US2026013603A1PendingUtilityA1

Silicone ring with metallic component with precious stones

Assignee: FRIEDMAN LILIAPriority: Sep 19, 2025Filed: Sep 19, 2025Published: Jan 15, 2026
Est. expirySep 19, 2045(~19.1 yrs left)· nominal 20-yr term from priority
Inventors:FRIEDMAN LILIA
A44C 9/0084A44C 9/0061A44C 9/02
68
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Claims

Abstract

A finger ring is provided. The finger ring includes a circular band portion encircling a human finger, and a metallic component removably attachable to the circular band portion. The metallic component further includes pillars extending upward therefrom, and a secondary stone holder supported by the pillars. The secondary stone holder is adapted to hold secondary stones. The metallic component further includes primary prongs extending upward from the secondary stone holder. The primary prongs are capable of retaining primary precious stone located on top of a top wall of the metallic component.

Claims

exact text as granted — not AI-modified
1 . A flexible wearable finger ring assembly ( 100 ), comprising:
 a circular band portion ( 101 ) adapted to encircle a human finger, wherein the circular band portion ( 101 ) comprising a notched portion ( 101   f ) located at a top portion of the circular band portion ( 101 );   a metallic component ( 102 ) configured to removably engage to the notched portion ( 101   f ) of the circular band portion ( 101 ), wherein the metallic component ( 102 ) comprises a top wall ( 102   a ), a pair of side walls ( 102   b , 102   c ) extending downward from the top wall ( 102   a ), and a pair of horizontally extending flaps ( 102   d , 102   e ) extending inward from the bottom of the pair of side walls ( 102   b , 102   c ), thereby forming a retaining space ( 102   g ) for receiving the notched portion ( 101   f ) of the circular band portion ( 101 ); and   wherein, the metallic component ( 102 ) further comprising:
 a plurality of pillars ( 102   i ) extending upward from the metallic component ( 102 ); 
 at least one secondary stone holder ( 102   l ) supported by the plurality of pillars ( 102   i ), wherein the secondary stone holder ( 102   l ) is adapted to hold a plurality of secondary stones ( 300 ); and 
 a plurality of primary prongs ( 102   j ) extending upward from the at least one secondary stone holder ( 102   l ), each of the plurality of primary prongs ( 102   j ) is configured to retain at least one primary precious stone ( 200 ) located on top of the top wall ( 102   a ) of the metallic component ( 102 ). 
   
     
     
         2 . The flexible wearable finger ring assembly ( 100 ) of  claim 1 , wherein each of the plurality of secondary stones ( 300 ) are held within a retaining space ( 102   o ) formed on the at least one secondary stone holder ( 102   l ) using a set of secondary prongs ( 102   n ). 
     
     
         3 . The flexible wearable finger ring assembly ( 100 ) of  claim 1 , wherein the plurality of pillars ( 102   i ), and the plurality of primary prongs ( 102   j ) are positioned in an offset relation. 
     
     
         4 . The flexible wearable finger ring assembly ( 100 ) of  claim 1 , wherein the circular band portion ( 101 ) is made of silicone material. 
     
     
         5 . The flexible wearable finger ring assembly ( 100 ) of  claim 1 , wherein the notched portion ( 101   f ) is of a length equal to the longitudinal length of the metallic component ( 102 ). 
     
     
         6 . The flexible wearable finger ring assembly ( 100 ) of  claim 1 , wherein the metallic component ( 102 ) comprises an opening ( 102   f ) between the pair of horizontally extending flaps ( 102   d , 102   e ) to facilitate insertion of the notched portion ( 101   f ) of the circular band portion ( 101 ) within the retaining space ( 102   g ) of the metallic component ( 102 ). 
     
     
         7 . The flexible wearable finger ring assembly ( 100 ) of  claim 1 , wherein
 each of the plurality of primary prongs ( 102   j ) comprises a tip ( 102   k ) which is at least rectangular, square, oval, diamond, circular, polygonal, or triangular in shape; and   each of the set of secondary prongs ( 102   n ) comprises a tip ( 102   k ′) which is at least rectangular, square, oval, diamond, circular, polygonal, or triangular in shape.   
     
     
         8 . The flexible wearable finger ring assembly ( 100 ) of  claim 1 , wherein each of the plurality of pillars ( 102   i ) is angularly oriented and extends upward from at least the top wall ( 102   a ), or the pair of side walls ( 102   b , 102   c ), or partially from the top wall ( 102   a ) and the pair of side walls ( 102   b , 102   c ). 
     
     
         9 . The flexible wearable finger ring assembly ( 100 ) of  claim 1 , wherein each of the plurality of primary prongs ( 102   j ) is angularly oriented and extends upward from the at least one secondary stone holder ( 102   l ). 
     
     
         10 . The flexible wearable finger ring assembly ( 100 ) of  claim 1 , wherein the plurality of primary prongs ( 102   j ) is at least four or three in number, and the set of secondary prongs ( 102   n ) is four in number. 
     
     
         11 . The flexible wearable finger ring assembly ( 100 ) of  claim 1 , wherein the plurality of pillars ( 102   i ), and the plurality of primary prongs ( 102   j ) are integrated as a single unit forming a primary prong ( 102   h ) angularly extending upward from the metallic component ( 102 ). 
     
     
         12 . The flexible wearable finger ring assembly ( 100 ) of  claim 1 , wherein the at least one secondary stone holder ( 102   l ) comprises a plurality of holes ( 102   p ) each positioned at the bottom of the retaining space ( 102   o ) on the secondary stone holder ( 102   l ). 
     
     
         13 . The flexible wearable finger ring assembly ( 100 ) of  claim 1 , wherein the plurality of secondary stones ( 300 ) and the at least one primary stone ( 200 ) is at least circular, oval, rectangular, square, polygonal in shape. 
     
     
         14 . A finger ring ( 100 ), comprising:
 a circular band portion ( 101 ) adapted to encircle a human finger, wherein the circular band portion ( 101 ) comprising a notched portion ( 101   f ) located at a top portion of the circular band portion ( 101 );   a metallic component ( 102 ) configured to removably engage to the notched portion ( 101   f ) of the circular band portion ( 101 ), wherein the metallic component ( 102 ) comprises a top wall ( 102   a ), a pair of side walls ( 102   b , 102   c ) extending downward from the top wall ( 102   a ), and a pair of horizontally extending flaps ( 102   d , 102   e ) extending inward from the bottom of the pair of side walls ( 102   b , 102   c ), thereby forming a retaining space ( 102   g ) for receiving the notched portion ( 101   f ) of the circular band portion ( 101 ); and   wherein the metallic component ( 102 ) further comprising:
 a plurality of primary prongs ( 102   h ) extending upward from the metallic component ( 102 ), each of the plurality of primary prongs ( 102   h ) is configured to retain at least one primary precious stone ( 200 ) located on top of the top wall ( 102   a ) of the metallic component ( 102 ); and 
 at least one secondary stone holder ( 102   l ) supported by the plurality of primary prongs ( 102   h ), wherein the secondary stone holder ( 102   l ) is adapted to hold a plurality of secondary stones ( 300 ) in at least one layer. 
   
     
     
         15 . The finger ring ( 100 ) of  claim 14 , wherein each of the plurality of secondary stones ( 300 ) are held within a retaining space ( 102   o ) formed on the at least one secondary stone holder ( 102   l ) using a set of secondary prongs ( 102   n ). 
     
     
         16 . The finger ring ( 100 ) of  claim 14 , wherein the plurality of primary prongs ( 102   h ) angularly extends upward from the metallic component ( 102 ) to accommodate the primary precious stone ( 200 ). 
     
     
         17 . The finger ring ( 100 ) of  claim 14 , wherein the circular band portion ( 101 ) is made of silicone material. 
     
     
         18 . The finger ring ( 100 ) of  claim 14 , wherein
 each of the plurality of primary prongs ( 102   h ) comprises a tip ( 102   k ) which is at least rectangular, square, oval, diamond, circular, polygonal, or triangular in shape; and   each of the set of secondary prongs ( 102   n ) comprises a tip ( 102   k ′) which is at least rectangular, square, oval, diamond, circular, polygonal, or triangular in shape.   
     
     
         19 . The finger ring ( 100 ) of  claim 14 , wherein the plurality of secondary stones ( 300 ) and the at least one primary stone ( 200 ) is at least circular, oval, rectangular, square, polygonal in shape. 
     
     
         20 . A finger ring assembly ( 100 ), comprising:
 a circular band portion ( 101 ) adapted to encircle a human finger, wherein the circular band portion ( 101 ) comprising a notched portion ( 101   f ) located at a top portion of the circular band portion ( 101 );   a metallic component ( 102 ) configured to removably engage to the notched portion ( 101   f ) of the circular band portion ( 101 ), wherein the metallic component ( 102 ) comprises a top wall ( 102   a ), a pair of side walls ( 102   b , 102   c ) extending downward from the top wall ( 102   a ), and a pair of horizontally extending flaps ( 102   d , 102   e ) extending inward from the bottom of the pair of side walls ( 102   b , 102   c ), thereby forming a retaining space ( 102   g ) for receiving the notched portion ( 101   f ) of the circular band portion ( 101 ); and   wherein, the metallic component ( 102 ) further comprising:
 a plurality of pillars ( 102   i ) extending upward from the metallic component ( 102 ); 
 at least one secondary stone holder ( 102   l ) supported by the plurality of pillars ( 102   i ), the secondary stone holder ( 102   l ) is adapted to hold a plurality of secondary stones ( 300 ), wherein each of the plurality of secondary stones ( 300 ) is held within a retaining space ( 102   o ) formed on the at least one secondary stone holder ( 102   l ) using a set of secondary prongs ( 102   n ); and 
 a plurality of primary prongs ( 102   j ) extending upward from the at least one secondary stone holder ( 102   l ), each of the plurality of primary prongs ( 102   j ) is configured to retain at least one primary precious stone ( 200 ) located on top of the top wall ( 102   a ) of the metallic component ( 102 ).

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