Watch

By setting a substrate and a colored film layer between the watch ornament and the side wall of the receiving slot, the problem of the ornament being easily broken is solved, achieving a colorful effect and convenient maintenance, and improving the aesthetics and reliability of the watch.

CN224137631UActive Publication Date: 2026-04-17HUAWEI TECH CO LTD
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
HUAWEI TECH CO LTD
Filing Date
2024-12-31
Publication Date
2026-04-17

AI Technical Summary

Technical Problem

Existing watch jewelry fastening methods are prone to breakage, and the finishing of the jewelry setting affects the brilliance and clarity of the jewelry.

Method used

A substrate is placed between the jewelry and the side wall of the receiving groove, and a colored film layer is coated on the substrate. The combination of the substrate and the film layer achieves the diversity of jewelry and cushioning protection.

Benefits of technology

It reduces the risk of jewelry breakage, lowers the cost of jewelry replacement, improves the appearance of jewelry, and facilitates the cleaning of the film layer.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model relates to the technical field of watch decoration, in particular to a watch. The watch comprises an installation seat, a base material and an ornament, the installation seat is provided with a containing groove, the base material is arranged in the containing groove, the ornament is installed in the containing groove and located at the upper end of the base material, a film layer is arranged on the surface of the base material, and the ornament can present the color of the film layer. According to the application, the base material is arranged between the ornament and the side wall of the accommodating groove, so that the processing knife lines on the side wall of the accommodating groove can be shielded, and the development on the diamond is avoided. And the base material also has a buffering effect on the ornament when the watch falls off and is collided, so that the risk that the ornament is broken is reduced. The film layer on the base material is the color film layer, and the base material plated with the film layer is placed at the bottom of the ornament, so that the ornament shows the color of the film layer from the appearance. The film layer is arranged below the ornament, so that the risk of demolding and fading of the ornament is reduced compared with a mode of plating a colorful film layer on the surface of the ornament. In addition, the film layer can be conveniently and independently cleaned when dirt appears on the film layer.
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Description

Technical Field

[0001] This application relates to the field of watch decoration technology, and more particularly to a watch. Background Technology

[0002] Setting ornaments on watches is an important way to enhance their beauty and value. Ornaments are usually fixed to the bezel, crown, strap, case, etc.

[0003] Currently, common methods for securing ornaments on watches include bead setting, prong setting, channel setting, and bezel setting. However, these methods make the ornaments prone to breakage when the watch is dropped, resulting in poor reliability and strength. Furthermore, the finishing of the setting at the bottom of the ornament can affect its brilliance and clarity. Utility Model Content

[0004] This application provides a watch designed to reduce the risk of jewelry breakage and improve the appearance and sophistication of jewelry.

[0005] This application embodiment provides a watch, the watch comprising:

[0006] accessories;

[0007] Mounting base, the mounting base is provided with a receiving groove, and the ornament is mounted in the receiving groove;

[0008] The substrate is disposed in the receiving groove and located between the side wall of the receiving groove and the ornament. The surface of the substrate is provided with a film layer, and the ornament can display the color of the film layer.

[0009] In this embodiment, by providing a substrate between the jewelry and the sidewall of the receiving groove, the machining marks on the sidewall of the receiving groove can be concealed, preventing the jewelry from showing up. The substrate also cushions the jewelry when the watch is dropped or bumped, reducing the risk of breakage.

[0010] The film layer on the substrate is a colored film layer. By placing the substrate with the film layer at the bottom of the jewelry, the jewelry can display the color of the film layer from the outside. Taking jewelry as an example, when the substrate under each piece on the bezel is coated with a different color, the pieces on the bezel will appear in different colors. That is, the diversity of colors displayed in the jewelry can be controlled by the color of the substrate film layer, and the effect of a multi-colored diamond bezel on a watch can be achieved at a low cost. When the user wants to change the color of the jewelry, it can be achieved by replacing the substrate with a different colored film layer, saving costs. In this embodiment, by placing the film layer under the jewelry, compared to coating the surface of the jewelry with a multi-colored film layer, the risk of the jewelry coming off the mold and fading is reduced. Furthermore, the film layer is also easier to clean individually when it gets dirty.

[0011] The substrate material can be selected from PET (polyethylene terephthalate), PMMA (polymethyl methacrylate), OPS (Oriented Polystyrene Films), TPO (Thermoplastic polyolefin), PP (Polypropylene), PVC (Polyvinyl chloride), etc.

[0012] In one possible design, when the substrate is a non-transparent material, the film layer is disposed on the side of the substrate closer to the ornament.

[0013] In this embodiment, the film layer is disposed on the side of the substrate closer to the jewelry, that is, the film layer is disposed close to the jewelry, so that the color of the film layer can be displayed on the jewelry.

[0014] In one possible design, when the substrate is a transparent material, the film layer is disposed on the side of the substrate away from the ornament; or,

[0015] The film layer is disposed on the side of the substrate close to the ornament.

[0016] In this embodiment, when the substrate is transparent, the film layer can be disposed on the side of the substrate away from the jewelry, allowing light to pass through the substrate and reach the film layer. Alternatively, when the substrate is transparent, the film layer can also be disposed on the side of the substrate closer to the jewelry. Preferably, the film layer can be disposed on the side of the substrate closer to the jewelry to prevent dust and impurities from entering the receiving groove.

[0017] In one possible design, the substrate is bonded to the receiving groove.

[0018] In this embodiment, the substrate can be pre-fixed in the receiving groove by adhesive bonding to prevent the substrate from moving and misaligning in the receiving groove, which would affect the appearance of the watch.

[0019] In one possible design, the watch also includes a cushioning pad disposed in the receiving groove and located on the side of the substrate near the sidewall of the receiving groove;

[0020] The buffer pad is adhered to the receiving groove.

[0021] In this embodiment of the application, a buffer pad is provided between the jewelry and the side wall of the receiving groove to prevent the jewelry from breaking due to hard collision between the jewelry and the side wall of the receiving groove.

[0022] Among them, the cushioning pad can be made of foam, silicone, etc.

[0023] In one possible design, the mounting base is provided with a fastening part located at the opening of the receiving groove, the fastening part being able to enclose the ornament to secure the ornament to the receiving groove.

[0024] In this embodiment, the fastening part is a metal structure extending along the mounting base, which can be bent to fasten the jewelry and use the tension of the metal to fix the diamond in the receiving groove.

[0025] In one possible design, the fastening part is a claw extending outward along the opening of the receiving groove.

[0026] In this embodiment, the fastening part is a metal claw extending outward from part of the mounting base. After the diamond is placed in the receiving groove, the longer metal claw tightly holds the diamond to prevent it from falling out.

[0027] In one possible design, the fastening part is a rim extending outward along the opening of the receiving groove.

[0028] In this embodiment, the fastening part is a metal edge extending outward from part of the mounting base structure. After the diamond is placed in the receiving groove, the metal edge tightly surrounds the diamond to prevent it from falling out.

[0029] In one possible design, the receiving groove is conical.

[0030] In this embodiment, the receiving groove is conical to ensure support strength and prevent watch deformation. Correspondingly, both the cushioning pad and the substrate are conical to ensure that the cushioning pad and the substrate fit tightly in the receiving groove.

[0031] In one possible design, the watch includes a bezel, and the mounting base is the bezel.

[0032] In this embodiment, the bezel serves as a mounting base for the jewelry. Multiple receiving slots are provided on the bezel so that jewelry can be installed around the entire bezel, enhancing the aesthetic appeal of the watch.

[0033] In one possible design, the watch includes a crown, and the mounting base is the crown.

[0034] In this embodiment, the crown serves as a mounting base for the ornament, and a receiving groove is provided on the side of the crown away from the bezel, so that the ornament can be mounted on the crown, thereby enhancing the aesthetic appearance of the watch. Attached Figure Description

[0035] Figure 1 A schematic diagram of a portion of the structure of the watch provided in this application;

[0036] Figure 2 A schematic diagram of a portion of the structure of the bezel provided in this application;

[0037] Figure 3 This is a cross-sectional view along the center section of an ornament on the bezel;

[0038] Figure 4 A cross-sectional schematic diagram of the cushioning element, substrate, and ornament provided in this application in one embodiment;

[0039] Figure 5 A diagram illustrating the installation of jewelry onto the mounting base (bezel);

[0040] Figure 6 for Figure 1 A diagram from another perspective;

[0041] Figure 7 This is a cross-sectional view along the center section of the ornament on the crown;

[0042] Figure 8 A cross-sectional schematic diagram of the cushioning element, substrate, and ornament provided in this application in another embodiment;

[0043] Figure 9 A diagram illustrating the installation of jewelry onto the mounting base (crown).

[0044] Figure label:

[0045] 1-Watch, 11-Case, 12-Bezel, 13-Crown, 15-Jewelry, 16-Mounting base, 161-Receiving groove, 162-Fastening part, 162a-Claw, 162b-Edge, 17-Substrate, 17a-Film layer, 18-Buffer pad. Detailed Implementation

[0046] A watch consists of a case, bezel, crown, strap, and inner case (not shown in the diagram). The inner case is installed inside the case, while the bezel and strap are mounted on the case. The bezel is located around the outer edge of the display panel on the case, and the strap is used for wearing the watch. One end of the crown is located outside the case, and the other end is located inside the inner case, allowing for control of the watch. In traditional watches, the crown is used to adjust the time, while in smartwatches, the crown is used for human-computer interaction control. For example, pressing the crown activates a specific function, while rotating the crown activates another specific function.

[0047] As the aesthetics of watches have continuously improved, decorative ornaments (not shown in the image) have been incorporated, typically consisting of diamonds and gemstones. While diamonds are very hard, they are not very durable; if a watch is dropped, the diamonds are prone to chipping or breaking, affecting the overall appearance of the watch. Furthermore, the placement of decorative ornaments on a watch can create tool marks, causing visual distortion in the diamonds and affecting their brilliance and clarity.

[0048] Therefore, this embodiment provides a watch to solve the above-mentioned technical problems. The watch can be a traditional watch, a smartwatch, etc.

[0049] like Figure 1 The diagram shows a partial structure of watch 1. Watch 1 includes at least a case 11, a bezel 12, a crown 13, and a decorative element 15. The bezel 12 and crown 13 are mounted on the case 11. The bezel 12 is connected to the upper surface of the case 11 and located at the edge of the case 11, serving to protect the watch window (surface) from impacts, scratches, or other external damage. The crown 13 is connected to the outer side of the case 11 and is used for interactive control between the user and watch 1. The number of crowns 13 can be one, two, three, etc. When multiple crowns 13 are provided, they can be located on either side of the case 11 or on the same side of the case 11 relative to the watch band. The specific number and position of crowns 13 can be set according to actual conditions, and this embodiment does not limit this. Watch 1 is provided with a mounting base 16, and the decorative element 15 is mounted on the mounting base 16. The decorative element 15 can be diamonds, gemstones, etc.

[0050] like Figure 2 The diagram shows a partial structure of the bezel 12. In some embodiments, the ornament 15 can be mounted on the bezel 12, i.e., the bezel 12 serves as a mounting base 16 for the ornament 15. Multiple ornaments 15 can be provided, evenly distributed along the circumference of the bezel 12. Preferably, the ornament 15 can be a diamond, making the watch face sparkle and enhancing the aesthetic appeal of the watch 1. Of course, the ornament 15 on the bezel 12 can also be made of other gemstones; the specific choice depends on the actual situation, and this embodiment does not impose such limitations. The following description uses a diamond as an example for the ornament 15.

[0051] Figure 3 The diagram shows a cross-sectional view along the center section of a diamond on the bezel 12. The bezel 12 has a receiving groove 161, within which part of the diamond structure is mounted. A buffer pad 18 and a substrate 17 are disposed within the receiving groove 161. The buffer pad 18 is disposed on the side wall of the receiving groove 161, and the substrate 17 is disposed on the buffer pad 18. The diamond is disposed on the substrate 17. A film layer 17a is disposed on the surface of the substrate 17, allowing the diamond to reflect the color of the film layer 17a.

[0052] In this embodiment, by providing a substrate 17 between the diamond and the sidewall of the receiving groove 161, the machining marks on the sidewall of the receiving groove 161 can be blocked, preventing the diamond from showing development. The substrate 17 also has a cushioning effect on the diamond when the watch 1 is dropped or bumped, reducing the risk of the diamond breaking.

[0053] The film layer 17a on the substrate 17 is a colored film layer 17a. By placing the substrate 17 coated with the film layer 17a at the bottom of the diamond, the diamond can appear to display the color of the film layer 17a. Taking a diamond as an example, when the substrate 17 below each diamond on the bezel 12 is coated with different colors, each diamond on the bezel 12 can display a different color. That is, the diversity of diamond color can be controlled by the color of the film layer 17a on the substrate 17, achieving the effect of a multi-colored diamond bezel on the watch 1 at a low cost. When the user wants to change the color of the diamond, this can be achieved by replacing the substrate 17 coated with a different colored film layer 17a, saving costs. In this embodiment, by setting the film layer 17a below the diamond, compared to coating the surface of the diamond with a multi-colored film layer 17a, the risk of the diamond detaching and fading is reduced. Furthermore, the film layer 17a is also easy to clean individually when it becomes dirty.

[0054] In this embodiment, the substrate 17 can be a transparent material or a non-transparent material. When the substrate 17 is a non-transparent material, the film layer 17a is disposed on the side of the substrate 17 closest to the diamond, that is, the film layer 17a is disposed close to the diamond, so that the color of the film layer 17a can be displayed on the diamond.

[0055] When the substrate 17 is made of a transparent material, the film layer 17a can be disposed on the side of the substrate 17 away from the diamond, allowing light to pass through the substrate 17 and reach the film layer 17a. Alternatively, when the substrate 17 is made of a transparent material, the film layer 17a can also be disposed on the side of the substrate 17 closer to the diamond. Preferably, the film layer 17a can be disposed on the side of the substrate 17 closer to the diamond to prevent dust and impurities from entering the receiving groove 161. Specific details can be determined according to actual conditions, and this embodiment does not impose limitations.

[0056] In some embodiments, the substrate 17 may be made of PET (polyethylene terephthalate), which has a smooth and glossy surface. PET exhibits good creep resistance, fatigue resistance, abrasion resistance, and dimensional stability, with low wear and high hardness, possessing the greatest toughness among thermoplastics.

[0057] Alternatively, the substrate 17 can be made of PMMA (Poly(methyl methacrylate), a high molecular polymer also known as acrylic or plexiglass, which has advantages such as high transparency, low price, and ease of machining.

[0058] Alternatively, the substrate 17 can be made of OPS (Oriented Polystyrene Films). OPS heat shrink film is a new type of skin packaging material that meets environmental protection requirements. It has high strength, high rigidity, stable shape, and good gloss and transparency.

[0059] Alternatively, the material of the substrate 17 can be TPO (Thermoplastic polyolefin), PP (Polypropylene), PVC (Polyvinyl chloride), etc. The specific material can be set according to the actual situation, and this embodiment does not impose any limitations.

[0060] Figure 4 The diagram shows a cross-sectional view of the buffer, substrate 17, and diamond, with the buffer pad 18 located on the side of substrate 17 furthest from the diamond. In this embodiment, by providing the buffer pad 18 between the diamond and the sidewall of the receiving groove 161, the diamond is prevented from colliding head-on with the sidewall of the receiving groove 161, thus avoiding diamond breakage.

[0061] In some embodiments, the cushioning pad 18 can be a foam pad, a silicone pad, or the like. That is, the cushioning pad 18 is an adhesive pad that can bond the substrate 17 into the receiving groove 161. At the same time, the different compression thicknesses of the foam pad and the silicone pad can absorb tolerances to ensure that the diamond surface is flush and improve the appearance.

[0062] Alternatively, the cushioning pad 18 may not be self-adhesive, and the cushioning pad 18 and the substrate 17 may be bonded to the receiving groove 161 by an adhesive.

[0063] Alternatively, the cushioning pad 18 can be made of other materials that can provide cushioning, which can be set according to the actual situation. This embodiment does not limit this.

[0064] Please continue to refer to this. Figure 3 The receiving groove 161 is tapered to ensure support strength and prevent the watch 1 from deforming. Correspondingly, the cushioning pad 18 and the substrate 17 are both tapered so that the cushioning pad 18 and the substrate 17 fit tightly in the receiving groove 161.

[0065] like Figure 5 The diagram shows a diamond mounted on the mounting base 16 (bezel 12). The mounting base 16 is provided with a fastening part 162, which is located at the opening of the receiving groove 161. The fastening part 162 can enclose the diamond to fix it in place within the receiving groove 161. Figure 5 The central fastening part 162 is in the un-fastened diamond state. The fastening part 162 is a metal structure extending along the mounting base 16, which can be bent to fasten the diamond and use the tension of the metal to fix the diamond in the receiving groove 161.

[0066] Please continue to refer to this. Figure 5In some embodiments, the fastening part 162 can be a claw 162a extending outward along the opening of the receiving groove 161. That is, the fastening part 162 is a metal claw extending outward from part of the structure of the mounting base 16. After the diamond is placed in the receiving groove 161, the longer metal claw tightly holds the diamond to prevent the diamond from falling out.

[0067] Alternatively, in some embodiments, the fastening part 162 can be a rim (not shown in the figure) extending outward from the opening of the receiving groove 161. That is, the fastening part 162 is a metal edge extending outward from a part of the structure of the mounting base 16. After the diamond is placed in the receiving groove 161, the metal edge tightly surrounds the diamond to prevent the diamond from falling out.

[0068] Alternatively, the fastening part 162 can be any other structure that can fix the diamond in the receiving groove 161, which is not limited in this embodiment.

[0069] Preferably, the diamond on the bezel 12 can be fixed by the clasp 162a, so that the clasp 162a obstructs the diamond less, clearly presents the beauty of the diamond, and facilitates the incident and reflection of light at different angles, making the diamond look bigger and more brilliant.

[0070] like Figure 6 The diagram shows a partial structure of watch 1. In some embodiments, the ornament 15 can be mounted on the crown 13, i.e., the crown 13 serves as the mounting base 16 for the ornament 15. Preferably, the ornament 15 can be a gemstone with fewer facets to ensure user comfort when operating the crown 13. Of course, the ornament 15 on the crown 13 can also be made of diamond, depending on the specific circumstances, and this embodiment does not impose any limitations. The following description uses a gemstone as an example for the ornament 15.

[0071] like Figure 7 The diagram shows a cross-sectional view along the center section of the jewel on the crown 13. A receiving groove 161 is provided on the side of the crown 13 away from the case 11, and part of the jewel's structure is installed within the receiving groove 161. A buffer pad 18 and a substrate 17 are disposed within the receiving groove 161. The buffer pad 18 is disposed on the side wall of the receiving groove 161, and the substrate 17 is disposed on the buffer pad 18. The jewel is disposed on the substrate 17. A film layer 17a is provided on the surface of the substrate 17, allowing the jewel to display the color of the film layer 17a.

[0072] In this embodiment, by providing a substrate 17 between the gemstone and the sidewall of the receiving groove 161, the machining marks on the sidewall of the receiving groove 161 can be concealed, preventing the gemstone from showing up. The substrate 17 also cushions the gemstone when the watch 1 is dropped or bumped, reducing the risk of the gemstone breaking.

[0073] In this embodiment, the gemstone is a transparent gemstone, and the film layer 17a on the substrate 17 is a colored film layer 17a. By placing the substrate 17 coated with the film layer 17a at the bottom of the gemstone, the gemstone can appear to display the color of the film layer 17a. Taking the gemstone as an example, when the substrate 17 below each gemstone on the crown 13 is coated with different colors, each gemstone on the crown 13 can display different colors. That is, the diversity of gemstone colors can be controlled by the color of the film layer 17a on the substrate 17. When the user wants to change the color of the gemstone, it can be achieved by replacing the substrate 17 coated with a different colored film layer 17a, saving costs. This embodiment, by setting the film layer 17a below the gemstone, reduces the risk of gemstone demolding and color fading compared to coating the surface of the gemstone with a multicolored film layer 17a, achieving a multicolored effect without affecting the gemstone's grade. Furthermore, the film layer 17a is also easy to clean separately when it becomes dirty.

[0074] In this embodiment, the substrate 17 can be a transparent material or a non-transparent material. When the substrate 17 is a non-transparent material, the film layer 17a is disposed on the side of the substrate 17 closer to the gemstone, that is, the film layer 17a is disposed close to the gemstone, so that the color of the film layer 17a can be displayed on the gemstone.

[0075] When the substrate 17 is made of a transparent material, the film layer 17a can be disposed on the side of the substrate 17 away from the gemstone, allowing light to pass through the substrate 17 and reach the film layer 17a. Alternatively, when the substrate 17 is made of a transparent material, the film layer 17a can also be disposed on the side of the substrate 17 closer to the gemstone. The specific arrangement can be determined according to the actual situation, and this embodiment does not impose any limitations.

[0076] In some embodiments, the substrate 17 may be made of PET (polyethylene terephthalate). PET has a smooth and glossy surface, good creep resistance, fatigue resistance, abrasion resistance and dimensional stability, low wear and high hardness, and has the greatest toughness among thermoplastics.

[0077] Alternatively, the substrate 17 can be made of PMMA (Poly(methyl methacrylate), a high molecular polymer also known as acrylic or plexiglass, which has advantages such as high transparency, low price, and ease of machining.

[0078] Alternatively, the substrate 17 can be made of OPS (Oriented Polystyrene Films). OPS heat shrink film is a new type of skin packaging material that meets environmental protection requirements. It has high strength, high rigidity, stable shape, and good gloss and transparency.

[0079] Alternatively, the material of the substrate 17 can be TPO (Thermoplastic polyolefin), PP (Polypropylene), PVC (Polyvinyl chloride), etc. The specific material can be set according to the actual situation, and this embodiment does not impose any limitations.

[0080] Figure 8 The diagram shows a cross-sectional view of the buffer pad 18, the substrate 17, and the gemstone. The buffer pad 18 is located on the side of the substrate 17 away from the gemstone. In this embodiment, by providing the buffer pad 18 between the gemstone and the side wall of the receiving groove 161, the gemstone is prevented from breaking due to a hard collision with the side wall of the receiving groove 161.

[0081] In some embodiments, the cushioning pad 18 can be a foam pad, a silicone pad, or the like. That is, the cushioning pad 18 is an adhesive pad that can bond the substrate 17 together with it into the receiving groove 161. At the same time, the different compression thicknesses of the foam pad and the silicone pad can absorb tolerances to ensure that the gemstone surface is flush and improve the appearance.

[0082] Alternatively, the cushioning pad 18 may not be self-adhesive, and the cushioning pad 18 and the substrate 17 may be bonded to the receiving groove 161 by an adhesive.

[0083] Alternatively, the cushioning pad 18 can be made of other materials that can provide cushioning, which can be set according to the actual situation. This embodiment does not limit this.

[0084] Please continue to refer to this. Figure 6 The receiving groove 161 is tapered to ensure support strength and prevent the watch 1 from deforming. Correspondingly, the cushioning pad 18 and the substrate 17 are both tapered so that the cushioning pad 18 and the substrate 17 fit tightly in the receiving groove 161.

[0085] like Figure 9 The diagram shows a gemstone mounted on the mounting base 16 (crown 13). The mounting base 16 is provided with a fastening part 162, which is located at the opening of the receiving groove 161. The fastening part 162 can enclose the gemstone to fix it in place within the receiving groove 161. Figure 8 The central fastening part 162 is in the unfastened state of the gemstone. The fastening part 162 is a metal structure extending along the mounting base 16, which can be bent to fasten the gemstone and use the tension of the metal to fix the gemstone in the receiving groove 161.

[0086] In some embodiments, the fastening part 162 can be a claw (not shown in the figure) extending outward along the opening of the receiving groove 161. That is, the fastening part 162 is a metal claw extending outward from part of the structure of the mounting base 16. After the gemstone is placed in the receiving groove 161, the longer metal claw tightly holds the gemstone to prevent the gemstone from falling off.

[0087] Alternatively, please continue to refer to Figure 9 In some embodiments, the fastening part 162 can be a rim 162b extending outward from the opening of the receiving groove 161. That is, the fastening part 162 is a metal edge extending outward from a part of the structure of the mounting base 16. After the gemstone is placed in the receiving groove 161, the metal edge tightly surrounds the gemstone to prevent it from falling out.

[0088] Alternatively, the fastening part 162 can be any other structure that can fix the gemstone in the receiving groove 161, which is not limited in this embodiment.

[0089] Preferably, the gemstone on the crown 13 can be fixed by the edge binding 162b, so that the edge of the gemstone can be firmly held in place without affecting the overall beauty of the gemstone.

[0090] In some embodiments, the jewelry 15 can also be installed on the watch case 11, watch strap, etc. of the watch 1. The watch case 11, watch strap, etc. of the watch 1 are mounting bases 16. The mounting base 16 has a receiving groove 161 with a substrate 17 coated with a film layer 17a and a buffer pad 18.

[0091] In practical applications, besides the watch 1 described above, the mounting structure of the ornament 15 can also be applied to other components that require the ornament 15. For example, the mounting structure of the ornament 15 can be applied to wearable devices such as bracelets and necklaces that support the ornament 15; this embodiment does not limit this application.

[0092] The same or similar parts between the various embodiments in this specification can be referred to mutually. In particular, the device embodiments and terminal embodiments are basically similar to the method embodiments, so the description is relatively simple.

[0093] The above descriptions are merely specific implementations of the embodiments of this application, but the protection scope of the embodiments of this application is not limited thereto. Any changes or substitutions within the technical scope disclosed in the embodiments of this application should be covered within the protection scope of the embodiments of this application. Therefore, the protection scope of the embodiments of this application should be determined by the protection scope of the claims.

Claims

1. A watch, characterized in that, The watch includes: accessories; Mounting base, the mounting base is provided with a receiving groove, and the ornament is mounted in the receiving groove; The substrate is disposed in the receiving groove and located between the side wall of the receiving groove and the ornament. The surface of the substrate is provided with a film layer, and the ornament can display the color of the film layer.

2. The watch of claim 1, wherein, When the substrate is a non-transparent material, the film layer is disposed on the side of the substrate closer to the ornament.

3. The watch of claim 1, wherein, When the substrate is a transparent material, the film layer is disposed on the side of the substrate away from the ornament; or, The film layer is disposed on the side of the substrate close to the ornament.

4. The watch of claim 1, wherein, The substrate is bonded to the receiving groove.

5. The watch of claim 1, wherein, The watch also includes a cushioning pad, which is disposed in the receiving groove and located on the side of the substrate near the side wall of the receiving groove; The buffer pad is adhered to the receiving groove.

6. The watch of claim 4, wherein, The mounting base is provided with a fastening part, which is located at the opening of the receiving groove. The fastening part can fasten the ornament to fix the ornament in the receiving groove.

7. The watch of claim 6, wherein, The fastening part is a claw extending outward along the opening of the receiving groove.

8. The watch of claim 6, wherein, The fastening part is a rim extending outward along the opening of the receiving groove.

9. The watch of claim 1, wherein, The receiving groove is conical.

10. The watch according to any one of claims 1 to 9, characterized in that, The watch includes a bezel, and the mounting base is the bezel.

11. The watch according to any one of claims 1 to 9, characterized in that The watch includes a crown, and the mounting base is the crown.