GROOVED CAPTIVE RING
Some embodiments of the present disclosure include a grooved captive ring for attaching jewelry thereto. The grooved captive ring may include a captive shape having a first a second grooved surface, wherein the grooved surfaces are positioned on opposite sides of the captive shape. The grooved surfaces may engage with a single piece of jewelry or a plurality of pieces of jewelry such that the jewelry is (i) removably attached to the grooved surfaces, and (ii) configured to be positioned at any desired location along a length of the grooved surfaces; In embodiments, the grooved surfaces may be substantially smooth such that the jewelry is configured to move freely along the length of the grooved surfaces. Some embodiments of the grooved captive ring also include a surface having a jewel cavity and at least one jewel permanently secured therein.
The embodiments herein relate generally to jewelry, and more particularly, to a grooved captive ring that allows for two way movement of a piece of jewelry attached thereto.
Conventional captive bead rings include a pair of recessed dimples on a ball or other shape made of a metal, such as titanium or stainless steel, wherein the dimples allow a ring to be attached to and not fall off of the ball or shape. However, the conventional captive bead rings that exist in the piercing industry only have one or two preset size recessed dimples, which minimizes the options of what can be attached thereto and also limits the placement of anything attached thereto. Additionally, a second captive ring cannot be attached to a conventional captive bead ring that only has one pair of dimples.
Therefore, what is needed is a captive ring that provides an attachment area for a plurality of captive rings, while also allowing for the free two way movement of whatever is attached to the captive ring.
SUMMARYSome embodiments of the present disclosure include a grooved captive ring for attaching jewelry thereto. The grooved captive ring may include a captive shape having a first a second grooved surface, wherein the grooved surfaces are positioned on opposite sides of the captive shape. The grooved surfaces may engage with a single piece of jewelry or a plurality of pieces of jewelry such that the jewelry is (i) removably attached to the grooved surfaces, and (ii) configured to be positioned at any desired location along a length of the grooved surfaces; In embodiments, the grooved surfaces may be substantially smooth such that the jewelry is configured to move freely along the length of the grooved surfaces. Some embodiments of the grooved captive ring also include a surface having a jewel cavity and at least one jewel permanently secured therein.
The detailed description of some embodiments of the invention is made below with reference to the accompanying figures, wherein like numerals represent corresponding parts of the figures.
In the following detailed description of the invention, numerous details, examples, and embodiments of the invention are described. However, it will be clear and apparent to one skilled in the art that the invention is not limited to the embodiments set forth and that the invention can be adapted for any of several applications.
The device of the present disclosure may be used as a captive ring that allows for movement of the attached jewelry along the captive ring and may comprise the following elements. This list of possible constituent elements is intended to be exemplary only, and it is not intended that this list be used to limit the system of the present application to just these elements. Persons having ordinary skill in the art relevant to the present disclosure may understand there to be equivalent elements that may be substituted within the present disclosure without changing the essential function or operation of the device.
1. Captive Shape 2. Grooved SurfaceThe various elements of the grooved captive ring for attaching jewelry thereto of the present disclosure may be related in the following exemplary fashion. It is not intended to limit the scope or nature of the relationships between the various elements and the following examples are presented as illustrative examples only.
By way of example, and referring to
In embodiments, the captive shape 10 may be locked into place by the tension created by the jewelry attached thereto. For example, in the case of a captive ring, the pressure exerted by the ring on each grooved surface 16 of the captive shape may sufficient to lock the captive shape 10 in place, as shown in
In embodiments, the captive shape 10 may further comprise a jewel cavity 14 configured to hold at least one jewel 12, as shown in
The captive shape may be any desired shape and, in embodiments, is rectangular as shown in
The captive shape may be made by any suitable means and, in embodiments, may be made using a computer numerical control (CNC) machine, which may take a computer-aided design (CAD) drawing of the desired captive shape and make the captive piece of the desired material.
Persons of ordinary skill in the art may appreciate that numerous design configurations may be possible to enjoy the functional benefits of the inventive systems. Thus, given the wide variety of configurations and arrangements of embodiments of the present invention the scope of the invention is reflected by the breadth of the claims below rather than narrowed by the embodiments described above.
Claims
1. A grooved captive ring for attaching jewelry thereto, the ring comprising:
- a captive shape having a plurality of grooved surfaces,
- wherein: the grooved surfaces are configured to engage with at least one piece of jewelry such that the piece of jewelry can be removably attached to the grooved surfaces; and the piece of jewelry is configured to be positioned at any desired location along a length of the grooved surfaces.
2. The grooved captive ring of claim 1, wherein the grooved surfaces have a width, wherein the length is larger than the width.
3. The grooved captive ring of claim 2, wherein the length of the grooved surface is smaller than a length of the captive shape.
4. The grooved captive ring of claim 1, wherein the grooved surfaces are substantially smooth such that the piece of jewelry is configured to move freely along the length of the grooved surface.
5. The grooved captive ring of claim 1, wherein the grooved surfaces comprise a plurality of recessed dimples along the length of the grooved surfaces, creating fixed locking positions with which the piece of jewelry engages.
6. The grooved captive ring of clam 1, wherein the grooved captive ring is configured to engage with a plurality of pieces of jewelry.
7. The grooved captive ring of claim 1, further comprising a surface comprising a jewel cavity and at least one jewel permanently secured in the jewel cavity.
8. The grooved captive ring of claim 1, wherein:
- the captive shape is rectangular; and
- the grooved surfaces are positioned on opposite sides of the captive shape.
9. A grooved captive ring for attaching jewelry thereto, the grooved captive ring comprising:
- a rectangular captive shape comprising a first grooved surface and a second grooved surface, wherein the first grooved surface and the second grooved surface are positioned on opposite sides of the rectangular captive shape,
- wherein: the first grooved surface and the second grooved surface are configured to engage with at least one piece of jewelry such that the piece of jewelry is removably attached to the grooved surfaces; the piece of jewelry is configured to be positioned at any desired location along a length of the first grooved surface and at any desired location along a length of the second grooved surface; and each of the first grooved surface and the second grooved surface is substantially smooth such that the piece of jewelry is configured to move freely along the length of the first grooved surface and the second grooved surface.
10. The grooved captive ring of claim 9, further comprising a surface comprising a jewel cavity and at least one jewel permanently secured in the jewel cavity.
Type: Application
Filed: Mar 18, 2014
Publication Date: Sep 24, 2015
Inventor: SEAN MICHAEL DOWDELL (GILBERT, AZ)
Application Number: 14/218,252