RING SIZING SYSTEM
20170332746 ยท 2017-11-23
Inventors
Cpc classification
International classification
Abstract
A jewelry ring sizing system is disclosed that has an outer jewelry ring, an endless elastomeric ring, and an inner endless ring press-fit within the outer jewelry ring in a concentric orientation relative thereto with the endless elastomeric ring encapsulated between the outer jewelry ring and the inner endless ring.
Claims
1. A jewelry ring sizing system, comprising: an outer jewelry ring; an endless elastomeric ring; and an inner endless ring press-fit within the outer jewelry ring in a concentric orientation relative thereto with the endless elastomeric ring encapsulated between the outer jewelry ring and the inner endless ring.
2. The jewelry ring sizing system of claim 1, wherein the outer jewelry ring has a first annular groove in an interior surface thereof oriented to be concentric relative to the inner endless ring.
3. The jewelry ring sizing system of claim 2, wherein the first annular groove is generally centrally positioned within the interior surface of the outer jewelry ring.
4. The jewelry ring sizing system of claim 2, wherein the inner endless ring has a second annular groove in an exterior surface thereof facing the first annular groove of the outer jewelry ring to collectively define a cavity for the endless elastomeric ring.
5. The jewelry ring sizing system of claim 4, wherein the diameter of the cavity is less than the diameter of the endless elastomeric ring before encapsulation between the outer jewelry ring and the inner endless ring.
6. The jewelry ring sizing system of claim 4, wherein the first annular groove is deeper than the second annular groove.
7. The jewelry ring sizing system of claim 4, wherein the first annular groove and the second annular groove have the same depth.
8. The jewelry ring sizing system of claim 4, wherein the interior surface of the outer jewelry ring further comprises a first annular surface and a second annular surface on opposing sides of the first annular groove, and the exterior surface of the inner endless ring further comprises a third annular surface and a fourth annular surface on opposing sides of the second annular groove, wherein the first and second annular surfaces are mated to the third and fourth annular surfaces.
9. The jewelry ring sizing system of claim 1, wherein the inner endless ring and the outer jewelry ring are of generally equal axial width, thereby collectively defining a front face and a back face of the jewelry ring.
10. The jewelry ring sizing system of claim 1, wherein the endless elastomeric ring has a toroidal-shape.
11. The jewelry ring sizing system of claim 8, wherein each of the third and fourth annular surfaces has an annular ridge proximate the second annular groove, the annular ridge defining the greatest outer diameter of the inner annular ring, and gradually tapering from the annular ridge axially outward away from the second annular groove to define a smaller outer diameter most distal the second annular groove.
12. The jewelry ring sizing system of claim 11, wherein the inner endless ring reduces a ring size of the outer jewelry ring by one size.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
[0010] Many aspects of the disclosure can be better understood with reference to the following drawings. The components in the drawings are not necessarily to scale, emphasis instead being placed upon clearly illustrating the principles of the present system.
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DETAILED DESCRIPTION
[0017] The following detailed description will illustrate the general principles of the invention, examples of which are additionally illustrated in the accompanying drawings. In the drawings, like reference numbers indicate identical or functionally similar elements.
[0018] Referring now to
[0019] Referring to
[0020] Referring now to
[0021] With reference to
[0022] The diameter D.sub.C of the cavity 126 is less than the diameter D.sub.E of the endless elastomeric ring 114 before encapsulation between the outer jewelry ring 112 and the inner endless ring 110. Accordingly, the endless elastomeric ring 114 is placed in compression when encapsulated therebetween. The first annular groove 116 is deeper than the second annular groove 118. The ratio of the depth of the first annular groove 116 to the depth T.sub.G of the second annular groove 118 is in a range of about 1:13 to about 1:17.5, more preferably about 1:14 to about 1:15.
[0023] The endless elastomeric ring 114 is preferably toroidal-shaped, but is not limited thereto. The endless elastomeric ring 114 is made of an elastomeric material, such as a natural rubber or synthetic rubber, but is not limited thereto. The endless elastomeric ring 114 has a diameter in the range of about 1 mm to about 2 mm in the unassembled state.
[0024] The method of assembly includes inserting the inner endless ring 110 inside the outer jewelry ring 112 as a press-fit with an endless elastomeric ring 114 encapsulated therebetween. The endless elastomeric ring 114 is seated within an appropriately shaped groove 116 in the outer jewelry ring 112 and an appropriately shaped groove 118 in the endless inner ring 110, so that it is encapsulated therebetween. The outer jewelry ring 112, as such, includes a generally rounded annular groove 116 when viewed in a longitudinal cross-section (as shown in
[0025] In the assembled state, the inner endless ring 110 does not sit within a channel or groove in the outer jewelry ring 112. Instead, the inner endless ring's third and fourth annular surfaces 130, 131, that define the second annular groove 118, are generally proximate the first and second annular surfaces 128, 129 of the jewelry ring 112, that define the first annular groove 116, but are spaced a distance therefrom as a result of the presence of the endless elastomeric ring 114, thereby defining a small gap 140 at least at the front face FF and the back face BF of the assembled jewelry ring.
[0026] Although various aspects of the disclosed ring sizing system have been shown and described, modifications may become apparent to those skilled in the art upon reading the specification. The present application includes such modifications and is limited only by the scope of the claims.