IP Library Granted Patent US 8,784,967
Granted Patent B2
US 8,784,967 · App. 12/899,771 · Granted Jul 22, 2014

Open mesh material and bags made therefrom

Inventors: Robert Frei (Antigo, WI); Corbett Hefner (Antigo, WI); Friedrich Landertshamer (Oftering, AT); Alan Mueller (Idaho Falls, ID)
Assignee: Volm Companies, Inc.
B32B1/02B23B2439/46B32B5/26D04H3/14B32B2262/12B65D29/00B32B5/10B32B2439/06B32B5/12B32B5/06B32B5/022D04H3/04B32B2250/20B32B5/08
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Quick Facts
Patent No.
US 8,784,967
App. No.
12/899,771
Granted
Jul 22, 2014
Kind
B2
Abstract

An open mesh material includes filaments ( 1, 2, 3, 4, 11, 12, 15, 16 ) that intersect one another. At least some of the filaments are composite filaments having a carrier portion of a relatively high melting point and a bonding portion of a relatively low melting point, the bonding portion of each composite filament being thermally bonded to other filaments at points of intersection. The material may be a non-woven fabric that contains at least two layers of weft filaments ( 1, 2, 11, 12 ) that may be bordered on one or both sides by a layer of warp filaments ( 3,4, 15, 16 ). When compared to other open mesh materials, the open mesh material disclosed herein has a superior combination of some or all of high strength, light weight, high dimensional stability, and openness. Also disclosed herein are articles can be made at least in part from the material including L-seam bags ( 20 ), form fill and seal (FFS) bags ( 1020 ), and multi-substrate bags ( 2,020 ). Methods of making those bags also are disclosed.

Claims (18)

1. An open mesh material extending in machine and cross machine directions, the open mesh material comprising: filaments that intersect one another, at least some of the filaments being composite filaments having a carrier portion of a relatively high melting point and a bonding portion of a relatively low inching point, the bonding portion of each composite filament being thermally bonded to other filaments at at least some points of intersection, wherein the open mesh material has a mass per unit area of less than 30 g/m 2 and a strength to mass ratio in at least one of the machine and cross machine directions of at least 2.67 N/(g/m 2 ), where strength is measured in accordance with ASTM standard D 5034, wherein

the open mesh material is a non-woven fabric, wherein

the filaments include first and second layers of weft filaments that cross one another at an acute angle relative to the cross machine direction, wherein

the filaments include third and fourth layers of warp filaments that extend in the machine direction and that are disposed outside of the first layer and the second layer, respectively, wherein

the filaments of each of the third and fourth layers extend at least generally in parallel with one mother in the machine direction, and wherein

filaments of at least one of the third and fourth layers are spaced closer together in one section of the fabric than in another section of the fabric.

2. An open mesh material extending in machine and cross machine directions, the open mesh material comprising: filaments that intersect one another, at least some of the filaments being composite filaments having a carrier portion of a relatively high melting point and a bonding portion of a relatively low melting point, the bonding portion of each composite filament being thermally bonded to other filaments at at least some point of intersection, wherein the open mesh material has a mass per unit area of less than 30 g/m 2 and a strength to mass ratio in at least one of the machine and cross machine directions of at least 2.67 N/(g/m 2 )where is measured in accordance with ASTM standard D 5034, wherein

the open mesh material s a non-woven fabric, wherein

the filaments include first and second layers of weft filaments that cross one another at an acute angle relative to the cross machine direction, and wherein

the filaments include third and fourth layers of warp filaments that extend in the machine direction, at least some of the filaments of at least one of the third and fourth layers being non-linear.

3. An open mesh material extending in machine and cross machine directions, the open mesh material comprising: filaments that intersect one another, at least some of the filaments being composite filaments having a carrier portion of a relatively high melting point and a bonding portion of a relatively low melting point, the bonding portion of each composite filament being thermally bonded to other filaments at at least some points of intersection, wherein the o Jen mesh material has a mass per unit area of less than 30 g/m 2 and a strength to mass ratio in at least one of the machine and cross machine directions of at least 2.67 N/(g/m 2 ), where strength is measured in accordance with ASTM standard D 5034,wherein the open mesh material is a non-woven fabric wherein

the open mesh material is a non-woven fabric, wherein

the filaments include first and second layers of weft filaments that cross one another at an acute angle relative to the cross machine direction, wherein

the filaments include third and fourth layers of warp filaments that extend in the machine direction and that are disposed outside of the first layers and the second layer, respectively. wherein

the filaments of each of the third and fourth layers extend at least generally in parallel with one another in the machine direction, and wherein

one of the warp filaments and the weft filaments are formed from a composite material and the other of the warp filaments and the weft filaments is formed from a non-composite material.

4. An open mesh material extending in machine and cross machine directions, the open mesh material comprising: filaments that intersect one another, at least some of the filaments being composite filaments having a carrier portion of a relatively high melting point and a bonding portion of a relatively low melting point, the bonding portion of each composite filament being thermally bonded to other filaments at at least some points of intersection, wherein the open mesh material has a mass per unit area of less than 30 g/m 2 and a strength to mass ratio in at least one of the machine and cross machine directions of at least 2.67 N/(g/m 2 ), where strength is measured in accordance with ASTM standard D 5034,

wherein the warp and well filaments each have a thickness of between 10 and 35 μm.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Dec 9, 2010
From: FREI, ROBERT; HEFNER, CORBETT; LANDERTSHAMER, FRIEDRICH; MUELLER, ALAN
To: VOLM COMPANIES, INC.
Reel/Frame 025482/0135 →
Continuity (5)
Provisional Application 61250299 · Oct 9, 2009
Provisional Application 61303290 · Feb 10, 2010
Provisional Application 61305003 · Feb 16, 2010
Provisional Application 61326069 · Apr 20, 2010
Related Publication 20110085749A1 · Apr 14, 2011