CN221040392U - Transparent ultra-light display screen - Google Patents

Transparent ultra-light display screen Download PDF

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Publication number
CN221040392U
CN221040392U CN202322496133.XU CN202322496133U CN221040392U CN 221040392 U CN221040392 U CN 221040392U CN 202322496133 U CN202322496133 U CN 202322496133U CN 221040392 U CN221040392 U CN 221040392U
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China
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transparent
display screen
plates
sliding
connecting block
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CN202322496133.XU
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Chinese (zh)
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陆於峰
宋爱芳
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Jiangsu Zhongsai Information Technology Co ltd
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Jiangsu Zhongsai Information Technology Co ltd
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Abstract

The utility model relates to the technical field of transparent display screens, in particular to a transparent ultra-light display screen, which comprises two transparent plates and an electronic operation assembly, wherein the connection fixing mechanism comprises a connecting block and a hooking assembly, two sides of the electronic operation assembly are respectively connected with the two transparent plates in a detachable manner and are positioned between the two transparent plates, two ends of the connecting block are respectively connected with the transparent plates in a detachable manner and are positioned above the two transparent plates, the hooking assembly is connected with the connecting block in a detachable manner and is positioned at one end of the connecting block far away from the transparent plates, and the problem that the mounting and placement of the light transparent screen in the market cannot be met by changing the fixing structure into the fixing mechanism after the light transparent display screen is lightened in the prior art is effectively solved.

Description

Transparent ultra-light display screen
Technical Field
The utility model relates to the technical field of transparent display screens, in particular to a transparent ultra-light display screen.
Background
The transparent display screen can display information and pictures in any format and has perspective effect, is widely applied to market commodity display, exhibition, airports, museums, advertisement media, science and technology museums and the like at present, has great application prospect, and the prior art generally uses a fixing piece to fix a display panel on the side surface of a box body, and considering the fixing firmness, only metal pieces and sheet metal box bodies can be generally selected, so that the transparent display screen has poor aesthetic property, can not meet the requirements of high-end home decoration, market display and the like on high requirements on the aesthetic property, and the fixing mode limits the application scene of the transparent display screen, such as being incapable of being installed on a door body or an ultra-narrow side box body.
The utility model discloses a transparent display screen in the patent application of application number (CN202022437396. X) among the prior art, including transparent display module and be used for fixed transparent display module's fixed knot constructs, wherein, fixed knot constructs including a plurality of mounting around the edge at transparent display module, all is provided with the spacing groove on every mounting, and transparent display module's edge portion inserts and establishes in the spacing groove, can be applied to multiple use scene, has enriched the diversity of the transparent display screen product in market.
The fixing structure is added in the prior art, the problem that the fixing structure cannot be applied to various use scenes is effectively solved, the diversity of transparent display screen products in the market is particularly enriched, but the application of the display screen in the life is gradually biased to light weight, and the existing fixing mode of the light weight transparent display screen cannot meet the requirement of the installation and placement of the light weight transparent screen in the market.
Disclosure of utility model
The utility model aims to provide a transparent ultra-light display screen, which solves the problems that a fixed structure is added in the prior art, and cannot be applied to various use scenes, and particularly enriches the diversity of transparent display screen products in the market, but the application of the display screen gradually deviates to light weight in the current life, so that the existing fixed mode of the light weight transparent display screen cannot meet the problems of installation and placement of the light weight transparent screen in the market.
In order to achieve the above purpose, the transparent ultra-light display screen comprises two transparent plates and an electronic operation assembly, wherein the connection fixing mechanism comprises a connecting block and a hooking assembly, two sides of the electronic operation assembly are respectively connected with the two transparent plates in a detachable mode and are positioned between the two transparent plates, two ends of the connecting block are respectively connected with the transparent plates in a detachable mode and are positioned above the two transparent plates, and the hooking assembly is connected with the connecting block in a detachable mode and is positioned at one end, far away from the transparent plates, of the connecting block.
The hook connecting assembly comprises a supporting block and a hook ring, wherein the supporting block is detachably connected with the connecting block and is located at one side, far away from the transparent plate, of the connecting block, and the hook ring is fixedly connected with the supporting block and is located at one end, far away from the connecting block, of the supporting block.
The electronic operation assembly comprises two refraction plates, two electronic layers and an operation layer, wherein the two refraction plates are respectively connected with the two transparent plates in a detachable mode and are located between the transparent plates, the two electronic layers are respectively connected with the transparent plates in a detachable mode and are located between the two transparent plates, the two electronic layers are located between the two refraction plates, the operation layer is connected with the transparent plates in a detachable mode and is located between the two transparent plates, and the operation layer is located between the two electronic layers.
The transparent ultra-light display screen further comprises a vertical cavity, side cavities, sliding support assemblies and side support assemblies, wherein the vertical cavity is fixedly connected with one transparent plate and is located on one side, away from the refraction plate, of the transparent plate, the side cavities are respectively fixedly connected with two transparent plates and are located on one side of the transparent plate, the sliding support assemblies are slidably connected with the vertical cavity and are located in the vertical cavity, and the side support assemblies are detachably connected with the side cavities and are located in the side cavities.
The sliding support assembly comprises a sliding cavity, a sliding rod and a sliding plate, wherein the sliding cavity is fixedly connected with the vertical cavity and is located in the vertical cavity, the sliding rod is slidably connected with the sliding cavity and is located in the sliding cavity, and the sliding plate is detachably connected with the sliding rod and is located on one side of the sliding rod.
The side support assembly comprises a side shaft and a support plate, wherein the side shaft is in sliding connection with the side cavity and is located in the side cavity, the support plate is detachably connected with the side shaft and located on one side of the side shaft, and the support plate is arranged in the side cavity.
The utility model relates to a transparent ultra-light display screen, which comprises two transparent plates and an electronic operation assembly, wherein the connection fixing mechanism comprises a connecting block and a hooking assembly, two sides of the electronic operation assembly are respectively connected with the two transparent plates in a detachable manner and are positioned between the two transparent plates, two ends of the connecting block are respectively connected with the transparent plates in a detachable manner and are positioned above the two transparent plates, the hooking assembly is connected with the connecting block in a detachable manner and is positioned at one end of the connecting block far away from the transparent plates, after the fixing structure is changed into the fixing mechanism, the fixing mode is changed, the problem that the fixing structure is increased in the prior art, the problem that the electronic operation assembly cannot be applied to various use scenes is effectively solved, the diversity of transparent display screen products in the market is particularly enriched, but the application of the display screen in the prior life is gradually biased towards light weight, and the existing transparent display screen after light weight fixing mode cannot meet the problem of mounting and placing the transparent screen after light weight in the market
Drawings
In order to more clearly illustrate the embodiments of the utility model or the technical solutions in the prior art, the drawings that are required in the embodiments or the description of the prior art will be briefly described, it being obvious that the drawings in the following description are only some embodiments of the utility model, and that other drawings may be obtained according to these drawings without inventive effort for a person skilled in the art.
Fig. 1 is a schematic overall structure of a first embodiment of the present utility model.
Fig. 2 is an overall front view of the first embodiment of the present utility model.
Fig. 3 is a cross-sectional view of the A-A line structure of fig. 2 in accordance with the present utility model.
Fig. 4 is an overall rear view of a second embodiment of the present utility model.
Fig. 5 is a cross-sectional view of the B-B line structure of fig. 4 according to the present utility model.
Fig. 6 is an enlarged view of a partial structure at C of fig. 5 according to the present utility model.
Fig. 7 is a side view of the entirety of a second embodiment of the present utility model.
Fig. 8 is a cross-sectional view of the D-D line structure of fig. 7 according to the present utility model.
Fig. 9 is an enlarged view of a partial structure at E of fig. 8 according to the present utility model.
101-Transparent plate, 102-refraction plate, 103-electronic layer, 104-operation layer, 105-connection block, 106-support block, 107-shackle, 201-vertical cavity, 202-sliding cavity, 203-sliding rod, 204-sliding plate, 205-side cavity, 206-side plate shaft, 207-support plate.
Detailed Description
Embodiments of the present utility model are described in detail below, examples of which are illustrated in the accompanying drawings, wherein like or similar reference numerals refer to like or similar elements or elements having like or similar functions throughout. The embodiments described below by referring to the drawings are illustrative and intended to explain the present utility model and should not be construed as limiting the utility model.
First embodiment
Referring to fig. 1 to 3, fig. 1 is a schematic overall structure of a first embodiment of the present utility model, fig. 2 is a front overall view of the first embodiment of the present utility model, and fig. 3 is a sectional view of the A-A line structure of fig. 2.
The utility model provides a transparent ultra-light display screen, which comprises two transparent plates 101, an electronic operation component and a connection fixing mechanism, wherein the connection fixing mechanism comprises a connecting block 105 and a hooking component, the hooking component comprises a supporting block 106 and a hook ring 107, and the electronic operation component comprises two refraction plates 102, two electronic layers 103 and an operation layer 104. Through the aforesaid scheme has solved the fixed knot structure that has increased among the prior art, the effectual solution can not be applied to the problem of multiple service scene, by supporting shoe 106 is for the diversity of the transparent display screen product in market has been enriched in particular, but because the application of display screen in the life is biased light gradually now, the fixed mode after the current transparent display screen light-weighted will not satisfy the problem of installing and putting to the transparent screen after the light-weighted in market, it can be appreciated that when the aforesaid scheme can need install or put, with transparent plate 101 with refraction plate 102 and electronic layer 103 and operation layer 104 are installed the back, by connecting block 105 is connected fixedly, by supporting shoe 106 is for connecting block 105 provides the support, by shackle 107 is dismantled with surrounding environment and is connected, will transparent plate 101 is fixed from this, thereby accomplish the work of installing and placing, the effectual fixed knot that has increased the fixed knot structure in prior art, the effectual solution can not be applied to the problem of installing and putting to the transparent display screen after the light-weighted in various service scene, the light-weighted problem of transparent display screen product in market can's that the current transparent display screen in market is satisfied because the light-weighted in the life gradually in the display screen of the life is satisfied gradually.
For this embodiment, the two sides of the electronic operation component are respectively connected with the two transparent boards 101 in a detachable manner, and are located between the two transparent boards 101, the two ends of the connecting block 105 are respectively connected with the two transparent boards 101 in a detachable manner, and are located above the two transparent boards 101, and the hooking component is connected with the connecting block 105 in a detachable manner, and is located at one end of the connecting block 105 away from the transparent boards 101.
Wherein, the supporting block 106 is detachably connected with the connecting block 105 and is positioned at one side of the connecting block 105 far away from the transparent plate 101, and the shackle 107 is fixedly connected with the supporting block 106 and is positioned at one end of the supporting block 106 far away from the connecting block 105.
Secondly, two refraction boards 102 are detachably connected with two transparent boards 101 respectively and are located between the transparent boards 101, two electronic layers 103 are detachably connected with the transparent boards 101 respectively and are located between the two transparent boards 101, two electronic layers 103 are located between the two refraction boards 102, an operation layer 104 is detachably connected with the transparent boards 101 and is located between the two transparent boards 101, and the operation layer 104 is located between the two electronic layers 103.
When the transparent plate 101 is installed or placed by using the utility model, after the transparent plate 101, the refraction plate 102, the electronic layer 103 and the operation layer 104 are installed, the connection block 105 is connected and fixed, the support block 106 provides support for the connection block 105, the shackle 107 is connected with the surrounding environment in a disassembling way, so that the transparent plate 101 is fixed, the installation and placement work is completed, the problems that a fixing structure is added in the prior art, the transparent display screen cannot be applied to various use scenes are effectively solved, the diversity of transparent display screen products in the market is particularly enriched, but the existing transparent display screen is gradually biased to be light in weight due to the application of the display screen in life, and the problem that the installation and placement of the light transparent screen in the market cannot be met in the existing fixing mode after the light transparent display screen is light in weight is solved.
Second embodiment
Referring to fig. 4 to 9, fig. 4 is a rear view of the whole of the second embodiment of the present utility model, fig. 5 is a sectional view of the B-B line structure of fig. 4 of the present utility model, fig. 6 is an enlarged view of the part of the structure of fig. 5C of the present utility model, fig. 7 is a side view of the whole of the second embodiment of the present utility model, fig. 8 is a sectional view of the D-D line structure of fig. 7 of the present utility model, and fig. 9 is an enlarged view of the part of the structure of fig. 8E of the present utility model.
On the basis of the first embodiment, the transparent ultra-light display screen of the present utility model further comprises a vertical cavity 201, a side cavity 205, a sliding support assembly and a side support assembly, wherein the sliding support assembly comprises a sliding cavity 202, a sliding rod 203 and a sliding plate 204, and the side support assembly comprises a side shaft and a support plate 207.
For this embodiment, the vertical cavity 201 is fixedly connected to one of the transparent plates 101 and is located on a side, away from the refraction plate 102, of the transparent plate 101, the side cavities 205 are respectively fixedly connected to two of the transparent plates 101 and are located on one side of the transparent plate 101, the sliding support assembly is slidably connected to the vertical cavity 201 and is located in the vertical cavity 201, and the side support assembly is detachably connected to the side cavities 205 and is located in the side cavities 205.
Wherein, the sliding cavity 202 is fixedly connected with the vertical cavity 201 and is located inside the vertical cavity 201, the sliding rod 203 is slidably connected with the sliding cavity 202 and is located inside the sliding cavity 202, and the sliding plate 204 is detachably connected with the sliding rod 203 and is located at one side of the sliding rod 203.
Next, the side shaft is slidably connected to the side cavity 205 and located inside the side cavity 205, the support plate 207 is detachably connected to the side shaft and located at one side of the side shaft, and the support plate 207 is disposed inside the side cavity 205.
The above disclosure is only a preferred embodiment of the present utility model, and it should be understood that the scope of the utility model is not limited thereto, and those skilled in the art will appreciate that all or part of the procedures described above can be performed according to the equivalent changes of the claims, and still fall within the scope of the present utility model.

Claims (6)

1. The transparent ultra-light display screen comprises two transparent plates and an electronic operation assembly, wherein two sides of the electronic operation assembly are respectively connected with the two transparent plates in a detachable way and positioned between the two transparent plates,
The connecting and fixing mechanism comprises a connecting block and a hooking component, wherein two ends of the connecting block are respectively connected with the transparent plate in a detachable mode and are positioned above the two transparent plates, and the hooking component is connected with the connecting block in a detachable mode and is positioned at one end, far away from the transparent plate, of the connecting block.
2. The transparent ultra-lightweight display screen of claim 1,
The hooking component comprises a supporting block and a shackle, wherein the supporting block is detachably connected with the connecting block and is positioned on one side, far away from the transparent plate, of the connecting block, and the shackle is fixedly connected with the supporting block and is positioned on one end, far away from the connecting block, of the supporting block.
3. The transparent ultra-lightweight display screen of claim 2,
The electronic operation assembly comprises two refraction plates, two electronic layers and an operation layer, wherein the two refraction plates are respectively connected with the two transparent plates in a detachable mode and are positioned between the transparent plates, the two electronic layers are respectively connected with the transparent plates in a detachable mode and are positioned between the two transparent plates, the two electronic layers are positioned between the two refraction plates, the operation layer is connected with the transparent plates in a detachable mode and is positioned between the two transparent plates, and the operation layer is positioned between the two electronic layers.
4. The transparent ultra-lightweight display screen as recited in claim 3, wherein,
The transparent ultra-light display screen further comprises a vertical cavity, side cavities, a sliding support assembly and side support assemblies, wherein the vertical cavity is fixedly connected with one transparent plate and is located on one side of the transparent plate away from the refraction plate, the side cavities are respectively fixedly connected with two transparent plates and are located on one side of the transparent plate, the sliding support assemblies are slidably connected with the vertical cavity and are located in the vertical cavity, and the side support assemblies are detachably connected with the side cavities and are located in the side cavities.
5. The transparent ultra-lightweight display screen as recited in claim 4, wherein,
The sliding support assembly comprises a sliding cavity, a sliding rod and a sliding plate, wherein the sliding cavity is fixedly connected with the vertical cavity and is located in the vertical cavity, the sliding rod is slidably connected with the sliding cavity and is located in the sliding cavity, and the sliding plate is detachably connected with the sliding rod and is located on one side of the sliding rod.
6. The transparent ultra-lightweight display screen of claim 5,
The side support assembly comprises a side shaft and a support plate, wherein the side shaft is in sliding connection with the side cavity and is positioned in the side cavity, the support plate is detachably connected with the side shaft and is positioned on one side of the side shaft, and the support plate is arranged in the side cavity.
CN202322496133.XU 2023-09-14 2023-09-14 Transparent ultra-light display screen Active CN221040392U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202322496133.XU CN221040392U (en) 2023-09-14 2023-09-14 Transparent ultra-light display screen

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202322496133.XU CN221040392U (en) 2023-09-14 2023-09-14 Transparent ultra-light display screen

Publications (1)

Publication Number Publication Date
CN221040392U true CN221040392U (en) 2024-05-28

Family

ID=91133256

Family Applications (1)

Application Number Title Priority Date Filing Date
CN202322496133.XU Active CN221040392U (en) 2023-09-14 2023-09-14 Transparent ultra-light display screen

Country Status (1)

Country Link
CN (1) CN221040392U (en)

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