CN207676299U - The encapsulating structure of hollow glass - Google Patents

The encapsulating structure of hollow glass Download PDF

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Publication number
CN207676299U
CN207676299U CN201721534345.0U CN201721534345U CN207676299U CN 207676299 U CN207676299 U CN 207676299U CN 201721534345 U CN201721534345 U CN 201721534345U CN 207676299 U CN207676299 U CN 207676299U
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China
Prior art keywords
hollow glass
cabling
line
encapsulating structure
control panel
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Active
Application number
CN201721534345.0U
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Chinese (zh)
Inventor
吴贲华
王银茂
路林
仲崇建
李峰
Current Assignee (The listed assignees may be inaccurate. Google has not performed a legal analysis and makes no representation or warranty as to the accuracy of the list.)
Jiangsu Tiemao Glass Co Ltd
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Jiangsu Tiemao Glass Co Ltd
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Priority to CN201721534345.0U priority Critical patent/CN207676299U/en
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Abstract

The utility model discloses a kind of encapsulating structure of hollow glass, and it includes hollow glasses.In in hollow glass have touch screen, control panel, display screen and driving plate.Spacer bar, which encloses, sets touch screen, control panel, display screen and driving plate.Guide the direction of routing of the first circuit line in hollow glass, first circuit line includes the first cabling and the second cabling, one end of first cabling is connected to control panel, and one end that the other end wears the second cabling of super-interval is connected to the other end of the first cabling, and the other end of the second cabling is connected to power supply.In addition, rebooting the direction of routing of multiple second circuit lines in hollow glass, one end of multiple second circuit lines is connected to driving plate, and the other end wears spacer bar, and is connected to drive control film block.On the basis of existing spacer bar, open flume type structure design and packaging technology are used, solves the extraction problem of USB cablings and FFC cablings, ensures tightness and product reliability.

Description

The encapsulating structure of hollow glass
Technical field
The utility model is related in the encapsulation technology more particularly to a kind of integrative display and touch-control of a kind of display and touch-control The encapsulating structure of empty glass.
Background technology
With the fast development of display technology, panel vendor is needed constantly to improve the display performance and product of machine product The application situation of diversification is presented in matter, such as LCD technology, LED technology, laser display technology and OLED technology, and display is nowhere Do not exist.For display screen technology, LCD technology needs external light source or to backlight, the design of panel, but its transmitance is low, difficult To play penetrating display effect;And shadow casting technique uses the glass of half-reflection and half-transmission, but large scale projecting apparatus limits applied field Scape;Integrated comparative, OLED technology can provide best transparence display effect, and have attracted much attention.Transparent OLED is transparent with other Display is compared, and transmitance is more than 40%, and brightness reaches 150nits, and colour gamut is more than 100%NTSC, belongs to OLED display technologies A kind of brand-new application, also have in the cruel application environment of rail traffic and many difficult need to overcome.This gives rail traffic glass How application proposes huge challenge for glass manufacturer, not only to realize the fitting of curvature, hyperbolicity and three dimensional curvature, especially When being using the hollow vehicle window of rail traffic, also to ensure the sound insulation of hollow glass, heat-insulated, moisture seal durability, Wind-Pressure Resistance, dew The requirement of experiment such as point.For example, being integrated with touch screen and display screen, the drive control circuit plate, power panel of the two in hollow glass Larger because size is thicker, the cabling of the drive signal of touch screen and display screen has to guide to hollow glass periphery.Therefore, it drives How the cabling of dynamic signal is designed to have to overcome the key technology of solution.
Utility model content
In view of this, technical problem to be solved in the utility model is that can not be solved by known technology.It is known related In using the structures such as setting touch screen and display equality in hollow glass, because power supply board size is thicker, larger, so drive signal Line will be directed to the periphery of hollow glass, and such mode easilys lead to defect, such as sound insulation, aqueous vapor, seal durability or wind resistance The defects of pressure etc..
To solve the above-mentioned problems, the utility model provides a kind of encapsulating structure of hollow glass, it includes:Hollow glass Glass;Control panel is set in the hollow glass;First organic glue-line is set in the hollow glass, and is located at the control The side of plate;Touch screen is set to described first organic glue-line;Second organic glue-line is set to the touch screen;Driving plate is arranged In described second organic glue-line;Display screen is set to described second organic glue-line, and positioned at the side of the driving plate;And Parting bead is set in the hollow glass, and is enclosed set on the touch screen, the control panel, the display screen and the driving Plate;Wherein, the first circuit line includes the first cabling and the second cabling, and one end of first cabling is connected to the control panel, Its other end is fed through the spacer bar, and one end of second cabling is connected to the other end of first cabling, and described The other end of two cablings is connected to power supply, and one end of multiple second circuit lines is connected to the driving plate, and the other end wears institute Spacer bar is stated, and is connected to drive control film block.
An embodiment according to the present utility model, above-mentioned first circuit line are that (USB is walked universal serial bus Line), one end of first cabling is flat interface, and the other end is plug-in male connector, and one end of second cabling is slotting Formula female is pulled out, the other end is Universal Serial Bus Interface.
An embodiment according to the present utility model, above-mentioned each second circuit line are flexible flat cable.
An embodiment according to the present utility model, the above-mentioned control panel are all situated between with nonconductive adhesive with the driving plate Matter is fixed in the hollow glass.
An embodiment according to the present utility model, the above-mentioned spacer bar is interior to fill molecular sieve.
An embodiment according to the present utility model, the above-mentioned control panel are located at opposite two with the driving plate Side.
An embodiment according to the present utility model, above-mentioned further includes the organic glue-line of third and protective layer, the third Organic glue-line is set on the display screen, and the protective layer is set on the organic glue-line of the third.
An embodiment according to the present utility model, above-mentioned further includes waterproof gasket, and the waterproof gasket is set to institute State the cabling through hole of the cabling through hole and the multiple second circuit line of the first circuit line.
The shortcomings that known technology being improved by the encapsulating structure of such hollow glass, a kind of hollow glass of the utility model Encapsulating structure is through the mode of improvement known circuit cabling, between the Wiring structure collocation of Wiring structure and FCC for utilizing USB The structure of parting bead so ensures the tightness at Wiring structure.
Description of the drawings
Attached drawing described herein is used to provide a further understanding of the present invention, and constitutes one of the utility model Point, the exemplary embodiment and its explanation of the utility model are not constituted for explaining the utility model to the utility model Improper restriction.In the accompanying drawings:
Fig. 1 its for the utility model hollow glass from encapsulating structure embodiment schematic diagram;
Fig. 2 its for the utility model hollow glass encapsulating structure embodiment another schematic diagram;
Fig. 3 its for the utility model hollow glass encapsulating structure distance piece enlarged diagram;
Fig. 4 its for the utility model hollow glass encapsulating structure another embodiment schematic diagram;And
Fig. 5 its for the utility model hollow glass packaging method step flow diagram.
Specific implementation mode
Multiple embodiments that the utility model will be disclosed with schema below, as clearly stated, in many practices Details will be explained in the following description.It should be appreciated, however, that the details in these practices is not applied to limit this practicality newly Type.That is, in some embodiments of the utility model, the details in these practices is non-essential.In addition, for letter For the sake of changing schema, some known usual structures and component will be painted in a manner of simply illustrative in the drawings.
Please refer to Fig.1 Fig. 2, be the utility model hollow glass from encapsulating structure embodiment schematic diagram with Another schematic diagram.As shown, present embodiment provides a kind of encapsulating structure of hollow glass, it to be used for display and touch technology Integrated structure, and the encapsulating structure of hollow glass include hollow glass 11, control panel 13, first organic glue-line 15, touch-control Shield 17, second organic glue-line 19, driving plate 21, display screen 23, spacer bar 25, the first circuit line 27 and multiple second circuit lines 29。
From the above, hollow glass 11 by being cut to original sheet glass, edging, tempering and cleaning, control panel 13 is arranged In in hollow glass 11, control panel 13 is fixed in hollow glass 11 using nonconductive adhesive medium, such as 3M adhesive tapes, pressure sensitive adhesive Band or structure glue etc..First organic glue-line 15 is set in hollow glass 11, first organic glue-line 15 is located at control panel 13 Side or first organic glue-line 15 enclose around control panel 13, and touch screen 17 is set to first organic glue-line 15 On, touch screen 17 is electrically connected at control panel 13.
Furthermore.Second organic glue-line 19 is set to touch screen 17.Driving plate 21 is being respectively arranged at second with display screen 23 On organic glue-line 19, driving plate 21 is set to the side of display screen 23, and display screen 23 is electrically connected at driving plate 21, wherein Driving plate 21 is similarly fixed on using nonconductive adhesive medium on second organic glue-line 19, such as 3M adhesive tapes, pressure sensitive adhesive tape or knot Structure glue etc..The thickness of wherein second organic glue-line 19 is also larger, the surface of second organic glue-line 19 can cry be it is smooth, so Driving plate 21 and display screen 23 are close in the same plane, the wherein driving plate of the control panel 13 and display screen 23 of touch screen 17 21 in there is the problem of interference in circuit control, therefore control panel 13 is located at opposite both sides with driving plate 21.
In present embodiment, the encapsulating structure of hollow glass has the first circuit line 27 and multiple second circuit lines 29. First circuit line 27 is universal serial bus (USB cablings), and USB interface has 5 endpoints, is respectively:Power end (VCC), Data input end (D+), data output end (D-), ground terminal (GND) and protection end (SHIELD), size are much larger than hollow glass The thickness of aluminium spacer bar 25 in glass 11, and it is generally approximate circle, it is therefore desirable at least two-part is done to USB cablings and is set Meter, respectively the first cabling 271 and the second cabling 273.One end of first cabling 271 is connected to control panel 13, the first cabling 271 One end be flat Interface design, it is therefore an objective to thickness thinning.The other end of first cabling 271 is designed to that plug-in male connector designs, The first cabling 271 is set to pass through the fluting of aluminium spacer bar 25.One end of second cabling 273 is designed to that plug-in female is set The other end of meter, the second cabling 273 keeps USB interface constant.After hollow glass 11 is packaged, one end of the second cabling 273 It is connected to the other end of the first cabling 271, i.e. the male connector of the first cabling 271 is connected to the female of the second cabling 273.Second walks The other end of line 273 is then connected to the power supply 35 outside hollow glass 11.Furthermore multiple second circuit lines 29 are flexible flat One end of line cable (FCC cablings), multiple second circuit lines 29 is connected to driving plate 21, the other end of multiple second circuit lines 29 Multiple flutings of aluminium spacer bar 25 are again passed through, and are connected to drive module 37, wherein FFC cablings are ultra-thin flat wire, Its width is between 30mm to 60mm, and cabling is easy to scratch damage.
It is the distance piece amplification signal of the encapsulating structure of the hollow glass of the utility model in addition, also referring to Fig. 3 Figure.As shown, the encapsulating structure of hollow glass further includes distance piece 39, distance piece 39 has the cabling of the first circuit line 27 The cabling of through-hole and multiple second circuit lines 29 is logical.Distance piece 39 is set on spacer bar 25, the first circuit line of distance piece 39 27 fluting walked line three-way hole and be respectively corresponding to spacer bar 25 for walking line three-way hole and multiple second circuit lines 29.And by waterproof gasket (i.e. silica gel) is set to the cabling through hole of the first circuit line 27 and the cabling through hole of second circuit line 29, so in addition to avoiding First circuit line 27 (USB cablings) and second circuit line 29 (FFC cablings) and the vibrations friction for walking line three-way hole, also can avoid dust Enter in hollow glass 11 with water.In addition, the encapsulating structure of hollow glass further includes molecular sieve, molecule is filled in spacer bar 25 Sieve.
It is another embodiment of the encapsulating structure of the hollow glass of the utility model in addition, also referring to Fig. 4 Schematic diagram.As shown, in present embodiment, the encapsulating structure of hollow glass further includes the organic glue-line 31 of third and protective layer 33, the organic glue-line of third 31 is set to touch screen 17, and protective layer 33 is set on the organic glue-line of third 31.
Referring to Fig. 5, its step flow diagram for the packaging method of the hollow glass of the utility model.As schemed Show, in present embodiment, in step S1:Take hollow glass 1.Hollow glass 1 by original sheet glass cutting, edging, tempering and Cleaning and etc. formation.In step S3:Control panel 13, touch screen 17, driving plate 21 are set with display screen 23 in hollow glass 11 It is interior.In step S5:Spacer bar 25 is enclosed and sets control panel 13, touch screen 17, driving plate 21 and display screen 23.In step S7:Guiding The direction of routing of the first circuit line 27 in the hollow glass 11, the first circuit line 27 are walked comprising the first cabling 271 with second Line 273, one end of the first cabling 271 are connected to control panel 17, and the other end of the first cabling 271 is fed through spacer bar 25, and second One end of cabling 273 is connected to the other end of the first cabling 271, and the other end of the second cabling 273 is connected to power supply 35.In step S9:The direction of routing of multiple second circuit lines 29 in hollow glass 11 is guided, one end of multiple second circuit lines 29 is connected to The other end of driving plate 21, multiple second circuit lines 29 wears spacer bar 25, and is connected to drive control film block 37.Aforesaid way Open flume type structure design and packaging technology are used in aluminium type material spacer bar 25, between being further fixed on through distance piece 39 Parting bead 25 has slotted cable tray, when aluminum alloy solid spacer bar 25 and the aluminium type material distance piece 39 of fluting fix it Afterwards, it first uses butyl rubber pre-packaged, then, when hollow glass closes piece, reuses structure glue and do secondary encapsulation.Structure glue includes but not It is limited to polyurethane, polysulfide, silicone, modified silane etc..
In conclusion a kind of encapsulating structure of hollow glass, it includes hollow glasses.In in hollow glass have touch-control Screen, control panel, display screen and driving plate.Spacer bar, which encloses, sets touch screen, control panel, display screen and driving plate.Guide hollow glass The direction of routing of the first interior circuit line, the first circuit line include the first cabling and the second cabling, and one end of the first cabling connects In control panel, the other end is fed through the fluting of spacer bar, and one end of the second cabling is connected to the other end of the first cabling, and second The other end of cabling is connected to power supply.In addition, rebooting the direction of routing of multiple second circuit lines in hollow glass, Duo Ge One end of two circuit lines is connected to driving plate, and the other end wears spacer bar, and is connected to drive control film block.At existing interval On the basis of item, open flume type structure design and packaging technology are used, solves the first circuit line (i.e. USB cablings) and multiple second The extraction problem of circuit line (i.e. FFC cablings) ensures hollow glass tightness and product reliability.
Several preferred embodiments of the utility model have shown and described in above description, but as previously described, it should be understood that The utility model is not limited to form disclosed herein, is not to be taken as the exclusion to other embodiment, and can be used for Other combinations, modifications, and environments, and above-mentioned introduction or correlation can be passed through within the scope of the inventive concept described herein The technology or knowledge in field are modified.And changes and modifications made by those skilled in the art do not depart from the spirit of the utility model And range, then it all should be in the protection domain of the appended claims for the utility model.

Claims (8)

1. a kind of encapsulating structure of hollow glass, which is characterized in that it includes:
Hollow glass;
Control panel is set in the hollow glass;
First organic glue-line, is set in the hollow glass, and positioned at the side of the control panel;
Touch screen is set to described first organic glue-line;
Second organic glue-line, is set to the touch screen;
Driving plate is set to described second organic glue-line;
Display screen is set to described second organic glue-line, and positioned at the side of the driving plate;And
Spacer bar is set in the hollow glass, and enclose set on the touch screen, the control panel, the display screen with The driving plate;
Wherein, the first circuit line includes the first cabling and the second cabling, and one end of first cabling is connected to the control panel, Its other end is fed through the spacer bar, and one end of second cabling is connected to the other end of first cabling, and described The other end of two cablings is connected to power supply, and one end of multiple second circuit lines is connected to the driving plate, and the other end wears institute Spacer bar is stated, and is connected to drive control film block.
2. the encapsulating structure of hollow glass as described in claim 1, which is characterized in that wherein described first circuit line is general One end of universal serial bus, first cabling is flat interface, and the other end is plug-in male connector, one end of second cabling For plug-in female, the other end is Universal Serial Bus Interface.
3. the encapsulating structure of hollow glass as described in claim 1, which is characterized in that wherein each second circuit line is Flexible flat cable.
4. the encapsulating structure of hollow glass as described in claim 1, which is characterized in that the wherein described control panel and the driving Plate is all fixed on nonconductive adhesive medium in the hollow glass.
5. the encapsulating structure of hollow glass as described in claim 1, which is characterized in that fill molecule in the wherein described spacer bar Sieve.
6. the encapsulating structure of hollow glass as described in claim 1, which is characterized in that the wherein described control panel and the driving Plate is located at opposite both sides.
7. the encapsulating structure of hollow glass as described in claim 1, which is characterized in that further include the organic glue-line of third and protection Layer, the organic glue-line of third are set on the display screen, and the protective layer is set on the organic glue-line of the third.
8. the encapsulating structure of hollow glass as described in claim 1, which is characterized in that further include waterproof gasket, the waterproof Gasket is set to the cabling through hole of the cabling through hole and the multiple second circuit line of first circuit line.
CN201721534345.0U 2017-11-16 2017-11-16 The encapsulating structure of hollow glass Active CN207676299U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN201721534345.0U CN207676299U (en) 2017-11-16 2017-11-16 The encapsulating structure of hollow glass

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN201721534345.0U CN207676299U (en) 2017-11-16 2017-11-16 The encapsulating structure of hollow glass

Publications (1)

Publication Number Publication Date
CN207676299U true CN207676299U (en) 2018-07-31

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Application Number Title Priority Date Filing Date
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Country Status (1)

Country Link
CN (1) CN207676299U (en)

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