Anti-fracture ring reinforcing structure of gold-clad silver composite layer

By setting triangular symmetrical reinforcing rings and snap-fit ​​mechanisms on the outer surface of the gold-plated silver ring, the problems of traditional reinforcement methods being time-consuming, labor-intensive, and having poor applicability are solved, achieving stable reinforcement of the ring and improving its strength and service life.

CN223958414UActive Publication Date: 2026-03-03XINJIANG CAIXI IND & TRADE DEVELOPMENT CO LTD
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-04-30
Publication Date
2026-03-03

AI Technical Summary

Technical Problem

Traditional ring reinforcement methods are time-consuming and labor-intensive, have poor applicability, and are difficult to achieve a fast and stable reinforcement effect, thus failing to effectively reduce the risk of ring breakage.

Method used

The ring features a gold-plated silver composite layer with three sets of symmetrically arranged triangular reinforcing rings on its outer surface. These rings are combined with a snap-fit ​​mechanism and a reinforcement mechanism, and are reinforced through a sliding groove and threaded connection. The reinforcement plate and springs are used to increase stability, and the snap-fit ​​mechanism ensures accurate reinforcement positioning.

Benefits of technology

Significantly improves the strength and fracture resistance of rings, suitable for rings of different sizes, extends service life, improves the convenience and aesthetics of reinforcement, and prevents damage caused by accidental collisions or long-term wear.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses an anti-fracture ring reinforcing structure with a gold-clad silver composite layer, which belongs to the field of gold-clad silver rings and comprises a ring, the outer surface of the ring is triangularly and symmetrically provided with three groups of reinforcing rings A in a wrapping manner, the edge of the bottom of each reinforcing ring A is fixedly connected with a clamping mechanism, and two sides of the bottom of each reinforcing ring A are fixedly connected with fixing bolts A; through cooperative use of the devices, the reinforcing mechanisms are arranged, three sets of reinforcing mechanisms are additionally arranged outside the ring, the reinforcing mechanisms wrap the ring in a triangular symmetry mode so that stability and firmness can be improved, the reinforcing mechanisms can remarkably improve the strength and fracture resistance of the ring, and particularly, the strength and fracture resistance of the ring can be remarkably improved at the position where stress concentration is prone to occurring in daily use. According to the ring, damage caused by accidental collision or long-term wearing can be prevented, and the service life of the ring can be effectively prolonged by reducing the possibility of deformation, cracks or breakage of the ring circle and reinforcing measures, so that the ring can accompany a wearer for a longer time.
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Description

Technical Field

[0001] This utility model relates to the field of gold-plated silver ring technology, specifically a gold-plated silver composite layer anti-breakage ring reinforcement structure. Background Technology

[0002] Gold-plated silver composite is a process that combines gold with other base metals (in this case, silver). It is commonly used in jewelry making. This technique allows the production of products that look like pure gold but at a lower cost because only the precious metal (such as gold) is used on the outside, while the inside uses relatively inexpensive materials (such as silver). The band, referring to the circular part of a ring, is the basic structure of the ring. It comes into direct contact with the wearer's skin and supports the decorative elements on the ring (such as gemstones, engravings, etc.). The design and materials used in the band have a significant impact on the overall aesthetics, wearing comfort, and durability of the ring.

[0003] Traditional ring reinforcement methods typically involve customizing a metal ring around its exterior to enhance its structural strength. This method is not only time-consuming and labor-intensive, but also requires the design and manufacture of reinforcement components for rings of different sizes, resulting in poor applicability. Furthermore, this approach is difficult to achieve a quick and stable reinforcement effect, and it is not easy to effectively reduce the risk of ring breakage.

[0004] Therefore, this utility model provides a gold-plated silver composite layer anti-breakage ring reinforcement structure to solve the above problems. Utility Model Content

[0005] (a) Technical problems to be solved

[0006] This utility model provides a gold-plated silver composite layer anti-breakage ring reinforcement structure, which aims to solve the problems mentioned in the background art.

[0007] (II) Technical Solution

[0008] To achieve the above objectives, this utility model provides the following technical solution: a gold-plated silver composite layer anti-breakage ring reinforcement structure, comprising a ring, the outer surface of which is triangularly symmetrically arranged with three sets of A-reinforcing rings, a snap-fit ​​mechanism fixedly connected to the bottom edge of the A-reinforcing rings, A-fixing bolts fixedly connected to both sides of the bottom of the A-reinforcing rings, and a B-reinforcing ring threadedly connected to the bottom end of the A-fixing bolts, with sliding grooves formed on the surfaces of the A-reinforcing rings and the B-reinforcing rings, and a reinforcement mechanism slidably connected inside the sliding grooves.

[0009] As a preferred technical solution of this application, the reinforcement mechanism includes a slider, the outer surface of which is slidably connected to the inside of the groove on the surface of the A reinforcement ring, a reinforcement plate is fixedly connected to the upper surface of the slider, and a spring A is fixedly connected to one side of the slider.

[0010] As a preferred technical solution of this application, the reinforcing plate is configured as two sets, one of which has a C reinforcing ring fixedly connected to one side of its bottom, and the other has a D reinforcing ring fixedly connected to one side of its upper surface.

[0011] As a preferred technical solution of this application, threaded holes are provided at both ends of the upper surface of the reinforcing plate, and the internal threads of the threaded holes are connected to the surface of the reinforcing ring A by a B fixing bolt.

[0012] As a preferred technical solution of this application, the snap-fit ​​mechanism includes a connecting rod, a rubber sleeve is fixedly connected to the surface of the connecting rod, a B spring is attached to the bottom of the connecting rod, a sleeve is fixedly connected to one end of the B spring, a snap-fit ​​groove is provided inside the sleeve, and the outer surface of the connecting rod is snapped into the inside of the sleeve by the rubber sleeve, and the snap-fit ​​groove is adapted to the outer ring of the rubber sleeve.

[0013] As a preferred technical solution of this application, rubber pads are fixedly connected to the surfaces of the A, B, C and D reinforcing rings, and anti-slip grooves are formed on the surface of the rubber pads.

[0014] (III) Beneficial Effects

[0015] 1. Through the design of the reinforcement mechanism, three sets of reinforcement mechanisms are added to the outside of the ring. The reinforcement mechanisms are triangularly symmetrically wrapped to increase stability and firmness. The reinforcement mechanism can significantly improve the strength and fracture resistance of the ring, especially in areas that are prone to stress concentration during daily use. It helps to prevent damage caused by accidental collisions or long-term wear. By reducing the possibility of deformation, cracks or breakage of the ring, the reinforcement measures can effectively extend the life of the ring, allowing it to accompany the wearer for a longer time. Moreover, the reinforcement mechanism can be adjusted according to different ring sizes to enhance applicability and improve the convenience of reinforcement. The reinforcement plate can also increase the aesthetics while strengthening the ring.

[0016] 2. Before reinforcing the ring with the setting snap-fit ​​mechanism, the position of the ring to be reinforced needs to be determined. The snap-fit ​​mechanism can quickly snap the reinforcing mechanism to the outside of the ring, avoiding the other end of the reinforcing mechanism from shifting during reinforcement, which would cause the ring to fail to be reinforced, reduce work efficiency, damage the ring, and reduce its service life. Attached Figure Description

[0017] Figure 1 A schematic diagram of the overall structure of the gold-plated silver composite layer anti-fracture reinforced ring;

[0018] Figure 2 A schematic diagram of the reinforcing plate in the fracture-resistant ring reinforcement structure for gold-plated silver composite layers;

[0019] Figure 3 A schematic diagram of the installation of the rubber pad in the anti-fracture structure of the gold-plated silver composite ring;

[0020] Figure 4 A schematic diagram of the installation of spring B in the anti-fracture structure of the gold-plated silver composite ring;

[0021] Figure 5 for Figure 3 Enlarged view of point A in the image.

[0022] In the picture:

[0023] 1. Ring; 2. A. Reinforcing ring; 3. A. Fixing bolt; 4. B. Reinforcing ring; 5. Slider; 6. Reinforcing plate; 7. A. Spring; 8. C. Reinforcing ring; 9. D. Reinforcing ring; 10. B. Fixing bolt; 11. Connecting rod; 12. Rubber sleeve; 13. B. Spring; 14. Sleeve; 15. Rubber pad. Detailed Implementation

[0024] The technical solutions of the present utility model will be clearly and completely described below with reference to the accompanying drawings of the embodiments. Obviously, the described embodiments are only some embodiments of the present utility model, and not all embodiments. Based on the embodiments of the present utility model, all other embodiments obtained by those of ordinary skill in the art without creative effort are within the protection scope of the present utility model.

[0025] This utility model provides a reinforcement structure, such as Figures 1-5 As shown, the gold-plated silver composite anti-breakage ring reinforcement structure includes a ring 1. The outer surface of the ring 1 is triangularly symmetrically arranged with three sets of A-reinforcing rings 2. A snap-fit ​​mechanism is fixedly connected to the bottom edge of the A-reinforcing ring 2. A-fixing bolts 3 are fixedly connected to both sides of the bottom of the A-reinforcing ring 2. A-reinforcing rings 4 are threaded to the bottom end of the A-fixing bolts 3. The surfaces of the A-reinforcing rings 2 and B-reinforcing rings 4 are provided with sliding grooves. The reinforcement mechanism is slidably connected inside the sliding grooves. When reinforcing the ring 1, the reinforcement mechanism is placed outside the ring 1, and then the snap-fit ​​mechanism is used for initial fixation. Finally, the A-fixing bolts 3 are used for reinforcement, thereby completing the reinforcement of the ring 1 and achieving the effect of preventing breakage.

[0026] The reinforcement mechanism includes a slider 5, the outer surface of which is slidably connected to the inside of the groove on the surface of the reinforcement ring 2 (A). A reinforcement plate 6 is fixedly connected to the upper surface of the slider 5, and a spring 7 (A) is fixedly connected to one side of the slider 5. Three sets of reinforcement mechanisms are added to the outside of the ring band 1. The reinforcement mechanisms are triangularly symmetrically wrapped to increase stability and firmness. The reinforcement mechanisms can significantly improve the strength and fracture resistance of the ring band 1, especially in areas that are prone to stress concentration during daily use. This helps to prevent damage caused by accidental collisions or long-term wear. By reducing the possibility of deformation, cracks or breakage of the ring band 1, the reinforcement measures can effectively extend the service life of the ring, allowing it to accompany the wearer for a longer time. Moreover, the reinforcement mechanism can be adjusted according to different sizes of the ring band 1, enhancing applicability and improving the convenience of reinforcement.

[0027] The reinforcing plate 6 is set in two sets. One of the reinforcing plates 6 has a C reinforcing ring 8 fixedly connected to one side of its bottom, and the other has a D reinforcing ring 9 fixedly connected to one side of its upper surface.

[0028] Both ends of the upper surface of the reinforcing plate 6 are provided with threaded holes. The internal threads of the threaded holes are threaded to the surface of the reinforcing ring 2 through the B fixing bolt 10. The A fixing bolt 3 is unscrewed from the upper surface of the A reinforcing ring 2, and the A reinforcing ring 2 and the C reinforcing ring 8 are reinforced and connected by the A fixing bolt 3. Similarly, the B reinforcing ring 4 and the D reinforcing ring 9 are reinforced and connected, thereby completing the reinforcement of the ring 1 and preventing the ring 1 from breaking.

[0029] The snap-fit ​​mechanism includes a connecting rod 11, a rubber sleeve 12 fixedly connected to the surface of the connecting rod 11, a B spring 13 overlapping the bottom of the connecting rod 11, a sleeve 14 fixedly connected to one end of the B spring 13, a slot is provided inside the sleeve 14, the outer surface of the connecting rod 11 is snapped into the inside of the sleeve 14 through the rubber sleeve 12, the slot is adapted to the outer ring of the rubber sleeve 12. Before using the reinforcement mechanism to reinforce the ring 1, the reinforcement position of the ring 1 needs to be determined. The snap-fit ​​mechanism can quickly snap the reinforcement mechanism into the outside of the ring 1, avoiding the other end of the reinforcement mechanism from shifting during reinforcement, which would cause the ring 1 to fail to be reinforced, reduce work efficiency, damage the ring 1, and reduce the service life of the ring 1.

[0030] Rubber pads 15 are fixedly connected to the surfaces of reinforcing rings A 2, B 4, C 8, and D 9. The surface of the rubber pads 15 has anti-slip grooves. When the reinforcing rings A 2, B 4, C 8, and D 9 are in close contact with the ring band 1, the rubber pads 15 are used to increase protection and reduce wear on the ring band 1, while also increasing the anti-slip effect. This prevents the reinforcing mechanism from sliding outside the ring band 1 during wear, thus affecting the wearer's comfort.

[0031] Specifically, when reinforcement of the ring 1 is required, the reinforcing plate 6 is placed on top of the ring 1. Based on the ring 1's thickness, reinforcing rings A 2 and B 4 are simultaneously pressed inwards. During this pressing, the slider 5 slides within the groove, compressing spring A 7, ensuring that reinforcing rings A 2 and B 4 are tightly fitted to the outside of the ring 1. After adjusting to the appropriate size, the reinforcing plate 6 is fixed to reinforcing rings A 2 and B 4 using fixing bolt B 10. Then, the sleeve 14 on reinforcing ring C 8 is fitted onto the connecting rod 11 at the bottom of reinforcing ring A 2, using the rubber sleeve 12 on the connecting rod 11 for engagement. Based on the ring 1's thickness, spring B 13 is compressed using the connecting rod 11, engaging the rubber sleeve 12 within the appropriate slot of the sleeve 14, facilitating the... The reinforcing plate 6 is initially snapped in place to prevent displacement during subsequent reinforcement, which could lead to reinforcement failure of the ring 1, affecting the reinforcement effect and causing damage to the ring 1. Then, the A fixing bolt 3 is unscrewed from the upper surface of the A reinforcing ring 2, and the A reinforcing ring 2 and C reinforcing ring 8 are reinforced and connected using the A fixing bolt 3. Similarly, the B reinforcing ring 4 and D reinforcing ring 9 are reinforced and connected, thus completing the reinforcement of the ring 1 and preventing it from breaking. Subsequently, when the A reinforcing ring 2, B reinforcing ring 4, C reinforcing ring 8 and D reinforcing ring 9 are in close contact with the ring 1, rubber pads 15 are used to increase protection and reduce wear on the ring 1 while increasing the anti-slip effect, preventing the reinforcement mechanism from sliding outside the ring 1 during wear and affecting the wearer's comfort.

[0032] The above description is only a preferred embodiment of the present utility model, but the protection scope of the present utility model is not limited thereto. Any equivalent substitutions or changes made by those skilled in the art within the technical scope disclosed in the present utility model, based on the technical solution and the inventive concept of the present utility model, should be included within the protection scope of the present utility model.

Claims

1. A gold-plated silver composite layer anti-breakage ring reinforcement structure, comprising a ring (1), characterized in that: The outer surface of the ring (1) is triangularly symmetrically arranged with three sets of A reinforcing rings (2) wrapped around it. A snap-fit ​​mechanism is fixedly connected to the bottom edge of the A reinforcing ring (2). A fixing bolt (3) is fixedly connected to both sides of the bottom of the A reinforcing ring (2). A B reinforcing ring (4) is threaded to the bottom end of the A fixing bolt (3). The surfaces of the A reinforcing ring (2) and the B reinforcing ring (4) are provided with grooves. A reinforcing mechanism is slidably connected inside the grooves.

2. The gold-plated silver composite layer anti-fracture ring reinforcement structure according to claim 1, characterized in that: The reinforcement mechanism includes a slider (5), the outer surface of which is slidably connected to the inside of the groove on the surface of the A reinforcement ring (2), a reinforcement plate (6) is fixedly connected to the upper surface of the slider (5), and a spring (7) is fixedly connected to one side of the slider (5).

3. The gold-plated silver composite layer anti-fracture ring reinforcement structure according to claim 2, characterized in that: The reinforcing plate (6) is configured as two sets, one of which has a C reinforcing ring (8) fixedly connected to one side of the bottom of the reinforcing plate (6), and the other has a D reinforcing ring (9) fixedly connected to one side of the upper surface of the reinforcing plate (6).

4. The gold-plated silver composite layer anti-fracture ring reinforcement structure according to claim 2, characterized in that: Both ends of the upper surface of the reinforcing plate (6) are provided with threaded holes, and the internal threads of the threaded holes are threaded to the surface of the reinforcing ring (2) through the B fixing bolt (10).

5. The gold-plated silver composite layer anti-fracture ring reinforcement structure according to claim 1, characterized in that: The snap-fit ​​mechanism includes a connecting rod (11), a rubber sleeve (12) is fixedly connected to the surface of the connecting rod (11), a B spring (13) is attached to the bottom of the connecting rod (11), a sleeve (14) is fixedly connected to one end of the B spring (13), a slot is provided inside the sleeve (14), the outer surface of the connecting rod (11) is snapped into the inside of the sleeve (14) by the rubber sleeve (12), and the slot is adapted to the outer ring of the rubber sleeve (12).

6. The gold-plated silver composite layer anti-fracture ring reinforcement structure according to claim 3, characterized in that: The surfaces of the A reinforcing ring (2), B reinforcing ring (4), C reinforcing ring (8) and D reinforcing ring (9) are all fixedly connected with rubber pads (15), and the surface of the rubber pads (15) is provided with anti-slip grooves.