Packaging method and display device
09831470 · 2017-11-28
Assignee
Inventors
Cpc classification
H10K71/00
ELECTRICITY
B29C65/486
PERFORMING OPERATIONS; TRANSPORTING
B32B2457/20
PERFORMING OPERATIONS; TRANSPORTING
B29C65/485
PERFORMING OPERATIONS; TRANSPORTING
Y10T428/239
GENERAL TAGGING OF NEW TECHNOLOGICAL DEVELOPMENTS; GENERAL TAGGING OF CROSS-SECTIONAL TECHNOLOGIES SPANNING OVER SEVERAL SECTIONS OF THE IPC; TECHNICAL SUBJECTS COVERED BY FORMER USPC CROSS-REFERENCE ART COLLECTIONS [XRACs] AND DIGESTS
Y10T156/10
GENERAL TAGGING OF NEW TECHNOLOGICAL DEVELOPMENTS; GENERAL TAGGING OF CROSS-SECTIONAL TECHNOLOGIES SPANNING OVER SEVERAL SECTIONS OF THE IPC; TECHNICAL SUBJECTS COVERED BY FORMER USPC CROSS-REFERENCE ART COLLECTIONS [XRACs] AND DIGESTS
International classification
B29C65/00
PERFORMING OPERATIONS; TRANSPORTING
H01L21/00
ELECTRICITY
B32B37/00
PERFORMING OPERATIONS; TRANSPORTING
B32B38/00
PERFORMING OPERATIONS; TRANSPORTING
C04B37/00
CHEMISTRY; METALLURGY
Abstract
A packaging method and a display device are disclosed. The packaging method comprises: packaging a display element on a substrate having the display element disposed thereon to form a package covering the display element, wherein a first substance is disposed on at least a part of the substrate inside the package, the first substance comprising thermite; and initiating the first substance to obtain a second substance comprising a product of the thermite reaction.
Claims
1. A packaging method, comprising: packaging a display element on a substrate having the display element disposed thereon to form a package covering the display element, wherein a first substance is disposed on at least a part of the substrate inside the package, the first substance comprising thermite; and initiating the first substance to obtain a second substance comprising a product of the thermite reaction, wherein the package has a lid shape and is in direct contact with the substrate to form a contact area, and the first substance is disposed in a gap between the contact area and the display element.
2. The method of claim 1, wherein the first substance is separated from the display element.
3. The method of claim 2, wherein the first substance is disposed between a joining edge between the substrate and the package and an edge of the display element.
4. The method of claim 2, wherein the first substance is disposed in an area where the substrate contacts the package.
5. The method of claim 1, wherein the first substance is disposed between a joining edge between the substrate and the package and an edge of the display element.
6. The method of claim 1, wherein the first substance is disposed in an area where the substrate contacts the package.
7. The method of claim 1, wherein the first substance is included in a glue.
8. The method of claim 1, wherein before packaging the display element, the method further comprises: applying the first substance to the substrate around the display element.
9. The method of claim 1, wherein before packaging the display element, the method further comprises: applying the first substance to a side of the package that faces the display element.
10. The method of claim 9, wherein the method further comprises attaching the package with the first substance applied thereto to the display element.
11. The method of claim 1, wherein a width of the first substance is 0.5 mm.
12. The method of claim 1, wherein the first substance further comprises inorganic oxides, inorganic nitrides or a mixture of both.
13. The method of claim 1, wherein initiating the first substance comprises: initiating the thermite to start the thermite reaction via ignition or thermal effect.
14. The method of claim 1, wherein a part of the first substance extends to the exterior of the package and becomes exposed.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
(1) In order to clearly illustrate the technical solution of the embodiments of the invention, the drawings of the embodiments will be briefly described in the following; it is obvious that the described drawings are only related to some embodiments of the invention and thus are not limitative of the invention.
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DESCRIPTION OF NUMERICAL REFERENCES
(14) 01, 1—display device, 10—substrate, 20—display element, 30, 30a, 30b—package, 40—oxygen and water vapor, 50, 50′—first substance, 60—initiating agent, 70—second substance.
DETAILED DESCRIPTION
(15) In order to make objects, technical details and advantages of the embodiments of the invention apparent, the technical solutions of the embodiment will be described in a clearly and fully understandable way in connection with the drawings related to the embodiments of the invention. It is obvious that the described embodiments are just a part but not all of the embodiments of the invention. Based on the described embodiments herein, those skilled in the art can obtain other embodiment(s), without any inventive work, which should be within the scope of the invention.
(16) An embodiment of the invention provides a packaging method as illustrated in
(17) Step 101: package a display element on a substrate having the display element disposed thereon to form a package covering the display element, wherein a first substance is disposed on at least a part of the substrate inside the package, the first substance contains thermite.
(18) For example, when the package is a lid-like package, the first substance may be disposed between a joining edge between the package and the substrate and an edge of the display element (as shown in
(19) As an example, the method may further comprise: disposing the first substance on the substrate around the display element, before packaging the display element (as shown in
(20) As another example, the method may further comprise: applying the first substance to a side of the package that faces the display element, before packaging the display element (as shown in
(21) The thermite in the first substance may be a mixture of aluminium powder and Iron (III) oxide (Fe.sub.2O.sub.3), or a mixture of aluminium powder and Iron (II, III) oxide (Fe.sub.3O.sub.4), or a mixture of aluminium powder and Manganese (III) oxide (Mn.sub.2O.sub.3).
(22) As the thermal effect of the thermite is quite intense, the first substance may further comprise inorganic oxides, or inorganic nitrides, or a mixture of both, which does not participate in the thermite reaction and is a solid at room temperature, so as to reduce the intensity of the thermite reaction and to insulate oxygen and water vapor.
(23) The inorganic oxide may for example be aluminum oxide powder (Al.sub.2O.sub.3), silicon dioxide powder (SiO.sub.2), iron (III) oxide powder (Fe.sub.2O.sub.3), iron (II, III) oxide (Fe.sub.3O.sub.4), manganese(IV) oxide (MnO.sub.2), titanium dioxide (TiO.sub.2), zirconium dioxide (ZrO.sub.2) or a mixture of at least two of the above substances. The inorganic nitride may be for example silicon nitride. The first substance may further comprise a mixture of any of the above inorganic oxides and inorganic nitrides.
(24) The substrate is for example made of glass, metal, plastic or a combination of two or more of the above. The package is for example made of plastic, glass, composite plastic or combination of two or more of the above.
(25) Please note that the display element according to the embodiment of the invention refers to the element for realizing the display function. Furthermore, the display element may realize the display function together with the substrate. In this case, the substrate is for example an Indium Tin Oxides (ITO) glass substrate.
(26) Specific examples of step 101 are described in the following.
(27) As an example, step 101 may comprise:
(28) Step 1011: as illustrate in
(29) Step 1012: as illustrated in
(30) Alternatively, the package may be a laminar package 30b. As illustrated in
(31) Either of the packaging methods is applicable to the above step 1012, which will not be elaborated here. With the above step, the first substance is not only included at the joining edge between the package and the substrate and the edge of the display element, but also outside the package. By means of the methods, it is convenient to initiate the thermite in the first substance outside the package via an initiator, thereby initiating the thermite inside the package.
(32) Optionally, the method may further comprise the following step before packaging the display element 20: applying a glue to a side of the package 30a or 30b that faces the display element. In this case, the package with the glue applied thereto is attached to the display element 20.
(33) For example, as illustrated in
(34) Furthermore, as illustrated in
(35) In consideration of the size of the display device, a width of the first substance is for example 0.5 mm.
(36) In the example, the first substance 50, 50′ is mixed into the glue. As an example, the glue is a mixture of the first substance and an adhesive agent with a composition ratio of 4:1 to 9:1.
(37) Herein, when the glue contains the first substance, the first substance is disposed on at least a part of the substrate inside the package by coating, and a width of the first substance is the width of the glue.
(38) Still referring to
(39) Step 102: initiating the first substance to obtain a second substance comprising a product of the thermite reaction.
(40) For example, the first substance comprising the thermite may be initiated to start the thermite reaction via ignition or thermal effect.
(41) Initiating the thermite reaction of the substance comprising the thermite via ignition may be the case when the thermite is positioned in the exterior of the package, the thermite outside the package is initiated by ignition.
(42) For example, as illustrated in
(43) Initiating the thermite to start the thermite reaction by thermal effect may be the case when the first substance 50 comprising the thermite is completely covered (as illustrated in
(44) As an example, laser heating may be used to initiate the thermite in the first substance 50 between the edge joining the substrate 10 and the package 30a and the edge of the display element as illustrated in
(45) Please note that initiating the thermite to start the thermite reaction is not only applicable to the above situation but also to the case of having the thermite outside the package. However, a preferably initiating method for the thermite outside the package is by way of ignition.
(46) Moreover, in the case that the first substance further comprises inorganic oxides, inorganic nitrides or a mixture of both which does not participate in the thermite reaction and is a solid at room temperature, the second substance comprises the products of the thermite reaction as well as the above substances.
(47) In the above step 102, the thermite reaction releases a large amount of heat, which will melt the substrate and the package close to the thermite. Meanwhile, the second substance will be spread into the material of the substrate and/or the package close to the thermite, thereby obtaining the display device 1 as illustrated in
(48) When oxygen and water vapor 40 external to the display device 1 get into the interior of the display device 1 via a side, that is, an interface between the package 30b and the substrate 10, of the display device 1, the blockage by the second substance 70 dispersed in the display device 1 makes it impossible for oxygen and water vapor 40 to reach the display element 40 following a direct path. Instead, oxygen and water vapor 40 have to circumvent the dispersed second substance 70. It thus prolongs the time needed for oxygen and water vapor 40 to reach the display element 20. If the first substance further comprises inorganic oxides such as aluminum oxide or silicon dioxide which have excellent hygroscopic property, it can further prevent water vapor from entering the packaged device, thereby increasing the lifetime of the display device 1.
(49) An embodiment of the invention also provides a display device comprising: a substrate, a display element disposed on the substrate and a package covering the display element. The display device further comprises: a second substance disposed on at least a part of the substrate inside the package, the second substance comprising a product of the thermite reaction.
(50) For example, as illustrated in
(51) Alternatively, the second substance may also be disposed between a joining edge between the lid-like package and the substrate and an edge of the display element and separated from the display element by a distance.
(52) To prevent the second substance 70 from affecting the display and other functions of the display device 1, the second substance 70 is separated from the edge of the display element 10 by at least about 1 mm.
(53) The second substance may further comprises inorganic oxides, or inorganic nitrides, or a mixture of both, which does not participate in the thermite reaction and is a solid at room temperature. Examples of the inorganic oxides and inorganic nitrides are same to those in the previous embodiment.
(54) In the display device according to the embodiment of the invention, as the second substance is dispersed within the material of the substrate and/or the package, when oxygen and water vapor external to the display device get into the interior of the display device via a side of the display device, the blockage by the second substance makes it impossible for oxygen and water vapor to reach the display element following a direct path. Instead, oxygen and water vapor have to circumvent the dispersed second substance. It thus prolongs the time needed for oxygen and water vapor to reach the display element and in turn increasing the lifetime of the display device.
(55) What are described above is related to the illustrative embodiments of the disclosure only and not limitative to the scope of the disclosure; the scopes of the disclosure are defined by the accompanying claims.