Method for strengthening edge of article, glass, and display apparatus
10280110 ยท 2019-05-07
Assignee
- Boe Technology Group Co., Ltd. (Beijing, CN)
- HEFEI XINSHENG OPTOELECTRONICS TECHNOLOGY CO., LTD. (Hefei, Anhui, CN)
Inventors
Cpc classification
C03C19/00
CHEMISTRY; METALLURGY
International classification
C03C15/00
CHEMISTRY; METALLURGY
C03C19/00
CHEMISTRY; METALLURGY
Abstract
This disclosure relates to a method for strengthening an edge of a glass plate, a glass, and a display apparatus, wherein the article comprises a side surface located at the edge, and the method for strengthening an edge of an article comprises the steps of: applying an etching paste at least to the side surface of the article to perform etching so as to strengthen the edge of the article; and removing the etching paste.
Claims
1. A method for strengthening an edge of an article wherein the article comprises a side surface located at the edge, comprising the steps of: applying an etching paste at least to the side surface of the article to perform etching so as to strengthen the edge of the article; and removing the etching paste, wherein based on the total weight of the etching paste, the etching paste comprises: 5 wt % to 30 wt % of a fluoride; 21 wt % to 41 wt % of a filler; 9 wt % to 29 wt % of an acid; 5 wt % to 25 wt % of a thickener; 1 wt % to 20 wt % of a surfactant; 20 wt % to 40 wt % of a polishing powder; and 10 wt % to 30 wt % of water.
2. The method according to claim 1, wherein the method further comprises: before applying the etching paste, providing a protective layer on at least one surface adjacent to the side surface of the article.
3. The method according to claim 2, wherein the method further comprises: before applying the etching paste, stacking a plurality of the articles to form an article stack and providing the protective layer between two adjacent articles in the article stack.
4. The method according to claim 2, wherein the protective layer comprises at least one of an acid-resistant film, a peelable adhesive, and a separator paper.
5. The method for according to claim 1, wherein the article comprises a glass plate.
6. The method according to claim 5, wherein the method further comprises: before applying the etching paste, providing a first protective layer on the upper surface of the glass plate and a second protective layer on the lower surface of the glass plate and maintaining side surfaces of the glass plate to be exposed.
7. The method according to claim 6, wherein the first protective layer does not cover a first edge area of the upper surface of the glass plate, and the second protective layer does not cover a second edge area of the lower surface of the glass plate.
8. The method according to claim 7, wherein a first length of the first edge area in a direction vertical to an intersecting line between the upper surface of the glass plate and a side surface of the glass plate is in a range of 0.1 mm-0.5 mm, and a second length of the second edge area in a direction vertical to an intersecting line between the lower surface of the glass plate and a side surface of the glass plate is in a range of 0.1 mm-0.5 mm.
9. The method according to claim 8, wherein the method further comprises stacking a plurality of the glass plates provided with the protective layers to form a glass plate stack.
10. The method according to claim 9, wherein the method further comprises: maintaining the glass plate stack by a clamp via an upper surface of the glass plate stack and a lower surface of the glass plate stack, until the etching paste is removed.
11. The method according to claim 5, wherein applying the etching paste comprise applying the etching paste by using a coating roller.
12. The method according to claim 5, wherein removing the etching paste comprises removing the etching paste by spraying.
13. The method according to claim 12, wherein removing the etching paste comprises spraying water having a pressure in a range of 0.3 MPa-0.6 MPa.
14. The method according to claim 5, wherein the method further comprises removing the protective layer after removing the etching paste.
15. The method according to claim 1, wherein the fluoride is one or more selected from the group consisting of: hydrofluoric acid, sodium fluoride and ammonium fluoride; the filler is one or more selected from the group consisting of: starch and a surface modified SiO.sub.2; the acid is one or more selected from the group consisting of: oxalic acid and acetic acid; the thickener is one or more selected from the group consisting of: starch, silica gel and diatomite; the surfactant is one or more selected from the group consisting of: a sulfate, ethanol and iso-propanol; the polishing powder is one or more selected from the group consisting of: cerium oxide, aluminum oxide and chromium oxide; and the water is deionized water.
16. The method according to claim 15, wherein an etching depth in a direction vertical to a side surface of the glass plate to be in a range of 10 m-50 m.
17. The method according to claim 16, wherein an etching time is in a range of 30-360 minutes.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
(1) In order to illustrate the technical solutions in embodiments of this disclosure more clearly, the accompanying drawings of embodiments will be simply illustrated below. It is to be understood that the accompanying drawings described below are merely some embodiments related to this disclosure but not limitations of this disclosure, in which:
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DETAILED DESCRIPTION
(11) In order to enable objects, technical solutions, and advantages of embodiments of this disclosure to be clearer, the technical solutions of embodiments of this disclosure will be described clearly and fully below in conjunction with the accompanying drawings. Obviously, the embodiments described are a part of the embodiments of this disclosure, rather than all embodiments. Based on the embodiments described of this disclosure, all other embodiments obtained by the person skilled in the art without performing inventive work also belong to the scope protected by this disclosure.
(12) When an element and its embodiment of this disclosure are introduced, the articles a, an, the, and said are intended to indicate that there are one or more elements. The terms comprise, include, contain, and have are intended to be inclusive and indicate that there may be additional elements other than the elements listed.
(13) For the purpose of the description of the surface hereinafter, the terms upper, lower, left, right, vertical, horizontal, top, bottom, and derivatives thereof shall relate to the disclosure as it is oriented in the accompanying drawings. The terms on, on the top of, located on, and located on the top of mean that there is a first element such as a first structure present on a second element such as a second structure, wherein there may be an intermediate element such as an interface structure between the first element and the second element. The term contact means that a first element such as a first structure and a second element such as a second structure are connected and there may be or not be other elements at the interface of the two elements.
(14)
(15) S11. applying an etching paste to a side surface of the article to perform etching to strengthen an edge of the article;
(16) S12. removing the etching paste.
(17) By applying the etching paste to the article at least from the side surface of the article, the defects of the edge of the article can be made smooth so as to improve the edge strength of the glass. In the process of practical production, the etching paste may also be applied on the upper surface and/or the lower surface of the article as needed. Furthermore, when the etching paste is applied to the side surface of the article, circumstances that the etching paste may flow to the upper surface and/or the lower surface of the article may also be included.
(18) The article may include any suitable brittle article. Examples of the article include but are not limited to glass, ceramic, silicon, semiconductor materials, and a combination thereof. Herein, the term edge refers to a peripheral portion of an article. The edge may include a straight edge portion, a curved edge portion, a beveled edge portion, a rough edge portion, a sharp edge portion, and a combination thereof. Herein, the article may have any shape.
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(20) S10. providing a protective layer on at least one surface adjacent to the side surface of the article;
(21) S11. applying an etching paste to a side surface of the article to perform etching to strengthen an edge of the article;
(22) S12. removing the etching paste.
(23) When it comes to the field of display such as touch control screens, glass is required to be subjected to edge strengthening. For example, when it comes to an OGS (one glass solution) product, since the glass is cut to cause a reduced edge strength, edge strengthening is required to be performed in order to ensure the edge strength of the glass.
(24)
(25) S10. providing a protective layer on at least one surface adjacent to the side surface of the article;
(26) S111. stacking a plurality of the articles to form an article stack so that a protective layer is provided between two adjacent articles in the article stack;
(27) S112. applying an etching paste to a side surface of the article stack to perform etching to strengthen an edge of the article;
(28) S12. removing the etching paste.
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(30) S21. applying an etching paste to the side surface of the glass plate to perform etching to strengthen an edge of the glass plate;
(31) S22. removing the etching paste.
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(33) S20. providing protective layers on the upper surface of the glass plate and the lower surface of the glass plate to expose the side surfaces of the glass plate;
(34) S21. applying an etching paste to side surfaces of the glass to perform etching to strengthen an edge of the glass plate;
(35) S22. removing the etching paste.
(36) Particularly, in view of the problem of the provision precision when the protective layer is provided, in order to provide the protective layer in a better manner, protective layers are provided in a part of areas on the upper surface and the lower surface of the glass plate, so that the protective layer does not cover a first edge area of the upper surface of the glass plate, and the protective layer does not cover a second edge area of the lower surface of the glass plate. Furthermore, the etching paste may also be added to respective edge areas on the upper surface and the lower surface of the glass plate as needed.
(37)
(38) Particularly, as shown in
(39) As is to be indicated, it is merely exemplary that each of the first edge area R1 and the second edge area R2 shown in
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(41) As shown in
(42) As is to be indicated, it is merely exemplary in
(43) As shown in
(44) As is to be indicated, it is merely exemplary in
(45) In order to save the process time and reduce the cost, it is also possible to stack a plurality of glass plates to form a glass plate stack and apply an etching paste to the side surface of the glass plate stack. Furthermore, in order to better clamping the glass plate stack, the glass plate stack may be maintained by a clamp via the upper surface of the glass plate stack and the lower surface of the glass plate stack, until the etching paste is removed.
(46) The etching paste may be applied by using a coating roller, and the rotation speed of the coating roller may be set according to practical needs.
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(48) After the etching paste 3 is applied to the article (for example, a glass) and then etched for a certain etching time, the etching paste may be removed by spraying. Particularly, the spraying may be performed with water having a pressure in a range of 0.3 MPa-0.6 MPa. After the etching paste is removed, the protective layer may be further removed. It is to be indicated that applying the etching paste is not limited to applying once, and the etching process of applying the etching paste may be repeated according to the degree of etching required.
(49) The etching paste may include a fluorides and a starch. Particularly, the fluoride may include hydrofluoric acid and sodium fluoride, and the weight percentage of the hydrofluoric acid in the etching paste may be in a range of 5%-40%.
(50) By comprehensively considering the effect of edge etching and the production efficiency, the etching may be set so that an etching depth in a direction vertical to a side surface of the glass plate is in a range of 10 m-50 m.
(51) The concentration of the etching paste and the etching time may be adjusted according to practical needs. In one embodiment, the etching time may be in a range of 30-360 minutes. For example, if the etching depth is desired to be 30 m, when an etching paste having a concentration (i.e., the weight percentage of hydrofluoric acid in the etching paste) of 3.5% is used, the etching speed of the etching paste having a concentration of 3.5% for glass is approximately 14 Angstroms/second, and therefore the etching time may be controlled to be about 357 minutes at this point.
(52) The protective layer may be any layer which is not etched by the etching paste, and includes but are not limited to an acid-resistant film, a peelable adhesive, or a separator paper.
(53) An embodiment of this disclosure further provides a production method of a display panel, the production method of the display panel comprises the method for strengthening an edge of a glass plate as described above.
(54) An embodiment of this disclosure further provides a display apparatus, and the display apparatus comprises a display panel, wherein the display panel is produced by the production method of a panel as described above. The display apparatus in this embodiment may be any product or member having the function of display, such as a cell phone, a tablet computer, a television, a laptop, a digital photo frame, a navigator, etc.
(55) The etching paste according to the disclosure is a composition for strengthening an edge of an article by etching the edge of the article. Specifically, based on the total weight of the etching paste, the etching paste comprises:
(56) 5 wt % to 30 wt % of a fluoride;
(57) 21 wt % to 41 wt % of a filler;
(58) 9 wt % to 29 wt % of an acid;
(59) 5 wt % to 25 wt % of a thickener;
(60) 1 wt % to 20 wt % of a surfactant;
(61) 20 wt % to 40 wt % of a polishing powder; and
(62) 10 wt % to 30 wt % of water.
(63) Preferably, the fluoride is one or more selected from hydrofluoric acid, sodium fluoride and ammonium fluoride; the filler is one or more selected from starch and a surface modified SiO.sub.2; the acid is one or more selected from oxalic acid and acetic acid; the thickener is one or more selected from starch, silica gel and diatomite; the surfactant is one or more selected from a sulfate, ethanol and iso-propanol; the polishing powder is one or more selected from cerium oxide, aluminum oxide and chromium oxide; and the water is deionized water.
(64) According to an specific example of the disclosure, the edge of a glass plate having the sizes of 28.7 cm (length)20.5 cm (width)0.7 cm (thickness) was subjected to strengthening treatment by using the method for strengthening an edge of an article as shown in
(65) The etching time was 30 minutes and the etching depth was 10 m. By testing the glass plate which had been subjected to the strengthening treatment by using the above method, it can be seen that the edge was well strengthened so that the technical solution of the application was achieved.
(66) An embodiment of this disclosure provides a technical solution, which can solve problems in the prior art that edge strengthening equipment has a high investment and a large floor area, it is prone to cause damage to human bodies, and it is difficult to treat the waste liquid. By applying an etching paste to a side surface of the article to perform etching to strengthen an edge of the article, it can avoid defects in strengthening an edge of a brittle article by conventional wet etching and has the advantages of high flexibility, good utilization of materials, and small floor area.
(67) Certain specific embodiments have been already described, and these embodiments are merely shown by way of example but are not intended to limit the scope of this disclosure. In fact, the novel embodiments described herein may be implemented in various other forms. Furthermore, various omissions, replacements, and modifications may be made to the forms of embodiments described herein, without departing from the spirit of this disclosure. The appended claims and equivalents thereof are intended to encompass such forms or modifications which fall in the scope and the spirit of this disclosure.