the same way, the filler glue is sprayed to the other dotting positions in the first group of dotting positions and other groups of dotting positions by using the encapsulation apparatus, thus finishing the dotting process of the filler glue. When the filler glue is sprayed to the other dotting positions in the first group of dotting positions and other groups of dotting positions, first the magnitudes of the attractions of two electromagnets that the filler glue should take may be determined according to the gravity direction of the filler glue, and the magnitude of the magnetism of the two electromagnets may be determined according to the magnitudes of the attractions of the two electromagnets, and finally the magnitudes of the currents that should be output by the current generating unit may be determined according to the magnitudes of the magnetism of the two electromagnets. After the magnitudes of the currents that should be outputted by the current generating unit are determined, the two electromagnets in the electromagnet groups may be energized by the current generating unit. Finally, the encapsulation substrate dotted with the filler glue and a base substrate disposed with OLED devices are pressed together and cured, and the entire encapsulation process is accomplished.
[0045] Embodiments of the present disclosure, by adding a ferromagnetic substance in the adhesive glue (e.g., filler glue), and disposing electromagnets at both sides of the region of the orthogonal projection of the encapsulation substrate on the base platform, generating currents of different magnitudes by the current generating unit, and controlling the magnetism of the electromagnets, makes the electromagnets generate two attraction forces with different magnitudes and different directions for the ferromagnetic substance in the adhesive glue sprayed out from the nozzle of the glue port of the adhesive-dripping unit, and the direction of the resultant force of the two attractions is the same as the direction of the gravity on the filler glue sprayed out from the nozzle, such that the filler glue sprayed out from the nozzle is accurately sprayed to the dotting positions of the adhesive glue on the encapsulation substrate under the effect of the resultant force. Compared with the prior art, the adhesive glue is not easily adhered at the nozzles of the glue ports of the adhesive-dripping units, and the glue is not easily accumulated at the nozzles, thus enhancing the effect and efficiency of encapsulating the OLED devices.
[0046] To summarize, embodiments of the present disclosure provide an encapsulation apparatus. The encapsulation apparatus comprising an attraction unit and n adhesive-dripping units; the adhesive-dripping units contain adhesive glue. Since the adhesive glue includes an absorbable substance, the attraction unit can generate attraction force for the absorbable substance in the adhesive glue sprayed out from the nozzle of the glue ports of the adhesive-dripping unit; the adhesive glue is sprayed to dotting positions on the encapsulation substrate in a preset spraying amount from the nozzles under the effect of the attraction; compared with the prior art, the adhesive glue is not easily adhered at the nozzles of the glue ports of the adhesive-dripping unit, thus enhancing the effect and efficiency of encapsulation of the OLED devices.
[0047] Above are merely described certain embodiments of the present disclosure, which are not intended to restrict the present disclosure. Any amendments, equivalent replacements and improvements made within the spirits and principles of the present disclosure should be included in the protection scope of the present disclosure.