IP Library Granted Patent US 10,287,710
Granted Patent B2
US 10,287,710 · App. 14/907,403 · Granted May 14, 2019

Radio opaque fibers, filaments, and textiles

Inventors: Michael Bastiao Rodrigues (Tirupur, IN); Vivekananda Siddamalaigounder Krishnaswamy (Tirupur, IN); Vasanth Kumar Sundaravadivelu (Tirupur, IN); Anand Venkatachalam (Tirupur, IN)
Assignee: CARENOW MEDICAL PRIVATE LIMITED
D01F1/106B29C47/0014C08K3/22C08K3/30D01D5/34D01D5/36D01F8/16B29K2075/00B29K2505/00B29L2031/731C08K2003/3045
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Quick Facts
Patent No.
US 10,287,710
App. No.
14/907,403
Granted
May 14, 2019
Kind
B2
Abstract

A radio opaque fiber, filament, and yarn is disclosed herein. The radio opaque fiber, filament, or yarn comprises a matrix ( 102 ) comprising a plurality of radio opaque material ( 104 ) and a first polymer ( 106 ), where the radio opaque material ( 104 ) is at least one of a radio opaque element, an alloy of the radio opaque element, and a compound of the radio opaque element, or a combination thereof, wherein the radio opaque element if of an atomic number greater than or equal to 29, and wherein the matrix ( 102 ) forms a unified flexible structure. The radio opaque fiber, filament, or yarn further comprises a carrier polymer ( 108 ) which binds the plurality of the matrix ( 102 ) and imparts spinnability to form the fiber, filament, and yarn.

Claims (26)

1. A radio opaque textile comprising:

a plurality of layers, each of the plurality of layers comprising:

a plurality of treated radio opaque filaments, wherein each of the treated radio opaque filaments comprises:

a matrix, wherein the matrix comprises at least a radio opaque material, wherein the radio opaque material is at least one of a radio opaque element, an alloy of the radio opaque element, a compound of the radio opaque element, or a combination thereof, wherein the radio opaque element is of an atomic number greater than or equal to 29; and

an elastomer, wherein elastomer and the plurality of treated radio opaque filaments are made into the radio opaque textile, wherein the elastomer diminishes radio transparent areas between the treated radio opaque filaments;

wherein a fineness of each of the treated radio opaque filaments is in a range of 20-40 microns, and wherein the radio opaque material is in a range of 50-80% by weight of each of the treated radio opaque filaments.

2. The radio opaque textile of claim 1 , wherein the elastomer is a first polymer comprising the radio opaque material dispersed in it to form the matrix.

3. The radio opaque textile of claim 2 , wherein the radio opaque material and the first polymer form a unified flexible structure.

4. The radio opaque textile of claim 1 , wherein the elastomer is a plurality of elastomeric yarns.

5. The radio opaque textile of claim 4 , wherein the plurality of elastomeric yarns and a plurality of radio opaque filaments are made into an untreated radio opaque textile by one of knitting, weaving, non-woven techniques, or a combination thereof for forming the radio opaque textile.

6. The radio opaque textile of claim 1 , wherein the radio opaque element is at least one of actinium, antimony, barium, bismuth, bromine, cadmium, cerium, cesium, gold, iodine, indium, iridium, lanthanum, lead, mercury, molybdenum, osmium, platinum, pollonium, rhenium, rhodium, silver, strontium, tantalum, tellurium, thallium, thorium, tin, tungsten, uranium and zirconium, or elements of lanthanide series except promethium.

7. The radio opaque textile of claim 1 , wherein the compounds of the radio opaque elements are in the form of oxides, carbonates, sulphates, fluorides, iodides, hydroxides, tungstates, carbides, sulphides, uranates, and tellurides or metallic salts of organic acids, wherein organic acids is one of acetates, stearates, naphthenates, benzoates, formates, and propionates.

8. The radio opaque textile of claim 1 , wherein each of the treated radio opaque filament has a plurality of concentric layers, wherein each of the plurality of concentric layers has a polygonal cross section, wherein the polygonal cross section is one of square, rectangle, triangle, hexagon, octagon, nonagon, decagon, and other non-specific geometric cross section shape.

9. The radio opaque textile of claim 8 , wherein the radio opaque element of the radio opaque material of an inner concentric layer of the plurality of concentric layers is of an atomic number lesser than the radio opaque material of an outer concentric layer.

10. The radio opaque textile of claim 8 , wherein percentage of the radio opaque material in an inner concentric layer of the plurality of concentric layers is lesser than a percentage of the radio opaque material of an outer concentric layer.

11. The radio opaque textile of claim 1 , wherein the radio opaque textile is porous to moisture and permeable to air.

12. A process for making a radio opaque textile, the process comprising:

(a) providing a plurality of radio opaque filaments, wherein each of the plurality of radio opaque filaments comprises:

a matrix, wherein the matrix comprises at least a radio opaque material and a first polymer, wherein the radio opaque material is at least one of a radio opaque element, an alloy of the radio opaque element and a compound of the radio opaque element, or a combination thereof, wherein an atomic number of the radio opaque element is one of greater than and equal to 29, and wherein the matrix and the first polymer form a unified flexible structure; and

a carrier polymer, wherein the carrier polymer binds to a plurality of matrix and is co-extruded with the matrix;

(b) providing a plurality of elastomeric yarns;

(c) making the plurality of radio opaque filaments and the plurality of elastomeric yarns into an untreated radio opaque textile by at least one of knitting, weaving, nonwoven textile manufacturing technique, or a combination thereof; and

(d) treating the untreated radio opaque textile with a solvent to dissolve the carrier polymer, to form the radio opaque textile, wherein dissolution of the carrier polymer results in diminished radio transparent areas in the radio opaque textile as compared to the untreated radio opaque textile.

13. The process of claim 12 , wherein each of the first polymer and the carrier polymer is at least one regenerated polymer or synthetic polymers which is one of polyester, acrylic, poly amide, regenerated cellulose, polyacylonitriles, polytriphenylene terepthalate, polybutyleneterepthalate, polylactic acid, aramides, metaaramides, nylon 6, nylon 6,6, polypropylene, polyethylene, polyurethane, polymers of isoprene regenerated cellulose.

14. The process of claim 12 , wherein dissolution increases a thread density of the untreated radio opaque textile by at least two times.

15. The process of claim 12 , wherein each of the plurality of radio opaque filaments has a plurality of concentric layers, wherein each of the plurality of concentric layers has a polygonal cross section, wherein the polygonal cross section is one of square, rectangle, triangle, hexagon, octagon, nonagon, decagon, and other non-specific geometric cross section shape.

Assignments (4)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jan 18, 2022
From: CARENOW MEDICAL PRIVATE LIMITED
To: KRIDA ADVANCED MATERIAL LLP
Reel/Frame 058753/0314 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Mar 22, 2019
From: RODRIGUES, MICHAEL BASTIAO; SIDDAMALAIGOUNDER KRISHNASWAMY, VIVEKANANDA; SUNDARAVADIVELU, VASANTH KUMAR; VENKATACHALAM, ANAND
To: SHAKTHI KNITTING PRIVATE LIMITED
Reel/Frame 048671/0791 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Mar 22, 2019
From: SHAKTHI KNITTING PRIVATE LIMITED
To: SKL MEDTECH PRIVATE LIMITED
Reel/Frame 048671/0873 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Mar 22, 2019
From: SKL MEDTECH PRIVATE LIMITED
To: CARENOW MEDICAL PRIVATE LIMITED
Reel/Frame 048671/0928 →
Priority Claims (1)
IN 3303/CHE/2013 · Jul 25, 2013 · national
Continuity (1)
Related Publication 20160186364A1 · Jun 30, 2016