High-strength tempered glass
By designing a combination of fixing frame, slide rod, buffer slide, buffer spring and damping pad in tempered glass, the problem of easy breakage and low assembly efficiency during impact is solved, and the effect of high strength and rapid assembly is achieved.
Patent Information
- Application Number
- CN202421977617.4
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-08-15
- Publication Date
- 2025-05-27
- Estimated Expiration
- 2034-08-15
AI Technical Summary
Tempered glass is prone to breaking when impacted and has low assembly efficiency.
A high-strength tempered glass is designed, including a fixture, slider, cushioning slide, cushioning spring and damping pad, providing elastic cushioning through sliding of the cushioning slide and compression of the cushioning spring, and reducing the jumping of the spring through the damping pad, while rotating parts are provided on the assembly sleeve for rapid assembly.
It improves the durable strength of tempered glass, can provide cushioning when impacted, and achieves fast and tight assembly through flexible assembly sleeves, improving assembly efficiency.
Smart Images

Figure CN222910647U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to the technical field of glass, and more specifically, to a high-strength tempered glass. Background Art
[0002] With the continuous updating of product types and processing technology, the application scope of tempered glass has also become wider. From ordinary glass coffee tables, interior decoration, doors and windows, to refrigerators, electronic screens, automotive glass, and glass for building curtain walls. Tempered glass is divided into chemical tempering and physical tempering. Chemical tempering of glass is tempered by ion exchange. The principle is to place the glass in molten alkali salt so that the ions in the surface layer of the glass are exchanged with the ions in the molten salt. Due to the volume change after the exchange, compressive stress is formed on both surfaces of the glass and tensile stress is formed inside, thereby achieving the effect of improving the strength of the glass. Chemically tempered glass is widely used in glasses, aviation industry and electronics industry. This kind of glass can also be used as a polycarbonate protective layer, which is the tempered film for mobile phones we usually use. Physical tempered glass is also called quenched tempered glass. The physical tempering of glass is obtained by cutting ordinary annealed glass into the required size, then heating it to about 700 degrees close to the softening point, and then cooling it quickly and evenly (depending on the thickness of the glass, the time for heating and cooling is different). After tempering, uniform compressive stress is formed on the surface of the glass, while tensile stress is formed inside, which improves the bending and impact resistance of the glass. Its strength is about four times that of ordinary annealed glass.
[0003] At present, the connection of tempered glass is relatively fixed when installed in a specified position. Although the fixing method meets the position reliability, its buffering performance after installation is insufficient and it is very easy to break when impacted. At the same time, the fixed connection method of tempered glass has the problem of low assembly efficiency. Utility Model Content
[0004] In order to overcome the above defects of the prior art, the utility model provides a high-strength tempered glass. The technical problem to be solved by the utility model is that the tempered glass is very easy to break when impacted, and there is also a problem of low assembly efficiency.
[0005] To achieve the above-mentioned purpose, the utility model provides the following technical solutions: a high-strength tempered glass, comprising a fixing frame and a tempered glass plate, the number of the fixing frames is four, the inner side of each fixing frame is fixedly connected to a sliding rod, the sliding rod is movably connected to a buffer slide, the sliding rod is sleeved with a pair of buffer springs, the pair of buffer springs arranged on the sliding rod are located on both sides of the buffer slide, the buffer slide is provided with a rotating part, the two buffer slides located above are provided with fasteners for fixing the corresponding rotating parts, and the rotating part is provided with an assembly sleeve for clamping at the corner of the tempered glass plate.
[0006] In a preferred embodiment, a fixing ear is fixedly connected to the fixing frame.
[0007] In a preferred embodiment, damping pads I are fixedly connected to both sides of the buffer sliding seat. The damping pads I are located outside the sliding rod. Damping pads II are fixedly connected to both sides of the inner wall of the fixing frame. The damping pads II are located outside the sliding rod.
[0008] In a preferred embodiment, two ends of the buffer spring respectively correspond to opposite surfaces of the damping pad I and the damping pad II.
[0009] In a preferred embodiment, a guiding rod is fixedly connected to the inside of the fixing frame. The buffer sliding seat is slidably connected to the guiding rod.
[0010] In a preferred embodiment, a limiting rotating groove is formed in the buffer sliding seat. The rotating member includes a rotating ring rotatably connected to the inside of the sliding rod and a fixing rod fixedly connected to the rotating ring. The rotating ring is located in the limiting rotating groove, and the fixing rod is movably arranged in the limiting rotating groove.
[0011] In a preferred embodiment, a clamping groove is formed in the assembly clamping sleeve. A tensioning pad is arranged on the inner wall of the clamping groove. The toughened glass plate is located in the clamping groove, and the tensioning pad is in close contact with the toughened glass plate.
[0012] In a preferred embodiment, the fastening member includes a fastening bolt, and the fastening bolt is sequentially threadedly connected to the buffer sliding seat and the fixing rod.
[0013] Technical effects and advantages of the present utility model:
[0014] 1. For a high-strength toughened glass of the present utility model, the buffer sliding seat is slidably arranged on the sliding rod. The buffer spring provides elastic buffering for the force-bearing movement of the buffer sliding seat. At the same time, the damping pads buffer the jump of the spring to unload the force. In this way, the toughened glass plate indirectly connected to the buffer sliding seat can obtain buffering performance, so that the toughened glass can achieve a buffering effect when impacted, and the durability of the toughened glass is improved.
[0015] 2. For a high-strength toughened glass of the present utility model, a rotating member is arranged on the buffer sliding seat, and an assembly clamping sleeve is arranged on the rotating member. The rotating member can flexibly control the use angle of the assembly clamping sleeve. In this way, the assembly clamping sleeve can be quickly and tightly clamped at the corner of the toughened glass plate to achieve the effect of quickly assembling the toughened glass plate. Description of the Drawings
[0016] To more clearly illustrate the embodiments of the present invention or the technical solutions in the prior art, the following will briefly introduce the drawings required for use in the description of the embodiments or the prior art. Obviously, the drawings described below are merely exemplary, and for those of ordinary skill in the art, without creative efforts, other implementation drawings can also be obtained by extending the provided drawings.
[0017] Figure 1 It is a schematic structural diagram of a high-strength tempered glass of the present invention.
[0018] Figure 2 For the present invention Figure 1 A partial schematic diagram of the position at the corner in the present invention.
[0019] Figure 3 For the present invention Figure 2 A disassembled view of the present invention without the tempered glass plate and the assembly card sleeve.
[0020] Figure 4 It is a schematic structural diagram of the assembly card sleeve of the present invention.
[0021] The reference numerals are: 1, fixed frame; 2, sliding rod; 3, buffer sliding seat; 4, buffer spring; 5, rotating member; 51, rotating ring; 52, fixed rod; 6, assembly card sleeve; 61, card slot; 62, tensioning pad; 7, tempered glass plate; 8, fixed ear; 9, guide rod; 10, damping pad one; 11, damping pad two; 12, limiting rotating groove; 13, fastening bolt. Specific embodiments
[0022] The following specific embodiments illustrate the embodiments of the present invention. Those familiar with this technology can easily understand other advantages and effects of the present invention from the content disclosed in this specification. Obviously, the described embodiments are part of the embodiments of the present invention, rather than all of the embodiments. Based on the embodiments in the present invention, all other embodiments obtained by those of ordinary skill in the art without creative efforts fall within the scope of protection of the present invention.
[0023] With reference to Figures 1-4, the utility model provides a high-strength tempered glass, which includes a fixing frame 1 and a tempered glass plate 7. The tempered glass plate 7 belongs to safety glass and is widely used in places with high mechanical strength and safety. The number of fixing frames 1 is four. A sliding rod 2 is fixedly connected to the inner side of each fixing frame 1. A buffer sliding seat 3 is movably connected to the sliding rod 2. The buffer sliding seat 3 is slidably connected to the sliding rod 2 to facilitate the buffered movement of the buffer sliding seat 3. A pair of buffer springs 4 are sleeved on the sliding rod 2. The pair of buffer springs 4 arranged on the sliding rod 2 are located on both sides of the buffer sliding seat 3. A rotating member 5 is arranged on the buffer sliding seat 3. Fasteners for fixing the corresponding rotating members 5 are arranged on the two buffer sliding seats 3 located above. An assembly card sleeve 6 for clamping the corner of the tempered glass plate 7 is arranged on the rotating member 5.
[0024] A fixing ear 8 is fixedly connected to the fixing frame 1. The fixing ear 8 can fix the fixing frame 1 on the installation surface of the designated installation area of the tempered glass plate 7.
[0025] Damping pads I 10 are fixedly connected to both sides of the buffer sliding seat 3. The damping pads I 10 are located outside the sliding rod 2. Damping pads II 11 are fixedly connected to both sides of the inner wall of the fixing frame 1. The damping pads II 11 are located outside the sliding rod 2. The settings of the damping pads I 10 and the damping pads II 11 can reduce the jumping degree of the buffer spring 4 when the buffer spring 4 is compressed and deformed. The damping pads I 10 and the damping pads II 11 act on both ends of the buffer spring 4, so as to reduce the frequent jitter of the buffer of the buffer sliding seat 3.
[0026] Specifically, after the tempered glass plate 7 is indirectly installed on the buffer sliding seat 3, when the tempered glass plate 7 is subjected to an external impact at the use position, the impact force can be transmitted to the buffer sliding seat 3. In this way, the buffer sliding seat 3 can slide adaptively on the sliding rod 2, and at the same time compress the two buffer springs 4. The buffer springs 4 buffer the impact force, and the damping pads can suppress the jumping degree of the buffer springs 4. In this way, the impact force received by the tempered glass plate 7 can be maximally reduced, so as to improve the use strength of the tempered glass plate 7.
[0027] A guiding rod 9 is fixedly connected to the inner side of the fixing frame 1. The buffer sliding seat 3 is slidably connected to the guiding rod 9. When the buffer sliding seat 3 slides on the guiding rod 9, the guiding rod 9 can improve the smoothness of the linear movement of the buffer sliding seat 3 and ensure the movement stability.
[0028] A limiting rotating groove 12 is formed on the buffer sliding seat 3. The rotating member 5 includes a rotating ring 51 rotatably connected to the inner side of the sliding rod 2 and a fixing rod 52 fixedly connected to the rotating ring 51. The rotating ring 51 is located in the limiting rotating groove 12, and the fixing rod 52 is movably arranged in the limiting rotating groove 12. In this application, the rotating ring 51 can be rotatably connected to the limiting rotating groove 12 on the buffer sliding seat 3 through a bearing, and the sliding rod 2 passes through the rotating ring 51.
[0029] The assembly ferrule 6 is provided with a clamping groove 61, the clamping groove 61 is adapted to the shape of the corner of the tempered glass plate 7, a tension pad 62 is arranged on the inner wall of the clamping groove 61, the tempered glass plate 7 is located in the clamping groove 61, and the tension pad 62 is in close contact with the tempered glass plate 7. The assembly ferrule 6 is clamped into the corner of the tempered glass plate 7 by using the clamping groove 61. The tension pad 62 can be made of rubber material, which can improve the tightness of the tempered glass plate 7 in the clamping groove 61, so as to stabilize the assembly position of the assembly ferrule 6. In this application, four assembly ferrules 6 are provided, and the corresponding clamping grooves 61 on the four assembly ferrules 6 are arranged in a pairwise opposite manner.
[0030] The fastener includes a fastening bolt 13, and the fastening bolt 13 is sequentially threadedly connected to the buffer sliding seat 3 and the fixing rod 52. The fastening bolt 13 is used to lock the rotation path of the fixing rod 52.
[0031] Specifically, after the fixing frame 1 is fixed, the two lower assembly ferrules 6 can be rotated through the rotating ring 51 to the position facing the tempered glass plate 7 at this time. Due to the size of the limiting rotating groove 12, the fixing rod 52 can be supported at the end of the limiting rotating groove 12 and is in a horizontal setting state. In this way, the clamping groove 61 in the assembly ferrule 6 can be horizontally set, and the tempered glass plate 7 can assemble the two bottom corners on the two lower assembly ferrules 6. Then, the two rotating members 5 above can be rotated. The rotating member 5 rotates the assembly ferrule 6 to the corner above the tempered glass plate 7 and realizes clamping. In this way, the four corners of the tempered glass plate 7 are limited. Subsequently, the fixing rod 52 is locked to the buffer sliding seat 3 through the fastening bolt 13, so as to prevent the tempered glass plate 7 from coming out, thereby stabilizing the fixing position of the tempered glass plate 7; similarly, when the tempered glass plate 7 needs to be disassembled, by releasing the fastening bolt 13 and opening the upper assembly ferrule 6 outward.
Claims
1. A high-strength tempered glass, comprising a fixing frame (1) and a tempered glass plate (7), wherein the number of the fixing frames (1) is four, and wherein: The inner side of each fixing frame (1) is fixedly connected to a slide bar (2), and a buffer slide seat (3) is movably connected to the slide bar (2). A pair of buffer springs (4) are sleeved on the slide bar (2), and the pair of buffer springs (4) arranged on the slide bar (2) are located on both sides of the buffer slide seat (3). A rotating member (5) is arranged on the buffer slide seat (3), and fasteners for fixing the corresponding rotating members (5) are arranged on the two upper buffer slide seats (3), and an assembly sleeve (6) for clamping the corner of the tempered glass plate (7) is arranged on the rotating member (5).
2. The high-strength tempered glass according to claim 1, characterized in that: A fixing ear (8) is fixedly connected to the fixing frame (1).
3. The high-strength tempered glass according to claim 1, characterized in that: Both sides of the buffer slide (3) are fixedly connected with damping pads 1 (10), and the damping pads 1 (10) are located on the outside of the slide bar (2). Both sides of the inner wall of the fixed frame (1) are fixedly connected with damping pads 2 (11), and the damping pads 2 (11) are located on the outside of the slide bar (2).
4. The high-strength tempered glass according to claim 3, characterized in that: The two ends of the buffer spring (4) correspond to the opposite surfaces of the damping pad 1 (10) and the damping pad 2 (11), respectively.
5. The high-strength tempered glass according to claim 1, characterized in that: A guide rod (9) is fixedly connected to the inner side of the fixing frame (1), and the buffer slide (3) is slidably connected to the guide rod (9).
6. The high-strength tempered glass according to claim 1, characterized in that: The buffer slide seat (3) is provided with a limited rotation groove (12), and the rotating member (5) comprises a rotating ring (51) rotatably connected to the inner side of the slide rod (2) and a fixed rod (52) fixedly connected to the rotating ring (51), the rotating ring (51) is located in the limited rotation groove (12), and the fixed rod (52) is movably arranged in the limited rotation groove (12).
7. The high-strength tempered glass according to claim 1, characterized in that: The assembly sleeve (6) is provided with a slot (61), an inner wall of the slot (61) is provided with a tension pad (62), the tempered glass plate (7) is located in the slot (61), and the tension pad (62) is in close contact with the tempered glass plate (7).
8. The high-strength tempered glass according to claim 6, characterized in that: The fastener comprises a fastening bolt (13), wherein the fastening bolt (13) is threadedly connected to the buffer slide seat (3) and the fixing rod (52) in sequence.