Flexible glass fence with good buffering performance

By installing rotating rollers and a buffer layer on the railing body, the impact problem of flexible glass during placement is solved, achieving effective buffer protection and convenient glass handling, and is suitable for flexible glass of various sizes.

CN223822427UActive Publication Date: 2026-01-23FUJIAN RONGBO TECH CO LTD
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Patent Information

Application Number
CN202423298851.7
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-12-30
Publication Date
2026-01-23
Estimated Expiration
2034-12-30

AI Technical Summary

Technical Problem

Flexible glass is easily damaged by impact when placed into the groove of the railing, which affects the speed of picking and placing and increases the defect rate. Existing railings cannot effectively buffer the impact.

Method used

A rotating roller is installed on the supporting base plate of the railing body, and a buffer layer is set between the rotating rollers. The rotating roller is reset by using an elastic element. When the flexible glass is placed, it drives the rotating roller to rotate, and the buffer layer moves to make flexible contact. After being removed, it is reset. Combined with the adjustment and fixing mechanism and the clearance mechanism, the ease of use and applicability are improved.

Benefits of technology

It effectively mitigates the impact force on flexible glass during placement, protects the glass from damage, improves the speed of retrieval and placement, and enhances the applicability of the railing, making it suitable for glass of different sizes.

✦ Generated by Eureka AI based on patent content.

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    Figure CN223822427U_ABST
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Abstract

The utility model relates to a flexible glass fence with good buffering performance, which comprises a fence body formed by main body plate side edge plates in a staggered surrounding mode, a supporting bottom plate and a positioning top plate are arranged on the upper portion and the lower portion of the fence body, and positioning grooves are formed in the inner side walls of the fence body; the buffer mechanism comprises a group of rotating rollers which are rotatably mounted on the two sides of the top of each positioning groove in the supporting bottom plate, the two end parts of each rotating roller are rotatably mounted on the two side edge plates respectively and extend outwards to be sleeved with elastic pieces, and the elastic pieces have the movement tendency of driving the rotating rollers to rotate and reset oppositely; a buffer layer is arranged between the rotating rollers, the two ends of the buffer layer correspondingly wind the rotating rollers on the two sides of the positioning groove upwards, and the tail end of the buffer layer is fixed to the rotating rollers. And when the flexible glass is placed in the middle of the buffer layer, the two rotating rollers are driven to rotate relatively. On the basis that the flexible glass is placed at intervals and stably supported, the impact force generated when the flexible glass is placed can be effectively buffered, and then the flexible glass is protected.
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Description

TECHNICAL FIELD

[0001] The utility model relates to the technical field of flexible glass fence, specifically refers to a flexible glass fence with good buffering performance. BACKGROUND

[0002] Flexible glass is a kind of bendable, very flexible material. Flexible glass, especially flexible glass, not only greatly improves the light transmittance, but also has better wear resistance, surface flatness, good flexibility and high bending characteristics, and is currently mainly used in the screen of folding mobile phones.

[0003] Flexible glass needs to go through the processing technological procedures of thinning, forming, strengthening, cleaning and film coating, and corresponding fences are needed to support flexible glass, and the flexible glass needs to be isolated and fixed while supporting to avoid adjacent two pieces of glass being bonded together, so as to cause the damage of flexible glass. The fence generally includes a frame body, and a plurality of corresponding grooves are arranged on the opposite left and right side surfaces and upper and lower side surfaces of the frame body, and the flexible glass is clamped in the corresponding grooves for isolation and fixation. However, because the flexibility of flexible glass is poor before being strengthened, the flexible glass will have an impact force when being placed into the groove of the lower side plate of the fence, and even if the person is careful or gently holds and places, the flexible glass may be damaged, which not only affects the taking and placing speed of the person, but also may increase the unqualified rate of flexible glass processing, which is very tricky.

[0004] Therefore, the research purpose of the utility model is to design a flexible glass fence with good buffering performance that can effectively buffer the impact force of flexible glass when being placed and protect the flexible glass on the basis of ensuring the interval placement and stable support of flexible glass. CONTENT OF THE UTILITY MODEL

[0005] In view of the technical problems existing in the prior art, the utility model provides a flexible glass fence with good buffering performance, which can effectively solve the technical problems existing in the prior art.

[0006] The technical scheme of the utility model is:

[0007] A flexible glass fence with good buffering performance, comprising:

[0008] The fence body is composed of two main body plates and two side plates, and the bottom and top of the fence body are respectively provided with a support bottom plate and a positioning top plate connecting the two main body plates, the positioning top plate is detachably connected with the main body plate, and the top surface of the support bottom plate, the bottom surface of the positioning top plate and the opposite inner side surface of the side plate are provided with corresponding positioning grooves.

[0009] The buffering mechanism comprises a set of rotating rollers rotatably mounted on both sides of the top of each positioning groove on the supporting bottom plate, both ends of the rotating rollers are rotatably mounted on the two side plates through corresponding bearings respectively, and the rotating rollers are outwardly sleeved with corresponding elastic members, the elastic members have a movement tendency to drive the rotating rollers to rotate in opposite directions; a buffering layer in a V-shaped or U-shaped arrangement is arranged between the rotating rollers, both ends of the buffering layer are correspondingly arranged around the rotating rollers on both sides of the positioning groove, and the end portions of the buffering layer are fixed on the rotating rollers by adhesion; when the flexible glass is placed in the middle of the buffering layer, the two rotating rollers are driven to rotate relatively, and the elastic members are deformed.

[0010] The buffering layer is an elastic felt or a non-woven fabric.

[0011] The elastic member is a torsion spring or a spring, the inner end of the elastic member is fixed on the side plate, and the outer end of the elastic member is fixed on the rotating roller.

[0012] The flexible glass fence further comprises an adjusting and fixing mechanism, the adjusting and fixing mechanism comprises a limiting long hole penetrating and transversely arranged on the main plate, and a bolt knob detachably mounted on the front and rear sidewalls of the positioning top plate by screwing, the screw rod of the bolt knob is inserted into the limiting long hole and screwed with the positioning top plate, and the positioning top plate is horizontally fixed and mounted between the two main plates.

[0013] The flexible glass fence further comprises a yielding mechanism, the end of the limiting long hole is arranged above or outside the side plate, and the yielding mechanism comprises a limiting guide integrally formed and fixed on one side of the top of the main plate, and the limiting guide is provided with an arc-shaped yielding hole in communication with the limiting long hole.

[0014] The limiting guide is arranged in a fan shape or an arc shape, and the outer end of the limiting guide arranged in an arc shape is fixed and mounted by a vertically arranged stand integrally arranged.

[0015] At least two threaded holes are arranged on the front and rear sides of the positioning top plate respectively, the bolt knob comprises a screw rod and a knob, the outer end surface of the screw rod is provided with external threads matched with the threaded holes, and the inner end connected with the knob is arranged in a non-threaded rod shape.

[0016] A plurality of adjusting holes are vertically and communicatively arranged below the limiting long hole in the middle of the main plate, and the adjusting holes are arranged at intervals on the left and right sides.

[0017] The limiting long hole and the arc-shaped yielding hole each comprise an inner hole and an outer hole sleeved and having gradually increased hole diameters, and when the positioning top plate is fixed and mounted, the side wall of the bolt knob is tightly pressed against the side wall connecting the inner hole and the outer hole.

[0018] The utility model discloses a following advantage:

[0019] 1) the utility model increases corresponding buffer mechanism on the support bottom plate of the fence body, namely, corresponding rotating rollers are installed on both sides of the top of each positioning groove, and a buffer layer in V-shaped or U-shaped is arranged between the two rotating rollers, the two ends of the buffer layer are respectively correspondingly arranged around the rotating rollers, and the end parts are fixed on the rotating rollers by sticking, the two end parts of the rotating roller are rotatably installed on the two side edge plates through corresponding bearings, and the rotating rollers are outwardly extended and sleeved with corresponding elastic members, the inner end of the elastic member is fixed on the side edge plate, the outer end of the elastic member is fixed on the rotating roller, and the elastic member has a movement trend of driving the rotating rollers to rotate oppositely and reset. When the flexible glass is placed in the middle of the buffer layer, the two rotating rollers are driven to rotate oppositely, and the buffer layer is driven to limit and move into the positioning groove, so that the flexible glass is in flexible contact when being placed, and then a good buffering effect is achieved, and the adverse effects caused by traditional rigid contact are effectively solved; after the flexible glass is taken out, the rotating rollers oppositely rotate and reset under the elastic force of the elastic members for repeated use, the buffering effect is better than that of directly sticking the buffer layer in the positioning groove, and the practical effect of the utility model is ensured.

[0020] 2) the utility model sets the limiting long hole on the main plate, and the positioning top plate is detachably fixed and installed through the screw knob thread connection mode, the positioning top plate is pushed to the side through the tightening of the screw knob and the setting of the lemon, the limiting guide is integrally formed and fixed on the top of the main plate, the arc-shaped gap hole is arranged on the limiting guide and is communicated with the limiting long hole, then the positioning top plate is rotated along the arc-shaped gap hole until the positioning top plate is arranged in the upright state, and the end position of the limiting long hole is set to ensure that the positioning top plate is arranged above or outside the side edge plate after being rotated and arranged in the upright state, so that the top of the fence body is effectively spaced, and the flexible glass is conveniently taken and placed, finally, the positioning top plate is pushed above the flexible glass in the reverse direction, and the positioning top plate is fixed through the screw knob, so that the positioning top plate does not need to be supported by additional manual operation in the whole operation process, and the use convenience and practicality are improved.

[0021] 3) the utility model sets the multiple adjusting holes which are vertically and communicated with the limiting long hole, so that the fixing height of the positioning top plate can be conveniently adjusted up and down, and then the height of the fence body can be flexibly adjusted, so that the utility model is suitable for the placement of flexible glasses of different sizes, and the application range of the utility model is improved. BRIEF DESCRIPTION OF DRAWINGS

[0022] Figure 1 It is a structural schematic diagram of the utility model.

[0023] Figure 2 It is Figure 1A structural diagram showing the removal of the front main panel and the positioning top panel.

[0024] Figure 3 This is a schematic diagram of the installation of a set of rotating shafts and a buffer layer.

[0025] Figure 4 for Figure 3 A diagram illustrating the usage state when installing flexible glass.

[0026] Figure 5 This is a schematic diagram of the structure of Example 2.

[0027] Figure 6 for Figure 5 A diagram illustrating the usage status.

[0028] In the attached diagram: 1. Main body plate; 2. Side plate; 3. Positioning top plate; 4. Positioning groove; 5. Rotating roller; 6. Bearing; 7. Elastic element; 8. Buffer layer; 9. Bolt knob; 10. Limiting elongated hole; 11. Limiting guide; 12. Arc-shaped clearance hole; 13. Upright rod; 14. Adjustment hole; 15. Inner hole; 16. Outer hole; 17. Supporting base plate; 18. Flexible glass. Detailed Implementation

[0029] To facilitate understanding by those skilled in the art, the structure of this utility model will now be described in further detail with reference to the accompanying drawings:

[0030] Example 1

[0031] refer to Figures 1-4 A flexible glass railing with good cushioning performance, comprising:

[0032] The railing body is composed of two main panels 1 at the front and back and two side panels 2 at the left and right, which are arranged in an alternating manner. The bottom and top of the railing body are respectively provided with a supporting bottom plate 17 and a positioning top plate 3 connecting the two main panels 1. The positioning top plate 3 is detachably connected to the main panel 1. The top surface of the supporting bottom plate 17, the bottom surface of the positioning top plate 3 and the opposite inner surfaces of the side panels 2 are all provided with corresponding positioning grooves 4. When the flexible glass 18 is placed in the railing body, it is locked in the positioning grooves 4.

[0033] The buffer mechanism includes a set of rotating rollers 5 rotatably mounted on both sides of the top of each positioning groove 4 on the support base plate 17. The two ends of the rotating rollers 5 are respectively rotatably mounted on the two side plates 2 through corresponding bearings 6, and corresponding elastic elements 7 are sleeved outward. The elastic elements 7 have a tendency to drive the rotating rollers 5 to rotate and reset in opposite directions. A buffer layer 8 in a V-shape or U-shape is provided between the rotating rollers 5. The two ends of the buffer layer 8 are respectively wound upward around the rotating rollers 5 on both sides of the positioning groove 4, and its ends are fixed to the rotating rollers 5 by adhesive. The bottom of the buffer layer 8 is spaced apart from the bottom of the positioning groove 4. When the flexible glass 18 is placed in the middle of the buffer layer 8, it drives the two rotating rollers 5 to rotate relative to each other, and the elastic elements 7 deform.

[0034] This utility model adds a corresponding buffer mechanism to the supporting base plate 17 of the railing body. Specifically, a corresponding rotating roller 5 is installed on both sides of the top of each positioning groove 4, and a buffer layer 6 arranged in a V-shape or U-shape is set between the two rotating rollers 5. The two ends of the buffer layer 6 are respectively wound around the rotating roller 5 and the ends are fixed to the rotating roller 5 by adhesive. The two ends of the rotating roller 5 are respectively rotatably mounted on the two side plates 2 through corresponding bearings 6, and corresponding elastic members 7 are sleeved outward. The inner end of the elastic member 7 is fixed on the side plate 2, and the outer end of the elastic member 7 is fixed on the rotating roller 5. The elastic member 7 has a tendency to drive the rotating roller 5 to rotate and reset in opposite directions. When the flexible glass 18 is placed in the middle of the buffer layer 6, it drives the two rotating rollers 5 to rotate relative to each other, and drives the buffer layer 6 to move into the positioning groove 4 for a limited position. This makes the flexible glass 18 in flexible contact when placed, thus achieving a good buffering effect and effectively solving the adverse effects of traditional rigid contact. After the flexible glass 18 is removed, the rotating rollers 5 rotate in opposite directions under the elastic force of the elastic element 7 to reset for reuse. This provides a better buffering effect than directly pasting the buffer layer into the positioning groove 4, ensuring the practical effect of this utility model.

[0035] The buffer layer 8 is an elastic felt or non-woven fabric.

[0036] The elastic element 7 is a torsion spring or a spring. The inner end of the elastic element 7 is fixed on the side plate 2, and its outer end is fixed on the rotating roller 5.

[0037] The flexible glass railing also includes an adjustment and fixing mechanism, which includes a limiting elongated hole 10 that passes through and is horizontally arranged on the main body plate 1, and a bolt knob 9 that is detachably installed on the front and rear side walls of the positioning top plate 3 by means of threaded connection. The bolt knob 9 is screwed into the limiting elongated hole 10 and screwed to the positioning top plate 3, thereby horizontally fixing the positioning top plate 3 between the two main body plates 1.

[0038] The positioning top plate 3 has at least two threaded holes spaced apart on its front and rear sides. The bolt knob 9 includes a screw part and a knob part. The outer end surface of the screw part is provided with an external thread that matches the threaded hole. Its inner end, which connects to the knob part, is provided in a non-threaded rod shape.

[0039] The main body plate 1 has a plurality of adjustment holes 14 vertically connected to the middle part below the limiting elongated hole 10, and the adjustment holes 14 are spaced apart on the left and right.

[0040] This utility model has multiple adjustment holes vertically and interconnected below the limiting elongated hole 10, which allows for convenient up-and-down adjustment of the fixed height of the positioning top plate 3, thereby facilitating flexible adjustment of the height of the railing body to accommodate flexible glass 18 of different sizes and improving the applicability of this utility model.

[0041] The limiting elongated hole 10 includes an inner hole 15 and an outer hole 16 with gradually increasing diameters, which are inner and outer sleeves. When the positioning top plate 3 is fixedly installed, the screw part of the bolt knob 9 passes through the inner hole 15 and is screwed to one side of the positioning top plate 3 until the side wall of the knob part is pressed against the side wall where the inner hole 15 and the outer hole 16 are connected.

[0042] Example 2

[0043] refer to Figures 5-6 The difference between this embodiment and Embodiment 1 is that the flexible glass railing also includes a clearance mechanism. The end of the limiting elongated hole 10 is located directly above or on the outside of the side plate 2. The clearance mechanism includes a limiting guide 11 integrally formed and fixedly installed on one side of the top of the main body plate 1. The limiting guide 11 is provided with an arc-shaped clearance hole 12 that communicates with the limiting elongated hole 10. The arc-shaped clearance hole 12 includes an inner hole 15 and an outer hole 16 with gradually increasing diameters.

[0044] The limiting guide 11 is arranged in a fan shape or an arc shape. The outer end of the limiting guide 11 that is not connected to the main body plate 1 is supported and fixed by an integrally formed upright 13.

[0045] This utility model features a positioning top plate 3 that can be detachably and fixedly installed by setting a limiting elongated hole 10 on the main body plate 1 and connecting it with a bolt and knob 9. By tightening and loosening the bolt and knob 9, the positioning top plate 3 can be easily moved laterally along the limiting elongated hole 10 and pushed to the side. A limiting guide 11 is integrally formed and fixedly installed on the top of the main body plate 1. The limiting guide 11 is provided with an arc-shaped clearance hole 12 that communicates with the limiting elongated hole 10. The positioning top plate 3 can then be rotated along the arc-shaped clearance hole 12 until it is set upright. The end position of the limiting elongated hole 10 is set to ensure that the positioning top plate 3 is placed directly above or outside the side plate 2 after being rotated upright, thus effectively clearing the top of the railing body and facilitating the placement and removal of the flexible glass 18. Finally, the positioning top plate 3 is pushed above the flexible glass 18 in the reverse direction and fixed by tightening the bolt and knob 9. The entire operation process does not require additional manual support for the positioning top plate 3, improving the convenience and practicality of use.

[0046] It should be noted that this embodiment is implemented in the same way as embodiment one in terms of principle and technical effect. For the sake of brevity, any parts not mentioned in this embodiment can be referred to the corresponding content in embodiment one.

[0047] The above description is only a preferred embodiment of the present utility model. It should be noted that for those skilled in the art, several improvements and modifications can be made without departing from the principle of the present utility model, and these improvements and modifications should also be considered within the protection scope of the present utility model.

Claims

1. A flexible glass railing with good cushioning performance, characterized in that, include: The railing body is composed of two main panels (1) at the front and back and two side panels (2) at the left and right, which are arranged in an alternating manner. The bottom and top of the railing body are respectively provided with a supporting bottom plate (17) and a positioning top plate (3) connecting the two main panels (1). The positioning top plate (3) is detachably connected to the main panel (1). The top surface of the supporting bottom plate (17), the bottom surface of the positioning top plate (3) and the opposite inner surfaces of the side panels (2) are all provided with corresponding positioning grooves (4). The buffer mechanism includes a set of rotating rollers (5) rotatably mounted on both sides of the top of each positioning groove (4) on the support base plate (17). The two ends of the rotating rollers (5) are rotatably mounted on the two side plates (2) through corresponding bearings (6), and corresponding elastic elements (7) are sleeved outward. The elastic elements (7) have a tendency to drive the rotating rollers (5) to rotate and reset in opposite directions. A buffer layer (8) in a V-shape or U-shape is provided between the rotating rollers (5). The two ends of the buffer layer (8) are respectively wound around the rotating rollers (5) on both sides of the positioning groove (4) upward, and its end is fixed to the rotating rollers (5) by adhesive. When the flexible glass is placed in the middle of the buffer layer (8), it drives the two rotating rollers (5) to rotate relative to each other, and the elastic elements (7) deform.

2. The flexible glass railing with good cushioning performance according to claim 1, characterized in that, The buffer layer (8) is an elastic felt or non-woven fabric.

3. The flexible glass railing with good cushioning performance according to claim 1, characterized in that, The elastic element (7) is a torsion spring or a spring. The inner end of the elastic element (7) is fixed on the side plate (2), and its outer end is fixed on the rotating roller (5).

4. A flexible glass railing with good cushioning performance according to claim 1, characterized in that, The flexible glass railing also includes an adjustment and fixing mechanism, which includes a limiting elongated hole (10) that passes through and is laterally arranged on the main body plate (1), and a bolt knob (9) that can be detachably installed on the front and rear side walls of the positioning top plate (3) by means of threaded connection. The bolt knob (9) is inserted through the limiting elongated hole (10) and screwed to the positioning top plate (3) to fix the positioning top plate (3) horizontally between the two main body plates (1).

5. A flexible glass railing with good cushioning performance according to claim 4, characterized in that, The flexible glass railing also includes a clearance mechanism. The end of the limiting elongated hole (10) is located directly above or outside the side plate (2). The clearance mechanism includes a limiting guide (11) integrally formed and fixedly installed on one side of the top of the main body plate (1). The limiting guide (11) is provided with an arc-shaped clearance hole (12) that communicates with the limiting elongated hole (10).

6. A flexible glass railing with good cushioning performance according to claim 5, characterized in that, The limiting guide (11) is fan-shaped or arc-shaped. The outer end of the limiting guide (11) that is not connected to the main body plate (1) is supported and fixed by an integrally formed upright (13).

7. A flexible glass railing with good cushioning performance according to claim 4, characterized in that, The positioning top plate (3) has at least two threaded holes spaced apart on its front and rear sides. The bolt knob (9) includes a screw part and a knob part. The outer end surface of the screw part is provided with an external thread that matches the threaded hole. Its inner end, which connects to the knob part, is provided in a non-threaded rod shape.

8. A flexible glass railing with good cushioning performance according to claim 7, characterized in that, The main body plate (1) has a plurality of adjustment holes (14) vertically connected to the middle part below the limiting elongated hole (10), and the adjustment holes (14) are spaced apart on the left and right.

9. A flexible glass railing with good cushioning performance according to claim 5, characterized in that, Both the limiting elongated hole (10) and the arc-shaped clearance hole (12) include an inner hole (15) and an outer hole (16) with gradually increasing diameters, and when the positioning top plate (3) is fixedly installed, the side wall of the bolt knob (9) is pressed tightly against the side wall where the inner hole (15) and the outer hole (16) are connected.