Ultrathin flexible glass toughening fence

By designing ultra-thin flexible fiberglass reinforced railings and using support rod components with slots and interference fit, the deformation problem at the connection is solved, bolt-free and nut connection is realized, and the tempering efficiency and quality are improved.

CN223304328UActive Publication Date: 2025-09-05WUHU DONGXIN PHOTOELECTRIC TECH CO LTD
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Patent Information

Application Number
CN202421833496.6
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-07-31
Publication Date
2025-09-05
Estimated Expiration
2034-07-31

AI Technical Summary

Technical Problem

During the existing ultra-thin flexible fiberglass tempering process, the connections are prone to deform, which affects the yield and efficiency of tempering, and requires bolts and nuts to connect, resulting in mismatch problems.

Method used

An ultra-thin flexible fiberglass reinforced railing is designed, using a base plate, side plate and support rod assembly. The end of the support rod assembly is movably connected to the side plate. The bolt-free nut connection is achieved through the jagging and interference fit to support the upper and lower edges of the glass to avoid deformation.

Benefits of technology

Effectively prevent deformation at the connection, improve tempering efficiency and quality, reduce the use of bolts and nuts, and enhance structural reliability and glass fixing effect.

✦ Generated by Eureka AI based on patent content.

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Abstract

The ultra-thin flexible glass toughening fence comprises the bottom plate, the side plates and the supporting rod assemblies, the side plates are arranged on the bottom plate, the ends of the supporting rod assemblies are movably connected with the side plates, ultra-thin flexible glass is placed between the side plates, the supporting rod assemblies can fix the ultra-thin flexible glass, and the ultra-thin flexible glass can be fixed through the supporting rod assemblies. The ultrathin flexible glass is supported in the tempering process, the side plates and the supporting rod assemblies do not need to be connected through bolts and nuts, so that deformation of the connecting positions is effectively prevented, the ultrathin flexible glass can be supported in the tempering process, bolts and nuts are not needed for connection, and the ultrathin flexible glass tempering fence is simple in structure and convenient to use. Therefore, the joint is effectively prevented from deforming.
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Description

Technical Field

[0001] The utility model belongs to the field of ultra-thin flexible glass tempering, and specifically relates to an ultra-thin flexible glass tempering railing. Background Art

[0002] In the field of foldable screen mobile phones, ultra-thin flexible foldable glass is usually used as an auxiliary cover for the outer screen of the mobile phone. Ultra-thin flexible glass needs to have a certain strength, feel, and excellent optical and bending properties. However, based on the existing processing technology of domestic glass manufacturers, ultra-thin flexible glass cannot be prepared in one go. It usually involves secondary thinning, dispensing, slicing, tempering and other processes. Especially when it comes to glass tempering, the tempering process requirements are very strict because the ultra-thin glass to be tempered has a certain flexibility. The usually used method is the low-temperature ion exchange method, and the glass is placed in a molten alkaline salt solution to increase the strength of the glass through ion exchange. It involves how to put batches of glass into the tempering furnace. Special tempered railings made of stainless steel are usually used for production. The railings fix the ultra-thin flexible glass through a bottom ruler, a side ruler and an upper ruler. The railings are connected with bolts and nuts. The upper ruler needs to be assembled every time the piece is put on and off, and it will also cause certain damage to the glass. At the same time, the bolts and nuts are easily deformed at the connection after passing through the molten salt of hundreds of degrees, resulting in mismatch between the bolts and nuts, seriously affecting the tempering yield and efficiency.

[0003] To solve the above problems, patent document with application number 2022109925642 discloses a wind grille fixing device and glass tempering equipment for glass tempering equipment, wherein the glass tempering equipment is used to temper and shape horizontally arranged glass, and the wind grille is connected to the glass tempering equipment through a corresponding wind grille fixing device: the wind grille fixing device includes a fixing plate, a fixing bracket and an air guide duct, the fixing plate is used to be connected to the tempering equipment, an air outlet is provided on the fixing plate, an air inlet is provided on the wind grille, the air inlet and the air outlet are connected through an air guide duct, one end of the fixing bracket is fixedly connected to the fixing plate, and the wind grille is detachably connected to the end of the fixing bracket away from the fixing plate, but the above problems cannot be solved. Utility Model Content

[0004] The present invention is designed to solve the above problems and aims to provide an ultra-thin flexible glass tempered railing that can support ultra-thin flexible glass during the tempering process and can be connected without bolts and nuts, thereby effectively preventing deformation of the connection. In order to achieve the above purpose, the technical solution adopted by the present invention is as follows:

[0005] The utility model provides an ultra-thin flexible glass tempered railing having the following characteristics: it includes a bottom plate, side plates and a support rod assembly, wherein the side plates are arranged on the bottom plate, the ends of the support rod assembly are movably connected to the side plates, and the ultra-thin flexible glass is placed between the side plates.

[0006] The ultra-thin flexible glass tempered railing provided by the present invention may also have such a feature that the support rod assembly includes a bottom rod, a side rod and a top rod, the end of the bottom rod is movably connected to the side panel, the end of the side rod is movably connected to the side panel, and the end of the top rod is movably connected to the side panel.

[0007] The ultra-thin flexible glass tempered railing provided by the present invention may also have the following features: the bottom rod abuts the upper edge of the ultra-thin flexible glass, the side rods abut the side edges of the ultra-thin flexible glass, and the top rod abuts the lower edge of the ultra-thin flexible glass.

[0008] The ultra-thin flexible tempered glass railing provided by the present invention may also have the following features: a card slot is provided on the side of the side panel away from the bottom panel, and a card protrusion is provided at the end of the top rod that is compatible with the card slot, and the card protrusion is carded in the card slot.

[0009] The ultra-thin flexible glass tempered fence provided by the present invention may also have the feature that the card slot is obliquely arranged on the side panel.

[0010] The ultra-thin flexible tempered glass railing provided by the present invention may also have the following features: a first movable groove is provided on the side panel, and the end of the bottom rod is clamped in the first movable groove by interference fit.

[0011] The ultra-thin flexible tempered glass railing provided by the present invention may also have the following feature: a second movable groove is provided on the side panel, and the end of the side rod is clamped in the second movable groove by interference fit.

[0012] The ultra-thin flexible glass tempered fence provided by the present invention may also have the following feature: the second movable groove is located on both sides of the first movable groove.

[0013] The ultra-thin flexible tempered glass railing provided by the present invention may also have the following features: the bottom bar, the side bar and the top bar are all provided with support protrusions, the support protrusions are cylindrical, and a stainless steel rope is wound around the support protrusions.

[0014] The technical effect of the utility model is: the ultra-thin flexible glass tempered railing provided by the utility model includes a bottom plate, side plates and a support rod assembly, the side plates are arranged on the bottom plate, the ends of the support rod assembly are movably connected to the side plates, the ultra-thin flexible glass is placed between the side plates, and the support rod assembly can fix the ultra-thin flexible glass, thereby supporting the ultra-thin flexible glass during the tempering process, and the side plates and the support rod assembly do not need to be connected by bolts and nuts, thereby effectively preventing deformation of the connection.

[0015] Therefore, the ultra-thin flexible glass tempered railing provided by the utility model can support the ultra-thin flexible glass during the tempering process without the need for bolts and nuts for connection, thereby effectively preventing deformation of the connection. BRIEF DESCRIPTION OF THE DRAWINGS

[0016] This manual includes the following drawings, which show the following contents:

[0017] Figure 1 This is a schematic structural diagram of an ultra-thin flexible glass tempered railing in an embodiment of the present utility model;

[0018] Figure 2 It is a structural schematic diagram of the side panel in an embodiment of the present utility model;

[0019] Figure 3 It is a structural schematic diagram of the ejector rod in an embodiment of the present utility model;

[0020] Figure 4 It is a structural schematic diagram of the supporting protrusion in an embodiment of the present utility model.

[0021] Marked in the figure: 10-bottom plate, 20-side plate, 21-card slot, 22-first movable slot, 23-second movable slot, 30-support rod assembly, 31-bottom rod, 32-side rod, 33-top rod, 331-card protrusion, 34-support protrusion. DETAILED DESCRIPTION

[0022] The following is a further detailed description of the specific implementation methods of the present invention through the description of the embodiments with reference to the accompanying drawings, with the aim of helping those skilled in the art to have a more complete, accurate and in-depth understanding of the inventive concept and technical solution of the present invention and to facilitate their implementation.

[0023] Figure 1 It is a structural schematic diagram of an ultra-thin flexible glass tempered railing in an embodiment of the present utility model.

[0024] like Figure 1As shown, the ultra-thin flexible glass tempered railing provided by the present invention includes a base plate 10, a side plate 20 and a support rod assembly 30. The side plates 20 are arranged on the base plate 10. The two side plates 20 are arranged parallel to each other and are respectively located on both sides of the base plate 10. The ends of the support rod assembly 30 are movably connected to the side plates 20. The ultra-thin flexible glass is placed between the side plates 20. The support rod assembly 30 can fix the ultra-thin flexible glass, thereby supporting the ultra-thin flexible glass during the tempering process. There is no need to connect the side plates 20 and the support rod assembly 30 through bolts and nuts, thereby effectively preventing deformation of the connection and improving the efficiency and quality of the ultra-thin flexible glass tempering.

[0025] The support rod assembly 30 includes a bottom rod 31, side rods 32, and a top rod 33. The ends of the bottom rod 31 are movably connected to the side panels 20, the ends of the side rods 32 are movably connected to the side panels 20, and the ends of the top rod 33 are movably connected to the side panels 20. The bottom rod 31 abuts the upper edge of the ultra-thin flexible glass, the side rods 32 abut the side edges of the ultra-thin flexible glass, and the top rod 33 abuts the lower edge of the ultra-thin flexible glass, thereby firmly fixing the ultra-thin flexible glass. The bottom panel 10, side panels 20, bottom rod 31, side rods 32, and top rod 33 are all made of heat-resistant stainless steel, which can effectively prevent deformation during the tempering process and further improve the reliability of the structure.

[0026] Figure 2 It is a structural schematic diagram of the side panel in an embodiment of the present utility model; Figure 3 It is a structural schematic diagram of the push rod in the embodiment of the present utility model.

[0027] like Figure 2 and Figure 3 As shown, a slot 21 is provided on the side of the side panel 20 away from the bottom panel 10, and a snap-in protrusion 331 is provided at the end of the push rod 33 that matches the slot 21. The snap-in protrusion 331 is snapped into the slot 21, so that the two ends of the push rod 33 are detachably connected to the two side panels 20, avoiding the use of bolts and nuts for connection, effectively preventing deformation at the connection, and improving the efficiency and quality of the ultra-thin flexible glass tempering. The slot 21 is arranged at an angle on the side panel 20, and multiple slots 21 are evenly and equidistantly arranged on the side panel 20, so that the position and spacing of the push rod 33 can be adjusted according to actual production needs, further improving the reliability of the structure and effectively fixing the ultra-thin flexible glass. The inclined setting helps prevent the push rod 33 from shaking during the tempering process, thereby enhancing the fixing effect on the ultra-thin flexible glass.

[0028] The side panels 20 are provided with a first movable groove 22, and the ends of the bottom rod 31 are retained within the first movable groove 22 by an interference fit, allowing the ends of the bottom rod 31 to be detachably connected to the two side panels 20, eliminating the need for bolts and nuts for connection, effectively preventing deformation at the connection, and improving the efficiency and quality of the ultra-thin flexible glass tempering. The side panels 20 are also provided with a second movable groove 23, and the ends of the side rod 32 are retained within the second movable groove by an interference fit, allowing the ends of the side rod 32 to be detachably connected to the two side panels 20, eliminating the need for bolts and nuts for connection, effectively preventing deformation at the connection, and improving the efficiency and quality of the ultra-thin flexible glass tempering. The second movable grooves 23 are located on both sides of the first movable groove 21, allowing the side rods 32 to abut against the side edges of the ultra-thin flexible glass, firmly securing the ultra-thin flexible glass.

[0029] Figure 4 It is a structural schematic diagram of the supporting protrusion in an embodiment of the present utility model.

[0030] like Figure 4 As shown, support protrusions 34 are provided on the bottom rod 31, the side rod 32 and the top rod 33. The support protrusions 34 are cylindrical and are evenly arranged along the length direction of the bottom rod 31. Multiple support protrusions 34 are evenly arranged on the bottom rod 31. The support protrusions 34 are evenly arranged along the length direction of the side rod 32. Multiple support protrusions 34 are evenly arranged on the side rod 32. The support protrusions 34 are evenly arranged along the length direction of the top rod 33. Multiple support protrusions 34 are evenly arranged on the top rod 33, and a piece of ultra-thin flexible glass is placed between adjacent support protrusions 34, so that the ultra-thin flexible glass is parallel to the side panel 20, which increases the number of ultra-thin flexible glasses that the ultra-thin flexible glass tempered railing provided by the utility model can carry at a single time, and improves the tempering efficiency.

[0031] A stainless steel rope is wound around the supporting protrusion 34 so that the edge of the ultra-thin flexible glass contacts the stainless steel rope, effectively reducing the contact area and avoiding other tempering defects.

[0032] Functions and Effects of the Embodiments

[0033] The ultra-thin flexible glass tempered railing provided by the utility model includes a bottom plate, side plates and a support rod assembly. The side plates are arranged on the bottom plate, and the ends of the support rod assembly are movably connected to the side plates. The ultra-thin flexible glass is placed between the side plates. The support rod assembly can fix the ultra-thin flexible glass, thereby supporting the ultra-thin flexible glass during the tempering process, and the side plates and the support rod assembly do not need to be connected by bolts and nuts, thereby effectively preventing deformation of the connection.

[0034] Therefore, the ultra-thin flexible glass tempered railing provided by the utility model can support the ultra-thin flexible glass during the tempering process without the need for bolts and nuts for connection, thereby effectively preventing deformation of the connection.

[0035] The above description of the present invention is provided as an example, in conjunction with the accompanying drawings. Obviously, the specific implementation of the present invention is not limited to the above-described method. Any non-substantial improvements made using the method concepts and technical solutions of the present invention, or any application of the above-described concepts and technical solutions of the present invention to other situations without modification, are all within the scope of protection of the present invention.

Claims

1. An ultra-thin flexible glass tempered railing, characterized in that: The invention comprises a bottom plate (10), side plates (20) and a support rod assembly (30), wherein the side plates (20) are arranged on the bottom plate (10), the ends of the support rod assembly (30) are movably connected to the side plates (20), and the ultra-thin flexible glass is placed between the side plates (20). The support rod assembly (30) includes a bottom rod (31), a side rod (32) and a top rod (33), the end of the bottom rod (31) is movably connected to the side plate (20), the end of the side rod (32) is movably connected to the side plate (20), and the end of the top rod (33) is movably connected to the side plate (20). The bottom rod (31) abuts against the upper edge of the ultra-thin flexible glass, the side rod (32) abuts against the side edge of the ultra-thin flexible glass, and the top rod (33) abuts against the lower edge of the ultra-thin flexible glass. A clamping groove (21) is provided on the side of the side plate (20) away from the bottom plate (10), and a clamping protrusion (331) adapted to the clamping groove (21) is provided at the end of the top rod (33), and the clamping protrusion (331) is clamped in the clamping groove (21). The bottom rod (31), the side rod (32) and the top rod (33) are all provided with a supporting protrusion (34), the supporting protrusion (34) is cylindrical, and a stainless steel rope is wound around the supporting protrusion (34).

2. The ultra-thin flexible glass tempered fence according to claim 1, characterized in that: The clamping slot (21) is obliquely arranged on the side plate (20).

3. The ultra-thin flexible glass tempered fence according to claim 2, characterized in that: A first movable groove (22) is provided on the side plate (20), and the end of the bottom rod (31) is clamped in the first movable groove (22) by interference fit.

4. The ultra-thin flexible glass tempered fence according to claim 3, characterized in that: A second movable groove (23) is provided on the side plate (20), and the end of the side rod (32) is clamped in the second movable groove (23) by interference fit.

5. The ultra-thin flexible glass tempered fence according to claim 4, characterized in that: The second movable groove (23) is located on both sides of the first movable groove (22).