Tempered glass with protective layer

The modular protective layer design solves the problem of insufficient diversity of protective functions and installation reliability of traditional tempered glass, realizes flexible selection and convenient installation of diversified protective functions, and improves the aesthetics and maintenance convenience.

CN120697394APending Publication Date: 2025-09-26XIANGSHUI COUNTY KAIRUI TEMPERED GLASS PROD CO LTD
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Patent Information

Application Number
CN202511088257.1
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2025-08-05
Publication Date
2025-09-26

AI Technical Summary

Technical Problem

Traditional tempered glass has deficiencies in terms of the diversity of protective functions and installation reliability, making it difficult to meet diverse protection needs. It is also complicated to install and maintain and lacks aesthetics.

Method used

It adopts a modular protective layer design, including a transparent protective block, a snap-in block and adhesive fixation. The transparent protective block can choose the type of protective film according to needs. The snap-in block and snap-in slot structure realize simple and reliable installation, and the edge notch and slot design enable easy disassembly.

Benefits of technology

It enables flexible selection and personalized customization of diversified protection functions, improves installation reliability and aesthetics, and reduces maintenance difficulty and cost.

✦ Generated by Eureka AI based on patent content.

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Abstract

The invention provides toughened glass with a protective layer, and relates to the technical field of toughened glass, the toughened glass comprises a toughened glass main body, the front end surface and the rear end surface of the toughened glass main body can be clamped with transparent protective blocks; the rear end face of the transparent protection block body is provided with a clamping groove adjacent to the included angle parts of the six edges. The clamping groove is of a partially-spherical cambered surface groove structure, and the section of the clamping groove is of a major arc circle structure. The modularized protection layers can be flexibly selected according to different protection requirements, diversified protection requirements in different scenes are met, a user can use the modularized protection layers with different functions independently or in a combined mode according to the actual requirements and specific use scenes of the user, personalized customization of the protection layers is achieved, and the user experience is improved. The problem that traditional tempered glass is difficult to meet diversified protection requirements is solved.
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Description

Technical Field

[0001] The present invention relates to the technical field of tempered glass, in particular to a tempered glass with a protective layer. Background Art

[0002] In modern architecture and electronic equipment, tempered glass is widely used due to its high strength and safety. However, as people's requirements for the use environment and equipment protection continue to increase, traditional tempered glass has gradually exposed some shortcomings in terms of protective function.

[0003] On the one hand, traditional tempered glass lacks diverse protective functions. It struggles to meet diverse protection needs, such as UV protection, electromagnetic shielding, anti-glare, sound insulation, and heat insulation, and cannot effectively meet the requirements of different scenarios. On the other hand, there are limitations in installation and maintenance. The existing installation method of tempered glass and protective layer is relatively complex, and installation reliability is low, making it difficult to ensure a stable connection between the protective layer and the tempered glass. Moreover, later maintenance and replacement of the protective layer are inconvenient and often require specialized tools and personnel, increasing the cost and difficulty of maintenance. Furthermore, the existing tempered glass protective layer is not well integrated into the architectural environment. The overall structural aesthetics need to be improved, and it cannot fully meet people's pursuit of spatial aesthetics. Summary of the Invention

[0004] The present invention relates to a tempered glass with a protective layer, which solves the problem that traditional tempered glass is difficult to meet various protection requirements.

[0005] The present invention provides a tempered glass with a protective layer, specifically comprising: a tempered glass body, the front end face and the rear end face of the tempered glass body both of which can be clipped and installed with a transparent protective block; the transparent protective block is a hexagonal block structure, and the rear end face of the transparent protective block is adjacent to six edge angles and is provided with a clipping groove; the clipping groove is a partially spherical arc groove structure, and its cross-section is a superior arc circle structure; it also includes a clipping block, the structural dimensions of the clipping block match the structural dimensions of the clipping groove, and the clipping block and the clipping groove are clipped and installed; the rear end plane of the clipping block is fixedly connected to the tempered glass body by an adhesive.

[0006] Furthermore, each of the six edge angles of the front end face of the transparent protective block is provided with an edge notch, and the inclined end face of the edge notch is set at a thirty-five degree angle with the front end face of the transparent protective block.

[0007] Furthermore, a slot is provided at the center of the inclined end surface of each of the six edge notches. The slot is a circular slot structure and is perpendicular to the inclined end surface of the edge notch.

[0008] Furthermore, a hollow cavity is opened inside the transparent protective block, and the inside of the hollow cavity can be filled with sound-absorbing cotton or aerogel; the transparent protective block is bonded with a protective film, and the protective film can be one of an anti-ultraviolet film, an electromagnetic shielding film, and an anti-glare film.

[0009] Furthermore, the transparent protective block, protective film, edge notch, slot, snap block, snap slot and hollow cavity together constitute a group of modular protective layers. The number of modular protective layers is not limited to one group, and the number can be increased or decreased.

[0010] The present invention provides a tempered glass with a protective layer, which has the following beneficial effects: The modular protective layer of the present invention can be flexibly selected according to different protection needs, and includes multiple functions such as UV protection, electromagnetic shielding, anti-glare, sound insulation, and heat insulation. For example, for the modular protective layer with UV protection, the protective film is selected as an anti-UV film and the hollow cavity is not filled with any material, so as to ensure light transmittance and achieve UV protection at the same time; the modular protective layer with electromagnetic shielding provides electromagnetic protection for electronic equipment, etc. without affecting transparency by selecting an electromagnetic shielding film; the modular protective layer with anti-glare selects an anti-glare shielding film to reduce glare stimulation to the human eye. When relative transparency does not need to be guaranteed, sound-absorbing cotton or aerogel can be filled in the hollow cavity to achieve sound insulation or heat insulation, meeting the diverse protection needs in different scenarios, so that users can use modular protective layers with different functions separately or in combination according to their actual needs and specific usage scenarios, to achieve personalized customization of the protective layer, which greatly improves the user's independent selection and usage experience of the product.

[0011] The present invention realizes the fixed installation of the modular protective layer and the tempered glass through the clamping structure of the clamping block and the transparent protective block, and uses adhesive to fix the rear end plane of the clamping block and the tempered glass body. The installation method is simple and reliable. Moreover, the modular protective layer of the present invention can be installed according to the honeycomb structure through its structural design, which not only realizes efficient protection function, but also adds aesthetic decoration to the overall structure, so that the protective layer can be better integrated with the architectural environment and the overall beauty of the space is enhanced.

[0012] The transparent protective block of the present invention has an edge notch at the edge angle of the front end face, which effectively avoids sharp ends on the edge and prevents accidental injuries to the human body, fully considering the safety during use. In addition, the slot opened in the center of the inclined end face of the edge notch of the present invention is set at a specific angle. When disassembling the transparent protective block, the user only needs to insert a suitable tool into the slot and apply force outward to easily disengage the snap-in block from the snap-in slot, and the disassembly operation can be completed quickly and conveniently, which provides great convenience for subsequent maintenance and replacement, and reduces the cost of use and the difficulty of maintenance. BRIEF DESCRIPTION OF THE DRAWINGS

[0013] In order to more clearly illustrate the technical solutions of the embodiments of the present invention, the drawings of the embodiments are briefly introduced below.

[0014] The drawings described below only relate to some embodiments of the present invention, but are not intended to limit the present invention.

[0015] In the attached figure: Figure 1 Shows a schematic diagram of the main structure of the present invention; Figure 2 Shows an axonometric structural diagram of the present invention; Figure 3 A schematic diagram of the front axonometric structure of the modular protective layer of the present invention is shown; Figure 4 It shows a schematic diagram of the rear end axonometric structure of the modular protective layer of the present invention; Figure 5 A schematic diagram of the main structure of the modular protective layer of the present invention is shown; Figure 6 It shows a schematic diagram of the front-end axonometric structure of the modular protective layer of the present invention in a disassembled state; Figure 7 It shows a schematic diagram of the rear end axonometric structure of the modular protective layer of the present invention in a disassembled state; Figure 8 A schematic diagram of a cross-sectional structure of a modular protective layer of the present invention is shown; Reference Signs List 1. Tempered glass body; 2. Modular protective layer; 201. Transparent protective block; 202. Protective film; 203. Edge notch; 204. Slot; 205. Snap-in block; 206. Snap-in slot; 207. Hollow cavity. DETAILED DESCRIPTION

[0016] To make the purpose, technical solutions, and advantages of the embodiments of the present invention more clear, the technical solutions of the embodiments of the present invention will be clearly and completely described below in conjunction with the accompanying drawings of the embodiments of the present invention. Obviously, the described embodiments are only part of the embodiments of the present invention, not all of the embodiments. Based on the described embodiments of the present invention, all other embodiments obtained by ordinary technicians in this field without creative work are within the scope of protection of the present invention.

[0017] Example: Please refer to Figures 1 to 8 : The present invention proposes a tempered glass with a protective layer, comprising: a tempered glass body 1, the front and rear faces of the tempered glass body 1 can be clipped and mounted with a transparent protective block 201; the transparent protective block 201 is a hexagonal block structure, and the rear face of the transparent protective block 201 is adjacent to six edge angles and has a clipping groove 206; the clipping groove 206 is a partially spherical arc groove structure, and its cross section is an excellent arc circle structure; it also includes a clipping block 205, the structural dimensions of the clipping block 205 match the structural dimensions of the clipping groove 206, and the clipping block 205 is ... clipped and mounted with a transparent protective block 201; the transparent protective block 201 is clipped and mounted with a transparent protective block 201; the transparent protective block 201 is clipped and mounted with a transparent protective block 201; the transparent protective block 201 is clipped and mounted with a transparent protective block 201; the transparent protective block 201 is clipped and mounted with a transparent protective block 201; the transparent protective block 201 is clipped and mounted with a transparent protective block 201; the transparent protective block 201 is clipped and mounted with a transparent protective block 201; the transparent protective block 201 is clipped and mounted with a transparent protective 05 is snap-fitted and installed with the snap-fit ​​groove 206; the rear end plane of the snap-fit ​​block 205 is fixedly connected to the tempered glass body 1 by an adhesive; the six edge angles of the front end face of the transparent protective block 201 are each provided with an edge notch 203. The setting of the edge notch 203 effectively avoids the sharp end of the edge of the transparent protective block 201, thereby achieving the purpose of safety protection and preventing accidental injury to the human body due to sharp edges. The inclined end face of the edge notch 203 is set at a thirty-five degree angle with the front end face of the transparent protective block 201, and the six The center of the inclined end surface of the edge notch 203 is provided with a slot 204, which is a circular slot structure. The slot 204 is perpendicular to the inclined end surface of the edge notch 203. Through the setting of the slot 204, when it is necessary to disassemble the transparent protective block 201, the user only needs to align the appropriate tool with the slot 204 and insert it, and then gently apply force outward to easily disengage the clamping block 205 from the clamping slot 206, thereby quickly and conveniently completing the disassembly operation of the transparent protective block 201; the transparent protective block 201 is provided with a slot 204 inside. The hollow cavity 207 can be filled with sound-absorbing cotton or aerogel; the transparent protective block 201 is bonded with a protective film 202, and the protective film 202 can be one of an anti-ultraviolet film, an electromagnetic shielding film, and an anti-glare film, so that different functions can be selected according to different needs; the transparent protective block 201, the protective film 202, the edge notch 203, the slot 204, the snap-in block 205, the snap-in slot 206 and the hollow cavity 207 together constitute a group of modular protective layers 2, and the number of modular protective layers 2 is not limited to one group, and the number can be increased or decreased.

[0018] The working principle of this embodiment is as follows: First, based on different protection requirements, select modular protection layers 2 with different functions, as follows: Modular protective layer with UV protection 2: The protective film 202 in the modular protective layer 2 is selected as an anti-ultraviolet film. At the same time, in order to ensure its relative transparency, the hollow cavity 207 is not filled with any material, thereby achieving the anti-ultraviolet function on the basis of ensuring good light transmittance; Modular protection layer 2 of electromagnetic shielding: The protective film 202 in the modular protective layer 2 is selected as an electromagnetic shielding film to achieve effective shielding of electromagnetic signals. Similarly, the hollow cavity 207 remains empty, providing reliable electromagnetic protection for electronic equipment and sensitive instruments without affecting relative transparency, ensuring their normal operation without being affected by external electromagnetic interference; Modular protection layer 2 against glare: The protective film 202 in the modular protective layer 2 is selected as an anti-glare masking film. On the basis of ensuring relative transparency, the interior of the hollow cavity 207 is also not filled with any material, which effectively reduces the irritation of glare to the human eye. For the above three types, without ensuring relative transparency, the hollow cavity 207 can be filled with sound-absorbing cotton or aerogel to further expand its function and achieve corresponding sound insulation or heat insulation functions; Modular protective layer of sound insulation 2: Filling the hollow cavity 207 with sound-absorbing cotton to absorb and block the spread of sound, thereby reducing the interference of external noise on the indoor environment and achieving a sound-absorbing function; Thermally insulated modular protective layer 2: Filling the hollow cavity 207 with aerogel, which has an extremely low thermal conductivity and can effectively block the transfer of heat, providing good thermal insulation protection and achieving thermal insulation function; In the above two types, the protective film 202 in the modular protective layer 2 can be selected as one of an anti-ultraviolet film, an electromagnetic shielding film, and an anti-glare film, realizing a combination of multiple functions to meet more complex and diverse protection requirements; In actual application, users can flexibly choose to use the above modular protection layers 2 with different functions separately or combine them into one according to their actual needs and specific usage scenarios to achieve personalized customization of the protection layer. The following are some specific application examples: For example, in the summer when the sun is strong, in order to effectively protect against UV damage, keep the room cool, and reduce the impact of glare on vision, you can choose to install a modular UV protection layer 2, a heat insulation modular protection layer 2, and an anti-glare modular protection layer 2 to form a comprehensive protection system; For example, in an environment susceptible to external noise, such as a residence or office space near a major traffic artery, a sound-insulating modular protective layer 2 can be installed to effectively reduce noise interference and improve living and working comfort.

[0019] For example, in environments that require protection against electromagnetic interference, such as data centers and laboratories, a modular electromagnetic shielding layer 2 can be installed to ensure the normal operation of electronic equipment and instruments and avoid interference from external electromagnetic signals; When used in conjunction with the tempered glass body 1, first, at the location where the modular protective layer 2 is to be installed, according to the installation angle of the modular protective layer 2, the rear end plane of the clamping block 205 is fixedly connected to the tempered glass body 1 by adhesive. Then, the clamping grooves 206 of the transparent protective block 201 are aligned with the clamping blocks 205 and buckled, so that the clamping blocks 205 are clamped into the clamping grooves 206 to achieve fixed installation of the modular protective layer 2. All modular protective layers 2 are fitted and installed according to the honeycomb structure. This installation method not only achieves efficient protection but also adds aesthetic decoration to the overall structure, allowing the protective layer to better integrate with the architectural environment and enhance the overall aesthetics of the space. Furthermore, each of the six edge corners of the front face of the transparent protective block 201 is provided with an edge notch 203. The edge notch 203 effectively prevents the transparent protective block 201 from having sharp edges, thereby achieving the purpose of safety protection and preventing accidental injuries to the human body due to sharp edges. A slot 204 with a circular groove structure is provided at the center of the inclined end surface of the six edge grooves 203. Since the inclined end surface of the edge groove 203 is set at a thirty-five-degree angle with the front end surface of the transparent protective block 201, and the slot 204 is opened vertically to the inclined end surface of the edge groove 203, through the setting of the slot 204, when the transparent protective block 201 needs to be disassembled, the user only needs to align the appropriate tool with the slot 204 and insert it, and then gently apply force outward to easily disengage the snap-in block 205 from the snap-in slot 206, thereby quickly and conveniently completing the disassembly operation of the transparent protective block 201, which provides great convenience for subsequent maintenance and replacement.

Claims

1. A tempered glass with a protective layer, comprising a tempered glass body (1), characterized in that: The front and rear faces of the tempered glass body (1) can be snap-fitted with a transparent protective block (201); the transparent protective block (201) is a hexagonal block structure, and the rear face of the transparent protective block (201) is provided with a snap-fit ​​groove (206) adjacent to six edge angles; the snap-fit ​​groove (206) is a partially spherical arc groove structure, and its cross-section is a superior arc circle structure; it also includes a snap-fit ​​block (205), the structural dimensions of the snap-fit ​​block (205) match the structural dimensions of the snap-fit ​​groove (206), and the snap-fit ​​block (205) and the snap-fit ​​groove (206) are snap-fitted and installed; the rear plane of the snap-fit ​​block (205) is fixedly connected to the tempered glass body (1) by an adhesive.

2. The tempered glass with a protective layer according to claim 1, characterized in that: An edge notch (203) is provided at each of the six edge angles of the front end surface of the transparent protective block (201), and the inclined end surface of the edge notch (203) is arranged at a thirty-five degree angle with the front end surface of the transparent protective block (201).

3. The tempered glass with a protective layer according to claim 2, characterized in that: A slot (204) is provided at the center of the inclined end surface of each of the six edge notches (203). The slot (204) is a circular slot structure, and the slot (204) is perpendicular to the inclined end surface of the edge notch (203).

4. The tempered glass with a protective layer according to claim 3, characterized in that: A hollow cavity (207) is provided inside the transparent protective block (201), and the interior of the hollow cavity (207) can be filled with sound-absorbing cotton or aerogel; a protective film (202) is bonded to the transparent protective block (201), and the protective film (202) can be any one of an anti-ultraviolet film, an electromagnetic shielding film, and an anti-glare film.

5. The tempered glass with a protective layer according to claim 4, characterized in that: The transparent protective block (201), the protective film (202), the edge notch (203), the slot (204), the snap-fit ​​block (205), the snap-fit ​​slot (206), and the hollow cavity (207) together constitute a set of modular protective layers (2). The number of modular protective layers (2) is not limited to one set, and the number can be increased or decreased.