System and methods involving fabricating sheet products
10337793 ยท 2019-07-02
Assignee
Inventors
Cpc classification
B65H2406/15
PERFORMING OPERATIONS; TRANSPORTING
B65H2406/10
PERFORMING OPERATIONS; TRANSPORTING
F26B13/16
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F26B3/347
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
D21F11/00
TEXTILES; PAPER
International classification
F26B3/347
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
D21F11/00
TEXTILES; PAPER
F26B13/16
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
Abstract
A system for fabricating a sheet product. A first rotatable roller includes a rotatable drum portion having an outer surface that rotates about a rotational axis in a first direction and conveys a sheet product. The rotatable drum portion also has a plurality of ports communicative between an inner surface and an outer surface. The ports extend along and around the drum portion. The first rotatable roller emits a pressurized fluid. A second rotatable roller has an outer surface arranged proximate to the outer surface of the rotatable drum portion of the first rotatable roller, and a heat source portion to heat the second rotatable roller to dry the sheet product. The second rotatable roller rotates in a second direction that is opposite to the first direction. A gap is defined between the second rotatable roller and the first rotatable roller through which the sheet product passes.
Claims
1. A system for fabricating a sheet product, the system comprising: (A) a first rotatable roller including: (a) a rotatable drum portion having (i) a first end and a second end, (ii) an outer surface and an inner surface, the outer surface rotating about a rotational axis in a first direction and configured to convey a sheet product that has a first surface and a second surface, the first surface of the sheet product being in contact with a portion of the outer surface of the rotatable drum portion, the inner surface defining a cavity within the rotatable drum portion, and (iii) a plurality of ports communicative between the inner surface and the outer surface, the plurality of ports extending (1) from the first end to the second end of the rotatable drum portion, and (2) around at least a portion of the outer surface of the rotatable drum portion; and (b) a fluid emission portion disposed in the cavity, the fluid emission portion having (i) an orifice operative to receive a first pressurized fluid from a pressurized fluid source and (ii) a port connected to the orifice and operative to emit the first pressurized fluid through the plurality of ports of the rotatable drum portion, the port being arranged as an elongated slot in the fluid emission portion that extends (1) in a direction parallel to the rotational axis of the rotatable drum portion, and (2) from the first end to the second end of the rotatable drum portion; (B) a second rotatable roller having (i) an outer surface arranged proximate to the outer surface of the rotatable drum portion of the first rotatable roller, and (ii) a heat source portion configured to output a second pressurized fluid and to heat the second rotatable roller to dry the sheet product, the second rotatable roller being operative to rotate in a second direction that is opposite to the first direction; and (C) a gap defined between the second rotatable roller and the first rotatable roller through which the sheet product is allowed to pass, wherein the port of the fluid emission portion is configured to emit the first pressurized fluid (i) as a stream in a region proximate to the gap, (ii) at an angle relative to the second rotatable roller, (iii) to impinge on the first surface of the sheet product in the gap, (iv) to separate contact between the outer surface of the rotatable drum portion of the first rotatable roller and the sheet product, and (v) to transfer the sheet product from the first rotatable roller to the second rotatable roller, with the second surface of the sheet product being in contact with the outer surface of the second rotatable roller as the sheet product passes through the gap, and wherein the first rotatable roller is configured to only emit the first pressurized fluid through the plurality of ports extending (1) from the first end to the second end of the rotatable drum portion, and (2) around the at least a portion of the outer surface of the rotatable drum portion.
2. The system of claim 1, wherein the first pressurized fluid includes at least one of air and steam.
3. The system of claim 1, wherein the first rotatable roller and the second rotatable roller are disposed and configured to impart a compressive force on the sheet product that is allowed to pass through the gap.
4. The system of claim 1, wherein the port of the fluid emission portion defines a flow path of the first pressurized fluid in a region partially between the fluid emission portion and the rotatable drum portion.
5. The system of claim 1, wherein the port of the fluid emission portion is stationary.
6. The system of claim 1, further including an adhesive spray assembly operative to spray an adhesive on an exposed portion of the outer surface of the second rotatable roller.
7. The system of claim 6, wherein the adhesive spray assembly is positioned upstream of the gap in a rotational direction of the second rotatable roller.
8. The system of claim 7, wherein the adhesive is operative to adhere the second surface of the sheet product to the outer surface of the second rotatable roller.
9. The system of claim 1, wherein the rotatable drum portion of the first rotatable roller is tubular.
10. The system of claim 9, wherein the plurality of ports in the rotatable drum portion of the first rotatable roller extends (1) from the first end to the second end of the tubular rotatable drum portion, and (2) around the entirety of the outer surface of the tubular rotatable drum portion.
11. The system of claim 1, wherein the angle relative to the second rotatable roller is a constant angle.
12. A method of fabricating a sheet product, the method comprising: (A) rotating a rotatable drum portion of a first roller in a first direction about a rotational axis, the rotatable drum portion having (a) a first end and a second end, (b) an outer surface and an inner surface, the inner surface defining a cavity within the rotatable drum portion, and (c) a plurality of ports communicative between the inner surface and the outer surface, the plurality of ports extending (i) from the first end to the second end of the rotatable drum portion, and (ii) around at least a portion of the outer surface of the rotatable drum portion; (B) rotating a second roller in a second direction, the second direction being opposite to the first direction, the second roller having an outer surface; (C) conveying a sheet product, the sheet product having a first surface and a second surface, and the sheet product being conveyed with the first surface of the sheet product in contact with a portion of the outer surface of the rotatable drum portion of the first roller; (D) passing the sheet product, through a gap defined between the outer surface of the first roller and the outer surface of the second roller; (E) supplying a first pressurized fluid from a pressurized fluid source to a fluid emission portion disposed in the cavity of the first roller, the first pressurized fluid being supplied to an orifice of the fluid emission portion; (F) emitting a stream of the first pressurized fluid from a port of the fluid emission portion of the first roller through the plurality of ports of the rotatable drum portion of the first roller, such that the stream of the first pressurized fluid (a) is emitted in a region proximate to the gap, (b) is emitted at an angle relative to the second roller, (c) impinges on the first surface of the sheet product in the gap, (d) imparts a force on the sheet product to separate contact of the sheet product from the outer surface of the rotatable drum portion of the first roller, and (e) transfers the sheet product from the first roller to the second roller, with the second surface of the sheet product being in contact with the outer surface of the second roller as the sheet product passes through the gap, the port of the fluid emission portion being connected to the orifice and arranged as an elongated slot in the fluid emission portion that extends (i) in a direction parallel to the rotational axis of the rotatable drum portion, and (ii) from the first end to the second end of the rotatable drum portion; and (G) heating the second roller with a second pressurized fluid to dry the sheet product, wherein the first roller is configured to only emit the first pressurized fluid through the plurality of ports extending (1) from the first end to the second end of the rotatable drum portion, and (2) around the at least a portion of the outer surface of the rotatable drum portion.
13. The method of claim 12, wherein the first pressurized fluid includes at least one of air and steam.
14. The method of claim 12, further comprising imparting a compressive force on the sheet product when the sheet product is passed through the gap.
15. The method of claim 14, wherein the compressive force is imparted by the first roller and the second roller.
16. The method of claim 12, further comprising spraying an adhesive on an exposed portion of the outer surface of the second roller.
17. The method of claim 16, further comprising adhering the second surface of the sheet product to the outer surface of the second roller with the adhesive.
18. The method of claim 12, wherein the rotatable drum portion of the first roller is tubular.
19. The method of claim 18, wherein the plurality of ports in the rotatable drum portion of the first roller extends (i) from the first end to the second end of the tubular rotatable drum portion, and (ii) around the entirety of the outer surface of the tubular rotatable drum portion.
20. The method of claim 12, wherein the angle relative to the second roller is a constant angle.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
(1) The subject matter, which is regarded as the invention, is particularly pointed out and distinctly claimed in the claims at the conclusion of the specification. The foregoing and other features, and advantages, of the invention are apparent from the following detailed description taken in conjunction with the accompanying drawings in which:
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(11) The detailed description explains embodiments of the invention, together with advantages and features, by way of example with reference to the drawings.
DETAILED DESCRIPTION OF THE INVENTION
(12) Sheet products are often fabricated with systems that include a variety of rollers and drums that move and direct a sheet product through paths of various fabrication stages. The transition of a sheet product from contacting one roller or drum to another through a fabrication path is complicated by, for example, the thickness, moisture content, and tensile strength of the sheet product, each of which may change as the sheet product moves through the fabrication stages. Thus, a method and system that improves the transition of a sheet product from contacting different surfaces in a fabrication path is desired.
(13) The term sheet products as used herein is inclusive of natural and/or synthetic cloth or paper sheets. Sheet products may include both woven and non-woven articles. There are a wide variety of nonwoven manufacturing processes and they can be either wetlaid or drylaid. Some examples include hydroentangled (sometimes called spunlace), DRC (double re-creped), airlaid, spunbound, carded, paper towel, and meltblown sheet products. Further, sheet products may contain fibrous cellulosic materials that may be derived from natural sources, such as wood pulp fibers, as well as other fibrous material characterized by having hydroxyl groups attached to the polymer backbone. These include glass fibers and synthetic fibers modified with hydroxyl groups. Examples of sheet products include, but are not limited to, wipers, napkins, tissues, rolls, towels or other fibrous, film, polymer, or filamentary products.
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(15) In operation, a sheet product 101 moves as a continuous sheet through the system 100. The sheet product 101 contacts the rotating first roller assembly 102 that rotates about an axis of rotation 113 and passes between a gap 115 defined by the first roller assembly 102 and the second roller assembly 104. The sheet product 101 contacts the rotating second roller assembly 104 that rotates about an axis of rotation 117, and travels in contact with the second roller assembly 104 through the gap 115. In the illustrated embodiment, the first roller assembly 102 and the second roller assembly 104 rotate in opposing directions, as indicated by the arrows 103 and 107. The first roller assembly 102 includes one or more stationary ports 110 communicative with the pressurized fluid source 105. The ports 110 are operative to emit a pressurized fluid indicated by the arrow 111, such as, for example, compressed air, gas, or steam having a flow path indicated by the arrows 111. The pressurized fluid is operative to exert a force on the sheet product 101 that biases the sheet product 101 away from an outer surface of the first roller assembly 102 and towards the outer surface of the second roller assembly 104 in a region proximate to the gap 115 defined by the first roller assembly 102 and the second roller assembly 104.
(16) The gap 115 defined by the first roller assembly 102 and the second roller assembly 104 is sized such that a compressive force may be exerted on the sheet product 101. The compressive force exerted on the sheet product 101 by the first roller assembly 102 and the second roller assembly 104 and the biasing force exerted by the pressurized fluid assist in overcoming mechanical forces such as, for example, surface tension or adhesion between the first roller assembly 102 and the sheet product 101. (Additional forces may be exerted on the sheet product 101 to assist in separating the sheet product 101 from the first roller assembly such as, for example, an adhesive force exerted by the outer surface of the second roller assembly 104 and/or a tensile force exerted on the sheet product 101 by the rotation of the second roller assembly 104.) Once the sheet product 101 is separated from the first roller assembly 102 and contacts the second roller assembly 104, the sheet product 101 rotates about the axis of rotation of the second roller assembly 104. (The second roller assembly 104 may be used, for example, to assist in removing moisture from the sheet product 101.) The directing assembly 106 includes, for example, a metallic strip or other suitable mechanical device that assists in separating the sheet product 101 from contacting the second roller assembly 104. In the illustrated embodiment, the drive roller assembly 108 includes a pair of rollers in contact with the sheet product 101. The drive roller assembly 108 rollers rotate and exert a tensile and compressive force on the sheet product 101 that pulls the sheet product through the drive roller assembly 108.
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(24) As described above, a number of forces are used to separate the fabric 701 from the sheet product 101 and to assist in the adherence of the sheet product to the second roller assembly 104. A mechanical force is exerted by the arrangement of the fabric 701 that draws the fabric 701 away from the sheet product 101 as the drum portion 202 rotates. The compressive force exerted by the drum portion 202 and the second roller assembly 104 on the sheet product 101 facilitates the adhesion of the sheet product 101 to the outer surface 803 of the second roller assembly 104. The adhesive film applied to the outer surface 803 of the second roller assembly 104 assists in maintaining contact between the sheet product 101 and the second roller assembly 104. The pressurized air, emitted from the fluid emission portion 201, passing through the fabric 701, and impinging on the sheet product 101, further assists in adhering the sheet product 101 to the second roller assembly 104. The force of the pressurized air increases the force exerted in the direction of the arrow 801 and allows for compactively less adhesive and/or surface area to be applied to the outer surface 803 of the second roller assembly 104. Following the adhesion of the sheet product 101 to the second roller assembly 104, moisture may be removed from the sheet product 101 by, for example, heating the second roller assembly 104, resulting in a reduction in the moisture content of the sheet product 101. The sheet product 101 is separated from the second roller assembly 104 following the drying process and may enter subsequent fabrications processes such as, for example, additional drying processes, texturizing processes, and eventual packaging processes.
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(26) While the invention has been described in detail in connection with only a limited number of embodiments, it should be readily understood that the invention is not limited to such disclosed embodiments. Rather, the invention can be modified to incorporate any number of variations, alterations, substitutions, or equivalent arrangements not heretofore described, but which are commensurate with the spirit and scope of the invention. Additionally, while various embodiments of the invention have been described, it is to be understood that aspects of the invention may include only some of the described embodiments. Accordingly, the invention is not to be seen as limited by the foregoing description, but is only limited by the scope of the appended claims.