IP Library Granted Patent US 9,598,814
Granted Patent B2
US 9,598,814 · App. 14/906,186 · Granted Mar 21, 2017

Double pin seaming element

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Quick Facts
Patent No.
US 9,598,814
App. No.
14/906,186
Granted
Mar 21, 2017
Kind
B2
Abstract

A seaming element for an industrial textile, and methods of manufacture. The seaming element body is constructed from a single layer of polymeric film that is folded to provide a fold region and arms that comprise a first region, and a further second region. The first region is bonded to surfaces of an edge region of the textile, while the second region comprises a plurality of spaced-apart aligned protrusions extending from the first region, each protrusion comprising an interior space defined by an upper layer; a lower layer; and a loop at the fold region that connects the upper and lower layers. The interior space is divided into an outer securing region and an inner securing region by either a rib member placed between and bonded to an inner surface of at least one of the upper and lower layer, or by bonding a portion of the upper layer with a portion of the lower layer at a constriction zone. The outer securing region is interdigitatable and alignable with the inner securing region of a corresponding second seaming element bonded to another region of the textile, to define a first channel; and the inner securing region is interdigitatable and alignable with the outer securing region of the corresponding second seaming element, to define a second channel. A securing element is placed in the two channels.

Claims (28)

1. A seaming element for seaming a first seamable edge region of an industrial textile to a second seamable edge region of the industrial textile, the seaming element constructed from a single layer of polymeric film folded to provide a fold region and parallel arms that comprise a first region, the seaming element further comprising a second region,

(i) the first region is constructed and arranged to be bonded to a first and second surface of the first seamable edge region; and

(ii) the second region comprises a plurality of spaced-apart aligned protrusions extending from the first region, each protrusion comprising an interior space defined by an upper layer; a lower layer; and a loop at the fold region that connects the upper and lower layers;

wherein:

(A) the interior space is divided into an outer securing region and an inner securing region by one of: a) a rib member placed between and bonded to an inner surface of at least one of the upper and lower layer such that the inner securing region is between the rib member and the first region and the rib member is distinct from the first region; and by b) bonding a portion of the upper layer with a portion of the lower layer at a constriction zone; with the outer securing region defined in part by an inner surface of the loop;

(B) the outer securing region is interdigitatable and alignable with the inner securing region of a corresponding second seaming element bonded to the second seamable edge region of the textile, to define a first channel; and

(C) the inner securing region is interdigitatable and alignable with the outer securing region of the corresponding second seaming element, to define a second channel.

2. The seaming element according to claim 1 , wherein the interior space is divided by the rib member bonded to the inner surface of the upper layer and the inner surface of the lower layer.

3. The seaming element according to claim 2 , wherein the rib member is bonded by a process selected from laser welding and adhesive bonding.

4. The seaming element according to claim 1 , wherein the interior space is divided by the constriction zone, with the constriction zone comprising at least one ridge on an inner surface of at least one of the upper layer and the lower layer.

5. The seaming element according to claim 4 , wherein the at least one ridge is bonded to the opposing layer by a process selected from laser welding and adhesive bonding.

6. The seaming element according to claim 1 , wherein each of the first and second channels is constructed and arranged to receive a securing means.

7. The seaming element according to claim 1 , wherein the polymeric film comprises a thermoplastic polymer or a thermoset polymer.

8. The seaming element according to claim 7 , wherein the polymeric film is a theremoplastic polymer selected from the group consisting of polyethylene terephthalate (PET), polybutylene terephthalate (PBT), polyethylene naphthalate (PEN), poly(cyclohexylene dimethylene terephthalate), acid (PCTA), polyphenylene sulphide (PPS), polyetheretherketone (PEEK), polysulfone and polyamide.

9. The seaming element according to claim 8 , wherein the thermoplastic polymer is PET.

10. The seaming element according to claim 8 , wherein the polymeric film comprises a laser energy absorbing dye or laser weldable component.

11. The seaming element according to claim 8 , wherein the polymeric film is biaxially oriented and is a bicomponent PET film comprising a laser weldable layer.

12. The seaming element according to claim 8 , wherein the first region is laser welded to the industrial textile.

13. The seaming element according to claim 1 , wherein the industrial textile is one of a woven or nonwoven textile, the first and second seamable edge regions each comprise a compressed textile region, and the first region of the seaming element is constructed and arranged to be bonded to portions of a first and second outer surface of the compressed textile region.

14. An industrial textile comprising at least one pair of seaming elements, each constructed according to claim 1 .

15. A seaming element for seaming a first seamable edge region of an industrial textile to a second seamable edge region of the industrial textile, the seaming element constructed from a single layer of biaxially-oriented thermoplastic polymeric film folded in a general U-shape to provide a fold region and parallel arms that comprise a first region, the seaming element further comprising a second region,

(i) the first region is constructed and arranged to be bonded to a first and second surface of the first seamable edge region; and

(ii) the second region comprises a plurality of spaced-apart aligned protrusions extending from the first region , each protrusion comprising an interior space defined by an upper layer; a lower layer; and a loop at the fold region that connects the upper and lower layers;

wherein:

(A) the interior space is divided into an outer securing region and an inner securing region by one of: a) a rib member placed between and bonded to an inner surface of at least one of the upper and lower layer such that the inner securing region is between the rib member and the first region and the rib member is distinct from the first region; and by b) bonding a portion of the upper layer with a portion of the lower layer at a constriction zone; the outer securing region defined in part by an inner surface of the loop;

(B) the outer securing region is interdigitatable and alignable with the inner securing region of a corresponding second seaming element bonded to the second seamable edge region of the textile, to define a first channel; and

(C) the inner securing region is interdigitatable and alignable with the outer securing region of the corresponding second seaming element, to define a second channel.

16. The seaming element according to claim 15 , wherein the biaxially oriented film is a bicomponent PET film comprising a laser weldable layer.

Assignments (2)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Oct 5, 2016
From: MANNINEN, ALLAN R.
To: ASTENJOHNSON, INC.
Reel/Frame 039940/0156 →
NOTICE OF GRANT OF SECURITY INTEREST IN PATENTS Recorded Jul 5, 2016
From: ASTENJOHNSON, INC.
To: BANK OF AMERICA, N.A., AS COLLATERAL AGENT
Reel/Frame 039257/0751 →