USPatentGranted
H

Fibrous superabsorbent core having integrally attached hydrophobic facing layer

Granted 5 Apr 1994 · no office action yet

Assignee: Ahr Nicholas A

Law firm: Law firm · Log in to unlock

Attorney: Attorney · Log in to unlock

Inventors: David M. Ooten, Nicholas A. Ahr · Examiner: Robert L. Stoll · AU 223 · TC 2200

Application
893963
filed 4 Jun 1992
Publication
Not published
not published
Patent· this page
US H1298
granted 5 Apr 1994

Life of the patent

3 dated events
⤢ drag to zoom19921994199619982000200220042006200820102012ProsecutionTerm & fees
ProsecutionTerm & feeshover for detail · click to open

Abstract

Absorbent structures are disclosed comprising a fibrous, superabsorbent core and an integrally attached facing layer. The structures can be made by forming nonwoven webs of mixtures of thermoplastic fibers and superabsorbent fibers, and a web consisting essentially of thermoplastic hydrophobic fibers. The layers are bonded together using thermal bonding. The structures are suitable for use in disposable absorbent products, in particular, pantiliners.

Description

6 parts
›This is a continuation of application Ser. No…

This is a continuation of application Ser. No. 07/608,083, filed on Nov. 1, 1990, now abandoned.

›TECHNICAL FIELD

The present invention relates to absorbent structures comprising a fibrous superabsorbent core and an integrally attached hydrophobic facing layer.

Absorbent articles designed for absorbing body fluids typically comprise a hydrophillic absorbent core and a hydrophobic facing layer. The function of the facing layer is to wick body fluids away from the body into the absorbent core. Because the facing layer itself is hydrophobic, it will stay relatively dry, thus preventing the discomfort of a wet material in contact with the skin of the user of the absorbent article.

It is desirable to provide a good contact between the hydrophobic facing layer and the hydrophillic absorbent core, so as to enhance fluid transport from the facing layer to the core. It is further desirable to provide an absorbent core having a low bulk, yet a high absorbent capacity. It is further desirable that the absorbent core exhibits good wicking of fluid in the x- and y-directions.

It is therefore an object of the present invention to provide a fibrous superabsorbent core with an integrally attached hydrophobic facing layer. It is a further object of this invention to provide such a core having low bulk and yet a high absorbent capacity.

›BACKGROUND ART

U.S. Pat. No. 3,067,747, issued Dec. 11, 1962 to Wolterding et al. discloses absorbent nonadherent bandages for surgical or menstrual use. The bandages have topsheets of nonwoven web of bonded synthetic hydrophobic fibers. The absorbent web may be a combination of cotton and/or rayon fibers mixed with thermoplastic fibers. The topsheet is thermally bonded to the absorbent web.

U.S. Pat. No. 4,047,534, issued Sep. 13, 1977 to Thomaschefsky et al. relates to nursing pads having an inner absorbent layer including a proportion of synthetic thermoplastic polymer fibers and an outer layer of thermoplastic polymer fibers. The layers are combined by embossing with heat and low pressure.

U.S. Pat. No. 4,397,644, issued Aug. 9, 1983 to Matthews et al. discloses a topsheet for sanitary napkins, having a hydrophilicity gradient. The topsheet consists of two layers. The top layer is thermoplastic, for example, spun bonded polypropylene. The so called transfer layer contains from 40 to 100 percent thermoplastic fibers.

U.S. Pat. No. 4,844,965, issued Jul. 4, 1989 to Foxman, relates to an absorptive device for incontinent patients. The device includes a liquid permeable absorptive member having an outer facing layer of synthetic fabric and an inner backing layer of fabric having a blend of thermal plastic and cellulose fibers. The synthetic outer facing layer is ultrasonically welded to the thermal plastic fibers of the blended material inner backing layer.

U.S. Pat. No. 4,844,965, issued Jul. 4, 1989 to Foxman, discloses an absorptive member (for example a bed pad) having an outer facing layer of thermal plastic material and an inner facing layer which has a material blend of thermal plastic and cellulose fibers. This synthetic outer facing layer is ultrasonically welded to the thermal plastic fibers of the blended material inner backing layer. The pad is washable.

U.S. Pat. No. 4,886,697, issued Dec. 12, 1989 to Perdelwitz, Jr. et al. relates to materials having at least one layer comprising a mixture of thermoplastic and other fibers which may be covered with thermoplastic material containing cover sheets. The materials are densified in discrete areas, and eventually cut within the densified region. The layer comprising a mixture of thermoplastic and other fibers may additionally contain a superabsorbent material. The facing layer may be thermobonded to the absorbent layer by pulling heated air through the web plus facing layer. The material is disclosed to be suitable for use in children's car seats.

U.S. Pat. No. 4,939,017, issued Jul. 3, 1990 to Foxman discloses an absorbent pad having an outer layer of 100 percent synthetic thermal plastic fabric and an absorptive layer which is a blend of plastic and cellulose fibers. The layers are ultrasonically welded.

›DETAILED DESCRIPTION OF THE INVENTION · 1 of 2

The absorbent structures of the present invention comprise a fibrous superabsorbent core with an integrally attached hydrophobic facing layer. Specifically, the absorbent core comprises from about 5 percent to about 95 percent of superabsorbent fibers, and from about 5 percent to about 95 percent of a synthetic thermoplastic fibers. The hydrophobic facing layer consists essentially of synthetic hydrophobic thermoplastic fibers. The structure may be formed on a conventional carding machine, using one card for the hydrophobic facing layer, and one or more cards (up to about 20) for the absorbent core. The layers are integrally bonded by a thermal process. Preferably the bonding is carried out with heated calender rolls or using ultrasonic sealing. This has the additional advantage that during the bonding the bulk of the absorbent structure may be significantly reduced. For example, the caliper of the absorbent structures may be reduced by a factor of 5 to 15 during the thermobonding process. Preferably, the bonding pattern is discontinuous, as is the case when heated embossing rolls are used. In areas where the fibers are not bonded they remain soft and flexible. Moreover, in unbonded areas the superabsorbent fibers absorb fluid and swell more freely than in bonded areas.

The synthetic hydrophobic fibers of the facing layer may be any of such fibers known in the art for this type of application. Polyolefin fibers are preferred, with polypropylene fibers being highly preferred.

The thermoplastic fiber component of the absorbent core may be a hydrophilic or a hydrophobic fiber. If a hydrophobic fiber is used it may be the same or different than the hydrophobic fiber of the facing layer.

Any superabsorbent fiber known in the art may be used as a superabsorbent fiber in the absorbent core. Superabsorbent fibers may be formed by forming a water soluble superabsorbent polymer into water soluble filaments, contacting the filaments with a primary air stream having a velocity effective to attenuate and to partially dry the filaments, and contacting the attenuated filaments with a secondary air stream having a velocity effective to fragment the filaments into fibers. Particularly suitable superabsorbent polymers are polymers comprising a blend of (1) a copolymer of at least one alpha, beta-unsaturated carboxylic monomer and at least one monomer copolymerizable therewith, and (2) a cross-linking agent having crosslinking functionality comprising hydroxyl or heterocyclic carbonate groups. Highly preferred are maleic anhydride/isobutylene copolymers crosslinked with propylene carbonate or a mixture of pentaerythriol and butanediol.

Particularly preferred for use herein is Fibersorb, a commercially available superabsorbent fiber from Arco Chemical Company of Newton Square, Pa. These fibers are disclosed more fully in U.S. Pat. No. 4,855,179, issued Aug. 8, 1989, to Bourland et al., the disclosures of which are incorporated herein by reference. In addition to the hydrophobic fibers and the superabsorbent fibers, the absorbent core may further comprise additional absorbent fibers, like pulp fibers, cotton fibers or rayon. Preferred absorbent cores comprise from about 30 to about 70 percent hydrophobic fibers and from about 70 percent to about 30 percent superabsorbent fibers.

It is advantageous to use calender rolls having an embossing pattern for the thermobonding of the two layers. An example of a suitable embossing pattern is one having a wafer-like or diamond shape pattern of the type disclosed in U.S. Pat. No. 4,781,710, issued Nov. 1, 1988 to Megisan et al., the disclosures of which are incorporated herein by reference.

The absorbent structures of the present invention can be made very thin, i.e., having a thickness of less than about 2 millimeters, preferably less than about 1 millimeter, typically from about 0.3 to about 2 millimeters. Yet, the absorbent structures may have an absorbent capacity of more than 0.05 grams of a 0.9 percent saline solution per square centimeter of the absorbent structure. Typically, the absorbent capacity is in the range of from about 0.07 grams per square centimeter to about 0.25 grams per square centimeter for a structure having a thickness of 1 millimeter.

Preferred absorbent structures have a density in the range from about 0.08 grams per cubic centimeter to about 0.25 grams per cubic centimeter.

The absorbent structures of the present invention are particularly suitable for use in so called pantiliners. Pantiliners are absorbent pads used for the absorption of menstrual fluid during those days of the menstrual cycle that the discharge of menstrual fluid is low. Pantiliners are also commonly used for the absorption of vaginal discharge other than menses.

A pantiliner of the state of the art typically comprises a hydrophobic liquid pervious topsheet, a thin absorbent core, typically comprised of wood pulp fibers, and a liquid impervious backsheet, commonly a polyethylene film. The outer surface of the liquid impermeable backsheet may be provided with strips or blots of a pressure sensitive adhesive for fastening pantiliner in the crotch of the panties of the wearer. Commonly this pressure sensitive adhesive is protected from contamination and inadvertent adherence with a release liner. The release liner is to be removed by the user prior to adhering pantiliner to the panty. Pantiliners may have a length in the range of from 12 centimeters to about 16 centimeters, and a width of from about 3 centimeters to about 8 centimeters. A particularly desirable pantiliner has a slight dog bone shape, a length of about 14 centimeters, a narrowest width in its center portion of about 4 centimeters, and a greatest width near both ends of about 7 centimeters.

Examples of prior art pantiliners are disclosed in U.S. Pat. No. 4,738,676, issued Apr. 19, 1988 to Osborn III, the disclosures of which are incorporated herein by reference.

The absorbent structures of the present invention replace the hydrophobic topsheet and the absorbent core of a conventional pantiliner. It is desirable to provide the absorbent structure with a liquid impervious backsheet. This backsheet may be a suitable film of polyethylene or polypropylene. The backsheet can be thermally bonded or adhesively bonded to the absorbent structure. For adhesive bonding, a preferred adhesive pattern is a spiral spray or meltblown ("angel hair") pattern.

›DETAILED DESCRIPTION OF THE INVENTION · 2 of 2

It is desirable to seal the absorbent structure around its perimeter, to prevent superabsorbent fibers from coming into contact with the skin of the wearer. Thermal embossing is a suitable method for sealing the perimeter of absorbent structures of the present invention.

›DETAILED DESCRIPTION OF A PREFERRED EMBODIMENT

The following three nonwoven webs are prepared on a nonwoven carding line. A polypropylene web having a basis weight of about 1 ounce per square yard (about 30 grams per square meter) and two nonwoven webs of a 50/50 blend of polypropylene fibers and Fibersorb superabsorbent fiber, each having a basis weight of about 1 ounce per square yard (about 30 grams per square meter). The three webs are combined, such that the all polypropylene layer is the top layer. The combined webs have a thickness of about 1/2 inch (about 12 millimeters). The combined webs are then calendered at a web speed of about 25 to 30 feet per minute (about 7.5 to 9 meters per minute) and at a temperature of from 140° C. to about 165° C., preferably from about 150° C. to about 160° C. The temperature should be increased when working at higher web speeds, and decreased when working at lower web speeds, to maintain good results. The calender pressure is about 160 pounds per linear inch (about 29 kilogram per linear centimeter). The calender rolls have an embossing pattern of a diamond shape, of the type described in U.S. Pat. No. 4,781,710. The resulting absorbent structure has a caliper of about 0.8 millimeters. It has an absorbent capacity for a 0.9 percent saline solution of about 0.12 grams per square centimeter. Properly dimensioned strips of the absorbent structure are combined with a polyethylene backsheet material and provided with a panty fastening adhesive in the manner described hereinabove for conventional pantiliners. The resulting pantiliner is thin and flexible, yet has adequate absorbent capacity.

In an alternate embodiment the liquid impermeable backsheet is formed as follows. Prior to calendering the nonwoven webs described hereinabove are combined with an additional web consisting essentially of heat fusible fibers, for example, polyethylene fibers. This bottom layer is subsequently rendered liquid impermeable by heat fusing the fibers, for example, using a heated calender roll or infrared radiation.

Similar structures are formed using 1 layer of polypropylene fibers and 3 layers of an 85/15 mixture of polypropylene/Fibersorb fibers.

1 of 6 part labels are ours — the grant heads the rest

Claims

6 · 1 independent · depth 2
123456
6 granted claims

Classifications

5 codes
IPC · International Patent Classification
Section A — Human necessities
  • A41B9/12
  • A61F13/539
  • A61F13/53
  • A61F13/15
USPC · US Patent Classification
428/296

Claim changes

Soon
Coming soonHow the claims changed between publication and grant

See which claims were amended, added or cancelled during examination, with every added and removed word marked.

AmendedAddedCancelledUnchanged

The published claims of this patent are not paired with the granted ones in what we hold.

File wrapper

Pendency
1.8 y
670 days filing → grant
Office actions
0
on the grant's record
Examiner
Robert L. Stoll
art unit 223 · TC 2200
Citations: 10 back · 0 forward

Term & fees

See the term timeline — pendency span, in-force span, the maintenance fees paid and both computed expiry dates.

Log in to unlock

Worldwide family

39 members · 27 offices
US1EP2JP2KR1CN2WO2AT1AU2BR1CA2CZ1DE2DK1ES1FI3GR1HK1HU1ID1IE2MX2NZ1PL1PT2SG1SK1TW1
this patentIP5 & PCTother officessolid = grantedhover for detail · click to open
Members
39
DOCDB simple family 24434961
Offices
27
US · EP · JP · KR · CN · WO
Granted
13 of 39
grant date present
Non-English titles
24
shown as filed, never translated
›IP5 & PCT — 10 members
OfficePublicationKindPublishedFiledStatusTitle
USthis patentUS-H1298-HH5 Apr 19944 Jun 1992grantedFibrous superabsorbent core having integrally attached hydrophobic facing layer
EPEP-0555346-A1A118 Aug 199328 Oct 1991publishedNoyau fibreux superabsorbant a couche de revetement hydrophobe solidaire.fr
EPEP-0555346-B1B122 May 199628 Oct 1991grantedNoyau fibreux superabsorbant a couche de revetement hydrophobe solidairefr
JPJP-H06502560-AA24 Mar 199428 Oct 1991published一体に取り付けられた疎水性フェーシング層を有する繊維状超吸収性芯ja
JPJP-3429756-B2B222 Jul 200328 Oct 1991granted一体に取り付けられた疎水性フェーシング層を有する繊維状超吸収性芯ja
KRKR-100221095-B1B115 Sep 199928 Oct 1991granted일체형으로 부착된 소수성 대향층을 갖는 섬유상 초흡수 코어ko
CNCN-1062283-AA1 Jul 19921 Nov 1991published具有整体连接的疏水性面层的高吸收纤维芯层zh
CNCN-1044196-CC21 Jul 19991 Nov 1991granted具有整体连接的疏水性面层的高吸收纤维芯层及其制法zh
WOWO-9207534-A2A214 May 199228 Oct 1991publishedFibrous superabsorbent core having integrally attached hydrophobic facing layer
WOWO-9207534-A3A315 Oct 199228 Oct 1991publishedFibrous superabsorbent core having integrally attached hydrophobic facing layer
›Other offices — 29 members
OfficePublicationKindPublishedFiledStatusTitle
ATAT-E138258-T1T115 Jun 199628 Oct 1991grantedFaserförmiger, superabsorbierender kern mit integral befestigter, hydrophober überzugsschichtde
AUAU-8950691-AA26 May 199228 Oct 1991publishedFibrous superabsorbent core having integrally attached hydrophobic facing layer
AUAU-662303-B2B231 Aug 199528 Oct 1991grantedFibrous superabsorbent core having integrally attached hydrophobic facing layer
BRBR-9106951-AA17 Aug 199328 Oct 1991publishedEstrutura absrovente,forro para calcinhas e processo para fabricar uma estrutura absorventept
CACA-2094148-A1A12 May 199228 Oct 1991publishedPartie principale fibreuse et superabsorbante comprenant une couche de surface hydrophobe integreefr
CACA-2094148-CC16 Mar 199928 Oct 1991grantedPartie principale fibreuse et superabsorbante comprenant une couche de surface hydrophobe integreefr
CZCZ-79193-A3A313 Oct 199330 Apr 1993publishedCore of fibrous super absorbent with integral connection to hydrophobic front layer
DEDE-69119780-D1D127 Jun 199628 Oct 1991grantedFaserförmiger, superabsorbierender kern mit integral befestigter, hydrophober überzugsschichtde
DEDE-69119780-T2T219 Sep 199628 Oct 1991grantedFaserförmiger, superabsorbierender kern mit integral befestigter, hydrophober überzugsschichtde
DKDK-0555346-T3T31 Jul 199628 Oct 1991grantedFibrøs, superabsorberende kerne med et dertil integreret fastgjort, hydrofobt overfladelagda
ESES-2087314-T3T316 Jul 199628 Oct 1991grantedNucleo superabsorbente fibroso que tiene unida integralmente una capa de recubrimiento hidrofoba.es
FIFI-931962-A0A030 Apr 199328 Oct 1991publishedFibrigt superabsorberande innerstycke med integrerat faest hydrofobt yttre skiktfi
FIFI-931962-A7A73 Jun 199328 Oct 1991publishedKuitumainen superabsorboiva sisus, jossa on integroidusti kiinnitetty hydrofobinen ulkokerrosfi
FIFI-931962-LL3 Jun 199328 Oct 1991publishedFibrigt superabsorberande innerstycke med integrerat faest hydrofobt yttre skiktfi
GRGR-3020013-T3T331 Aug 199623 May 1996publishedFibrous superabsorbent core having integrally attached hydrophobic facing layer
HKHK-1006402-A1A126 Feb 199928 Oct 1991publishedFibrous superabsorbent core having integrally attached hydrophobic facing layer
HUHU-9301277-D0D028 Sep 199328 Oct 1991publishedFibrous superabsorbent core with integrated hydrophobic covering sheath
IDID-1035-BB24 Oct 199630 Oct 1991publishedInti superabsorben berserat yang mempunyai lapisan muka hidrofobik yang terlekat secara terpaduid
IEIE-913811-A1A122 May 199231 Oct 1991publishedFibrous superabsorbent core having integrally attached hydrophobic facing layer
IEIE-72952-B1B17 May 199731 Oct 1991publishedFibrous superabsorbent core having integrally attached hydrophobic facing layer
MXMX-9101888-AA1 Jun 199231 Oct 1991publishedNucleo fibroso superabsorbente teniendo capa facial hidrofoba unida integralmentees
MXMX-174383-BB11 May 199431 Oct 1991publishedNucleo fibroso superabsorbente teniendo capa faciales
NZNZ-240422-AA24 Feb 199531 Oct 1991publishedAbsorbent pad: fibrous core integrally attached to backsheet and hydrophobic facing layer
PLPL-167679-B1B131 Oct 199528 Oct 1991publishedArtykul absorpcyjny PLpl
PTPT-99407-AA30 Sep 199231 Oct 1991publishedProcesso para a producao de estruturas absorventes adequadas para produtos absorventes descartaveis que compreendem um nucleo fibroso super-absorvente e uma camada exterior hidrofoba integral com elept
PTPT-99407-BB30 Jun 199931 Oct 1991publishedProcesso para a producao de estruturas absorventes adequadas para produtos absorventes descartaveis que compreendem um nucleo fibroso super-absorvente e uma camada exterior hidrofoba integral com elept
SGSG-49659-A1A115 Jun 199828 Oct 1991publishedFibrous superabsorbent core having intergrally attached hydrophobic facing layer
SKSK-43093-A3A36 Oct 199328 Oct 1991publishedFibrous superarsorbent core having integrally attached hydrophobic facing layer
TWTW-249752-BB21 Jun 199514 Dec 1991grantedno title held

Validity challenges

See the validity challenges on record — reexaminations, IPRs and PGRs, with their institution decisions and outcomes.

Log in to unlock

Citations

See every patent this one cites and every patent that cites it back — publication, assignee, and how each one was found.

Log in to unlock