IP Library Granted Patent US 11,254,066
Granted Patent B2
US 11,254,066 · App. 16/825,579 · Granted Feb 22, 2022

Apparatus for fabricating an elastic nonwoven material

Inventors: Brandon Leo Begrow (Hortonville, WI); Daniel James Sorensen (Neenah, WI); Thomas David Ehlert (Neenah, WI); Casey John Morin (Appleton, WI)
Assignee: DUKANE IAS, LLC
B29C66/81435B29C65/0681B29C66/7294D04H5/06D10B2401/061
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Quick Facts
Patent No.
US 11,254,066
App. No.
16/825,579
Granted
Feb 22, 2022
Kind
B2
Abstract

An apparatus for fabricating an elastic nonwoven material generally includes a first bonding module and a second bonding module. The second bonding module is positionable in close proximity to the first bonding module for receiving a first nonwoven fabric, a second nonwoven fabric, and at least one elastic strand therebetween. The second bonding module has a face with a width dimension and a circumferential axis and is rotatable about a rotation axis. The face has a plurality of ridges includes a first ridge and a pair of second ridges positioned on opposing sides of the first ridge along the circumferential axis. The first ridge defines a plurality of interspaced lands and notches, and the second ridges are configured to sever the at least one elastic strand when in close proximity to the first bonding module.

Claims (31)

1. An apparatus for fabricating an elastic nonwoven material, the apparatus comprising:

a first bonding module; and

a second bonding module positionable, in close proximity to the first bonding module, for receiving a first nonwoven fabric, a second nonwoven fabric, and at least one elastic strand therebetween, wherein the second bonding module has a face with a width dimension and a circumferential axis and is rotatable about a rotation axis, the face having a first ridge and a pair of second ridges, each second ridge of the pair of second ridges positioned on one of an opposing side of the first ridge along the circumferential axis, the first ridge defining a plurality of interspaced lands and notches, the pair of second ridges configured to sever the at least one elastic strand when in close proximity to the first bonding module to form one or more discrete strand segments, and the first ridge configured to form bond points that captures the one or more discrete strand segments in a relaxed state,

wherein the face of the second bonding module defines a first zone comprising a plurality of ridges arranged sequentially along the circumferential axis and a second zone comprising the first ridge positioned between the pair of second ridges along the circumferential axis, and

wherein the face defines a surface between adjacent ridges in the first zone, and defines a raised surface between adjacent ridges in the second zone, such that a first gap is defined between the first bonding module and the surface, and a second gap is defined between the first bonding module and the raised surface, the first gap being larger than the second gap, the second gap adapted to limit a snap-back potential of the at least one elastic strand severed by the pair of second ridges in the second zone.

2. The apparatus of claim 1 , wherein a ridge height is defined between the face of the second bonding module and a radial outer surface of ridges in the first zone and the second zone, wherein the ridge height in the first zone is greater than the ridge height in the second zone.

3. The apparatus of claim 2 , wherein the ridge height in the second zone is approximately equal to a notch depth of notches in the second zone.

4. The apparatus of claim 1 , wherein a distance between adjacent ridges in the first zone is greater than a distance between adjacent ridges in the second zone along the circumferential axis.

5. The apparatus of claim 1 , wherein each second ridge has a radial outer surface that is continuous and free of interspaced lands and notches.

6. The apparatus of claim 1 , wherein each second ridge defines a plurality of interspaced lands and notches.

7. The apparatus of claim 6 , wherein notches of the first ridge are substantially aligned with lands of the pair of second ridges along the circumferential axis, the lands of the pair of second ridges configured to sever the at least one elastic strand.

8. The apparatus of claim 6 , wherein lands of the first ridge are substantially aligned with lands of the pair of second ridges along the circumferential axis, and wherein notches of the first ridge are substantially aligned with notches of the pair of second ridges along the circumferential axis.

9. The apparatus of claim 8 , wherein the notches of the pair of second ridges have at least one of a reduced width or a reduced depth relative to the notches of the first ridge.

10. The apparatus of claim 1 , wherein the first zone comprises a plurality of first ridges arranged sequentially along the circumferential axis.

11. An apparatus for fabricating an elastic nonwoven material, the apparatus comprising:

a first bonding module; and

a second bonding module, positionable in close proximity to the first bonding module, for receiving a first nonwoven fabric, a second nonwoven fabric, and at least one elastic strand therebetween, wherein the second bonding module has a face with a width dimension and a circumferential axis and is rotatable about a rotation axis, the face defining a first zone and a second zone along the circumferential axis, the first zone including at least two ridges configured to form at least one pair of first bond points for entrapping the at least one elastic strand therebetween, the second zone including a first ridge and a pair of second ridges, each second ridge of the pair of second ridges positioned on one of an opposing side of the first ridge along the circumferential axis, the first ridge defining a plurality of interspaced lands and notches, the pair of second ridges configured to sever the at least one elastic strand when in close proximity to the first bonding module to form one or more discrete strand segments, and the first ridge configured to form bond points that captures the one or more discrete strand segments in a relaxed state,

wherein the face of the second bonding module defines a surface between adjacent ridges in the first zone, and defines a raised surface between adjacent ridges in the second zone, such that a first gap is defined between the first bonding module and the surface, and a second gap is defined between the first bonding module and the raised surface, the first gap being larger than the second gap, the second gap adapted to limit a snap-back potential of the at least one elastic strand severed by the pair of second ridges in the second zone.

12. The apparatus of claim 11 , wherein each second ridge defines a plurality of interspaced lands and notches.

13. The apparatus of claim 11 , wherein a ridge height is defined between the face of the second bonding module and a radial outer surface of the ridges in the first zone and the second zone, wherein the ridge height in the first zone is greater than the ridge height in the second zone.

14. The apparatus of claim 11 , wherein the at least two ridges comprise a plurality of first ridges arranged sequentially along the circumferential axis.

15. A method for fabricating an elastic nonwoven material, said method comprising:

positioning a first bonding module in close proximity to a second bonding module, wherein the second bonding module includes a face with a width dimension and a circumferential axis;

rotating at least one of the first bonding module and the second bonding module;

feeding a first nonwoven fabric, a second nonwoven fabric, and an elastic strand therebetween in a machine direction between the first bonding module and the second bonding module along the circumferential axis;

bonding the first nonwoven fabric and the second nonwoven fabric in a first region, wherein at least a portion of the elastic strand is entrapped in the first region between at least one pair of first bond points; and

bonding the first nonwoven fabric and the second nonwoven fabric in a second region, wherein the elastic strand is severed in the second region to form a discrete strand segment entrapped in the second region by second bond points in a relaxed state, wherein the face of the second bonding module defines a first zone comprising a plurality of ridges arranged sequentially along the circumferential axis and a second zone comprising a first ridge positioned between a pair of second ridges along the circumferential axis, the first ridge defining a plurality of interspaced lands and notches, and wherein the face defines a surface between adjacent ridges in the first zone, and defines a raised surface between adjacent ridges in the second zone, such that a first gap is defined between the first bonding module and the surface, and a second gap is defined between the first bonding module and the raised surface, the first gap being larger than the second gap, the second gap adapted to limit a snap-back potential of the elastic strand severed by the pair of second ridges in the second zone.

16. The method in accordance with claim 15 , the method further comprising:

frictionally engaging the first nonwoven fabric and the second nonwoven fabric in the first region with a first friction force; and

frictionally engaging the first nonwoven fabric and the second nonwoven fabric in the second region with a second friction force greater than the first friction force, the second friction force sufficient to limit a snap-back potential of the elastic strand severed in the second region.

17. The method of claim 15 , wherein the first region and the second region are continuously disposed in the elastic nonwoven material and adjacent to each other.

Assignments (2)
NOTICE OF GRANT OF SECURITY INTEREST IN PATENTS Recorded Dec 27, 2023
From: DUKANE IAS, LLC
To: BANK OF AMERICA, N.A., AS LENDER
Reel/Frame 066129/0053 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Mar 20, 2020
From: BEGROW, BRANDON LEO; SORENSEN, DANIEL JAMES; EHLERT, THOMAS DAVID; MORIN, CASEY JOHN
To: DUKANE IAS, LLC
Reel/Frame 052180/0262 →
Continuity (2)
Provisional Application 62822449 · Mar 22, 2019
Related Publication 20200299883A1 · Sep 24, 2020
Cited By (4)
US 12,336,889 US 12,419,791 US 12,433,797 US 12,616,617