A sliding structure for an embedded trim

CN224685300UActive Publication Date: 2026-08-28SHANGHAI YISIBEI IND CO LTD
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Patent Information

Application Number
CN202522387577.9
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-11-11
Publication Date
2026-08-28
Estimated Expiration
2035-11-11

AI Technical Summary

Technical Problem

[0004]本实用新型的目的在于提供一种用于嵌入式装饰件的滑动结构,期望改善传统结构不便于进行装饰件的更换、清洗,以及难以根据需求灵活调整滑动通道形状的问题

Benefits of technology

[0014] Compared with the prior art, the positional relationship between the cross section of the beneficial guide groove and the cross section contour of the decorative part of this utility model, formed by the frame part to form a stable constraint, allows the sliding channel formed to be adjusted to various shapes according to needs. In principle, as long as the size of the guide groove on the frame part remains unchanged, the sliding channel can also ensure the sliding of the decorative part when it is bent or twisted. At the same time, the decorative part can also be provided with a display opening on the guide groove for better presentation.

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Abstract

The utility model discloses a kind of sliding structure for embedded decorative parts, including and decorative part, the guide groove is set on the above-mentioned frame member, the above-mentioned guide groove is set on the display mouth, and the decorative part on the guide groove leaks from display mouth;The above-mentioned decorative part is spherical;The above-mentioned decorative part is used to place in the guide groove of frame member;And the two sides of the external contour of decorative part and the two sides of the internal contour of guide groove gap cooperation;To make decorative part slide in guide groove;The end of the above-mentioned frame member is used to extend, and guide groove, frame member and display mouth constitute sliding channel;The local of the above-mentioned sliding channel is used for bending and / or torsion;The cross section of the above-mentioned guide groove is same at arbitrary position on sliding channel;To make decorative part used along sliding channel sliding and pass through display mouth and show decorative part in different orientation, expect to improve the many problems of traditional structure not being convenient for decorative part to carry out industrialization application and traditional structure on stability.
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Description

Technical Field

[0001] This utility model relates to a sliding decorative structure, specifically a sliding structure for embedded decorative parts. Background Technology

[0002] The value and beauty of contemporary jewelry largely depend on the brilliance and unique design of the gemstones it is set with. In traditional setting techniques, gemstones are typically set using fixed structures such as prong setting, bezel setting, and pave setting, which definitively present the specific posture of the gemstone.

[0003] For sliding jewelry, the sliding material is generally a natural or synthetic component, especially those made of natural minerals. Due to their inherent properties, these components are typically securely locked to a precious metal frame, which then guides the component along specific tracks. Traditional jewelry designs often involve embedding metal pieces to hold gemstones in place and facilitate their movement, complicating the overall installation structure. Handmade jewelry of the same type requires highly experienced artisans and involves a tedious and time-consuming process. Furthermore, traditionally manufactured components have limited sliding freedom, are difficult to replace, and are prone to detachment under external or biased forces. Traditional structures also hinder component replacement and cleaning, and make it difficult to flexibly adjust the shape of the sliding channels as needed. Therefore, optimizing existing sliding structures is a worthwhile area of ​​research. Utility Model Content

[0004] The purpose of this invention is to provide a sliding structure for embedded decorative parts, which aims to improve the problems of traditional structures that make it inconvenient to replace and clean decorative parts, and that it is difficult to flexibly adjust the shape of the sliding channel according to needs.

[0005] To solve the above-mentioned technical problems, the present invention adopts the following technical solution:

[0006] A sliding structure for embedded decorative elements includes a frame and a decorative element. The frame has a guide groove, and the upper end of the guide groove has a display opening through which the decorative element protrudes from the guide groove. The decorative element is spherical and is placed within the guide groove of the frame. The two sides of the outer contour of the decorative element are clearance-fitted with the two sides of the inner contour of the guide groove, allowing the decorative element to slide within the guide groove. The end of the frame extends, forming a sliding channel composed of the guide groove, the frame, and the display opening. A portion of the sliding channel is bent and / or twisted. The guide groove has the same cross-section at any position on the sliding channel, allowing the decorative element to slide along the sliding channel and be displayed in different orientations through the display opening.

[0007] Preferably, the inner wall of the guide groove is provided with an arc-shaped portion, which is located on both sides of the guide groove and the two arc-shaped portions are arranged opposite to each other. The two arc-shaped portions respectively contact the upper part of the maximum diameter of the decorative piece, and the opening width of the display opening is smaller than the diameter of the decorative piece.

[0008] Preferably, the sliding channel includes a torsion region, in which the frame member is torsioned; when the frame member is torsioned, the frame member, guide groove and display opening located in the torsion region are all rotated around the center line of the sliding channel and gradually rotate from the beginning to the end of the torsion region.

[0009] Preferably, the sliding channel includes a curved area, and the frame member is bent in the curved area; when the frame member is bent, the frame member, guide groove and display opening located in the curved area are bent with the same center as the reference, and the central axis of the guide groove located in the curved area coincides with the central axis of the frame member.

[0010] A further technical solution is that the display opening on the aforementioned frame component bends and / or twists synchronously with the sliding channel, and the position and size of the display opening and the guide groove are relatively constant.

[0011] Preferably, the sliding channel is integrally formed, and the guide groove extends through the sliding channel.

[0012] A further technical solution is that there are multiple decorative parts, and the size of each decorative part is similar. All decorative parts are placed in the guide groove of the sliding channel, and two adjacent decorative parts contact each other and slide in the sliding channel.

[0013] Preferably, the two ends of the sliding channel are oriented opposite to each other, and the cross-sections of the guide grooves at both ends of the sliding channel correspond and fit together, so that the guide grooves at both ends of the sliding channel are connected to each other.

[0014] Compared with the prior art, the positional relationship between the cross section of the beneficial guide groove and the cross section contour of the decorative part of this utility model, formed by the frame part to form a stable constraint, allows the sliding channel formed to be adjusted to various shapes according to needs. In principle, as long as the size of the guide groove on the frame part remains unchanged, the sliding channel can also ensure the sliding of the decorative part when it is bent or twisted. At the same time, the decorative part can also be provided with a display opening on the guide groove for better presentation.

[0015] The sliding channel of this invention can be integrally molded, and the decorative parts do not require additional metal auxiliary parts to assist in sliding when in the sliding state; from a processing point of view, the structure has high consistency, is suitable for mass production, and can better save material waste and reduce costs.

[0016] The decorative part of this utility model has a cross-section that is compatible with and constant with the guide groove, and has high stability. Theoretically, the decorative part will not be subjected to external force or bias force during the sliding process, and the decorative part will not accidentally fall out of the guide groove.

[0017] The guide grooves on both sides of the sliding channel of this invention face each other, allowing the guide grooves in the sliding channel to connect. If necessary, an opening and closing structure can be set at the corresponding location to allow for gemstone replacement. Furthermore, since the decorative piece is in a sliding state, it is less prone to dirt accumulation and easier to clean compared to traditional decorative pieces. From an installation perspective, compared to traditional installations, this structure significantly reduces the experience required of the craftsman, with at least one of the following advantages:

[0018] This utility model utilizes... Attached Figure Description

[0019] Figure 1 This is a schematic diagram of the sliding channel structure of this utility model.

[0020] Figure 2 This is a schematic diagram of the twisting of the sliding channel.

[0021] Figure 3 This is a schematic diagram of the installation of decorative parts in the sliding channel.

[0022] Figure 4 This is a schematic diagram of a sliding channel that simultaneously bends and twists.

[0023] Figure 5 This is a schematic diagram of one embodiment of the present invention. Detailed Implementation

[0024] To make the objectives, technical solutions, and advantages of this utility model clearer, the present utility model will be further described in detail below with reference to the accompanying drawings and embodiments. It should be understood that the specific embodiments described herein are merely illustrative of the present utility model and are not intended to limit the present utility model.

[0025] refer to Figures 1 to 3 As shown, one embodiment of this utility model is a sliding structure for embedded decorative parts, including a frame part 1 and a decorative part 2. The molding material of the frame part 1 can be an existing 3D printing material or a metal material. Its processing method can be direct processing using existing 3D printing or wax casting. Regardless of the one-piece molding processing method, the precision of the one-piece molding must be guaranteed in principle. A guide groove 3 is provided on the frame part 1, wherein the guide groove 3 is located in the groove on the frame part 1. A display opening 4 is provided at the upper end of the guide groove 3, through which the decorative part 2 on the guide groove 3 is exposed. The display opening 4 is mainly located at the top of the guide groove 3. By exposing the decorative part 2 in the guide groove 3 through the display opening 4, light can enter the guide groove 3 and act on the decorative part 2.

[0026] It should be noted that the cross-sectional dimensions of the guide groove 3 on the frame piece 1 must be consistent, and the guide groove 3 is located at the top of the frame piece 1. The outline of the top or bottom of the frame piece 1 is generally not restricted, and users can adjust it to various styles based on aesthetic needs. However, the top or bottom of the frame piece 1 will not affect the guide groove 3 and the display opening 4.

[0027] The decorative element 2 is spherical; the decorative element 2 is placed in the guide groove 3 of the frame element 1; and the two sides of the outer contour of the decorative element 2 are fitted with the two sides of the inner contour of the guide groove 3 with a gap so that the decorative element 2 can slide in the guide groove 3; the end of the frame element 1 is extended, and the guide groove 3, the frame element 1 and the display opening 4 form a sliding channel 5.

[0028] For reference, compared to traditional processing methods that require adjusting the frame piece 1 based on the decorative piece 2, this invention requires first determining the size of the decorative piece 2, then determining the size of the guide groove 3, then determining the opening degree of the display opening 4, and finally, based on the guide groove 3 and the display opening 4, determining the shape of the frame piece 1 to achieve a match with the decorative piece 2. This design method allows for adjustments to the shape of the frame piece 1 as needed, thereby forming the sliding channel 5. If necessary, the sliding channel 5 can be compatible with various existing decorative items, and the sliding design of the decorative piece 2 can be implemented on the outside of the decorative item.

[0029] Based on one-piece molding, this utility model greatly eliminates the impact of errors in manual processing, reduces the skill requirements of technicians and material waste in the manual processing process, and is conducive to mass production of products.

[0030] To better accommodate the design needs of existing decorative items, referencing Figures 2 to 4 As shown, the sliding channel 5 is partially used for bending and / or twisting; the guide groove 3 has the same cross-section at any position on the sliding channel 5; so that the decorative piece 2 can slide through the sliding channel 5 and be displayed in different directions through the display opening 4.

[0031] The sliding channel 5 can be bent, twisted, or both. It's important to note that regardless of whether it's bent or twisted, the center of the decorative element 2 remains on the centerline of the sliding channel 5. Although the guide groove 3 and display opening 4 twist or bend with the sliding channel 5, the distance between any position of the guide groove 3's cross-section and the centerline of the sliding channel 5 remains constant. The display opening 4 is positioned constant relative to the guide groove 3.

[0032] It should be noted that the sliding channel 5 is manufactured entirely through 3D printing and wax casting. Therefore, the twisting and rotation of the display port 4 and the guide groove 3, as well as the external pattern of the sliding channel 5, can all be precisely controlled.

[0033] The decorative element 2 in the sliding channel 5 of this application is not limited to gemstones, but can also be other ornaments. Furthermore, the sliding channel 5 can be installed on cups, furniture, or other existing devices.

[0034] The outer wall of the sliding channel 5 of this application can be provided with hollow areas and form a hollow structure as needed. It should be noted that the size spacing of any hollow area on the hollow part of the sliding channel 5 shall not exceed the diameter of the decorative piece 2, so as to prevent the decorative piece 2 from falling out of the sliding channel 5.

[0035] Based on the above embodiments, refer to Figure 4 As shown, another embodiment of this utility model is that, in order to prevent the spherical decorative piece 2 from accidentally falling out of the guide groove 3, the inner wall of the guide groove 3 is provided with an arc-shaped part, which facilitates the control of the gap between the guide groove 3 and the decorative piece 2; and reduces the risk of collision between the decorative piece 2 and the guide groove 3.

[0036] To further optimize the fit between the guide groove 3 and the decorative part 2, the aforementioned arc-shaped portion is located on both sides of the guide groove 3, and the two arc-shaped portions are arranged opposite each other, with the two arc-shaped portions respectively contacting the upper part of the maximum diameter of the decorative part 2, and the opening width of the aforementioned display port 4 is smaller than the diameter of the decorative part 2.

[0037] By having two arc-shaped parts arranged opposite each other, the two arc-shaped parts can clamp the decorative part 2. The arc-shaped parts contact the upper part of the diameter of the decorative part 2, meaning that at least part of the arc-shaped part has a size smaller than the maximum diameter of the decorative part 2. Furthermore, by contacting the upper part of the maximum diameter of the decorative part 2, the decorative part 2 cannot detach from the upper part of the guide groove 3, meaning that the decorative part 2 will not fall off through the display opening 4, thus ensuring that the guide groove 3 restricts the decorative part 2.

[0038] Based on the above embodiments, another embodiment of this utility model is, with reference to Figure 2 As shown, the sliding channel 5 includes a torsion region, in which the frame member 1 is torsionally rotated. When the frame member 1 rotates, the frame member 1, guide groove 3, and display opening 4 located in the torsion region all rotate around the center line of the sliding channel 5, gradually rotating from the beginning to the end of the torsion region. In principle, the torsion of the sliding channel 5 is based on the center line of the sliding channel 5, and a portion of the sliding channel 5 can rotate 360 ​​degrees. Of course, regardless of how the sliding channel 5 rotates, the center of the sphere of the decorative member 2 in the sliding channel 5 remains on the center line of the sliding channel 5, and the outlines of the guide groove 3 and the decorative member 2 remain unchanged.

[0039] Furthermore, the aforementioned sliding channel 5 includes a curved area, in which the aforementioned frame member 1 is bent; when the aforementioned frame member 1 is bent, the frame member 1, guide groove 3 and display opening 4 located in the curved area are bent with the same center as the reference, and the central axis of the guide groove 3 located in the curved area coincides with the central axis of the frame member 1.

[0040] Furthermore, the display opening 4 on the aforementioned frame piece 1 bends and / or twists synchronously with the sliding channel 5, and the position and size of the display opening 4 and the guide channel 3 remain relatively constant. Regardless of whether the sliding channel 5 bends or twists, the relative position of its display opening 4 will also change, but the position of the display opening 4 is relative to the decorative piece 2. The position of its display opening 4 and the guide channel 3 remains constant, so that when the decorative piece 2 passes through the bending or twisting position of the sliding channel 5, the position where the decorative piece 2 is exposed from the display opening 4 changes, which is beneficial for the display opening 4 to display the decorative piece 2 from more angles, and can even achieve a 360-degree display effect of the decorative piece 2.

[0041] Based on the above embodiments, another embodiment of this utility model is that the sliding channel 5 is integrally formed, and the guide groove 3 penetrates through the sliding channel 5. The guide groove 3 on the sliding channel 5 can penetrate through the sliding channel 5, so that the entire sliding channel 5 can be used for the sliding of the decorative piece 2.

[0042] It should be noted that in practical applications, the sliding channel 5 can be used as an accessory for existing jewelry or handicrafts and fixed in place. The decorative piece 2 slides on the sliding channel 5 to enhance the interactivity and aesthetics of the jewelry or handicrafts. More importantly, when the end of the sliding channel 5 is sealed with an external material, the decorative piece 2 can still be embedded in the sliding channel 5, and the decorative piece 2 can also be replaced or cleaned.

[0043] Based on the above embodiments, another embodiment of the present invention is that there are multiple decorative parts 2, and the size of each decorative part 2 tends to be the same. All decorative parts 2 are placed in the guide groove 3 of the sliding channel 5, and two adjacent decorative parts 2 are in contact with each other and slide in the sliding channel 5.

[0044] Furthermore, the two ends of the aforementioned sliding channel 5 face each other, and the cross-sections of the guide grooves 3 at both ends of the sliding channel 5 correspond and fit together; so that the guide grooves 3 at both ends of the sliding channel 5 are interconnected. The two ends of the sliding channel 5 face each other mainly by bending the middle of the sliding channel 5, so that the included angle between the two ends of the sliding channel 5 is greater than or equal to 360 degrees.

[0045] For reference, when the length of the sliding channel 5 is sufficient, the sliding channel 5 can also adopt a multi-layer spiral pattern or other serpentine distribution; no specific restrictions are made here.

[0046] This utility model achieves closure by having the two ends of the sliding channel 5 fit together, that is, the guide grooves 3 in the sliding channel 5 are interconnected, and the decorative part 2 can slide cyclically in the sliding channel 5.

[0047] When necessary, the sliding channel 5 can be configured as an openable structure for the closed area, allowing the guide grooves 3 at both ends of the sliding channel 5 to connect or separate from each other. Its openable structure facilitates the replacement of decorative parts 2. Based on selecting decorative parts 2 of the same specifications, users can arrange or replace the decorative parts 2 in the sliding channel 5 according to their preferences, without needing the assistance of a professional craftsman.

[0048] In this specification, terms such as "one embodiment," "another embodiment," "embodiment," and "preferred embodiment" refer to specific features, structures, or characteristics described in connection with that embodiment, which are included in at least one embodiment described in the general description of this application. The appearance of the same term in multiple places in the specification does not necessarily refer to the same embodiment. Furthermore, when a specific feature, structure, or characteristic is described in connection with any embodiment, the intention is to suggest that implementing such a feature, structure, or characteristic in conjunction with other embodiments also falls within the scope of this utility model.

[0049] Although the present invention has been described herein with reference to several illustrative embodiments, it should be understood that many other modifications and implementations can be devised by those skilled in the art, which will fall within the scope and spirit of the principles disclosed herein. More specifically, various variations and modifications can be made to the components and / or layout of the subject matter combination within the scope of the disclosure, drawings, and claims. Besides variations and modifications to the components and / or layout, other uses will be apparent to those skilled in the art.

Claims

1. A sliding structure for embedded decorative parts, characterized in that, include: A frame piece (1) is provided with a guide groove (3), and a display opening (4) is provided at the upper end of the guide groove (3), through which a decorative piece (2) protrudes from the guide groove (3); Decorative part (2), the decorative part (2) is spherical; the decorative part (2) is used to be placed in the guide groove (3) of the frame part (1); and the two sides of the outer contour of the decorative part (2) are clearance-fitted with the two sides of the inner contour of the guide groove (3) so that the decorative part (2) can slide in the guide groove (3); The end of the frame piece (1) is used for extension, and a sliding channel (5) is formed by the guide groove (3), the frame piece (1) and the display opening (4). The sliding channel (5) is partially used for bending and / or twisting; the guide groove (3) has the same cross-section at any position on the sliding channel (5); so that the decorative piece (2) slides along the sliding channel (5) and is displayed in different directions through the display opening (4).

2. The sliding structure for embedded decorative parts according to claim 1, characterized in that: The inner wall of the guide groove (3) is provided with an arc-shaped part, which is located on both sides of the guide groove (3) and the two arc-shaped parts are arranged opposite to each other. The two arc-shaped parts respectively contact the upper part of the maximum diameter of the decorative piece (2). The opening width of the display port (4) is smaller than the diameter of the decorative piece (2).

3. The sliding structure for embedded decorative parts according to claim 1, characterized in that: The sliding channel (5) includes a twisting region, in which the frame member (1) twists; When the frame piece (1) is twisted, the frame piece (1), guide groove (3) and display opening (4) located in the twist area all rotate around the center line of the sliding channel (5) and gradually rotate from the beginning to the end of the twist area.

4. The sliding structure for embedded decorative parts according to claim 1, characterized in that: The sliding channel (5) includes a curved area, and the frame member (1) is curved in the curved area; When the frame piece (1) is bent, the frame piece (1), guide groove (3) and display opening (4) located in the bending area are bent with the same center as the reference, and the central axis of the guide groove (3) located in the bending area coincides with the central axis of the frame piece (1).

5. The sliding structure for embedded decorative parts according to claim 3 or 4, characterized in that: The display opening (4) on the frame member (1) bends and / or twists synchronously with the sliding channel (5), and the position and size of the display opening (4) and the guide groove (3) are relatively constant.

6. The sliding structure for embedded decorative parts according to claim 1, characterized in that: The sliding channel (5) is integrally formed, and the guide groove (3) passes through the sliding channel (5).

7. The sliding structure for embedded decorative parts according to claim 6, characterized in that: There are multiple decorative pieces (2), and the size of each decorative piece (2) tends to be the same. All decorative pieces (2) are placed in the guide groove (3) of the sliding channel (5). Two adjacent decorative pieces (2) contact each other and slide in the sliding channel (5).

8. The sliding structure for embedded decorative parts according to claim 6, characterized in that: The two ends of the sliding channel (5) face each other, and the cross sections of the guide grooves (3) at both ends of the sliding channel (5) correspond and fit together; so that the guide grooves (3) at both ends of the sliding channel (5) are connected to each other.