Conductive shielding glass
Through the fixing mechanism and worm gear system, the simple installation and disassembly of conductive shielded glass is achieved, the stability problems caused by corrosion of fastening screws are solved, and the service effect and life of conductive shielded glass is improved.
Patent Information
- Application Number
- CN202422240693.3
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-09-12
- Publication Date
- 2025-08-19
- Estimated Expiration
- 2034-09-12
AI Technical Summary
The installation and disassembly of existing conductive shielding glass is complicated, and the stability of the fastening screws will decrease after corrosion, affecting the use effect.
The fixing mechanism is adopted, including the installation groove, guide slide column, connecting plate, cross plate and top plate, which is supported in the installation station by the top plate, and is fixed instead of traditional fastening screws. It combines the worm, worm gear and adjustment knob to achieve simple installation.
It simplifies the installation and disassembly process, improves the stability and use effect of conductive shielded glass, and extends the service life.
Smart Images

Figure CN223246946U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to the technical field of special glass, in particular to a conductive shielding glass. Background Art
[0002] Conductive shielding glass is a glass product that combines the functions of conducting electricity and shielding electromagnetic radiation. Conductive shielding glass suppresses and attenuates electromagnetic waves through its conductive and shielding properties, thereby protecting equipment from external electromagnetic interference and preventing electromagnetic waves inside the equipment from leaking to the outside.
[0003] During the operation of the conductive shielding glass, the fixing screws are usually passed through the mounting frame to connect to the corresponding workstation, thereby achieving the installation and fixation of the conductive shielding glass. After that, the transparent conductive mesh is connected to other electronic devices. During the connection process, the wires and connectors are correctly connected according to the instructions. After the connection is completed, a test is performed to ensure that the conductive shielding glass is working properly. During the operation of the conductive shielding glass, the electromagnetic shielding layer reflects and attenuates electromagnetic waves to achieve the effect of shielding electromagnetic radiation.
[0004] During the use of existing conductive shielding glass, although the conductive shielding glass can be installed and fixed by fastening screws, the entire installation process is cumbersome, which reduces work efficiency. The subsequent disassembly and replacement of the conductive shielding glass is also troublesome. Moreover, the fastening screws will be corroded after long-term use, and corrosion will cause the cross-sectional area of the fastening screws to decrease, thereby reducing its mechanical strength, which makes the fastening screws unable to withstand the originally designed load, and may cause the connection to loosen or fail, and finally reduce the stability of the conductive shielding glass, affecting the use effect of the conductive shielding glass. For this reason, we propose a conductive shielding glass. Utility Model Content
[0005] The technical problem to be solved by the present invention is to overcome the existing defects and provide a conductive shielding glass, which can support the conductive shielding glass inside the corresponding installation station through the top plate, thereby solving the problem that the stability of the conductive shielding glass is affected by the corrosion of the fastening screws. While facilitating assembly and disassembly, it ensures the use effect of the conductive shielding glass, and can effectively solve the problems in the background technology.
[0006] To achieve the above-mentioned object, the present invention provides the following technical solutions: a conductive shielding glass, comprising a glass body, a mounting frame provided on the outside of the glass body, and a fixing mechanism;
[0007] Fixing mechanism: It includes an installation groove, a guide slide, a connecting plate, a horizontal plate and a top plate. The installation grooves are respectively arranged on the upper and lower sides of the interior of the installation frame, and a slide groove is provided in the middle of the left and right walls of the installation groove. Guide slides are respectively provided on the front and back sides of the interior of the installation groove. The guide slides are respectively slidably connected with the sliding holes corresponding to the left end of the connecting plate. A horizontal plate is provided at the end of the connecting plate away from the inner center of the glass body, and a top plate is provided at the end of the horizontal plate away from the inner center of the glass body. The top plates are respectively slidably connected with the laterally adjacent slide grooves, and the conductive shielding glass can be supported inside the corresponding installation station through the top plate, which solves the problem of affecting the stability of the conductive shielding glass due to corrosion of the fastening screws. It is convenient for assembly and disassembly while ensuring the use effect of the conductive shielding glass.
[0008] Furthermore, the fixing mechanism also includes a mounting rod, a gear and a rack plate. The mounting rods are rotatably connected to the inside of the mounting groove. A gear is provided on one side of the mounting rod close to the inner center of the glass body. The rack plates are respectively provided on the rear side of the left end of the right connecting plate and the front side of the right end of the left connecting plate. The two rack plates are both meshed with the gears, and the position of the top plate can be adjusted through the rack plates.
[0009] Furthermore, it also includes a worm, a worm wheel and an adjustment knob. The worm is rotatably connected to the middle part between the front and rear walls of the mounting groove. The worm wheels are arranged on the side of the mounting rod away from the inner center of the glass body. The worm is respectively engaged with the laterally adjacent worm wheels. The adjustment knobs are arranged at the front end of the worm and can drive the gear to rotate through the mounting rod.
[0010] Furthermore, it also includes a transparent conductive mesh, which is arranged inside the glass body and can transmit electricity.
[0011] Furthermore, it also includes an anti-oxidation layer, which is respectively arranged at the front and rear ends of the glass body, thereby increasing the service life of the conductive shielding glass.
[0012] Furthermore, it also includes an electromagnetic shielding layer, which is respectively arranged at one end of the anti-oxidation layer away from the inner center of the glass body. The electromagnetic shielding layer has a strong function of reflecting electromagnetic waves and is often used for electromagnetic wave shielding in high-frequency bands.
[0013] Furthermore, it also includes an explosion-proof coating, which is respectively arranged at one end of the electromagnetic shielding layer away from the inner center of the glass body, thereby improving the pressure resistance of the conductive shielding glass.
[0014] Compared with the prior art, the beneficial effects of the present invention are: the conductive shielding glass has the following advantages:
[0015] The rack plate drives the cross plate to move through the connecting plate, and then the cross plate drives the top plate to move toward the end away from the inner center of the glass body, so that the top plate extends from the inside of the installation frame and finally contacts the inner wall of the installation station. The conductive shielding glass can be supported inside the corresponding installation station through the top plate, replacing the traditional method of installing and fixing the conductive shielding glass by fastening screws, solving the problem of affecting the stability of the conductive shielding glass due to corrosion of the fastening screws. It is simple to operate and easy to assemble and disassemble while ensuring the use effect of the conductive shielding glass. BRIEF DESCRIPTION OF THE DRAWINGS
[0016] Figure 1 This is a schematic diagram of the structure of the utility model;
[0017] Figure 2 This is a schematic diagram of the right side cross-sectional structure of the present invention;
[0018] Figure 3 This is a schematic diagram of the upper side cross-sectional structure of the utility model;
[0019] Figure 4 This is an enlarged structural diagram of point A of the utility model;
[0020] Figure 5 This is an enlarged structural diagram of point B of the present invention.
[0021] In the figure: 1 glass body, 2 mounting frame, 3 fixing mechanism, 31 mounting groove, 32 guide slide, 33 connecting plate, 34 horizontal plate, 35 top plate, 36 mounting rod, 37 gear, 38 rack plate, 4 worm, 5 worm wheel, 6 adjustment knob, 7 transparent conductive mesh, 8 anti-oxidation layer, 9 electromagnetic shielding layer, 10 explosion-proof coating. DETAILED DESCRIPTION
[0022] The following will be combined with the drawings in the embodiments of the present invention to clearly and completely describe the technical solutions in the embodiments of the present invention. Obviously, the embodiments described are only part of the embodiments of the present invention, not all of the embodiments. Based on the embodiments of the present invention, all other embodiments obtained by ordinary technicians in this field without making creative efforts are within the scope of protection of the present invention.
[0023] See also Figure 1-5 , This embodiment provides a technical solution: a conductive shielding glass, comprising a glass body 1, a mounting frame 2 is provided on the outside of the glass body 1, characterized in that: it also includes a fixing mechanism 3;
[0024] The fixing mechanism 3 includes a mounting groove 31, a guide slide 32, a connecting plate 33, a horizontal plate 34 and a top plate 35. The mounting grooves 31 are respectively arranged on the upper and lower sides of the interior of the mounting frame 2, and the middle parts of the left and right walls of the mounting groove 31 are provided with slide grooves. The front and rear sides of the interior of the mounting groove 31 are respectively provided with guide slides 32, and the guide slides 32 are respectively slidably connected with the sliding holes corresponding to the left ends of the connecting plates 33. The ends of the connecting plates 33 away from the center of the interior of the glass body 1 are provided with horizontal plates 34, and the ends of the horizontal plates 34 away from the center of the interior of the glass body 1 are provided with top plates 35. The top plates 35 are respectively slidably connected with the laterally adjacent slide grooves. The fixing mechanism 3 also includes a mounting rod 36, a gear 37 and a rack plate 38. The mounting rods 36 are rotatably connected to the interior of the mounting groove 31. The mounting rods 36 are close to the center of the interior of the glass body 1. A gear 37 is provided on both sides, and a rack plate 38 is respectively provided on the rear side of the left end of the right connecting plate 33 and the front side of the right end of the left connecting plate 33. The two rack plates 38 are meshed with the gear 37, and the rack plate 38 drives the cross plate 34 to move through the connecting plate 33, and then the cross plate 34 drives the top plate 35 to move to the end away from the inner center of the glass body 1, so that the top plate 35 extends from the inside of the mounting frame 2 and finally contacts the inner wall of the mounting station. The conductive shielding glass can be supported inside the corresponding mounting station through the top plate 35, replacing the traditional method of installing and fixing the conductive shielding glass by fastening screws, solving the problem of affecting the stability of the conductive shielding glass due to corrosion of the fastening screws, simple operation, convenient assembly and disassembly, while ensuring the use effect of the conductive shielding glass.
[0025] Among them, it also includes a worm 4, a worm wheel 5 and an adjusting knob 6. The worm 4 is rotatably connected to the middle part between the front and rear walls of the mounting groove 31. The worm wheels 5 are arranged on the side of the mounting rod 36 away from the inner center of the glass body 1. The worm 4 is respectively meshed with the laterally adjacent worm wheels 5. The adjusting knobs 6 are all arranged at the front end of the worm 4. The adjusting knob 6 drives the worm 4 to rotate. During the rotation, the worm 4 drives the worm wheel 5 to rotate through the meshing connection. The worm wheel 5 drives the gear 37 to rotate through the mounting rod 36. During the rotation, the gear 37 drives the two rack plates 38 to move through the meshing connection.
[0026] Among them: it also includes a transparent conductive mesh 7, which is arranged inside the glass body 1. The transparent conductive mesh 7 is connected to other electronic devices. During the connection process, the wires and connectors are correctly connected according to the instructions. After the connection is completed, a test is performed to ensure that the conductive shielding glass is working properly.
[0027] Among them: it also includes an anti-oxidation layer 8, which is respectively arranged at the front and rear ends of the glass body 1. The anti-oxidation layer 8 is a graphene coating. The anti-oxidation layer 8 can effectively slow down the oxidation and decomposition of the conductive shielding glass by air, thereby improving the service life of the conductive shielding glass.
[0028] Among them: it also includes an electromagnetic shielding layer 9, which is arranged at one end of the anti-oxidation layer 8 away from the inner center of the glass body 1. The electromagnetic shielding layer 9 is a transparent conductive film layer made of metal or metal oxide. These metals or metal oxides include gold, silver, copper, titanium, tin, aluminum, etc. These film layers have a strong function of reflecting electromagnetic waves and are often used for electromagnetic wave shielding in high-frequency bands.
[0029] Among them: it also includes an explosion-proof coating 10, which is respectively arranged at one end of the electromagnetic shielding layer 9 away from the inner center of the glass body 1. The explosion-proof coating 10 is a thermoplastic polyurethane elastomer rubber layer to improve the compressive resistance of the conductive shielding glass.
[0030] The working principle of a conductive shielding glass provided by the present invention is as follows: before use, the conductive shielding glass is moved to the designated work location, and then the glass body 1 is placed inside the corresponding work station, and then the operator rotates the adjusting knob 6 in sequence, and the adjusting knob 6 drives the worm 4 to rotate, and the worm 4 drives the worm wheel 5 to rotate through the meshing connection during the rotation, and the worm wheel 5 drives the gear 37 to rotate through the mounting rod 36, and the gear 37 drives the two rack plates 38 to move through the meshing connection during the rotation, and the rack plate 38 drives the cross plate 34 to move through the connecting plate 33, and then the cross plate 34 drives the top plate 35 to move toward the end away from the inner center of the glass body 1, so that the top plate 35 extends from the inside of the mounting frame 2, and finally contacts the inner wall of the mounting station, thereby supporting the conductive shielding glass inside the corresponding mounting station. The transparent conductive mesh 7 is placed inside the glass, and then the transparent conductive mesh 7 is connected to other electronic devices. During the connection process, the wires and connectors are correctly connected according to the instructions. After the connection is completed, a test is performed to ensure that the conductive shielding glass is working properly. The transparent conductive mesh 7 is usually made of materials such as metals or metal oxides, and has good electrical conductivity and light transmittance. The anti-oxidation layer 8 is a graphene coating. The anti-oxidation layer 8 can effectively slow down the oxidation and decomposition of the conductive shielding glass by air, thereby improving the service life of the conductive shielding glass. The electromagnetic shielding layer 9 is a transparent conductive film layer made of metal or metal oxide. These metals or metal oxides include gold, silver, copper, titanium, tin, aluminum, etc. These film layers have a strong function of reflecting electromagnetic waves and are often used for electromagnetic wave shielding in high-frequency bands. The explosion-proof coating 10 is a thermoplastic polyurethane elastomer rubber layer, which improves the compressive strength of the conductive shielding glass.
[0031] The above description is merely an embodiment of the present invention and does not limit the patent scope of the present invention. Any equivalent structure or equivalent process transformation made by using the contents of the description and drawings of the present invention, or directly or indirectly applied in other related technical fields, are also included in the patent protection scope of the present invention.
Claims
1. A conductive shielding glass, comprising a glass body (1), an installation frame (2) being provided outside the glass body (1), characterized in that: Also includes a fixing mechanism (3); The fixing mechanism (3) comprises a mounting groove (31), a guide slide (32), a connecting plate (33), a transverse plate (34) and a top plate (35), wherein the mounting groove (31) is respectively arranged on the upper and lower sides of the interior of the mounting frame (2), a slide groove is arranged in the middle of the left and right walls of the mounting groove (31), a guide slide (32) is respectively arranged on the front and rear sides of the interior of the mounting groove (31), and the guide slide (32) is respectively slidably connected to the slide hole correspondingly arranged at the left end of the connecting plate (33), a transverse plate (34) is arranged at one end of the connecting plate (33) away from the center of the interior of the glass body (1), and a top plate (35) is arranged at one end of the transverse plate (34) away from the center of the interior of the glass body (1), and the top plate (35) is respectively slidably connected to the laterally adjacent slide grooves.
2. The conductive shielding glass according to claim 1, characterized in that: The fixing mechanism (3) further comprises a mounting rod (36), a gear (37) and a rack plate (38). The mounting rod (36) is rotatably connected to the interior of the mounting groove (31). A gear (37) is provided on one side of the mounting rod (36) close to the interior center of the glass body (1). The rack plate (38) is respectively provided on the rear side of the left end of the right connecting plate (33) and the front side of the right end of the left connecting plate (33). The two rack plates (38) are both meshed and connected with the gear (37).
3. The conductive shielding glass according to claim 2, characterized in that: The glass body (1) further comprises a worm (4), a worm wheel (5) and an adjusting knob (6), wherein the worm (4) is rotatably connected to the middle portion between the front and rear walls of the mounting groove (31), the worm wheels (5) are arranged on a side of the mounting rod (36) away from the inner center of the glass body (1), the worm (4) is respectively engaged with the worm wheels (5) adjacent to each other in the transverse direction, and the adjusting knobs (6) are arranged at the front end of the worm (4).
4. The conductive shielding glass according to claim 1, characterized in that: It also includes a transparent conductive mesh (7), which is arranged inside the glass body (1).
5. The conductive shielding glass according to claim 1, characterized in that: It also includes an anti-oxidation layer (8), which is respectively arranged at the front and rear ends of the glass body (1).
6. The conductive shielding glass according to claim 5, characterized in that: It also includes an electromagnetic shielding layer (9), which is respectively arranged at one end of the anti-oxidation layer (8) away from the inner center of the glass body (1).
7. The conductive shielding glass according to claim 6, characterized in that: It also includes an explosion-proof coating (10), which is respectively arranged at one end of the electromagnetic shielding layer (9) away from the inner center of the glass body (1).