Forked resonance source finger ring
By designing a forked resonance source ring, combining a precious metal fork with a rotating jeweled sphere structure, the problem of uniformity in jewelry is solved, achieving a unique visual and auditory experience and satisfying users' needs for diversity and personalization.
Patent Information
- Application Number
- CN202422049497.8
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-08-23
- Publication Date
- 2025-12-02
- Estimated Expiration
- 2034-08-23
AI Technical Summary
Existing jewelry lacks dynamic and auditory interaction, has limited functionality, and fails to meet users' needs for diversity and personalization.
Design a bifurcated resonant ring. By setting a precious metal bifurcation on the upper center line of the ring and setting a hollow structure in the lower part of the jewel sphere, a sound effect is produced by the rotation of the jewel sphere and the activation of the precious metal spring plate. At the same time, an information collection block is set in the hollow part of the lower center line of the ring to achieve a unique visual and auditory experience.
It has achieved diversity and richness in jewelry, improved wearing comfort and artistry, and has personalized customization and anti-counterfeiting functions, filling a technological gap in the jewelry industry.
Smart Images

Figure CN223614292U_ABST
Abstract
Description
Technical Field
[0001] This utility model belongs to, but is not limited to, the field of jewelry art technology, and particularly relates to a forked resonance source ring. Background Technology
[0002] Rings are ornaments worn on the fingers. Currently, jewelry products on the market prioritize form over meaning, often offering limited functionality, disorganized combinations, and a lack of dynamism and auditory interaction. This significantly hinders the development of diverse, rich, and unified forms and content in jewelry. Therefore, designing high-quality art jewelry that explores more formal patterns and combines diverse elements with rich content has become a crucial technical challenge that urgently needs to be addressed and overcome by those in the field. Utility Model Content
[0003] To address the problems existing in the prior art, this utility model provides a forked resonance source ring.
[0004] This utility model is implemented as follows: a forked resonance source ring includes a ring, with a precious metal fork welded to the upper center line and a jeweled rotatable sphere fixing groove at the end; a hollow inlaid small rotatable jeweled sphere is provided at the lower center line of the ring, which is fixed in the lower hollow inner wall by tapping, squeezing, and snapping, leaving space.
[0005] Furthermore, the ring is a closed ring with a solid wall structure.
[0006] Furthermore, the finger ring can be adjusted in width, thickness, and size according to the user's finger comfort.
[0007] Furthermore, the ring can be subjected to high polishing, wire drawing, gold inlay, or sandblasting processes.
[0008] Furthermore, the ring can be engraved with text, trademarks, and inlaid with jewelry.
[0009] Furthermore, an information block code is provided on the right side of the hollow jewelry sphere at the lower center of the ring, used to record information about the person who customized the item and the company, as well as for anti-counterfeiting purposes.
[0010] Furthermore, the ring material is gold, 18K gold, silver, palladium, and six group platinum precious metals, as well as other alloys.
[0011] Based on the above technical solutions and the technical problems solved, the advantages and positive effects of the technical solution to be protected by this utility model are as follows:
[0012] First, this utility model effectively solves the problem of strong discomfort caused by the gaps between fingers when wearing multiple rings of jewelry and art jewelry by adopting a left and right precious metal bifurcation technology on the upper center line of the ring. It obviously realizes the technical problem of presenting the function of wearing multiple fingers with one ring.
[0013] This invention utilizes a small sphere structure added to the lower part of the jewelry sphere gear structure, and a hollow, through-hole fixing method with a first precious metal fixing body welded to the bifurcation point of the upper part of the ring. This allows the entire upper part of the ring to rotate the jewelry sphere gear, triggering the precious metal spring sheet in the groove to produce a sound.
[0014] The design of this utility model, with a hollow inlaid rotating jewelry sphere in the lower part of the ring and the orderly arrangement of various structures, highlights the overall functional diversity, richness of content, different experiences, and harmonious aesthetic relationship between the upper and lower parts of the ring from both structural and visual perspectives.
[0015] Secondly, as supplementary evidence of the inventive step of the claims of this utility model, it is also reflected in the following important aspects:
[0016] (1) The expected benefits and commercial value of the technical solution of this utility model after transformation are as follows:
[0017] This utility model features a single ring that can be worn on multiple fingers to create an artistic effect, greatly reducing the discomfort caused by wearing multiple rings. It also significantly enhances the versatility of its functions and the richness of its content, satisfying users' pursuit of high-quality, personalized jewelry art pieces.
[0018] (2) The technical solution of this utility model fills a technical gap in the industry both domestically and internationally:
[0019] This utility model features a ring with a welded precious metal bifurcation along the upper center line and a rotatable jewelry fixing groove at the end. The innovative technology of fixing the lower structure of the rotatable jewelry ball to the inner wall of the groove through hammering, squeezing, and fastening is the first of its kind in the jewelry industry.
[0020] This invention adds a small sphere structure to the lower part of the jewelry sphere gear structure, and fixes the ring by welding a first precious metal fixing body at the bifurcation point of the upper center line. The entire upper part of the ring realizes the rotation of the jewelry sphere gear, which triggers the precious metal spring sheet in the groove to produce a sound function.
[0021] (3) The technical solution of this utility model overcomes technical bias:
[0022] The technology of this utility model, through the regular and orderly combination of various structures and the information collection block code set on the right side of the hollow inlaid rotating groove at the lower center of the ring, can record the user's thoughts and wishes according to the user's requirements, providing a new direction for the development of diversity and practical functionality in jewelry art. Attached Figure Description
[0023] Figure 1 This is a front view of the bifurcated resonance source ring provided in this embodiment of the utility model;
[0024] Figure 2 This is a right view provided in an embodiment of the present utility model;
[0025] Figure 3 This is a top view provided in an embodiment of the present utility model;
[0026] Figure 4 This is a rear view provided in an embodiment of the present utility model;
[0027] Figure 5 This is a left view provided in an embodiment of the present utility model.
[0028] Figure 6 This is a lower view provided in an embodiment of the present utility model;
[0029] Figure 7 This is a perspective view provided by an embodiment of the present utility model;
[0030] Figure 8 This is a frontal disassembly view provided in an embodiment of this utility model;
[0031] Figure 9 This is a three-dimensional disassembled view provided in the embodiment of this utility model;
[0032] In the diagram: 1. Ring; 2. Bifurcated precious metal body; 3. Hollow precious metal fixing body in the center of the bifurcation; 4. First recessed gear fixing groove; 5. Fixing groove at the end of the bifurcation; 6. Precious metal spring sheet; 6b. Bottom of the gear rotation groove; 7. Lower spherical structure of the rotatable gear at the top of the ring.
[0033] 7b. Gear rotation groove inner wall bottom centerline through; 8. Jewelry rotatable sphere at the end of the left and right forks; 8b. Jewelry fixing groove at the end of the left and right forks; 9. Hollow rotatable jewel sphere in the lower part of the ring; 9b. Hollow rotatable jewel sphere fixing groove in the lower part of the ring; 10. Precious metal fixing rivet; 10b. Precious metal spring clip fixing hole; 11. Information collection block code. Detailed Implementation
[0034] To make the objectives, technical solutions, and advantages of this utility model clearer, the following detailed description is provided in conjunction with embodiments. It should be understood that the specific embodiments described herein are merely illustrative and not intended to limit the scope of this utility model.
[0035] This utility model relates to a ring with a resonance effect. Its structure is complex but orderly and has multiple functions. Specifically, it includes a ring and a variety of movable parts. The design purpose is to produce a unique visual, auditory and tactile experience through the rotation of the jewelry ball and the resonance effect of the internal structure.
[0036] The main body of ring 1 is made of precious metals such as gold, 18K gold, platinum, palladium, or silver. The ring body can undergo various surface treatments, such as polishing, brushing, gold inlay, jewel setting, or engraving of logos and text, to enhance its aesthetics and value.
[0037] The upper part of the ring has a precious metal fork 2 welded to the center line, and each end is provided with a jeweled rotating fixing groove 8b. The jeweled rotating ball 8 is installed inside these grooves and is fixed by tapping, squeezing and snapping, while also leaving a certain amount of room for movement so that it can produce a rotating effect when the finger is rotated.
[0038] A hollow precious metal fixing body 3 is welded at the bifurcation point of the upper center line of the ring, and a recessed gear rotating groove 4 is set on its upper part. A precious metal rivet 10 is welded and fixed to the edge of the groove through the center line. The precious metal spring clip hole 10b is fixed to the precious metal rivet 10 by welding. The lower part of the jewel gear rotatable ball 7 is designed with a spherical structure, which is fixed to the lower part of the groove by the hollow through-hole method of the bottom center line. The jewel gear structure is fixed to the inner wall of the groove by tapping, squeezing and snapping, and leaving space to ensure that it will not get stuck when rotating. The rotation speed of the jewel ball is controlled by finger movements and at the same time touches the spring clip at the bottom of the gear rotating groove, producing a regular sound.
[0039] The lower part of the ring features another hollow structure with a central axis, housing a mounting groove 9b for a rotatable, hollow jewel sphere. The jewel sphere 9 is also fixed within this groove, maintaining adequate space for rotation. Interacting with finger movements allows the jewel sphere to rotate freely within the groove, creating a unique resonant interactive effect.
[0040] The ring features an internal cavity and multiple rotatable jewel spheres. As the finger moves, the jewel spheres rotate within fixed grooves, creating different and unique resonance effects. Furthermore, a data entry code is located at the lower center of the ring, capable of recording the user's personal information or identifier, giving the ring not only a decorative function but also a degree of practicality.
[0041] This ring, through its regular and orderly structural design and exquisite material selection, combined with a rotatable jewel sphere and hollow setting design, produces a unique visual, auditory and manual dynamic effect during wear. Its working principle mainly relies on the coordinated action of its internal components. The manual rotation of the jewel sphere and the resonance of the spring at the bottom of the groove produce sound characteristics, showcasing extraordinary aesthetic and practical functional value.
[0042] like Figure 9 As shown, an embodiment of this utility model discloses a forked resonance source ring, including a ring 1, a forked section 2 with a precious metal welded to the upper center line, each end of which is provided with a rotatable jewelry groove 5, and a lower structure 8 of a rotatable jewelry sphere, which is fixed to the inner wall of the groove 8b by hammering, pressing, and fastening, leaving space for the rotatable jewelry sphere. Figure 1 , Figure 2 , Figure 3 .
[0043] like Figure 8 As shown, a hollow, through-hole gear-shaped rotating groove 4, with a first precious metal fixing body 3 welded to the bifurcation point of the upper centerline of the ring 1, is provided. Two precious metal fixing rivets 10 are welded to the edge of the bottom centerline of the inner wall of the gear rotating groove 6b. The upper part of the ring has a precious metal spring clip fixing hole 10b, which is fixed to the two precious metal fixing rivets 10 at the bottom of the gear rotating groove by hammering, pressing, and fastening. The lower spherical structure 7 of the jewel-shaped rotating gear on the upper part of the ring is fixed to the inner wall of the first precious metal hollow, through-hole gear-shaped rotating groove 7b on the upper part of the ring by hammering, pressing, and fastening. Figure 1 , Figure 3 , Figure 7 As shown.
[0044] like Figure 9 As shown, the lower center line of the ring 1 has a hollow, rotatable sphere fixing groove 9b, and a hollow, inlaid small rotatable jewelry sphere 9 is fixed to the inner wall of the lower hollow 9b by tapping, pressing, and snapping, leaving space, such as... Figure 4 , Figure 6 As shown.
[0045] Ring 1: Available in polished, brushed, gold-inlaid, or sandblasted finishes; can be engraved with text, logos, and set with jewelry, such as... Figure 2 , Figure 5 As shown. The lower center of the ring has a hollow, rotatable jewelry fixing slot with an information recording block code on the right side. The ring 1 is made of precious metals such as 22K gold (Au 91.6%), 18K gold (Au 75%), platinum (Pt 90.0%, Pe 95%, Pt 99%), palladium (Dd 90.0%, Pd 95%, Pd 99%), silver (A 392.5%), and other inexpensive metals such as copper, aluminum, and iron.
[0046] Example 1: Personalized custom-made bifurcated cognitive resonance source ring
[0047] (1) Finger ring material and structure
[0048] The ring is made of 18K gold and is a closed ring with a solid wall structure.
[0049] The ring undergoes sandblasting and gold inlay processes, giving it a sandy texture.
[0050] (2) The 18k gold precious metal body is forked on the left and right and the ends are provided with a rotatable jewelry fixing groove and a rotatable jewelry ball at the ends of the left and right forks.
[0051] The upper center line of ring 1 is welded with an 18k gold precious metal body that splits into left and right forks, with each end having a bead-fixed rotatable groove. The lower structure of the rotatable jewel ball is fixed to the inner wall of the groove by hammering, pressing, and fastening, and leaves space for manual rotation of the jewel ball.
[0052] (3) The upper part of the ring 1 is bifurcated to the left and right, with a first 18K gold precious metal fixed body and a hollow through-hole gear rotating groove and a spherical structure at the bottom of the jewelry rotatable gear.
[0053] The upper part of the ring has a first precious metal fixing body welded to the center line bifurcation point, and a hollow through-hole gear rotating groove. The bottom center line of the inner wall of the gear rotating groove has two precious metal rivets and precious metal spring clip fixing holes welded to it. It is fixed to the two precious metal fixing rivets at the bottom of the gear rotating groove by hammering, pressing, and fastening. The lower spherical structure of the jewel rotatable gear in the upper part of the ring is fixed to the inner wall of the first hollow through-hole gear rotating groove of the ring by pressing, hammering, and fastening.
[0054] (4) The lower hollow fixing groove and the lower rotatable jewelry ball
[0055] The ring has a hollow, rotatable sphere fixing groove at the bottom center line. A small jewel sphere is inlaid in the hollow part of the center line and is fixed in the hollow inner wall of the bottom center line by tapping, squeezing, and snapping, leaving space.
[0056] (5) Personalized customization and anti-counterfeiting
[0057] The ring features a hollow, rotatable natural jewelry sphere fixed in the center of the lower part of the ring. An information recording block code is located on the right side of the fixing groove, which records relevant information about the person who made the order and the company, ensuring uniqueness and anti-counterfeiting.
[0058] (6) Artistic Sculpture
[0059] Custom text and logos can be engraved on the ring to enhance its personality and artistic appeal.
[0060] Example 2: Classic Business Style Split-Type Resonance Source Ring
[0061] (1) Finger ring material and structure
[0062] Ring material: palladium; the ring is a closed ring with a solid wall structure.
[0063] The rings are finished with a high-polish or matte finish.
[0064] (2) The upper part of the ring is bifurcated with palladium precious metal and the ends are provided with a rotatable jewelry fixing groove and a rotatable jewelry ball at the ends of the bifurcations;
[0065] The ring has a palladium precious metal fork welded to the center line on the upper part, with a rotatable jewelry fixing groove at each end. The lower structure of the rotatable jewelry ball is fixed to the inner wall of the groove by hammering, squeezing and fastening, and leaves space for the jewelry ball to be manually rotated.
[0066] (3) The upper part of the ring has a first palladium precious metal fixed body that splits into left and right and has a hollow through-hole gear rotating groove and a spherical structure at the bottom of the jewelry rotatable gear;
[0067] At the bifurcation point of the upper center line of the ring, a first hollow palladium precious metal fixing body is welded, with the center line passing through the groove of the gear. The bottom center line of the inner wall of the gear rotation groove passes through the edge, and two precious metal rivets are welded there. The precious metal spring sheet fixing hole is fixed to the two precious metal fixing rivets at the bottom of the gear rotation groove by hammering, pressing, and fastening. The lower spherical structure of the rotatable gear in the upper part of the ring is fixed to the inner wall of the first hollow precious metal groove of the gear rotation groove in the upper part of the ring by pressing, hammering, and fastening.
[0068] (4) The lower hollow fixing groove and the lower rotatable natural gemstone sphere
[0069] The ring has a hollow, rotatable sphere fixing groove at the bottom center line. A small natural gemstone sphere is inlaid in the hollow part of the center line and fixed in the hollow inner wall of the bottom center line by tapping, pressing and snapping, leaving space.
[0070] (5) Customization and anti-counterfeiting of personalized parts
[0071] The ring features a hollow, rotatable natural gemstone sphere fixed in the center of the lower part of the ring. An information block code is located on the right side of the fixing groove, which contains information about the person who made the order and the company, ensuring uniqueness and anti-counterfeiting.
[0072] (6) Simple carving
[0073] The ring features simple patterns and logos, adding a business style and a dignified feel.
[0074] The two examples above demonstrate the application of the bifurcated resonant ring in different materials and processes, respectively showcasing the different styles and unique charms of personalized, cognitive, and classic business styles.
[0075] Existing technology: There is a gap in the domestic and international technology for art jewelry that features multiple functions on the upper part of the finger through a single ring;
[0076] This invention fills a technological gap in the domestic and international jewelry industry by employing a multi-functional technology that fills the gap between fingers by welding precious metal branches along the upper center line of the ring and adjusting the ends according to the distance between fingers.
[0077] Existing technology: The addition of a spherical structure to the lower part of a jeweled spherical gear creates a sound when the gear is manually rotated, triggering a spring in the groove. This technology is currently lacking.
[0078] This invention fills a technological gap in the domestic and international jewelry industry by adding a spherical structure to the lower part of a natural jewelry gear and fixing it to the outside of the lower part of the groove through a hollow through-hole method. The jewelry gear structure is fixed to the inner wall of the groove by hammering, squeezing, and snapping. The sound is generated when the gear is manually rotated and touches the spring in the groove.
[0079] Existing technology: It emphasizes the aesthetics of the upper part of the ring, ignores the aesthetics and dynamic experience of the lower part, and the combination is disordered, with limited functionality.
[0080] This utility model, through the orderly arrangement of inside and outside, large and small, up and down, left and right, and opposition and unity, enlightens the mind with artistic ideas, reveals the respect for essential laws, and opens up new directions for the artistic function and diversity development of jewelry.
[0081] The above description is only a specific embodiment of this utility model, but the protection scope of this utility model is not limited thereto. Any modifications, equivalent substitutions and improvements made by those skilled in the art within the technical scope disclosed in this utility model, and within the spirit and principles of this utility model, should be included within the protection scope of this utility model.
Claims
1. A forked resonant ring, comprising a ring, characterized in that, The lower part of the ring is provided with a fixing groove for a hollow inlay to fix a rotatable jewel sphere. The rotatable jewel sphere is fixed in the hollow inner wall by tapping, squeezing and snapping, while leaving appropriate rotation space to allow the jewel sphere to be rotated manually. The ring has a welded precious metal fork at the top, with a rotatable jewelry fixing groove at each end. A hollow precious metal fixing body is welded at the bifurcation point of the upper center line of the ring. A hollow through-hole gear rotating groove is provided on the upper part of the ring. A precious metal spring sheet is fixed in the groove by precious metal rivets. The lower part of the rotatable sphere of the jewelry gear is designed with a spherical structure. The spherical structure is fixed to the lower part of the hollow through-hole gear rotating groove by hollow penetration through the center line of the bottom of the hollow through-hole gear rotating groove. The jewelry gear structure of the rotatable sphere of the jewelry gear is fixed to the inner wall of the hollow through-hole gear rotating groove by hammering, pressing and fastening. There is space left in the hollow through-hole gear rotating groove.
2. The bifurcated resonant ring according to claim 1, characterized in that, The ring is a closed ring structure with a solid wall design.
3. The bifurcated resonant ring according to claim 1, characterized in that, The ring can be highly polished, brushed, inlaid with gold or sandblasted, and can be engraved with text, trademarks and inlaid with jewelry.
4. The bifurcated resonant ring according to claim 3, characterized in that, The right side of the fixing groove of the hollow rotatable jewelry ball at the lower center of the ring is equipped with an information collection block code, which is used to record the customer's information, company information and anti-counterfeiting mark.
5. The bifurcated resonant ring according to any one of claims 1 to 4, characterized in that, The ring is made of gold, 18K gold, silver, palladium, and six other precious metals from the platinum group.