CN220212170U - Rotating assembly, rotating device and ornaments for ornaments - Google Patents

Rotating assembly, rotating device and ornaments for ornaments Download PDF

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Publication number
CN220212170U
CN220212170U CN202321828053.3U CN202321828053U CN220212170U CN 220212170 U CN220212170 U CN 220212170U CN 202321828053 U CN202321828053 U CN 202321828053U CN 220212170 U CN220212170 U CN 220212170U
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China
Prior art keywords
plate
assembly
fitting
rotary
rotating
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CN202321828053.3U
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Chinese (zh)
Inventor
叶新华
徐小波
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Shenzhen Xiangbala Jewelry Co ltd
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Shenzhen Xiangbala Jewelry Co ltd
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Priority to CN202321828053.3U priority Critical patent/CN220212170U/en
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Abstract

The utility model discloses a rotating assembly, a rotating device and an ornament for the ornament, wherein the rotating assembly sequentially comprises a first plate, a rotating piece, a second plate and the ornament from bottom to top, the rotating piece is respectively provided with a first surface and a second surface at two ends of a rotating axis, the first surface and the second surface can rotate relatively, and the first surface is assembled and connected with the upper surface of the first plate; the second plate having an outer surface and an inner surface for fitting connection with the second face; a decorative piece is assembled with the outer surface; wherein the second plate is of an eccentric structure. The technology is assembled into a whole through the first plate, the rotating piece, the second plate and the decoration, when assembled with the jewelry body, the jewelry body can be assembled through the first plate and the corresponding jewelry body, and the rotating piece is not required to be directly matched with the jewelry body, so that the whole assembly is realized during the assembly, and the assembly is convenient through the first plate.

Description

Rotating assembly, rotating device and ornaments for ornaments
Technical Field
The utility model relates to the technical field of ornaments, in particular to a rotating assembly for ornaments, a rotating device and ornaments.
Background
The ornaments can be particularly attractive to users due to their outstanding ornamental and decorative properties. Such as gold, platinum, crystal, etc.
Along with the improvement of living standard, more people wear the pendant ornaments, and in order to meet the favorite psychology and demands of people, the processing technology of the pendant ornaments is also continuously innovated and developed, and the pendant ornaments are diversified in style and shape.
The traditional ornaments are mostly static, so the functionality of the ornaments is not strong. Thus, many novel ornaments, such as ornaments having a rotating structure, are presented. Such as the dynamic rotary pendant of patent application number 201120127029.8. Such ornaments are assembled with a decorative panel on an ornament body by a rotating member. Thus, the bearing needs to be directly fixed on the ornament body during installation. Since the rotating member is usually small, it is very inconvenient to assemble.
Therefore, the above technical problems need to be solved.
Disclosure of Invention
In order to overcome the defects of the prior art, the utility model provides a rotating assembly for ornaments, a rotating device and ornaments, and aims to solve the problem that the existing ornaments with rotating structures are inconvenient to assemble.
In order to solve the technical problems, one of the basic technical schemes provided by the utility model is as follows:
a rotary component for ornaments, comprising, in order from bottom to top:
a first plate;
the rotating piece is provided with a first surface and a second surface at two ends of a rotating axis, the first surface and the second surface can rotate relatively, and the first surface is assembled and connected with the upper surface of the first plate;
a second plate having an outer surface and an inner surface for fitting connection with the second face;
a decorative piece assembled with the outer surface;
wherein the second plate is of an eccentric structure.
Further, the outer surface of the second plate has an outwardly projecting raised structure, the edges of which terminate at non-edges of the outer surface.
Further, the shape of the protruding structure is a curved surface.
Further, in the forward projection direction, the edge of the second plate falls within the first plate.
Further, in the forward projection direction, the area of the second plate occupies between 8% -% of the area of the first plate.
The utility model also proposes a rotating device comprising:
any one of the rotating components is used for ornaments; and
a fitting having a through hole penetrating the upper and lower surfaces;
wherein the rotating assembly is positioned in the through hole, and the first plate is in limit assembly with the hole edge of the lower opening of the assembly part so that the whole rotating assembly is limited; the decorative surface of the decorative piece faces outwards towards one opening of the through hole.
Further, the lower opening of the fitting has a first stepped groove arranged in a circumferential direction, and the first plate has an annular first boss at an outer peripheral edge, and the first boss is assembled with the first stepped groove to achieve the assembly of the entire rotary assembly with the fitting.
Further, the upper opening of the fitting has a transparent barrier facing the decorative face of the decorative piece.
Further, the periphery of the assembly part is provided with a ring groove.
Finally, the utility model also provides an ornament, which comprises an ornament body, wherein the ornament body is provided with an open containing cavity;
a rotating device is assembled in the accommodating cavity;
the rotating device is any one of the rotating devices;
wherein, the decoration surface in the rotating device is outwards arranged.
The beneficial effects of the utility model are as follows:
the utility model adopts the technical scheme that the rotary assembly for ornaments, the rotary device and the ornaments comprise a first plate, a rotary piece, a second plate and ornaments from bottom to top, wherein the rotary piece is respectively provided with a first surface and a second surface at two ends of a rotary axis, the first surface and the second surface can rotate relatively, and the first surface is assembled and connected with the upper surface of the first plate; the second plate having an outer surface and an inner surface for fitting connection with the second face; a decorative piece is assembled with the outer surface; wherein the second plate is of an eccentric structure. The technology is assembled into a whole through the first plate, the rotating piece, the second plate and the decoration, when assembled with the jewelry body, the jewelry body can be assembled through the first plate and the corresponding jewelry body, and the rotating piece is not required to be directly matched with the jewelry body, so that the whole assembly is realized during the assembly, and the assembly is convenient through the first plate.
Drawings
FIG. 1 is a schematic view of a rotary assembly for ornaments according to the present utility model;
FIG. 2 is a schematic view of the structure of the first plate;
FIG. 3 is a schematic structural view of a rotating member;
FIG. 4 is a schematic view of the structure of the second plate;
FIG. 5 is a schematic view of a second plate with a counterweight;
FIG. 6 is a top view of a second plate providing a raised structure;
FIG. 7 is a schematic view of a rotary device;
FIG. 8 is a schematic structural view of the fitting;
FIG. 9 is a schematic illustration of the assembly of the fitting with the first plate;
fig. 10 is a schematic view of an ornament.
Detailed Description
The technical solutions of the embodiments of the present utility model will be clearly and completely described below with reference to fig. 1 to 10, and it is apparent that the described embodiments are only some embodiments of the present utility model, but not all embodiments. All other embodiments, which can be made by those skilled in the art based on the embodiments of the utility model without making any inventive effort, are intended to be within the scope of the utility model.
It should be noted that, if the directions related to the embodiments of the present utility model are shown in the drawings. If a particular gesture changes, the directional indication changes accordingly.
Referring to fig. 1, a schematic structural view of a rotary assembly for an article of jewelry is shown. Specifically, the rotating assembly includes, in order from bottom to top, a first plate 201, a rotating member 202, a second plate 203, and a decorative member 204.
The first plate 201 in this embodiment is a sheet structure, and may specifically be a wafer. The thickness thereof may preferably be between 1mm and 3 mm. Specifically, for example, 2mm. The first plate 201 may be made of plastic material, metal material, or composite material. Such as PVC plastic.
As shown in fig. 2, which shows a schematic structural view of the first plate 201. The first plate 201 includes an upper surface 2012 and a lower surface 2013. Wherein the upper surface 2012 is for assembly with the swivel 202 and the lower surface 2013 is for assembly with the jewelry body. In some embodiments, since the ornament body may be made of expensive materials such as precious metal, jade, etc., the lower surface 2013 may be designed to be smooth, which can ensure that wear on the ornament body is reduced during subsequent assembly and use.
In detail, in some embodiments, as shown in fig. 2, the first plate 201 has an annular first boss 2011 at the outer peripheral edge. I.e. the longitudinal section of the first plate 201 is convex. The use of this design can facilitate subsequent assembly with the fitting, the specific use of which will be described in more detail below. Wherein the thickness of the first boss 2011 may preferably be half the thickness of the entire first plate 201. For example, when the thickness of the first plate 201 is 2mm, the thickness of the first boss 2011 is 1mm. Of course, it is not limited to this, and other sizing may be used. Wherein, in the transverse direction, the width of the first boss 2011 may be between 1-2 mm. Different sizes may be selected depending on the particular scenario. It should be noted that these dimensions are merely examples, and are not limited thereto, and should not be used to limit the scope of the present utility model.
As shown in fig. 1 and 3, the rotary member 202 has a first face 2021 and a second face 2022 at both ends of its rotation axis, respectively, the first face 2021 and the second face 2022 being rotatable relative to each other, and the first face 2021 is fittingly connected to the upper surface of the first plate 201.
In this embodiment, the rotating member 202 is preferably a miniature bearing. Wherein the area of the first face 2021 is larger than the area of the second face 2022. Specifically, the first face 2021 is larger than the second face 2022.
In particular assembly, the first face 2021 may be fixedly attached to the upper surface 2012 of the first plate 201 by gluing. The first surface 2021 is disposed at the center of the upper surface 2012 of the first plate 201, i.e. coaxially.
As shown in fig. 1 and 4, the second plate 203 has an outer surface 2031 and an inner surface 2032, the inner surface 2032 being for fitting connection with the second face 2022. In particular, the inner surface 2032 of the second plate 203 is fixedly connected to the second surface 2022 of the rotating member 202, for example, by gluing, and the second surface 2022 of the rotating member 202 is glued to the inner surface 2032 of the second plate 203 at a central position, i.e. coaxially.
Importantly, in this embodiment, the second plate 203 is of an eccentric configuration. With this structure, the second plate 203 can be ensured to be easily rotated. Specifically, the second plate 203 may be made of a homogeneous material, and a weight 2033 is provided on the second plate 203 at a position offset from the rotation center, as shown in fig. 5. The weight 2033 may be, for example, a copper structure and is provided in a ring shape, and the ring-shaped weight 2033 is arranged around the axis of the second plate 203.
In detail, in some embodiments, the outer surface 2031 of the second plate 203 has an outwardly convex protrusion 2034 as described in fig. 4 and 6, with the edge of the protrusion 2034 terminating at a non-edge of the outer surface 2031. As shown in fig. 6, the raised structures 2034 are disposed concentric with the outer surface 2031. Preferably, the shape of the protruding structure 2033 is a curved surface. With such a structure, when the employed decoration 204 is a flexible structure, it can be directly adhered to the corresponding outer surface, thus making the display of the decoration 204 more stereoscopic. For example, the decorative piece 204 may be a sticker or gold foil.
In other embodiments, the edge of the second plate 203 falls within the first plate 201 in the forward projection direction (top-down view). I.e. the second plate 203 has an outer dimension smaller than the outer dimension of said first plate 201. This facilitates the assembly of the first plate 201 in some practical applications, as will be described in more detail below. Specifically, for example, in the forward projection direction, the area of the second plate 203 occupies between 80% and 100% of the area of the first plate 201.
In this embodiment, the rotary member 202 is held and fixed inside by the first plate 201 and the second plate 203, so that a sandwich structure is formed, and the first plate 201 and the second plate 203 are rotated relative to each other, that is, about the rotation axis of the rotary member 202 by the rotary member 202. The first plate 201, the rotating member 202 and the second plate 203 form an assembly product, i.e. a whole. Thus, when the first plate 201 is required to be assembled with a corresponding ornament, the first plate 201 is directly assembled with the ornament without using a miniature rotating member to assemble with an ornament body as in the conventional technology, and the convenience of assembly is improved. And the assembly product is manufactured, so that the standardized treatment of the industrial assembly process can be realized, and the efficiency is improved.
Importantly, the decorative piece 204 of this embodiment is assembled with the outer surface 2031. The ornamental piece 204 may be of a variety of configurations. For example, the ornamental piece 204 may be a piece of gold foil that is directly attached to the outer surface 2031. Of course, it is not limited thereto, and it may be another type of structure, such as a hard sheet structure, which is directly fixedly connected to the outer surface 2031 of the second plate 203. In some embodiments, the ornamental piece 204 is removably coupled to the second plate 203. That is, the decorative member 204 is freely detachable from the second plate 203 as required. Thus, the multiple use requirements of users can be met. Such as a user having three different patterns of decorative pieces 204, butterfly, heart and quincunx, respectively. The user can freely select one of the ornamental pieces 204 to be assembled with the second plate 203 at various occasions and will. Such a technique enables the detachable connection of fitting 204 to second plate 203, meeting the individual use needs of the user. In this embodiment, the fitting 204 and the second plate 203 may be assembled by a snap-fit connection or a screw-fit connection. For example, a lock catch is arranged at the bottom surface of the fitting 204, and a buckling hole is arranged at the outer surface 2031 of the corresponding second plate 203, and when the fitting is specifically assembled, the lock catch and the buckling hole are directly buckled. When screw fitting is employed, it is possible to employ a female screw sleeve provided at the inner surface of fitting 204 and then screw-coupled with a male screw on the outer peripheral side of second plate 203. It should be noted that since the snap-fit connection structure and the screw-fit connection structure of the two structures are common fitting structures, detailed description is not given in this embodiment, but the technology disclosed in the present utility model cannot be considered insufficient.
In another aspect, as shown in fig. 7 and 8, the present utility model also provides a rotary device including any one of the rotary assemblies 100 for ornaments and the fitting 200.
The fitting 200 as a whole presents a ring-shaped structure having a through hole 2003 penetrating the upper and lower surfaces; wherein the rotating assembly 100 is positioned in the through hole 2003, and the first plate 201 is assembled with the hole edge of the lower opening of the fitting 200 in a limited manner, so that the whole rotating assembly 100 is limited; the decorative surface of the decorative piece 204 faces outward toward one opening of the through-hole 2003.
Specifically, the entire rotary module 100 is assembled inside the rotary module 100, and the decorative surface of the corresponding decorative member 204 is disposed toward the outside, which can facilitate viewing.
In some embodiments, the upper open mouth of the fitting 200 has a transparent flap 2002, the flap 2002 facing the decorative surface of the decorative piece 204. The transparent baffle 2002 protects the rotating unit 100 positioned in the through hole 2003 and prevents entry of dust, moisture, and the like.
The assembly of the swivel assembly 100 to the fitting 200 may be performed in a variety of ways, and in any suitable manner. In some embodiments, the assembly of the swivel assembly 100 to the fitting 200 may be accomplished, for example, by gluing, such as by gluing the first plate 201 to the bottom surface of the fitting 200. In addition, the fitting may be further assembled by screwing, for example, by providing an internal thread at the wall surface of the through hole 2003 of the fitting 200, and screwing with the thread at the wall surface through the outer periphery of the first plate 201. The above-described purpose of the first plate 201 having a larger outer shape than the second plate 203 is to ensure the assembly of the first plate 201 with the fitting 200 so that the second plate 203 does not come into contact with the inside of the through hole 2003 of the fitting 200 after the assembly.
In some embodiments, the lower opening of the fitting 200 has a first stepped groove 2001 circumferentially arranged, and the first plate 201 has an annular first boss 2011 at an outer peripheral edge, and the first boss 2011 is assembled with the first stepped groove 2001 to complete the assembly of the entire rotating assembly 100 with the fitting 200. That is, in this embodiment, the first boss 2011 of the first plate 201 is limited to the bottom by the first stepped groove 2001 of the fitting 200, and when the fitting 200 contacts with one surface of the ornament body, the first plate 201 is limited in position, thereby realizing the limitation.
In addition, the fitting 200 has a circumferential groove 2004. The ring groove 2004 is provided for attachment to the decorative body.
As shown in fig. 10, finally, the present utility model further provides an ornament, which includes an ornament body 1000, wherein the ornament body 1000 has an open receiving cavity 10001; a rotating device 2000 is assembled in the accommodating cavity 10001; the rotating device 2000 is one of the rotating devices described above; wherein the decorative piece 204 in the rotating device 2000 is arranged with the decorative surface facing outwards. In a specific assembly, the bottom surface of the assembly 200 contacts the inner bottom surface of the receiving cavity 10001, so that the first plate 201 is limited by the first step 2001. Specifically, the fitting 200 is just matched with the accommodating cavity 10001, and the fitting 200 is matched with the clamping plate portion 10002 at the ornament body 1000 through the ring groove 2004, and the clamping plate portion 10002 limits the whole fitting 200 inside the accommodating cavity 10001. The snap-plate portion 10002 is preferably elastic, and during the assembly process, the snap-plate portion 10002 is pressed to elastically deform until it falls into the ring groove 2004 and returns to its original position, thereby achieving the assembly.
In summary, the technical scheme of the utility model ensures the convenience of assembling the whole rotating assembly, the rotating device and the ornaments by arranging the first plate 201, and solves the problem of inconvenient assembly of the traditional rotating structure due to the small size of the corresponding rotating piece and ornaments.
Variations and modifications to the above would be obvious to persons skilled in the art to which the utility model pertains from the foregoing description and teachings. Therefore, the utility model is not limited to the specific embodiments disclosed and described above, but some modifications and changes of the utility model should be also included in the scope of the claims of the utility model. In addition, although specific terms are used in the present specification, these terms are for convenience of description only and do not limit the present utility model in any way.

Claims (10)

1. A rotary component for ornaments, which is characterized by comprising the following components in sequence from bottom to top:
a first plate (201);
a rotary member (202) having a first face (2021) and a second face (2022) at both ends of a rotation axis thereof, respectively, the first face (2021) and the second face (2022) being rotatable relative to each other, the first face (2021) being fitted to the upper surface of the first plate (201);
a second plate (203) having an outer surface (2031) and an inner surface (2032), the inner surface (2032) for fitting connection with the second face (2022);
-a decorative piece (204) fitted with the outer surface (2031);
wherein the second plate (203) is of an eccentric configuration.
2. A rotary assembly for an article of apparel as recited in claim 1, wherein:
the outer surface (2031) of the second plate (203) has an outwardly protruding structure (2033), the edge of the protruding structure (2033) ending at a non-edge of the outer surface (2031).
3. A rotary assembly for an article of apparel as recited in claim 2, wherein:
the shape of the protruding structure (2033) is a curved surface.
4. A rotary assembly for an article of apparel as recited in claim 1, wherein:
in the forward projection direction, the edge of the second plate (203) falls within the first plate (201).
5. A rotary assembly for an article of apparel as recited in claim 4, wherein:
in the forward projection direction, the area of the second plate (203) occupies between 80% -100% of the area of the first plate (201).
6. A rotary device, comprising:
a rotary assembly (100) for ornaments according to any one of claims 1 to 5; and
a fitting (200), the fitting (200) having a through hole (2003) penetrating the upper and lower surfaces;
wherein the swivel assembly (100) is located within the through-hole (2003) and the first plate (201) is assembled with the lower open hole edge of the fitting (200) such that the entire swivel assembly (100) is restrained; the decorative surface of the decorative piece (204) faces outwards towards an opening of the through hole (2003).
7. A rotary device as claimed in claim 6, wherein:
the lower opening of the fitting (200) has a first stepped groove (2001) arranged in the circumferential direction, the first plate (201) has an annular first boss (2011) at the outer peripheral edge, and the first boss (2011) is assembled with the first stepped groove (2001) to realize the assembly of the whole rotating assembly (100) with the fitting (200).
8. A rotary device as claimed in claim 6, wherein:
the upper opening of the fitting (200) has a transparent barrier (2002), which barrier (2002) is directly opposite the decorative surface of the decorative piece (204).
9. A rotary device as claimed in claim 7, wherein:
the fitting (200) has a circumferential groove (2004) at its periphery.
10. An ornament, comprising an ornament body (1000), characterized in that:
the ornament body (1000) is provided with an open storage cavity (10001)
A rotating device (2000) is assembled in the accommodating cavity (10001);
the rotating device (2000) is a rotating device according to any one of claims 6 to 9;
wherein, decoration (204) decoration face in rotary device (2000) sets up outwards.
CN202321828053.3U 2023-07-12 2023-07-12 Rotating assembly, rotating device and ornaments for ornaments Active CN220212170U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202321828053.3U CN220212170U (en) 2023-07-12 2023-07-12 Rotating assembly, rotating device and ornaments for ornaments

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202321828053.3U CN220212170U (en) 2023-07-12 2023-07-12 Rotating assembly, rotating device and ornaments for ornaments

Publications (1)

Publication Number Publication Date
CN220212170U true CN220212170U (en) 2023-12-22

Family

ID=89184992

Family Applications (1)

Application Number Title Priority Date Filing Date
CN202321828053.3U Active CN220212170U (en) 2023-07-12 2023-07-12 Rotating assembly, rotating device and ornaments for ornaments

Country Status (1)

Country Link
CN (1) CN220212170U (en)

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