Powder resin layered nonwoven material and method of construction thereof
10006157 ยท 2018-06-26
Assignee
Inventors
Cpc classification
B32B5/16
PERFORMING OPERATIONS; TRANSPORTING
B32B2262/065
PERFORMING OPERATIONS; TRANSPORTING
B32B2250/40
PERFORMING OPERATIONS; TRANSPORTING
B32B5/30
PERFORMING OPERATIONS; TRANSPORTING
D04H11/04
TEXTILES; PAPER
Y10T428/24215
GENERAL TAGGING OF NEW TECHNOLOGICAL DEVELOPMENTS; GENERAL TAGGING OF CROSS-SECTIONAL TECHNOLOGIES SPANNING OVER SEVERAL SECTIONS OF THE IPC; TECHNICAL SUBJECTS COVERED BY FORMER USPC CROSS-REFERENCE ART COLLECTIONS [XRACs] AND DIGESTS
International classification
B32B5/02
PERFORMING OPERATIONS; TRANSPORTING
B32B5/30
PERFORMING OPERATIONS; TRANSPORTING
B32B5/16
PERFORMING OPERATIONS; TRANSPORTING
Abstract
A powder resin layered nonwoven material and a method of construction thereof are provided. The method includes forming a nonwoven web; applying a powder resin material on the nonwoven web to form a coated portion of the nonwoven web; and cross-lapping the nonwoven web to sandwich separate powder resin layers of the powder resin material between layers of the nonwoven web.
Claims
1. A method of constructing a powder resin layered nonwoven material without air pressure or vacuum pressure, comprising: forming a nonwoven web having opposite first and second sides; applying a first layer of powder resin material on the first side of an uncoated first portion of the nonwoven web to form a first coated portion of the nonwoven web; cross-lapping the nonwoven web by reverse-folding an uncoated second portion of the nonwoven web over the first coated portion to sandwich the first layer of powder resin material between the coated first portion and the uncoated second portion; applying a second layer of powder resin material on the second side of the uncoated second portion to form a second coated portion; and cross-lapping the nonwoven web by reverse-folding an uncoated third portion of the nonwoven web over the second coated portion to sandwich the second layer of powder resin material between the coated second portion and the uncoated third portion.
2. The method of claim 1 further including applying the powder resin material to the nonwoven web while cross-lapping the nonwoven web.
3. The method of claim 1 further including regulating the amount of powder resin material applied to the nonwoven web.
4. The method of claim 1 further including forming the nonwoven web having a weight between about 0.1 g/sqyd/layer to 15 g/sqyd/layer prior to applying the powder resin material on the web.
5. The method of claim 4 further including forming the nonwoven web having a thickness between about 1-2 mm/layer prior to applying the powder resin material on the nonwoven web and prior to cross-lapping the nonwoven web.
6. A powder resin layered nonwoven material, comprising: a nonwoven web; a powder resin material applied on said nonwoven web, said powder resin material forming powder resin layers on opposite sides of said nonwoven web, said nonwoven web not having air pressure or vacuum pressure impregnated powder resin material therein; and wherein said nonwoven web has a plurality of reverse folds forming overlying layers with said powder resin layers forming separate powder resin layers sandwiched between each of said overlying layers such that said separate powder resin layers are spaced from one another by said overlying layers, wherein said overlying layers are substantially free from air pressure or vacuum pressure impregnated powder resin material.
7. The powder resin layered nonwoven material of claim 6 wherein said nonwoven web has a weight between about 0.1 g/sqyd/layer to 15 g/sqyd/layer.
8. The powder resin layered nonwoven material of claim 7 wherein a single layer of said nonwoven web has a thickness between about 1-2 mm/layer.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
(1) These and other aspects, features and advantages of the present invention will become more readily appreciated when considered in connection with the following detailed description of presently preferred embodiments and best mode, appended claims and accompanying drawings, in which:
(2)
(3)
DETAILED DESCRIPTION OF PRESENTLY PREFERRED EMBODIMENTS
(4) Referring in more detail to the drawings,
(5) The nonwoven layers 12 are first constructed as a lightweight nonwoven web 16, such as in a carding process, by way of example and without limitation, having a weight between about 0.1 oz/sqyd/layer to 15 g/sqyd/layer (grams per square yard), for example. The web 16 can be constructed of any combination of textile fibers desired, such as, natural fibers including kenaf, flax, hemp, jute, cotton and the like, and/or manmade fibers, including polyester, polypropylene, polyethylene, meta-aramid fibers, para-aramid fiber, depending on the requirements of the intended application. Upon forming the web 16, the web 16 is then transferred to a cross-lapping process where the plurality of reverse folded overlying layers 12 are formed. As the layers 12 are being formed, the selected powder resin material, such as a powder resin material including polyesters, polyurethanes, phenolic, melamines, epoxy polyimides, cyanate esters, is applied to an upper surface 18 of one layer 12, and then, an upper layer 12 is reverse folded back over the resin coated layer 12, also referred to as bottom layer. This process continues for as many layers 12, 12, 14 as are desired to arrive at the finished powder resin coated nonwoven material 10.
(6) By applying the powder resin layer 14 to the individual overlying layers 12 of the web 16, the amount of powder resin material used and the resin pick-up can be tightly controlled independently from the web forming process. Accordingly, the amount of powder resin material being applied to the web 16, and the thickness of each powder resin layer 14 can be controlled and made uniform across the entire web 16. In addition, since the powder resin material is being applied between each overlying nonwoven layer 12 of the web 16 during the cross-lapping process, the distribution of the powder resin material can be made uniform and is not affected or otherwise altered by the density of the powder resin material or the density of the web 16. Further yet, the application of the powder resin layer 14 to the nonwoven layers 12 does not require pressure or vacuum to impregnate the nonwoven layers 12 with the powder resin material of the powder resin layers 14, as the powder resin layer 14 is sandwiched between the layers 12 during cross-lapping. Accordingly, the waste of powder resin material during manufacture is minimal. Additionally, since the web 16 can be made having a very thin thickness, such as between about 1-2 mm/layer, and light weight construction, such as between about 0.1 oz/sqyd/layer to 15 g/sqyd/layer, the overall thickness (t) and end weight of the material 10 can be provided as desired and tightly controlled due to the ability to form as many reverse folded, overlapping layers 12 as desired while tightly regulating the amount and thickness of resin material applied between each overlying layer 12.
(7) The powder resin material can be dispersed under a tightly controlled monitoring and feeding system, such as a system including a powder resin feeder with metered pumps, transfer tubing and discharge nozzle, by way of example and without limitation. Regardless of the type of powder resin dispensing system, the system should be able to regulate the rate at which the powder resin material is being dispersed. Accordingly, the powder resin material is sprayed, by way of example and without limitation, onto each layer 12 to the desired quantity and thickness as required to meet the specifications of the coated nonwoven material 10 for the intended application.
(8) Many modifications and variations of the present invention are possible in light of the above teachings. It is, therefore, to be understood that the invention may be practiced otherwise than as specifically described, and that the scope of the invention is defined by any ultimately allowed claims.