US2016106186A1PendingUtilityA1

Jewelry ornament system and method

Assignee: NOBLE CYVIAPriority: Oct 15, 2014Filed: Oct 15, 2014Published: Apr 21, 2016
Est. expiryOct 15, 2034(~8.2 yrs left)· nominal 20-yr term from priority
Inventors:Cyvia Noble
A44C 17/0258A44C 15/005A44C 9/00A44C 15/0025A44C 17/0208
54
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Claims

Abstract

A jewelry ring assembly configured to permit multiple views of a rotatable ornamental inset is disclosed. The system and method utilize a reusable support frame that mechanically constrains a support frame axle. The support frame axle is mechanically coupled to an ornamental element set that is inset within the reusable support frame. The ornamental element set may be rotationally articulated about the support frame axle to enable display presentation of multiple sides of elements with the ornamental element set. The ornamental element set may contain multiple rotatable ornamental insets that individually rotate about the support frame axle and thus permit two or more views of each rotatable ornamental inset to be presented as a multiple number of individual presentation modes within the overall context of the ornamental element set/reusable support frame configuration. Another jewelry assembly includes a necklace that utilizes a reusable suspending string coupled to an ornamental elemental set with the support frame axle.

Claims

exact text as granted — not AI-modified
1 . A jewelry ring system comprising:
 (a) reusable support frame;   (b) support frame axle; and   (c) ornamental element set including at least two interchangeable, concentric, double-sided, co-planar pieces and wherein each piece nests within a larger adjacent piece;   wherein   said support frame axle has an outer cylindrical surface, a first distal end, and a second distal end;   said reusable support frame is configured to enable support of said support frame axle;   said ornamental element set is captured by the support frame axle so that the ornamental element set can rotate around the axle;   and wherein a user's finger does not go through the ornamental element set.   
     
     
         2 . The jewelry ring system of  claim 1  wherein:
 said first distal end comprises a threading member; and 
 said second distal end comprises a retaining head. 
 
     
     
         3 . The jewelry ring system of  claim 1  wherein said reusable support frame is configured to substantially support said support frame axle within a first through hole and a second through hole. 
     
     
         4 . The jewelry ring system of  claim 3  wherein said reusable support frame is configured to magnetically engage support frame axle within a first through hole and a second through hole. 
     
     
         5 . The jewelry ring system of  claim 3  wherein said first through hole is configured to conform to said first distal end. 
     
     
         6 . The jewelry ring system of  claim 3  wherein said second through hole is configured to conform to said second distal end. 
     
     
         7 . The jewelry ring system of  claim 1  wherein:
 said ornamental element set comprises a plurality of said rotatable ornamental inset; 
 said rotatable ornamental inset are configured to individually rotate axially about said outer cylindrical surface; and 
 said rotatable ornamental inset are configured to be concentric. 
 
     
     
         8 . The jewelry ring system of  claim 1  wherein:
 said OES comprises three of said ROIs; 
 said ROIs are configured to individually rotate axially about said OCS; and 
 said ROIs are configured to be concentric. 
 
     
     
         9 . The jewelry ring system of  claim 1  wherein said rotatable ornamental inset comprises a geometric shape selected from a group consisting of: circle, oval, square, triangle, hexagon, and pentagon. 
     
     
         10 . The jewelry ring system of  claim 1  wherein said RSF further comprises a hinge configured to swivel and open said RSF. 
     
     
         11 . The jewelry ring system of  claim 1  wherein said RSF further comprises a clasp configured to swivel and open said RSF. 
     
     
         12 . The jewelry ring system of  claim 1  wherein said RSF is configured to conform to the outer surface of a human finger. 
     
     
         13 . The jewelry ring system of  claim 1  wherein said reusable support frame further comprises a supporting element angularly coupled to protruding arcs at angular bends. 
     
     
         14 . The jewelry ring system of  claim 1  wherein said RSF is configured to conform to the outer surface of a human wrist. 
     
     
         15 . The jewelry ring system of  claim 1  wherein said RSF is configured to be a flexible string. 
     
     
         16 . A jewelry ring presentation method, said method operating in conjunction with a jewelry ring system, said system comprising:
 (a) reusable support frame (RSF);   (b) support frame axle (SFA); and   (c) ornamental element set (OES);   wherein   said SFA has an outer cylindrical surface (OCS), a first distal end (FDE), and a second distal end (SDE);   said RSF is configured to enable support of said SFA;   said OES comprises a rotatable ornamental inset (ROI) with a first shaft aperture (FSA) and a second shaft aperture (SSA) for accepting said SFA; and   said ROI is configured to rotate axially about said OCS;   wherein said method comprises the steps of:   (1) sliding said SFA through each of said FSA and said SSA of said ROIs;   (2) securing said SFA to said RSF;   (3) rotating said ROIs about said SFA; and   (4) presenting a display mode with said OES.   
     
     
         17 . The jewelry presentation method of  claim 16  wherein:
 said FDE comprises a threading member; and 
 said SDE comprises a retaining head. 
 
     
     
         18 . The jewelry presentation method of  claim 16  wherein said RSF is configured to substantially support said SFA within a first retaining notch (FRN) and a second retaining notch (SRN). 
     
     
         19 . The jewelry presentation method of  claim 18  wherein said RSF is configured to magnetically engage SFA within a first retaining notch (FRN) and a second retaining notch (SRN). 
     
     
         20 . The jewelry presentation method of  claim 18  wherein said FRN is configured to conform to said FDE. 
     
     
         21 . The jewelry presentation method of  claim 18  wherein said SRN is configured to conform to said SDE. 
     
     
         22 . The jewelry presentation method of  claim 16  wherein:
 said OES comprises a plurality of said ROIs; 
 said ROIs are configured to individually rotate axially about said OCS; and 
 said ROIs are configured to be concentric. 
 
     
     
         23 . The jewelry presentation method of  claim 16  wherein:
 said OES comprises at least three of said ROIs; 
 said ROIs are configured to individually rotate axially about said OCS; and 
 said ROIs are configured to be concentric. 
 
     
     
         24 . The jewelry presentation method of  claim 16  wherein said ROI comprises a geometric shape selected from a group consisting of: circle, oval, square, triangle, hexagon, and pentagon. 
     
     
         25 . The jewelry presentation method of  claim 16  wherein said RSF further comprises a hinge configured to swivel and open said RSF. 
     
     
         26 . The jewelry presentation method of  claim 16  wherein said RSF further comprises a clasp configured to swivel and open said RSF. 
     
     
         27 . The jewelry presentation method of  claim 16  wherein said RSF is configured to conform to the outer surface of a human finger. 
     
     
         28 . The jewelry presentation method of  claim 16  wherein said RSF further comprises a supporting element angularly coupled to protruding arcs at angular bends. 
     
     
         29 . The jewelry presentation method of  claim 16  wherein said RSF is configured to conform to the outer surface of a human wrist. 
     
     
         30 . The jewelry presentation method of  claim 16  wherein said RSF is configured to be a flexible string. 
     
     
         31 . A jewelry necklace system comprising:
 (a) first reusable suspending string (FSS);   (b) second reusable suspending string (SSS);   (c) support frame axle (SFA); and   (d) ornamental element set (OES);   wherein   said FSS comprises a first coupling end (FCE 1 ) and a second coupling end (SCE 1 );   said SSS comprises a first coupling end (FCE 2 ) and a second coupling end (SCE 2 );   said SFA has an outer cylindrical surface (OCS), a first distal end (FDE), and a second distal end (SDE);   said OES comprises a rotatable ornamental inset (ROI) with a first shaft aperture (FSA) and a second shaft aperture (SSA) for accepting said SFA; and   said ROI is configured to rotate axially about said OCS.   
     
     
         32 . The jewelry necklace system of  claim 31  wherein:
 said FDE is mechanically coupled to said FCE 1 ; 
 said SDE is mechanically coupled to said FCE 2 ; and 
 said SCE 1  and SCE 2  are coupled to each other. 
 
     
     
         33 . The jewelry necklace system of  claim 31  wherein:
 said FDE is configured to magnetically engage FCE 1 ; and 
 said SDE is configured to magnetically engage FCE 2 . 
 
     
     
         34 . The jewelry necklace system of  claim 31  wherein:
 said OES comprises a plurality of said ROIs; 
 said ROIs are configured to individually rotate axially about said OCS; and 
 said ROIs are configured to be concentric. 
 
     
     
         35 . The jewelry ring system of  claim 31  wherein:
 said OES comprises three of said ROIs; 
 said ROIs are configured to individually rotate axially about said OCS; and 
 said ROIs are configured to be concentric. 
 
     
     
         36 . The jewelry ring system of  claim 31  wherein said ROI comprises a geometric shape selected from a group consisting of: circle, oval, square, triangle, hexagon, and pentagon.

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