WO2017061576A1 - Absorbent article - Google Patents

Absorbent article Download PDF

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Publication number
WO2017061576A1
WO2017061576A1 PCT/JP2016/079864 JP2016079864W WO2017061576A1 WO 2017061576 A1 WO2017061576 A1 WO 2017061576A1 JP 2016079864 W JP2016079864 W JP 2016079864W WO 2017061576 A1 WO2017061576 A1 WO 2017061576A1
Authority
WO
WIPO (PCT)
Prior art keywords
water
absorbing polymer
base portion
polymer particles
absorbent
Prior art date
Application number
PCT/JP2016/079864
Other languages
French (fr)
Japanese (ja)
Inventor
哲史 内田
亮太 蔵前
藍子 恩田
Original Assignee
花王株式会社
Priority date (The priority date is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the date listed.)
Filing date
Publication date
Application filed by 花王株式会社 filed Critical 花王株式会社
Priority to RU2018115701A priority Critical patent/RU2670329C1/en
Priority to CN201680052680.9A priority patent/CN108024889B/en
Publication of WO2017061576A1 publication Critical patent/WO2017061576A1/en

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Classifications

    • AHUMAN NECESSITIES
    • A61MEDICAL OR VETERINARY SCIENCE; HYGIENE
    • A61FFILTERS IMPLANTABLE INTO BLOOD VESSELS; PROSTHESES; DEVICES PROVIDING PATENCY TO, OR PREVENTING COLLAPSING OF, TUBULAR STRUCTURES OF THE BODY, e.g. STENTS; ORTHOPAEDIC, NURSING OR CONTRACEPTIVE DEVICES; FOMENTATION; TREATMENT OR PROTECTION OF EYES OR EARS; BANDAGES, DRESSINGS OR ABSORBENT PADS; FIRST-AID KITS
    • A61F13/00Bandages or dressings; Absorbent pads
    • A61F13/15Absorbent pads, e.g. sanitary towels, swabs or tampons for external or internal application to the body; Supporting or fastening means therefor; Tampon applicators
    • AHUMAN NECESSITIES
    • A61MEDICAL OR VETERINARY SCIENCE; HYGIENE
    • A61FFILTERS IMPLANTABLE INTO BLOOD VESSELS; PROSTHESES; DEVICES PROVIDING PATENCY TO, OR PREVENTING COLLAPSING OF, TUBULAR STRUCTURES OF THE BODY, e.g. STENTS; ORTHOPAEDIC, NURSING OR CONTRACEPTIVE DEVICES; FOMENTATION; TREATMENT OR PROTECTION OF EYES OR EARS; BANDAGES, DRESSINGS OR ABSORBENT PADS; FIRST-AID KITS
    • A61F13/00Bandages or dressings; Absorbent pads
    • A61F13/15Absorbent pads, e.g. sanitary towels, swabs or tampons for external or internal application to the body; Supporting or fastening means therefor; Tampon applicators
    • A61F13/45Absorbent pads, e.g. sanitary towels, swabs or tampons for external or internal application to the body; Supporting or fastening means therefor; Tampon applicators characterised by the shape
    • A61F13/49Absorbent articles specially adapted to be worn around the waist, e.g. diapers
    • AHUMAN NECESSITIES
    • A61MEDICAL OR VETERINARY SCIENCE; HYGIENE
    • A61FFILTERS IMPLANTABLE INTO BLOOD VESSELS; PROSTHESES; DEVICES PROVIDING PATENCY TO, OR PREVENTING COLLAPSING OF, TUBULAR STRUCTURES OF THE BODY, e.g. STENTS; ORTHOPAEDIC, NURSING OR CONTRACEPTIVE DEVICES; FOMENTATION; TREATMENT OR PROTECTION OF EYES OR EARS; BANDAGES, DRESSINGS OR ABSORBENT PADS; FIRST-AID KITS
    • A61F13/00Bandages or dressings; Absorbent pads
    • A61F13/15Absorbent pads, e.g. sanitary towels, swabs or tampons for external or internal application to the body; Supporting or fastening means therefor; Tampon applicators
    • A61F13/53Absorbent pads, e.g. sanitary towels, swabs or tampons for external or internal application to the body; Supporting or fastening means therefor; Tampon applicators characterised by the absorbing medium
    • AHUMAN NECESSITIES
    • A61MEDICAL OR VETERINARY SCIENCE; HYGIENE
    • A61FFILTERS IMPLANTABLE INTO BLOOD VESSELS; PROSTHESES; DEVICES PROVIDING PATENCY TO, OR PREVENTING COLLAPSING OF, TUBULAR STRUCTURES OF THE BODY, e.g. STENTS; ORTHOPAEDIC, NURSING OR CONTRACEPTIVE DEVICES; FOMENTATION; TREATMENT OR PROTECTION OF EYES OR EARS; BANDAGES, DRESSINGS OR ABSORBENT PADS; FIRST-AID KITS
    • A61F13/00Bandages or dressings; Absorbent pads
    • A61F13/15Absorbent pads, e.g. sanitary towels, swabs or tampons for external or internal application to the body; Supporting or fastening means therefor; Tampon applicators
    • A61F13/53Absorbent pads, e.g. sanitary towels, swabs or tampons for external or internal application to the body; Supporting or fastening means therefor; Tampon applicators characterised by the absorbing medium
    • A61F13/534Absorbent pads, e.g. sanitary towels, swabs or tampons for external or internal application to the body; Supporting or fastening means therefor; Tampon applicators characterised by the absorbing medium having an inhomogeneous composition through the thickness of the pad
    • A61F13/535Absorbent pads, e.g. sanitary towels, swabs or tampons for external or internal application to the body; Supporting or fastening means therefor; Tampon applicators characterised by the absorbing medium having an inhomogeneous composition through the thickness of the pad inhomogeneous in the plane of the pad, e.g. core absorbent layers being of different sizes
    • AHUMAN NECESSITIES
    • A61MEDICAL OR VETERINARY SCIENCE; HYGIENE
    • A61FFILTERS IMPLANTABLE INTO BLOOD VESSELS; PROSTHESES; DEVICES PROVIDING PATENCY TO, OR PREVENTING COLLAPSING OF, TUBULAR STRUCTURES OF THE BODY, e.g. STENTS; ORTHOPAEDIC, NURSING OR CONTRACEPTIVE DEVICES; FOMENTATION; TREATMENT OR PROTECTION OF EYES OR EARS; BANDAGES, DRESSINGS OR ABSORBENT PADS; FIRST-AID KITS
    • A61F13/00Bandages or dressings; Absorbent pads
    • A61F13/15Absorbent pads, e.g. sanitary towels, swabs or tampons for external or internal application to the body; Supporting or fastening means therefor; Tampon applicators
    • A61F13/56Supporting or fastening means
    • AHUMAN NECESSITIES
    • A61MEDICAL OR VETERINARY SCIENCE; HYGIENE
    • A61FFILTERS IMPLANTABLE INTO BLOOD VESSELS; PROSTHESES; DEVICES PROVIDING PATENCY TO, OR PREVENTING COLLAPSING OF, TUBULAR STRUCTURES OF THE BODY, e.g. STENTS; ORTHOPAEDIC, NURSING OR CONTRACEPTIVE DEVICES; FOMENTATION; TREATMENT OR PROTECTION OF EYES OR EARS; BANDAGES, DRESSINGS OR ABSORBENT PADS; FIRST-AID KITS
    • A61F13/00Bandages or dressings; Absorbent pads
    • A61F13/15Absorbent pads, e.g. sanitary towels, swabs or tampons for external or internal application to the body; Supporting or fastening means therefor; Tampon applicators
    • A61F13/56Supporting or fastening means
    • A61F13/58Adhesive tab fastener elements
    • AHUMAN NECESSITIES
    • A61MEDICAL OR VETERINARY SCIENCE; HYGIENE
    • A61FFILTERS IMPLANTABLE INTO BLOOD VESSELS; PROSTHESES; DEVICES PROVIDING PATENCY TO, OR PREVENTING COLLAPSING OF, TUBULAR STRUCTURES OF THE BODY, e.g. STENTS; ORTHOPAEDIC, NURSING OR CONTRACEPTIVE DEVICES; FOMENTATION; TREATMENT OR PROTECTION OF EYES OR EARS; BANDAGES, DRESSINGS OR ABSORBENT PADS; FIRST-AID KITS
    • A61F5/00Orthopaedic methods or devices for non-surgical treatment of bones or joints; Nursing devices; Anti-rape devices
    • A61F5/44Devices worn by the patient for reception of urine, faeces, catamenial or other discharge; Portable urination aids; Colostomy devices

Definitions

  • the present invention relates to an absorbent article.
  • Patent Document 1 describes an absorbent article that includes an absorbent body having an excretion part slit region in which vertical slits along the vertical direction are formed in a dispersed state at an excretion part facing part. According to the literature, it is said that this absorbent article can enhance a feeling of wear.
  • Patent Document 2 describes a sanitary napkin provided with an absorbent body in which four or more rows of slits arranged in the vertical direction or the horizontal direction are provided at intervals. According to this document, the napkin absorbent body can be easily deformed, and the rigidity of the absorbent body is relaxed by the slits, so that liquid leakage and a feeling of foreign matter are reduced.
  • JP 2015-42244 A Japanese Utility Model Publication No. 63-18122
  • the excretory fluids to be absorbed by the absorbent article vary from those having a low viscosity such as urine to those having a high viscosity such as menstrual blood and loose stool.
  • menstrual blood and loose stool are known to be less absorbed than low-viscosity excretory fluids such as urine because of their high viscosity. Due to this, such a high-viscosity excretory liquid has a problem that liquid leakage is likely to occur and liquid return is likely to occur.
  • Even an absorbent article provided with the above-described absorbent body having slits cannot be said to have solved such a problem to the extent that it can be satisfactorily satisfied. Accordingly, there is a demand for an absorbent article that can absorb and retain a highly viscous excretory liquid quickly and reliably.
  • the present invention relates to an elongated base portion having a lateral direction, a longitudinal direction longer than the lateral direction, and a thickness direction, and water-absorbing polymer particles fixed to the surface of the elongated base portion
  • an absorbent article comprising an absorbent body comprising a plurality of absorptive units each having an absorbent body, and each of the absorptive units being arranged so that the longitudinal direction thereof faces at least one direction.
  • the particles of the water-absorbing polymer are fixed only on the surface of the long base portion facing the non-skin.
  • the water-absorbing polymer particles do not protrude laterally beyond the side edges along the longitudinal direction of the elongated substrate portion, and Even when the water-absorbing polymer particles absorb the liquid and swell, the water-absorbing polymer particles do not swell beyond the side edges along the longitudinal direction of the elongated base portion. Yes.
  • the present invention provides a method for producing the absorbent article as a preferred method for producing the absorbent article, in the lateral direction on the surface of one surface of the base sheet of the hydrophilic long base portion conveyed in one direction. Apply adhesive to multiple locations separated by a distance, The adhesive on the base sheet of the long base portion is applied in a state where the base sheet of the long base portion to which the adhesive has been applied is transported along the transport direction.
  • the surface of the one surface is sprayed with water-absorbing polymer particles over the entire region in the lateral direction, In the non-application part between the places where the adhesive was applied to the base sheet of the elongated base part in which particles of the water-absorbing polymer were dispersed, in a state where the base sheet was transported along the transport direction, Cut along the conveying direction to obtain a plurality of narrow elongated base portions, manufacture an absorber, A step of disposing a back sheet on the one surface side where the water-absorbing polymer particles are fixed in the manufactured absorbent body and disposing a surface sheet on the other surface side where the water-absorbing polymer particles are not fixed; The manufacturing method of an absorbent article is also provided.
  • FIG. 2 is a perspective view of an absorbent body in the absorbent article shown in FIG.
  • FIG. 3 is a perspective view (corresponding to FIG. 2) of another embodiment of the absorbent body in the absorbent article shown in FIG.
  • FIG. 4 is a schematic diagram of a cross section along the horizontal direction showing a state in which the absorbent article shown in FIG. 1 absorbs liquid and the water-absorbing polymer particles swell.
  • FIG. 5 is a schematic view showing an embodiment of the absorbent article manufacturing apparatus shown in FIG. 1.
  • FIG. 6 is a schematic perspective view of a base sheet cut portion included in the manufacturing apparatus shown in FIG.
  • FIG. 7 is a schematic view (corresponding to FIG. 5) showing another embodiment of the absorbent article manufacturing apparatus shown in FIG.
  • FIG. 8 is a perspective view (corresponding to FIG. 2) showing another embodiment of the absorbent body in the absorbent article of the present invention.
  • the present invention relates to improvement of an absorbent body in an absorbent article, and more particularly, to an absorbent article excellent in absorption and retention of high-viscosity excretory fluid.
  • the absorbent article of the present invention is generally used for absorbing and retaining excretory body fluids such as urine, menstrual blood and loose stool.
  • Absorbent articles include, for example, disposable diapers, sanitary napkins, incontinence pads, and the like, but are not limited to these, and widely include articles used to absorb liquid discharged from the human body. is there.
  • the absorbent article typically includes a liquid-retaining absorbent, a top sheet disposed on the skin facing surface side of the absorbent body, and a back sheet disposed on the non-skin facing surface side of the absorbent body.
  • a top sheet and the back sheet materials usually used in the technical field can be used without particular limitation.
  • the surface sheet liquid permeable sheets such as various nonwoven fabrics and perforated films subjected to a hydrophilic treatment can be used.
  • a liquid permeable or water repellent sheet such as a thermoplastic resin film or a laminate of the film and a nonwoven fabric can be used.
  • the back sheet may have water vapor permeability.
  • the absorbent article may further include various members according to the specific application of the absorbent article. Such members are known to those skilled in the art. For example, when applying an absorbent article to a disposable diaper or a sanitary napkin, a pair or two or more pairs of leak-proof cuffs can be disposed on the left and right sides of the topsheet.
  • a so-called sublayer sheet may be disposed on at least one of the skin facing surface and the non-skin facing surface of the absorbent body.
  • the sub-layer sheet is a liquid-permeable sheet disposed between the absorber and the top sheet or between the absorber and the back sheet.
  • FIG. 1 schematically shows a cross section along the lateral direction showing an embodiment of the absorbent article of the present invention.
  • the absorbent article 10 shown in the figure includes an absorbent body 1.
  • a surface sheet 11 is disposed on the skin facing surface side of the absorbent body 1.
  • a back sheet 12 is disposed on the non-skin facing surface side of the absorbent body 1.
  • FIG. 2 is a perspective view of the absorbent body 1 in the absorbent article 10 shown in FIG.
  • the absorbent body 1 includes a long base portion 2 having a horizontal direction, a vertical direction longer than the horizontal direction, and a thickness direction, and a water-absorbing polymer fixed to the surface of the long base portion 2
  • a plurality of absorptive units 4 provided with particles 3 (hereinafter also simply referred to as “water-absorbing polymer 3”), and each absorptive unit 4 is arranged so that its longitudinal direction is at least in one direction. Is formed.
  • the horizontal direction is represented by X
  • the vertical direction is represented by Y
  • the thickness direction is represented by Z.
  • the horizontal direction X, the vertical direction Y, and the thickness direction Z are orthogonal to each other.
  • the transverse direction X, the longitudinal direction Y, and the thickness direction Z of the elongated base portion 2 are the same as the transverse direction X, the longitudinal direction Y, and the thickness direction Z of the absorbent unit 4, and in this embodiment, FIG. As shown, the transverse direction X, the longitudinal direction Y, and the thickness direction Z of the absorbent body 1 also coincide.
  • the longitudinal direction Y of the absorbent body 1 also coincides with the wearer's front-rear direction when the absorbent article 10 is worn.
  • the absorbent body 1 is formed by arranging a plurality of absorbent units 4 such that the longitudinal direction Y of the absorbent unit 4 faces the longitudinal direction Y of the absorbent body 1. Between the absorbent units 4 and 4 adjacent to each other in the lateral direction X of the absorbent body 1, inclusions are absent from the viewpoint of ease of movement of the absorbent unit 4. For example, each absorptive unit 4 is in a state where it is not wrapped with inclusions.
  • the absorbent unit 4 of the absorber 1 is formed in a rectangular shape that is long in the vertical direction Y.
  • the absorptive unit 4 has a length Lx in the lateral direction X of preferably 0.3 mm to 10 mm, more preferably 0.6 mm to 2.0 mm, and still more preferably 0.6 mm to 1.8 mm. is there.
  • the length Ly in the longitudinal direction Y of the absorbent unit 4 is preferably 2 to 3500 times, more preferably 100 to 700 times the length Lx in the lateral direction X.
  • the length Ly in the longitudinal direction Y of the absorbent unit 4 is preferably 20 mm or more and 1000 mm or less, and more preferably 200 mm or more and 400 mm or less.
  • the absorptive unit 4 has an elongated shape.
  • the length Lx in the lateral direction X of the absorbent unit 4 with respect to the long base portion width W2 is determined. Is preferably 0 ⁇ m ⁇ (Lx ⁇ W2) ⁇ 1400 ⁇ m, and more preferably 200 ⁇ m ⁇ (Lx ⁇ W2) ⁇ 1000 ⁇ m.
  • the absorbent body 1 is formed in a rectangular shape that is long in the longitudinal direction Y in a state before use.
  • the absorbent body 1 has a length in the vertical direction Y of about 100 mm to 1000 mm and a length in the horizontal direction X of about 50 mm to 300 mm.
  • the absorbent body 1 may include a core wrap sheet.
  • the core wrap sheet is preferably arranged so as to cover at least a part of the absorbent unit 4 arranged in at least one direction.
  • a sheet having liquid permeability is used as the core wrap sheet. Examples of such a sheet include paper and hydrophilic nonwoven fabric.
  • the absorber 1 has an absorption region AT in which a plurality of absorbent units 4 are arranged so as to face at least one direction.
  • the absorbent body 1 including the absorbent region AT is disposed in the absorbent article 10 at least at a site corresponding to the excretion part of the wearer.
  • the ratio of the area of the absorption region AT to the entire area of the absorber 1 in a plan view of the absorber 1 is 20% or more. It is preferably 50% or more, more preferably 100% or less, and still more preferably 90% or less. Specifically, it is preferably 20% or more and 100% or less, and more preferably 50% or more and 90% or less.
  • the ratio of the absorption region AT is 100% means that, for example, the plurality of absorbent units 4 are arranged in the lateral direction X of the absorbent body 1 such that the longitudinal direction Y of the absorbent unit 4 faces the longitudinal direction Y of the absorbent body 1.
  • it means a form in which the absorptive units 4 are arranged in the entire region between both end portions in the longitudinal direction Y of the absorber 1.
  • the absorbent units 4 are arranged over the entire region in the longitudinal direction Y of the absorbent region AT so that the longitudinal direction Y faces the longitudinal direction Y of the absorbent article 10.
  • the longitudinal direction Y of the absorbent unit 4 When arranging the longitudinal direction Y of the absorbent unit 4 so as to face the longitudinal direction Y of the absorbent body 1, it is preferable that 3 or more absorbent units 4 are disposed per absorbent body. More than this, it is more preferable that 1000 or less is preferable, and 500 or less is more preferable. Specifically, it is preferable that 3 or more and 1000 or less are arranged, and more preferably 50 or more and 500 or less are arranged. Moreover, when arrange
  • the counting method of the absorptive units 4 is defined as the number when the number of the absorptive units that intersect the straight line is maximized when a straight line in the lateral direction X is drawn.
  • the absorbent body 1 is preferably in a form in which a plurality of the absorbent units 4 are arranged so that the longitudinal direction Y of the absorbent unit 4 faces the longitudinal direction Y of the absorbent body 1 from the viewpoint of ease of transport during manufacturing. In particular, it is preferable that the plurality of absorbent units 4 are arranged so as not to cross each other.
  • the absorbent body 1 shown in FIG. 1 uses a plurality of absorbent units 4 each having an elongated base portion 2 having a uniform width, and the longitudinal direction Y of the absorbent unit 4 is directed to the longitudinal direction Y of the absorbent body 1.
  • the absorbent unit 4 is arranged.
  • the absorber 1 may include a non-slit region NT in which a plurality of long base portions 2 are connected in the horizontal direction X at both ends in the vertical direction Y or on both sides along the vertical direction Y.
  • the absorbent body 1 includes non-slit regions NT extending along the horizontal direction X at both ends in the vertical direction Y, as shown in FIG. That is, in the absorbent body 1 of the present embodiment, a single base sheet is provided, and non-slit areas NT are provided at both ends in the longitudinal direction (Y direction) of the base sheet. A long base portion formed by a cutting process described later is provided during NT.
  • the absorber 1 is equipped with the non-slit area
  • a non-slit region extending in the direction may be provided.
  • the absorbent unit 4 has a central area in the longitudinal direction Y of the absorbent body 1 and a transverse direction X so that the longitudinal direction Y faces the longitudinal direction Y of the absorbent article 10. Arranged at least in the central area. Providing such a non-slit region NT has an advantageous effect that the sheet shape of the absorbent body 1 is easily maintained in a state before use, the structure is not easily disturbed, and is easily transported during manufacturing.
  • the water-absorbing polymer particles 3 are not arranged in the non-slit region NT. If the water-absorbing polymer particles 3 are not arranged in the non-slit region NT, even if the absorbent 1 absorbs the liquid, the non-slit region NT is affected by deformation caused by the swelling of the water-absorbing polymer particles 3. Therefore, even in the state after swelling, the sheet shape of the absorbent body 1 is easily maintained, and the structure is not easily disturbed. At the same time, the liquid is easily absorbed in the region where the water-absorbing polymer particles 3 are fixed. As a result, there is an advantage that the entire absorbent body 1 can easily balance the liquid absorbency and the maintenance of the sheet shape.
  • the water-absorbing polymer particles 3 are not disposed in both end regions in the longitudinal direction Y of the long base portion 2 because the advantageous effects described above become more remarkable.
  • the state after swelling means the state of the water-absorbing polymer particles after the absorbent body 1 is immersed for 60 minutes in a physiological saline (0.9 mass% sodium chloride aqueous solution) adjusted to 25 ° C. To do.
  • the absorbent body 1 has the long base portion 2 constituting the long base portion 2 joined to a member adjacent to the long base portion 2 on the skin facing surface side. This is preferable in that a stable gap S can be formed between the absorbent units 4 included.
  • the joining position of the elongated base portion 2 and the member is preferably the central region in the transverse direction X or the central region in the longitudinal direction Y of the absorber 1.
  • the member include the top sheet 11 and / or the sublayer sheet.
  • the long base portion 2 constituting the absorbent body is adjacent to the long base portion 2 on the non-skin-facing surface side in the portion where the absorbent unit 4 is formed. It is preferable that it is in a non-joined state with this member. In this way, when friction occurs between the water-absorbing polymer particles 3 fixed to the non-skin-facing surface of the long base portion 2 and the member located on the non-skin-facing surface side. Even so, it is possible to effectively prevent the water-absorbing polymer particles 3 from being peeled off from the long base portion 2 due to the friction.
  • substrate part 2 is a non-joining state with the other member which adjoins in the non-skin opposing surface side reduces the bending rigidity of the absorbent article 10, and in the mounting state of this article 10 It is also advantageous from the viewpoint of improving the body following ability.
  • the back surface sheet 12 is mentioned as a typical thing, for example.
  • the absorber 1 is provided with a core wrap sheet, the long base portion 2 and the core wrap sheet are not joined when the long base portion 2 is not joined to other members. It means that it is in a state, and it does not matter whether the core wrap sheet and the member positioned on the non-skin facing surface side are in a joined state or a non-joined state.
  • the water-absorbing polymer particles 3 are fixed only on the surface of the long base portion 2 facing the non-skin. That is, the water-absorbing polymer particles 3 are fixed only on the surface of the long base portion 2 facing the back sheet 12. Then, the water-absorbing polymer particles 3 are not present on the skin-facing surface and the side surface of the long base portion 2 or the water-absorbing polymer particles 3 are not fixed. Further, in the absorbent body 1 in a state before absorbing the liquid, as shown in the figure, the positions of the elongated base portions 2 constituting the adjacent absorbent units 4 are substantially the same in the thickness direction Z. Yes. That is, each elongate base
  • the water-absorbing polymer particles 3 are present almost uniformly in any part of the longitudinal direction Y.
  • the water-absorbing polymer particles 3 are present almost uniformly in any part of the lateral direction X.
  • the water-absorbing polymer particles 3 exist substantially uniformly in the XY plane including the longitudinal direction Y and the transverse direction X. It replaces with the presence aspect of the particle
  • the basis weight of the water-absorbing polymer 3 in the central region can be made higher than the basis weight of the water-absorbing polymer 3 in the side region.
  • the basis weight of the water-absorbing polymer 3 in the central region can be made lower than the basis weight of the water-absorbing polymer 3 in the side region.
  • the difference in the basis weight of the water-absorbing polymer 3 between the central region and the side region may change stepwise, or may change continuously (gradual decrease or gradual increase).
  • a difference in the basis weight of the water-absorbing polymer 3 can be provided between the central region and the end region.
  • the basis weight of the water-absorbing polymer 3 in the central region can be made higher than the basis weight of the water-absorbing polymer 3 in the end region.
  • the basis weight of the water-absorbing polymer 3 in the central region can be made lower than the basis weight of the water-absorbing polymer 3 in the end region.
  • the difference in basis weight of the water-absorbing polymer 3 between the central region and the end region may be changed stepwise, or may be continuously changed (gradual decrease or increase).
  • the water-absorbing polymer particles 3 are on the side along the longitudinal direction Y of the long base portion 2. It does not protrude in the lateral direction X beyond the edges 2s, 2s.
  • a gap S is formed between the absorbent units 4 adjacent in the lateral direction X in a state before the water-absorbing polymer particles 3 absorb the liquid.
  • the degree of the gap S is preferably 0.1 mm or more, and more preferably 0.5 mm or more. Moreover, it is preferable that it is 5 mm or less, and it is still more preferable that it is 3 mm or less.
  • the degree of the gap S is preferably 0.1 mm or more and 5 mm or less, and more preferably 0.5 mm or more and 3 mm or less.
  • the absorbent body 1 As shown in FIG. 4, even after the water-absorbing polymer particles 3 absorb the liquid, the water-absorbing polymer particles 3 are along the longitudinal direction Y of the long base portion 2. It is made not to swell beyond the side edges 2s, 2s.
  • the absorbent unit 4 of the absorbent body 1 the long base portion 2 and the water-absorbing polymer particles 3 are fixed via an adhesive 5.
  • the ratio (W2 / W1) of the width W2 of the elongated base portion 2 to the width W1 of the absorbent body 1 is the amount of water-absorbing polymer particles 3 supported on the elongated base portion 2 and inhibits swelling.
  • it is preferably 0.001 or more, more preferably 0.002 or more, and 0.200 or less. Is preferable, and it is still more preferable that it is 0.040 or less. Specifically, it is preferably 0.001 or more and 0.200 or less, and more preferably 0.002 or more and 0.040 or less.
  • the width W2 of the elongated base portion 2 is preferably 0.3 mm or more, more preferably 0.6 mm or more, and preferably 10 mm or less, 2.0 mm. More preferably, it is more preferably 1.8 mm or less.
  • the width W2 of the elongated base portion 2 is preferably 0.3 mm or more and 10 mm or less, more preferably 0.6 mm or more and 2.0 mm or less, and 0.6 mm or more and 1.8 mm. More preferably, it is as follows.
  • the width W2 of the long base portion 2 is a distance between both side edges of the long base portion 2 along the longitudinal direction Y.
  • the width W1 of the absorbent body 1 is a distance between both side edges of the absorbent body 1 along the longitudinal direction Y.
  • substrate part 2 (base material sheet) which comprises the absorptive unit 4 is a hydrophilic thing, or a hydrophobic thing. From the viewpoint of preventing the liquid that has permeated through the gap S generated between the adjacent absorbent units 4 and 4 from being returned by the body pressure of the wearer, it is more preferably made of a hydrophobic sheet.
  • the hydrophilic sheet is defined as one having a contact angle of one constituent fiber of less than 90 °, or in the case of a sheet that is not a fiber material, having a surface contact angle of less than 90 °.
  • the measuring method follows the following method.
  • the hydrophilic sheet for example, a sheet-like material including a hydrophilic material can be used.
  • the hydrophobic sheet is defined as a sheet having a contact angle of 90 ° or more of one constituent fiber, or a sheet having a contact angle of 90 ° or more in the case of a sheet that is not a fiber material.
  • the measuring method follows the following method.
  • a sheet-like material including a hydrophobic material can be used.
  • examples thereof include a nonwoven fabric that is a fiber sheet configured to include hydrophobic fibers.
  • the foam etc. which are comprised including hydrophobic resin are mentioned.
  • These hydrophobic sheets can be used alone or in combination of two or more.
  • a nonwoven fabric containing fibers containing a hydrophobic resin as constituent fibers is preferably used from the viewpoint of relatively high tensile strength even if it is thin, and thin and high flexibility.
  • the basis weight of the nonwoven fabric is preferably 5 g / m 2 or more and 40 g / m 2 or less, more preferably 10 g / m 2 or more and 30 g / m 2 or less.
  • hydrophobic nonwoven fabric those known in the technical field such as a spunbond nonwoven fabric, a meltblown nonwoven fabric, a spunlace nonwoven fabric, and an air-through nonwoven fabric having a polyolefin resin such as polyethylene and polypropylene can be used without particular limitation. .
  • the contact angle of water with the constituent fibers of the sheet forming the long base portion or the contact angle of water with the surface of the long base portion is measured by the following method.
  • an automatic contact angle meter MCA-J manufactured by Kyowa Interface Science Co., Ltd. is used as a measuring device. Distilled water is used for contact angle measurement.
  • the amount of liquid ejected from an ink jet type water droplet ejection section (manufactured by Cluster Technology, Inc., pulse injector CTC-25 having a pore diameter of 25 ⁇ m) is set to 20 picoliters, and water droplets are dripped just above the constituent fibers.
  • the state of dripping is recorded on a high-speed recording device connected to a horizontally installed camera.
  • the recording device is preferably a personal computer incorporating a high-speed capture device from the viewpoint of image analysis or image analysis later. In this measurement, an image is recorded every 17 msec.
  • the first image in which water droplets land on the constituent fibers forming the non-skin facing surface or non-skin facing surface of the nonwoven fabric is the attached software FAMAS (software version is 2.6.2, analysis method) Is the droplet method, the analysis method is the ⁇ / 2 method, the image processing algorithm is non-reflective, the image processing image mode is frame, the threshold level is 200, and the curvature is not corrected)
  • the angle formed between the air contact surface and the constituent fibers is calculated as the contact angle.
  • the sample for a measurement cuts the constituent fiber of a nonwoven fabric from the outermost layer by fiber length 1mm, and this constituent fiber is contact angle meter.
  • the sample is placed on the sample stage and kept horizontal, and two different contact angles are measured for each constituent fiber.
  • N 5 contact angles are measured to one decimal place, and a value obtained by averaging a total of 10 measured values (rounded to the second decimal place) is defined as each contact angle.
  • the long base portion 2 preferably has a lower air permeability than the air permeability of the sheet member located on the skin facing surface side than the absorbent body 1.
  • the air permeability of the sheet is a measure of the liquid permeability of the sheet.
  • the air permeability of the long base portion 2 is greater than the air permeability of the sheet member located on the skin facing surface side with respect to the absorbent body 1.
  • the lower value also means that the liquid permeability of the sheet member located on the skin facing surface side than the absorbent body 1 is higher than the liquid permeability of the elongated base portion 2.
  • the permeability is improved.
  • the air permeability of at least one of the sheet members is the ventilation of the elongated base portion 2. It should be higher than the degree.
  • all the sheet members positioned on the skin-facing surface side with respect to the absorbent body 1 have a higher air permeability than the long base portion 2.
  • water-absorbing polymer 3 fixed to the surface of the elongated base portion 2 various types conventionally used in the technical field of absorbent articles can be used.
  • poly (sodium acrylate), (acrylic acid-vinyl alcohol) copolymer, cross-linked poly (sodium acrylate), (starch-acrylic acid) graft polymer, (isobutylene-maleic anhydride) copolymer and saponified product thereof examples include potassium polyacrylate, cesium polyacrylate, and the like. One of these can be used alone, or two or more can be mixed and used.
  • water-absorbing polymer particles 3 there are an amorphous type, a block type, a bowl type, a spherical particle aggregation type, a spherical type, and the like due to the difference in shape, and any type can be used.
  • Water-absorbing polymer 3 to be fixed to the elongated body portion 2 of the surface its basis weight is preferably at 20 g / m 2 or more, more preferably 50 g / m 2 or more. Moreover, it is preferable that it is 400 g / m ⁇ 2 > or less, and it is still more preferable that it is 300 g / m ⁇ 2 > or less.
  • the basis weight of the water-absorbing polymer 3 is preferably 20 g / m 2 or more and 400 g / m 2 or less, and more preferably 50 g / m 2 or more and 300 g / m 2 or less. Sufficient water-absorbing performance can be obtained by fixing the water-absorbing polymer particles 3 with a basis weight within this range.
  • the basis weight of the water-absorbing polymer 3 fixed to the non-skin facing surface side in the long base portion 2 is measured by the following method. ⁇ Measuring method of basis weight of water-absorbing polymer 3 fixed to the non-skin facing surface side in the elongated base portion 2> The water-absorbing polymer fixed to the non-skin facing surface side of the long base portion 2 is peeled off from the long base portion 2 using a solvent or the like, and the adhesive adhering to the water-absorbing polymer is washed. . After drying the water-absorbing polymer, the weight of the water-absorbing polymer fixed on the non-skin facing surface side is measured, and the area of the long base portion 2 where the water-absorbing polymer is fixed is separated from the absorbed water absorption. The weight of the water-absorbing polymer fixed per unit area is calculated from the weight of the water-soluble polymer, and the basis weight of the water-absorbing polymer on the non-skin facing surface side is calculated. Five measurements are taken and the average value is calculated.
  • Examples of a method for fixing the water-absorbing polymer particles 3 to the surface of the elongated base portion 2 include a method using an adhesive and a method using a hydrogen bond or the like for chemical fixing. Further, when the long base portion 2 is a fiber sheet such as a nonwoven fabric, a woven fabric, or a knitted fabric, a method of raising the constituent fibers and fixing the water-absorbing polymer particles 3 between the raised constituent fibers. Can also be adopted. In the absorbent body 1 shown in FIG. 1, an adhesive 5 is used. That is, the water-absorbing polymer particles 3 of the absorbent body 1 are fixed to the surface of the elongated base portion 2 via the adhesive 5.
  • the adhesive 5 is preferably used.
  • a hot-melt adhesive is preferably used.
  • the hot melt adhesive include styrene and olefin hot melt adhesives.
  • Styrene-based hot melt adhesives include styrene-butadiene-styrene copolymer (SBS), styrene-isoprene-styrene copolymer (SIS), and styrene-ethylene-butylene-styrene copolymer that is a hydrogenated product of SBS. (SEBS) and blended hot-melt adhesives obtained by blending two or more of these can be used.
  • a blended hot-melt adhesive of SIS and SBS or a blended hot-melt adhesive of SIS and SEBS is preferably used.
  • the application amount of the hot melt adhesive is preferably 0.5 g / m 2 or more and 100 g / m 2 or less, more preferably 5 g / m 2 or more and 50 g / m 2 or less.
  • the excretory liquid can permeate through the gap between the adjacent absorbent units 4, and therefore the absorbent 1 even if the excretory liquid has a high viscosity. Easy to penetrate.
  • the water-absorbing polymer particles 3 extend beyond the side edges 2s and 2s along the longitudinal direction Y of the elongated base portion 2. Since it does not protrude in the lateral direction X, this also prevents the liquid from penetrating along the thickness direction Z.
  • the elongate base portion 2 is hydrophobic, the effect of preventing reversion is further enhanced.
  • the absorbent article of the present invention even if the excretory fluid has a high viscosity, the absorption rate is improved and the return of the fluid is less likely to occur.
  • the positions of the elongated base portions 2 and 2 constituting the adjacent absorbent unit 4 are different in the thickness direction Z.
  • the absorbent unit 4 is easy to move.
  • “differing in the thickness direction Z” includes, for example, a case where they deviate vertically, a case where they deviate obliquely, or a case where both occur.
  • This movement is caused by an increase in volume due to swelling of the water-absorbing polymer particles 3.
  • This movement includes both the parallel movement of the long base portion 2 along the thickness direction Z and the inclination of the long base portion 2 with respect to the thickness direction Z. Due to this movement, the gap S is easily maintained between the adjacent absorbent units 4 even after the water-absorbing polymer particles 3 have absorbed the liquid. This also effectively suppresses the occurrence of gel blocking and makes it difficult for the liquid to pass along the thickness direction Z.
  • the average particle diameter d1 of the conductive polymer particles 3 is preferably 20 ⁇ m or more, more preferably 200 ⁇ m or more, and preferably 700 ⁇ m or less, and more preferably 500 ⁇ m or less. Specifically, it is preferably 20 ⁇ m or more and 700 ⁇ m or less, and more preferably 200 ⁇ m or more and 500 ⁇ m or less.
  • the average particle diameter d2 of the swollen water-absorbing polymer particles 3 that has absorbed the liquid is preferably 200 ⁇ m or more, more preferably 800 ⁇ m or more, and preferably 3000 ⁇ m or less. More preferably, it is 2000 ⁇ m or less. Specifically, it is preferably 200 ⁇ m or more and 3000 ⁇ m or less, and more preferably 800 ⁇ m or more and 2000 ⁇ m or less.
  • the average particle diameter of the water-absorbing polymer particles 3 is determined by the following measuring method.
  • the average particle diameter d1 in the state before use was determined by observing the diameter or major axis of the water-absorbing polymer particles with an optical microscope using the water-absorbing polymer particles before use.
  • the diameter here refers to the diameter when the water-absorbing polymer particles are spherical.
  • the long axis refers to the longest axis when the water-absorbing polymer particles have an irregular shape such as a rhombus, rectangle, tuft, and football.
  • the diameter or major axis of a total of 50 water-absorbing polymer particles is measured, and the number average particle diameter is defined as the average particle diameter of the water-absorbing polymer particles in a state before use.
  • the average particle diameter d2 in the swollen state is obtained by immersing the long base portion 2 on which the water-absorbing polymer particles are fixed in a physiological saline (0.9 mass% sodium chloride aqueous solution) adjusted to 25 ° C. After 1 hour from the start of immersion, the long base portion 2 is taken out from the physiological saline, suspended in a vertical state for 30 minutes, drained, and then the diameter or long axis of the water-absorbing polymer particles on the surface of the long base portion 2 was measured by optical microscope observation.
  • the diameter here refers to the diameter when the water-absorbing polymer particles are spherical.
  • the long axis refers to the longest axis when the water-absorbing polymer particles have an irregular shape such as a rhombus, rectangle, tuft, and football.
  • the diameter or major axis of a total of 50 water-absorbing polymer particles is measured, and the number average particle diameter is defined as the average particle diameter of the water-absorbing polymer particles in the swollen state.
  • the value of d1 / W2 is preferably 0.002 or more, and more preferably 0.100 or more. Moreover, it is preferable that it is 0.900 or less, and it is still more preferable that it is 0.800 or less.
  • the value of d1 / W2 is preferably 0.002 or more and 0.900 or less, and more preferably 0.100 or more and 0.800 or less.
  • the relationship between the width W2 of the elongated base portion 2 and the average particle diameter d2 of the water-absorbing polymer particles after absorbing the liquid is such that the value of d2 / W2 is 0.02 or more. Preferably, it is 0.45 or more. Moreover, it is preferable that it is 0.90 or less, and it is still more preferable that it is 0.80 or less.
  • the value of d2 / W2 is preferably 0.02 or more and 0.90 or less, and more preferably 0.45 or more and 0.80 or less.
  • FIG. 5 shows a manufacturing apparatus 100 that is preferably used in the method for manufacturing the absorbent article 10 of the present embodiment.
  • the manufacturing apparatus 100 of the present embodiment includes an adhesive application unit 120, a water absorbent polymer spraying unit 130, and a base sheet cut unit 110 in this order from the upstream side to the downstream side of the manufacturing process.
  • an apparatus in which the adhesive application unit 120 and the water absorbent polymer spraying unit 130 are integrated is used, but the adhesive application unit 120 and the water absorbent polymer spraying unit 130 are integrated. It does not have to be.
  • the integrated device has a configuration in which an adhesive application unit 120 is disposed on the upstream side of the device, and a water-absorbing polymer spraying unit 130 is disposed on the downstream side of the integrated device.
  • the adhesive application unit 120 is spaced apart in the lateral direction X on the surface of one surface of each long base portion 2 in a state where the plurality of long base portions 2 are transported along the transport direction. This is a portion where an adhesive is applied to a plurality of locations.
  • the coating head 121 is provided as shown in FIG.
  • a coating head having a structure capable of coating the adhesive 5 on a surface of one surface of the base sheet 20 conveyed in one direction from a plurality of locations separated in the lateral direction X. 121 can be used.
  • the coating head 121 is formed in the X1 direction so as to have a length corresponding to the width of the absorption region AT of the absorber 1, that is, the length in the lateral direction X.
  • the coating head 121 configured as described above is disposed on one surface of the long base portion 2.
  • the water-absorbing polymer spraying unit 130 located on the downstream side of the adhesive application unit 120 is configured so that each long base unit 2 is transported along the transport direction of the long base unit 2 coated with the adhesive. 2 is a part in which the water-absorbing polymer particles 3 are dispersed over the entire region in the lateral direction X of the surface of the one surface to which the adhesive is applied.
  • a water-absorbing polymer introduction part 131 is provided.
  • various known introduction devices can be used without particular limitation.
  • the water-absorbing polymer introduction part 131 is formed to have a length corresponding to the width of the absorption region AT of the absorbent body 1, that is, the length in the lateral direction X, in the X1 direction. Further, the water-absorbing polymer introduction part 131 spreads the water-absorbing polymer particles 3 along the direction X1 so that the water-absorbing polymer particles 3 can be spread over the entire region in the lateral direction X of the elongated base 2. It has a structure that can be done.
  • the water-absorbing polymer introduction part 131 configured in this way is arranged on one surface of the long base part 2.
  • the base material sheet cut part 110 located downstream of the water-absorbing polymer dispersion part 130 is a plurality of strips along the conveying direction of the base material sheet 20 having hydrophilicity, which is a raw material of the long base part 2. This is a portion where a plurality of narrow elongated base portions 2 are obtained.
  • various known cutting devices can be used without particular limitation.
  • the rotary die 111b having a plurality of cutter blades 111a, 111a, 111a,.
  • a cutting device 113 including a receiving roll 112 having a flat peripheral surface is used.
  • Each cutter blade 111a of the cutting device 113 is arranged along the rotation direction of the rotary die 111b, and the plurality of cutter blades 111a, 111a, 111a,... Are arranged side by side in a direction X1 orthogonal to the.
  • the interval between the cutter blades 111a and 111a adjacent to each other in the orthogonal direction X1 corresponds to the width (length in the horizontal direction (X direction)) of each long base portion 2 to be formed.
  • the conveyance direction Y1 of the base sheet 20 corresponds to the longitudinal direction (Y direction) of the manufactured absorbent body 1
  • the orthogonal direction X1 is the lateral direction (X direction) of the manufactured absorbent body 1. ).
  • the base sheet 20 may be cut by using a shear-cut type cutting device that rubs and cuts the side surfaces of the upper blade and the lower blade, and a device in which a plurality of score cut knives are juxtaposed in the orthogonal direction X1.
  • a laser device that melts by irradiating a laser beam may be used.
  • the peripheral surface of each cutter blade 111 a may be formed.
  • the length of the arc of the concave portion 114 at the outer periphery of the rotating cutter blade 111a is equal to the sum of the lengths in the vertical direction (Y direction) of the non-slit regions NT arranged at both ends of the absorber 1 shown in FIG. Try to accommodate the length. If a plurality of cutter blades 111a, 111a, 111a...
  • a rotary die 111b is used in which the positions of the recesses 114, 114 of the cutter blades 111a adjacent to each other in the X1 direction are aligned.
  • the absorber 1 is provided with the non-slit area
  • the adhesive coating section 120 and the water-absorbing polymer spraying section 130 are opposed to the integrated apparatus, and are on the lower surface side of the plurality of long base parts 2 to be conveyed.
  • a vacuum conveyor 141 is arranged on the other surface side.
  • the vacuum conveyor 141 includes an endless breathable belt 144 laid across a drive roll 142 and a plurality of driven rolls 143, and a vacuum box disposed at a position facing the integrated device with the breathable belt 144 interposed therebetween. 145.
  • On the vacuum conveyor 141 a plurality of elongated base portions 2 are introduced.
  • the drive roll 151 that feeds the base sheet 20 from the raw roll of the belt-shaped base sheet 20 and the precursor 1 b of the manufactured absorbent body 1 are conveyed to the most downstream side. And a drive roll 152.
  • a method for manufacturing an absorbent article including the absorbent body 1 using the manufacturing apparatus 100 described above will be described below.
  • This manufacturing method includes the following steps.
  • the inside of the vacuum box 145 is made negative by operating the exhaust device connected thereto.
  • the drive roll 151 and the drive roll 152 are driven, the cutting device 113 and the breathable belt 144 are rotated, and the vacuum conveyor 141 is operated. And the base material sheet 20 is let out from the original fabric roll of the strip
  • the adhesive 5 is applied to a plurality of locations at a distance in the lateral direction on the surface of one surface of the base sheet 20 fed from the raw roll.
  • the base sheet 20 While the base sheet 20 is being transported by the vacuum conveyor 141 and is positioned on the vacuum box 145, the base sheet 20 is not cut on the surface of one surface of the base sheet 20 by the application head 121 of the adhesive application unit 120. Except for the part NTb, the adhesive 5 is intermittently applied along the transport direction Y1. At this time, it is important to apply the adhesive 5 to a plurality of locations spaced in the lateral direction X.
  • the absorbent body 1 allows the water-absorbing polymer particles 3 to extend beyond the side edge portion 2s of the long base portion 2 in any state before and after absorbing the liquid. It does not protrude in the lateral direction X.
  • the dispersed water-absorbing polymer particles 3 are securely fixed to the surface of one surface of the long base portion 2 via the adhesive 5 applied to the surface of one surface of the long base portion 2.
  • the adhesive 5 can be applied to the surface of one surface of the base sheet 20 conveyed in one direction from a plurality of locations spaced in the lateral direction X.
  • the coating head 121 having the above may be used.
  • the water-absorbing polymer particles 3 are formed on the entire surface in the lateral direction X on the surface of one surface of the base sheet 20 to which the adhesive 5 is applied. Is sprayed. While the base material sheet 20 is conveyed by the vacuum conveyor 141 and is located on the vacuum box 145, the water-absorbing polymer particles 3 are scattered along the conveying direction Y1 on the surface of one surface to which the adhesive 5 is applied. Is done. However, the water-absorbing polymer particles 3 are not sprayed on the non-cut portion NTb. In this way, by absorbing the water-absorbing polymer particles 3, the water-absorbing polymer particles 3 are fixed to the surface of one surface (upper surface) of the long base portion 2 via the adhesive 5. A plurality of 4 are formed. The plurality of absorptive units 4 formed in this way are arranged so that their respective longitudinal directions (Y directions) face the transport direction Y1, and form the precursor 1b of the absorber 1. .
  • a plurality of absorbent units 4 are obtained.
  • the location where the cut is made is a non-application location between locations where the adhesive is applied in a state where the base sheet 20 is conveyed along the conveyance direction Y1.
  • each of the absorbent units 4 the water-absorbing polymer particles 3 are fixed along the longitudinal direction Y at the position of the central region in the lateral direction X. In this way, a plurality of absorbent units 4 in which the water-absorbing polymer particles 3 are fixed only to the surface of one surface of the elongated base portion 2 are formed.
  • the plurality of absorptive units 4 formed in this way are arranged so that each longitudinal direction Y faces the transport direction Y1, and forms a precursor 1b of the absorber 1.
  • the plurality of cutter blades 111 a arranged in the rotation direction of the rotary die 111 b are arranged in a direction X ⁇ b> 1 orthogonal to the conveyance direction Y ⁇ b> 1 of the belt-shaped base sheet 20. Since it is arrange
  • the some cutter blade 111a has the recessed part 114, respectively, the part for the length of the vertical direction Y of the absorptive unit 4 is given to the strip
  • the non-cut portion NTb corresponding to the length twice as long as the length in the longitudinal direction Y of the non-slit region NT is intermittently formed.
  • the plurality of absorptive units 4 formed in the cutting step are formed in parallel with the transport direction Y1, and are arranged in parallel in the orthogonal direction X1.
  • the precursor 1b of the absorbent body 1 is transported downstream by the drive roll 152, and the precursor 1b is lengthened in the transport direction Y1 of the non-cut portion NTb using a known cutting device (not shown). Cut into two equal positions.
  • the absorber 1 which has the non-slit area
  • the absorber 1 can be manufactured stably and efficiently.
  • a back sheet is disposed on one surface side of the absorbent body 1 on which the water-absorbing polymer particles 3 are fixed, and on the other surface side on which the water-absorbing polymer particles 3 are not fixed.
  • a target absorbent article can be obtained by disposing a top sheet and further disposing other members as necessary.
  • a method having the following steps (a ′) to (c ′) may be employed.
  • (I ') The process of apply
  • (B ′) The substrate sheet coated with the adhesive is transported along the transport direction, and the lateral surface of the substrate sheet is coated with the adhesive on the surface of the one surface coated with the adhesive.
  • the adhesive 5 is applied to the entire surface of the base sheet 20 in the lateral direction X on the surface of one surface of the base sheet 20. While the base sheet 20 is being transported by the vacuum conveyor 141 and is positioned on the vacuum box 145, the base sheet 20 is not cut on the surface of one surface of the base sheet 20 by the application head 121 of the adhesive application unit 120. Except for the part NTb, the adhesive 5 is intermittently applied along the transport direction Y1.
  • the surface of one surface to which the adhesive 5 has been applied is provided at a plurality of locations spaced in the lateral direction.
  • the water-absorbing polymer particles 3 are sprayed. While the base material sheet 20 is conveyed by the vacuum conveyor 141 and is located on the vacuum box 145, the water-absorbing polymer particles 3 are dispersed along the conveying direction Y1 on the surface to which the adhesive 5 is applied. However, the water-absorbing polymer particles 3 are not sprayed on the non-cut portion NTb.
  • the absorbent body 1 allows the water-absorbing polymer particles 3 to exceed the side edge 2s of the long base portion 2 in any state before and after absorbing the liquid. It does not protrude in the lateral direction X.
  • the dispersed water-absorbing polymer particles 3 are securely fixed to the long base portion 2 via an adhesive 5 applied to the surface of one surface of the long base portion 2.
  • the water-absorbing polymer particles 3 are applied to the surface of one surface of the base sheet 20 conveyed in one direction from a plurality of locations spaced in the lateral direction X. What is necessary is just to use the water absorptive polymer spreading
  • diffusion part 130 which has a structure which can do.
  • the base sheet 20 on which the water-absorbing polymer particles 3 are dispersed is cut along the transport direction Y1 to form a plurality of narrow elongated base parts 2 and the A plurality of absorptive units 4 having water-absorbing polymer particles 3 fixed to the elongated base 2 are obtained.
  • the places where the cuts are made are non-sprayed places between the places where the water-absorbing polymer particles 3 are sprinkled in a state where the base sheet 20 is transported along the transport direction Y1.
  • the water-absorbing polymer particles 3 are fixed along the longitudinal direction Y at the position of the central region in the lateral direction X.
  • a plurality of absorbent units 4 in which the water-absorbing polymer particles 3 are fixed only to the surface of one surface of the elongated base portion 2 are formed.
  • the plurality of absorptive units 4 formed in this way are arranged so that each longitudinal direction Y faces the transport direction Y1, and forms a precursor 1b of the absorber 1. Thereafter, the same procedure as the method using the manufacturing apparatus shown in FIG. 5 is performed, and the absorbent body 1 and the absorbent article 10 are obtained.
  • FIG. 7 shows a manufacturing method using another manufacturing apparatus 100.
  • the transport direction Y1 is applied to the base sheet 20.
  • a plurality of slits along the transport direction Y1 are first cut into the base sheet 20 to form a plurality of narrow long base portions 2.
  • the adhesive 5 is applied and the water-absorbing polymer particles 3 are sprayed on the surface of one surface of the long base portion 2.
  • the manufacturing apparatus 100 shown in FIG. 7 includes a base sheet cut part 110, an adhesive application part 120, and a water-absorbing polymer spray part 130 in this order from the upstream side to the downstream side of the manufacturing process.
  • the structure of each part 110,120,130 is the same as that of the manufacturing apparatus shown in FIG.
  • a method for manufacturing an absorbent article including the absorbent body 1 using the manufacturing apparatus 100 will be described below. This manufacturing method includes the following steps. (D) A step of obtaining a plurality of narrow elongated base portions by cutting a plurality of notches along the conveying direction into a hydrophilic substrate sheet conveyed in one direction.
  • a plurality of cutters of the rotary die 111b in the cutting device 113 of the base sheet cutting unit 110 are used to feed the base sheet 20 fed from the raw roll of the strip-shaped base sheet 20 by the driving roll 151. It supplies between the blade 111a and the receiving roll 112, cuts the strip
  • the plurality of cutter blades 111a arranged in the rotation direction of the rotary die 111b are arranged in a direction X1 orthogonal to the conveyance direction Y1 of the belt-shaped base sheet 20.
  • the strip-shaped base sheet 20 is cut along the transport direction Y1 of the base sheet 20 and cut at a plurality of locations in the orthogonal direction X1 to form a plurality of long base portions 2. To do. Further, the portion cut by the cutter blade 111 a becomes the side edge portion 2 s of the long base portion 2.
  • the rotary die 111b since the rotary die 111b has the concave portion 114, the length of the long base portion 2 in the longitudinal direction Y is spaced apart from the belt-like base material sheet 20 to be conveyed intermittently.
  • a non-cut portion NTb corresponding to a length twice as long as the length in the vertical direction Y of the non-slit region NT is formed.
  • the plurality of long base portions 2 formed in the step (d) are formed in parallel with the transport direction Y1, and are arranged in parallel in the orthogonal direction X1.
  • the adhesive 5 is applied only to the central region in the lateral direction of the surface of one surface of the plurality of long base portions 2. While the plurality of long base portions 2 are conveyed on the vacuum conveyor 141 and positioned on the vacuum box 145, the plurality of long base portions 2 are juxtaposed in the orthogonal direction X1 by the application head 121 of the adhesive application unit 120.
  • the adhesive 5 is intermittently applied along the transport direction Y1 only in the central area of the surface of one surface of the scale-shaped base 2 except for the non-cut portion NTb.
  • the adhesive 5 can be applied only to the substantially central portion in the lateral direction X of the surface of one surface of the base sheet 20 conveyed in one direction.
  • the coating head 121 may be used.
  • the water absorption is performed over the entire region in the lateral direction X of the surface of the one surface to which the adhesive 5 is applied among the plurality of long base portions 2.
  • Polymer particles 3 are dispersed.
  • the long base portion 2 is transported by the vacuum conveyor 141, and is located on the vacuum box 145, and on the surface of one surface to which the adhesive 5 has been applied, the entire region in the lateral direction X along the transport direction Y1.
  • the particles 3 of the water-absorbing polymer are dispersed over. However, the water-absorbing polymer particles 3 are not sprayed on the non-cut portion NTb.
  • the dispersed water-absorbing polymer particles 3 are securely fixed to the long base portion 2 via the adhesive 5 applied to the surface of one surface of the long base portion 2.
  • a plurality of absorbent units 4 in which the water-absorbing polymer particles 3 are fixed only to the surface of one surface of the elongated base portion 2 are formed.
  • the plurality of absorptive units 4 formed in this way are arranged so that each longitudinal direction Y faces the transport direction Y1, and forms a precursor 1b of the absorber 1.
  • the precursor 1b of the absorbent body 1 is transported downstream by the drive roll 152, and the precursor 1b is lengthened in the transport direction Y1 of the non-cut portion NTb using a known cutting device (not shown). Cut into two equal positions.
  • the absorber 1 which has the non-slit area
  • the absorber 1 can be manufactured stably and efficiently.
  • a back sheet is disposed on one surface side of the absorbent body 1 on which the water-absorbing polymer particles 3 are fixed, and on the other surface side on which the water-absorbing polymer particles 3 are not fixed.
  • a target absorbent article can be obtained by disposing a top sheet and further disposing other members as necessary.
  • the process of manufacturing the absorber by spraying the water-absorbing polymer particles 3 only in the central region in the lateral direction includes the steps (d), (e ') and (f'), in order to perform the step (f '), the surface of one surface of the base sheet 20 conveyed in one direction.
  • the water-absorbing polymer spraying portion 130 having a structure capable of applying the water-absorbing polymer particles 3 only in the central region in the lateral direction X may be used.
  • the absorbent body 1 in the absorbent article 10 of the above embodiment is formed by using a plurality of absorbent units 4 having the long base portion 2 with a uniform width.
  • the width of the portion 2 may be non-uniform.
  • the absorber 1 shown in FIG.2 and FIG.3 mentioned above is arranged so that the vertical direction Y of each of the some absorptive units 4 may face the vertical direction Y of the absorber 1, it is formed in this.
  • the plurality of absorbent units 4 may be arranged so that the longitudinal direction Y of the absorbent units 4 faces the lateral direction X of the absorbent body 1.
  • the absorber 1 shown in FIG. 8 includes non-slit regions NT on both sides along the vertical direction Y.
  • rotary die 111b uses a rotary die 111b in which cutter blades 111a arranged in parallel to the axial direction of the original fabric roll are intermittently arranged in the circumferential direction and a receiving roll 112, and the rotary die 111b. It can manufacture by supplying the base material sheet 20 between this and the receiving roll 112.
  • the absorbent body 1 may be one in which the absorbent units 4 are arranged so that the longitudinal directions Y of the absorbent units 4 are directed in a plurality of directions.
  • the absorbent body 1 in which the absorbent units 4 are arranged so as to face a plurality of directions is formed, for example, by arranging so that the longitudinal direction Y of each of the plurality of absorbent units 4 faces the longitudinal direction Y of the absorbent body 1.
  • the form etc. which have an area
  • a plurality of cuts along the conveying direction Y1 are made on both sides along Y1, and then the substrate sheet 20 conveyed using the rotary die 111b and the receiving roll 112 that are intermittently arranged in the circumferential direction. It can be formed by making a plurality of notches along the direction X1 at the center of the direction X1 orthogonal to the transport direction.
  • each absorbent unit 4 and each long base portion 2 extend in a straight line substantially parallel to the vertical direction Y direction.
  • the absorptive unit 4 and the elongate base portion 2 may extend so as to draw a waveform curve along the vertical direction Y, or may extend in a mountain-like zigzag shape along the vertical direction Y. .
  • the one side of the long base portion 2 is subjected to raising treatment to raise the fibers.
  • a raising process step may be performed instead of the adhesive application step described above. Examples of the method for performing the raising process include the methods described in JP2012-092476A and JP2013-028891A.
  • This invention discloses the following absorbent articles further regarding embodiment mentioned above.
  • ⁇ 1> Absorption comprising a long base portion having a horizontal direction, a vertical direction longer than the horizontal direction, and a thickness direction, and water-absorbing polymer particles fixed to the surface of the long base portion A plurality of sexual units, and each absorbent unit is provided with an absorbent body in which the longitudinal direction is oriented in at least one direction,
  • the water-absorbing polymer particles are fixed only on the surface of the non-skin facing surface in the elongated base portion, Before the water-absorbing polymer particles absorb the liquid, the water-absorbing polymer particles do not protrude laterally beyond the side edges along the longitudinal direction of the elongated substrate portion, and Even when the water-absorbing polymer particles absorb the liquid and swell, the water-absorbing polymer particles do not swell beyond the side edges along the longitudinal direction of the elongated base portion.
  • Absorbent article Absorbent article.
  • the absorbent article according to ⁇ 1> wherein the long base portion is made of a hydrophobic sheet.
  • the absorbent unit is arranged at least in a longitudinal central region and a lateral central region of the absorbent body so that a longitudinal direction thereof faces a longitudinal direction of the article.
  • the absorbent article as described.
  • ⁇ 4> The absorbent article according to any one of ⁇ 1> to ⁇ 3>, wherein a gap is generated between the absorbent units adjacent to each other along the lateral direction.
  • a gap S is formed between adjacent absorbent units, and the degree of the gap S is preferably 0.1 mm or more, more preferably 0.5 mm or more, and 5 mm or less.
  • the absorbent article according to any one of ⁇ 1> to ⁇ 4> is joined to a member adjacent to the long base portion on the skin facing surface side,
  • the long base portion in the portion where the absorbent unit is formed, is in a non-bonded state with another member adjacent to the long base portion on the non-skin facing surface side.
  • the absorbent article according to any one of ⁇ 1> to ⁇ 6>. ⁇ 8> ⁇ 1> to ⁇ 7>, wherein the long base portion has a lower air permeability than that of a sheet member positioned on the skin-facing surface side with respect to the absorber. Absorbent article.
  • the absorptive unit has a length Lx in the lateral direction X of preferably about 0.3 mm to 10 mm, more preferably about 0.6 mm to 2.0 mm, and still more preferably about 0.6 mm to 1.8 mm.
  • the length Ly in the longitudinal direction Y of the absorbent unit is preferably not less than 2 times and not more than 3500 times, more preferably not less than 100 times and not more than 700 times the length Lx in the transverse direction X ⁇ 1> to The absorbent article according to any one of ⁇ 9>.
  • ⁇ 11> The absorbent article according to any one of ⁇ 1> to ⁇ 10>, wherein the length Ly in the longitudinal direction Y of the absorbent unit is preferably 20 mm to 1000 mm, more preferably 200 mm to 400 mm.
  • the ratio of the area of the absorption region AT to the entire area of the absorber is preferably 20% or more, more preferably 50% or more, and 100% or less.
  • ⁇ 13> It is preferable that three or more absorbent units are arranged per absorber, more preferably 50 or more, and more preferably 1000 or less, and 500 absorbent units.
  • the absorbent body may include a non-slit region NT in which a plurality of elongated base portions are connected in the lateral direction on both ends in the longitudinal direction Y or on both sides along the longitudinal direction Y.
  • ⁇ 16> The absorbent article according to any one of ⁇ 1> to ⁇ 15>, wherein the non-slit region NT is not provided with water-absorbing polymer particles.
  • the ratio of the width W2 of the elongated base portion to the width W1 of the absorber is preferably 0.001 or more, more preferably 0.002 or more, and preferably 0.200 or less.
  • the width W2 of the elongated base portion is preferably 0.3 mm or more, more preferably 0.6 mm or more, and preferably 10 mm or less, more preferably 2.0 mm or less.
  • the average particle diameter d1 of the water-absorbing polymer particles in a state before absorbing the liquid is preferably 20 ⁇ m or more, more preferably 200 ⁇ m or more, and preferably 700 ⁇ m or less, and 500 ⁇ m or less.
  • the absorbent article according to any one of ⁇ 1> to ⁇ 20> which is more preferably present.
  • the average particle diameter d2 of the swelled water-absorbing polymer particles that have absorbed the liquid is preferably 200 ⁇ m or more, more preferably 800 ⁇ m or more, and preferably 3000 ⁇ m or less, and 2000 ⁇ m or less. More preferably, the absorbent article according to any one of the above items ⁇ 1> to ⁇ 21>.
  • the relationship between the width W2 of the long base portion and the average particle diameter d1 of the water-absorbing polymer particles before absorbing the liquid is preferably such that the value of d1 / W2 is 0.002 or more.
  • the absorbent article according to any one of ⁇ 1> to ⁇ 22> more preferably 100 or more, preferably 0.900 or less, and more preferably 0.800 or less.
  • the relationship between the width W2 of the long base portion and the average particle diameter d2 of the water-absorbing polymer particles after absorbing the liquid is preferably such that the value of d2 / W2 is 0.020 or more.
  • the excretory fluid can permeate through the gap between the absorbent units, even if the excretory fluid has a high viscosity, it can easily permeate the absorber.
  • the excretory fluid that has passed through the absorber is absorbed and held by particles of the water-absorbing polymer disposed on the non-skin facing surface side of the long base portion.
  • the excretory fluid absorbed and held by the water-absorbing polymer particles is blocked by the long base portion and is difficult to return.
  • the absorbent article of the present invention even if the excretory fluid has a high viscosity, the absorption rate is improved and the return of the fluid is less likely to occur.

Abstract

An absorbent article (10) is provided with an absorbent body (1) that comprises a plurality of absorbent units (4) each having a long base section (2) and absorbent polymer particles (3), the absorbent units (4) being arrayed such that the lengthwise directions (Y) thereof are oriented to face in at least one direction. The absorbent polymer particles (3) are fixed only to a non-skin-facing surface of the long base section (2). Prior to the absorbent polymer particles (3) absorbing liquid, the particles (3) do not protrude in the widthwise direction (X) beyond side edges (2s) of the long base section (2), and even after the particles (3) have absorbed liquid, the particles (3) are formed so as not to swell beyond the side edges (2s).

Description

吸収性物品Absorbent articles
 本発明は吸収性物品に関する。 The present invention relates to an absorbent article.
 使い捨ておむつ、生理用ナプキン、失禁パッド等の吸収性物品に用いられる吸収体にスリット等と呼ばれる細幅の切れ目を入れて、吸収体の性能を向上させる技術が知られている。例えば特許文献1には、排泄部対向部に、縦方向に沿う縦スリットが分散状態に形成された排泄部スリット領域を有する吸収体を備えた吸収性物品が記載されている。同文献によれば、この吸収性物品は、着用感を高めることができるとされている。 2. Description of the Related Art A technique for improving the performance of an absorbent body by making a narrow cut called a slit or the like in an absorbent body used for absorbent articles such as disposable diapers, sanitary napkins, and incontinence pads is known. For example, Patent Document 1 describes an absorbent article that includes an absorbent body having an excretion part slit region in which vertical slits along the vertical direction are formed in a dispersed state at an excretion part facing part. According to the literature, it is said that this absorbent article can enhance a feeling of wear.
 特許文献2には、縦方向又は横方向へ配列された4列以上のスリットが間隔を空けて設けられた吸収体を備えた生理用ナプキンが記載されている。同文献によれば、このナプキンの吸収体は容易に変形が可能であり、また吸収体の剛性がスリットによって緩和されるから、液漏れや異物感が少なくなるとされている。 Patent Document 2 describes a sanitary napkin provided with an absorbent body in which four or more rows of slits arranged in the vertical direction or the horizontal direction are provided at intervals. According to this document, the napkin absorbent body can be easily deformed, and the rigidity of the absorbent body is relaxed by the slits, so that liquid leakage and a feeling of foreign matter are reduced.
特開2015-42244号公報JP 2015-42244 A 実開昭63-18122号公報Japanese Utility Model Publication No. 63-18122
 ところで、吸収性物品が吸収の対象とする排泄液は、尿のような低粘度のものから、経血や軟便などの高粘度のものまで様々である。これらの排泄液のうち、経血や軟便はその粘度の高さの故に、尿のような低粘度の排泄液に比べて吸収されにくいことが知られている。このことに起因して、このような高粘度の排泄液は、液漏れが起こりやすく、また液戻りも起こりやすいという課題がある。上述したスリットを有する吸収体を備えた吸収性物品であっても、かかる課題を十分満足できる程度にまで解決しているとは言い難い。したがって高粘度の排泄液を迅速に、且つ確実に吸収保持し得る吸収性物品が望まれている。 By the way, the excretory fluids to be absorbed by the absorbent article vary from those having a low viscosity such as urine to those having a high viscosity such as menstrual blood and loose stool. Among these excretory fluids, menstrual blood and loose stool are known to be less absorbed than low-viscosity excretory fluids such as urine because of their high viscosity. Due to this, such a high-viscosity excretory liquid has a problem that liquid leakage is likely to occur and liquid return is likely to occur. Even an absorbent article provided with the above-described absorbent body having slits cannot be said to have solved such a problem to the extent that it can be satisfactorily satisfied. Accordingly, there is a demand for an absorbent article that can absorb and retain a highly viscous excretory liquid quickly and reliably.
 本発明は、横方向と、該横方向よりも長さの長い縦方向と、厚み方向とを有する長尺状基体部、及び該長尺状基体部の表面に固定された吸水性ポリマーの粒子を備えた吸収性ユニットを複数本具備し、各該吸収性ユニットを、その縦方向が少なくとも一方向を向くように配列させてなる吸収体を備えた吸収性物品を提供するものである。
 前記長尺状基体部における非肌対向面の表面にのみ前記吸水性ポリマーの粒子が固定されている。
 前記吸水性ポリマーの粒子が液を吸収する前においては、該吸水性ポリマーの粒子が、前記長尺状基体部の前記縦方向に沿う側縁部を越えて横方向にはみ出しておらず、且つ該吸水性ポリマーの粒子が液を吸収して膨潤した状態においても、該吸水性ポリマーの粒子が、該長尺状基体部の該縦方向に沿う側縁部を越えて膨潤しないようになされている。
The present invention relates to an elongated base portion having a lateral direction, a longitudinal direction longer than the lateral direction, and a thickness direction, and water-absorbing polymer particles fixed to the surface of the elongated base portion There is provided an absorbent article comprising an absorbent body comprising a plurality of absorptive units each having an absorbent body, and each of the absorptive units being arranged so that the longitudinal direction thereof faces at least one direction.
The particles of the water-absorbing polymer are fixed only on the surface of the long base portion facing the non-skin.
Before the water-absorbing polymer particles absorb the liquid, the water-absorbing polymer particles do not protrude laterally beyond the side edges along the longitudinal direction of the elongated substrate portion, and Even when the water-absorbing polymer particles absorb the liquid and swell, the water-absorbing polymer particles do not swell beyond the side edges along the longitudinal direction of the elongated base portion. Yes.
 また、本発明は、前記吸収性物品の好適な製造方法の一つとして、一方向に搬送される親水性の長尺状基体部の基材シートの一方の面の表面に、その横方向に距離を隔てた複数箇所に接着剤を塗布し、
 前記接着剤が塗布された前記長尺状基体部の前記基材シートを、前記搬送方向に沿って搬送させた状態下、該長尺状基体部の前記基材シートにおける該接着剤が塗布された前記一方の面の表面に、その横方向の全域にわたり吸水性ポリマーの粒子を散布し、
 前記吸水性ポリマーの粒子が散布された前記長尺状基体部の前記基材シートに、前記搬送方向に沿って搬送させた状態下、該接着剤が塗布された箇所間の非塗布箇所において、該搬送方向に沿って切り込みを入れて、細幅の複数条の長尺状基体部を得て、吸収体を製造し、
 製造された吸収体における吸水性ポリマーの粒子が固定された前記一方の面側に裏面シートを配置するとともに、吸水性ポリマーの粒子が固定されていない他方の面側に表面シートを配置する工程を含む、吸収性物品の製造方法を提供するものである。
Further, the present invention provides a method for producing the absorbent article as a preferred method for producing the absorbent article, in the lateral direction on the surface of one surface of the base sheet of the hydrophilic long base portion conveyed in one direction. Apply adhesive to multiple locations separated by a distance,
The adhesive on the base sheet of the long base portion is applied in a state where the base sheet of the long base portion to which the adhesive has been applied is transported along the transport direction. Further, the surface of the one surface is sprayed with water-absorbing polymer particles over the entire region in the lateral direction,
In the non-application part between the places where the adhesive was applied to the base sheet of the elongated base part in which particles of the water-absorbing polymer were dispersed, in a state where the base sheet was transported along the transport direction, Cut along the conveying direction to obtain a plurality of narrow elongated base portions, manufacture an absorber,
A step of disposing a back sheet on the one surface side where the water-absorbing polymer particles are fixed in the manufactured absorbent body and disposing a surface sheet on the other surface side where the water-absorbing polymer particles are not fixed; The manufacturing method of an absorbent article is also provided.
図1は、本発明の吸収性物品の一実施形態を示す横方向に沿う断面の模式図である。 Drawing 1 is a mimetic diagram of the section which meets a transverse direction showing one embodiment of an absorptive article of the present invention. 図2は、図1に示す吸収性物品における吸収体の斜視図である。FIG. 2 is a perspective view of an absorbent body in the absorbent article shown in FIG. 図3は、図1に示す吸収性物品における吸収体の別の実施形態の斜視図(図2相当図)である。FIG. 3 is a perspective view (corresponding to FIG. 2) of another embodiment of the absorbent body in the absorbent article shown in FIG. 図4は、図1に示す吸収性物品が液を吸収して、吸水性ポリマーの粒子が膨潤した状態を示す横方向に沿う断面の模式図である。FIG. 4 is a schematic diagram of a cross section along the horizontal direction showing a state in which the absorbent article shown in FIG. 1 absorbs liquid and the water-absorbing polymer particles swell. 図5は、図1に示す吸収性物品の製造装置の一実施形態を示す概略図である。FIG. 5 is a schematic view showing an embodiment of the absorbent article manufacturing apparatus shown in FIG. 1. 図6は、図5に示す製造装置の備える基材シートカット部の概略斜視図である。FIG. 6 is a schematic perspective view of a base sheet cut portion included in the manufacturing apparatus shown in FIG. 図7は、図1に示す吸収性物品の製造装置の別の一実施形態を示す概略図(図5相当図)である。FIG. 7 is a schematic view (corresponding to FIG. 5) showing another embodiment of the absorbent article manufacturing apparatus shown in FIG. 図8は、本発明の吸収性物品における吸収体の別の実施形態を示す斜視図(図2相当図)である。FIG. 8 is a perspective view (corresponding to FIG. 2) showing another embodiment of the absorbent body in the absorbent article of the present invention.
 本発明は、吸収性物品における吸収体の改良に関するものであり、更に詳細には、高粘度の排泄液の吸収及び保持に優れた吸収性物品に関するものである。 The present invention relates to improvement of an absorbent body in an absorbent article, and more particularly, to an absorbent article excellent in absorption and retention of high-viscosity excretory fluid.
 以下本発明を、その好ましい実施形態に基づき説明する。本発明の吸収性物品は一般に、尿、経血及び軟便等の排泄体液を吸収保持するために用いられるものである。吸収性物品には、例えば使い捨ておむつ、生理用ナプキン及び失禁パッド等が包含されるが、これらに限定されるものではなく、人体から排出される液の吸収に用いられる物品を広く包含するものである。 Hereinafter, the present invention will be described based on preferred embodiments thereof. The absorbent article of the present invention is generally used for absorbing and retaining excretory body fluids such as urine, menstrual blood and loose stool. Absorbent articles include, for example, disposable diapers, sanitary napkins, incontinence pads, and the like, but are not limited to these, and widely include articles used to absorb liquid discharged from the human body. is there.
 吸収性物品は、典型的には、液保持性の吸収体と、該吸収体の肌対向面側に配された表面シートと、該吸収体の非肌対向面側に配された裏面シートとを有している。表面シート及び裏面シートとしては、当該技術分野において通常用いられている材料を特に制限なく用いることができる。例えば、表面シートとしては、親水化処理が施された各種不織布や開孔フィルム等の液透過性のシートを用いることができる。また、裏面シートとしては、熱可塑性樹脂のフィルムや、該フィルムと不織布とのラミネート等の液透過性ないし撥水性のシートを用いることができる。裏面シートは水蒸気透過性を有していてもよい。また吸収性物品は、該吸収性物品の具体的な用途に応じた各種部材を更に具備していてもよい。そのような部材は当業者に公知である。例えば吸収性物品を使い捨ておむつや生理用ナプキンに適用する場合には、表面シート上の左右両側部に一対又は二対以上の防漏カフを配置することができる。なお、吸収性物品には、吸収体の肌対向面及び非肌対向面の少なくとも一方に所謂サブレイヤーシートが配されていてもよい。サブレイヤーシートとは、吸収体と表面シートとの間、又は吸収体と裏面シートとの間に配される液透過性のシートのことである。 The absorbent article typically includes a liquid-retaining absorbent, a top sheet disposed on the skin facing surface side of the absorbent body, and a back sheet disposed on the non-skin facing surface side of the absorbent body. have. As the top sheet and the back sheet, materials usually used in the technical field can be used without particular limitation. For example, as the surface sheet, liquid permeable sheets such as various nonwoven fabrics and perforated films subjected to a hydrophilic treatment can be used. As the back sheet, a liquid permeable or water repellent sheet such as a thermoplastic resin film or a laminate of the film and a nonwoven fabric can be used. The back sheet may have water vapor permeability. Moreover, the absorbent article may further include various members according to the specific application of the absorbent article. Such members are known to those skilled in the art. For example, when applying an absorbent article to a disposable diaper or a sanitary napkin, a pair or two or more pairs of leak-proof cuffs can be disposed on the left and right sides of the topsheet. In the absorbent article, a so-called sublayer sheet may be disposed on at least one of the skin facing surface and the non-skin facing surface of the absorbent body. The sub-layer sheet is a liquid-permeable sheet disposed between the absorber and the top sheet or between the absorber and the back sheet.
 図1には、本発明の吸収性物品の一実施形態を示す横方向に沿う断面が模式的に示されている。なお、以下の説明は、特に断らない限り、吸収性物品が液を吸収する前の状態に基づくものである。同図に示す吸収性物品10は吸収体1を備えている。吸収体1の肌対向面側には表面シート11が配置されている。一方、吸収体1の非肌対向面側には裏面シート12が配置されている。図2は、図1に示す吸収性物品10における吸収体1の斜視図である。 FIG. 1 schematically shows a cross section along the lateral direction showing an embodiment of the absorbent article of the present invention. In addition, unless otherwise indicated, the following description is based on the state before an absorbent article absorbs a liquid. The absorbent article 10 shown in the figure includes an absorbent body 1. A surface sheet 11 is disposed on the skin facing surface side of the absorbent body 1. On the other hand, a back sheet 12 is disposed on the non-skin facing surface side of the absorbent body 1. FIG. 2 is a perspective view of the absorbent body 1 in the absorbent article 10 shown in FIG.
 吸収体1は、横方向と、該横方向よりも長さの長い縦方向と、厚み方向とを有する長尺状基体部2、及び長尺状基体部2の表面に固定された吸水性ポリマーの粒子3(以下、単に「吸水性ポリマー3」ともいう。)を備えた吸収性ユニット4を複数本具備し、各吸収性ユニット4を、その縦方向が少なくとも一方向を向くように配列させて形成されている。以下の説明においては、横方向をXで表し、縦方向をYで表し、厚み方向をZで表す。横方向Xと、縦方向Yと、厚み方向Zとは互いに直交している。長尺状基体部2の横方向X、縦方向Y及び厚み方向Zは、吸収性ユニット4の横方向X、縦方向Y及び、厚み方向Zと一致しており、本実施形態では図2に示すとおり、吸収体1の横方向X、縦方向Y及び、厚み方向Zとも一致している。なお、吸収体1の縦方向Yは、吸収性物品10を着用したときの着用者の前後方向とも一致している。 The absorbent body 1 includes a long base portion 2 having a horizontal direction, a vertical direction longer than the horizontal direction, and a thickness direction, and a water-absorbing polymer fixed to the surface of the long base portion 2 A plurality of absorptive units 4 provided with particles 3 (hereinafter also simply referred to as “water-absorbing polymer 3”), and each absorptive unit 4 is arranged so that its longitudinal direction is at least in one direction. Is formed. In the following description, the horizontal direction is represented by X, the vertical direction is represented by Y, and the thickness direction is represented by Z. The horizontal direction X, the vertical direction Y, and the thickness direction Z are orthogonal to each other. The transverse direction X, the longitudinal direction Y, and the thickness direction Z of the elongated base portion 2 are the same as the transverse direction X, the longitudinal direction Y, and the thickness direction Z of the absorbent unit 4, and in this embodiment, FIG. As shown, the transverse direction X, the longitudinal direction Y, and the thickness direction Z of the absorbent body 1 also coincide. The longitudinal direction Y of the absorbent body 1 also coincides with the wearer's front-rear direction when the absorbent article 10 is worn.
 図2に示すとおり、吸収体1は、吸収性ユニット4の縦方向Yが吸収体1の縦方向Yを向くように、該吸収性ユニット4を複数配列させて形成されている。吸収体1の横方向Xにおいて隣り合う吸収性ユニット4,4間では、吸収性ユニット4の移動のしやすさの観点から、介在物が非存在状態となっている。例えば、各吸収性ユニット4は介在物で包まれていない状態となっている。 As shown in FIG. 2, the absorbent body 1 is formed by arranging a plurality of absorbent units 4 such that the longitudinal direction Y of the absorbent unit 4 faces the longitudinal direction Y of the absorbent body 1. Between the absorbent units 4 and 4 adjacent to each other in the lateral direction X of the absorbent body 1, inclusions are absent from the viewpoint of ease of movement of the absorbent unit 4. For example, each absorptive unit 4 is in a state where it is not wrapped with inclusions.
 吸収体1の吸収性ユニット4は、縦方向Yに長い矩形状に形成されている。吸収性ユニット4は、横方向Xの長さLxが、好ましくは0.3mm以上10mm以下、より好ましくは0.6mm以上2.0mm以下、更に好ましくは0.6mm以上1.8mm以下のものである。吸収性ユニット4の縦方向Yの長さLyは、横方向Xの長さLxに対して好ましくは2倍以上3500倍以下、更に好ましくは100倍以上700倍以下になっている。この倍率を満たすことを条件として、吸収性ユニット4の縦方向Yの長さLyは、好ましくは20mm以上1000mm以下、更に好ましくは200mm以上400mm以下になっている。このように吸収性ユニット4は、細長い形状をしている。
 本実施形態では長尺状基体部の側縁部に吸水性ポリマーの粒子3が固定されているので、長尺状基体部幅W2に対しての吸収性ユニット4の横方向Xの長さLxの大小関係は、好ましくは0μm<(Lx-W2)<1400μmであり、更に好ましくは200μm<(Lx-W2)<1000μmである。
The absorbent unit 4 of the absorber 1 is formed in a rectangular shape that is long in the vertical direction Y. The absorptive unit 4 has a length Lx in the lateral direction X of preferably 0.3 mm to 10 mm, more preferably 0.6 mm to 2.0 mm, and still more preferably 0.6 mm to 1.8 mm. is there. The length Ly in the longitudinal direction Y of the absorbent unit 4 is preferably 2 to 3500 times, more preferably 100 to 700 times the length Lx in the lateral direction X. On the condition that this magnification is satisfied, the length Ly in the longitudinal direction Y of the absorbent unit 4 is preferably 20 mm or more and 1000 mm or less, and more preferably 200 mm or more and 400 mm or less. Thus, the absorptive unit 4 has an elongated shape.
In this embodiment, since the water-absorbing polymer particles 3 are fixed to the side edges of the long base portion, the length Lx in the lateral direction X of the absorbent unit 4 with respect to the long base portion width W2 is determined. Is preferably 0 μm <(Lx−W2) <1400 μm, and more preferably 200 μm <(Lx−W2) <1000 μm.
 吸収体1は、本実施形態においては、使用前の状態において、縦方向Yに長い矩形状に形成されている。吸収体1は、縦方向Yの長さが100mm以上1000mm以下程度のものであり、横方向Xの長さが50mm以上300mm以下程度のものである。 In the present embodiment, the absorbent body 1 is formed in a rectangular shape that is long in the longitudinal direction Y in a state before use. The absorbent body 1 has a length in the vertical direction Y of about 100 mm to 1000 mm and a length in the horizontal direction X of about 50 mm to 300 mm.
 図示していないが、吸収体1はコアラップシートを備えていてもよい。コアラップシートは、少なくとも一方向に向けて配列された吸収性ユニット4の少なくとも一部を被覆するように配置されることが好ましい。コアラップシートとしては、液透過性を有するシートが用いられる。そのようなシートとしては、例えば紙や親水性の不織布などが挙げられる。 Although not shown, the absorbent body 1 may include a core wrap sheet. The core wrap sheet is preferably arranged so as to cover at least a part of the absorbent unit 4 arranged in at least one direction. As the core wrap sheet, a sheet having liquid permeability is used. Examples of such a sheet include paper and hydrophilic nonwoven fabric.
 吸収体1は、少なくとも一方向を向くように吸収性ユニット4を複数本配列した吸収領域ATを有している。吸収領域ATを含む吸収体1は、吸収性物品10において、少なくとも着用者の排泄部に対応する部位に配置されている。吸水性ポリマーの粒子3が固定された領域で液を吸収しやすくする観点から、吸収体1の平面視において、該吸収体1の全体の面積に対する吸収領域ATの面積の割合は、20%以上であることが好ましく、50%以上であることが更に好ましく、そして、100%以下であることが好ましく、90%以下であることが更に好ましい。具体的には、20%以上100%以下であることが好ましく、50%以上90%以下であることが更に好ましい。吸収領域ATの割合が100%であるとは、例えば、吸収性ユニット4の縦方向Yが吸収体1の縦方向Yを向くように、複数の吸収性ユニット4を吸収体1の横方向Xに並置させる場合には、吸収体1の縦方向Yの両端部間にわたる全域に吸収性ユニット4が配されている形態を意味する。この場合には、吸収性ユニット4はその縦方向Yが、吸収性物品10の縦方向Yを向くように、吸収領域ATの縦方向Yの全域にわたって配列されている状態となる。あるいは、後述する図8に示すとおり、吸収性ユニット4の縦方向Yが吸収体1の横方向Xを向くように、複数の吸収性ユニット4を吸収体1の縦方向Yに並置させる場合には、吸収体1の縦方向Yに沿う両側部間にわたる全域に吸収性ユニット4が配されている形態を意味する。なお、吸収体1を平面視したとき、吸収領域AT以外の領域が、後述する非スリット領域NTとなる。 The absorber 1 has an absorption region AT in which a plurality of absorbent units 4 are arranged so as to face at least one direction. The absorbent body 1 including the absorbent region AT is disposed in the absorbent article 10 at least at a site corresponding to the excretion part of the wearer. From the viewpoint of facilitating liquid absorption in the region where the water-absorbing polymer particles 3 are fixed, the ratio of the area of the absorption region AT to the entire area of the absorber 1 in a plan view of the absorber 1 is 20% or more. It is preferably 50% or more, more preferably 100% or less, and still more preferably 90% or less. Specifically, it is preferably 20% or more and 100% or less, and more preferably 50% or more and 90% or less. The ratio of the absorption region AT is 100% means that, for example, the plurality of absorbent units 4 are arranged in the lateral direction X of the absorbent body 1 such that the longitudinal direction Y of the absorbent unit 4 faces the longitudinal direction Y of the absorbent body 1. In the case where they are juxtaposed with each other, it means a form in which the absorptive units 4 are arranged in the entire region between both end portions in the longitudinal direction Y of the absorber 1. In this case, the absorbent units 4 are arranged over the entire region in the longitudinal direction Y of the absorbent region AT so that the longitudinal direction Y faces the longitudinal direction Y of the absorbent article 10. Alternatively, when a plurality of absorbent units 4 are juxtaposed in the longitudinal direction Y of the absorbent body 1 so that the longitudinal direction Y of the absorbent unit 4 faces the lateral direction X of the absorbent body 1, as shown in FIG. Means a form in which the absorptive units 4 are arranged in the entire region extending between both side portions along the longitudinal direction Y of the absorbent body 1. When the absorber 1 is viewed in plan, the area other than the absorption area AT becomes a non-slit area NT described later.
 吸収性ユニット4の縦方向Yを、吸収体1の縦方向Yを向くように配する場合、吸収性ユニット4は、1枚の吸収体当たり、3本以上配されていることが好ましく、50本以上配されていることが更に好ましく、そして、1000本以下配されていることが好ましく、500本以下配されていることが更に好ましい。具体的には、3本以上1000本以下配されていることが好ましく、50本以上500本以下配されていることが更に好ましい。また、吸収性ユニット4の縦方向Yを、吸収体1の横方向Xを向くように配する場合、吸収性ユニット4は、1枚の吸収体当たり、3本以上配されていることが好ましく、50本以上配されていることが更に好ましく、そして、3500本以下配されていることが好ましく、2000本以下配されていることが更に好ましい。具体的には、3本以上3500本以下配されていることが好ましく、50本以上2000本以下配されていることが更に好ましい。吸収性ユニット4の数え方は、横方向Xにある直線をひいたとき、その直線と交差する吸収性ユニットの数が最大となるときの本数と定義する。 When arranging the longitudinal direction Y of the absorbent unit 4 so as to face the longitudinal direction Y of the absorbent body 1, it is preferable that 3 or more absorbent units 4 are disposed per absorbent body. More than this, it is more preferable that 1000 or less is preferable, and 500 or less is more preferable. Specifically, it is preferable that 3 or more and 1000 or less are arranged, and more preferably 50 or more and 500 or less are arranged. Moreover, when arrange | positioning so that the vertical direction Y of the absorptive unit 4 may face the horizontal direction X of the absorber 1, it is preferable that three or more absorptive units 4 are arrange | positioned per absorber. 50 or more are more preferable, 3500 or less are preferable, and 2000 or less are more preferable. Specifically, 3 or more and 3500 or less are preferable, and 50 or more and 2000 or less are more preferable. The counting method of the absorptive units 4 is defined as the number when the number of the absorptive units that intersect the straight line is maximized when a straight line in the lateral direction X is drawn.
 吸収体1は、製造時の搬送のしやすさの観点から、吸収性ユニット4の縦方向Yが、吸収体1の縦方向Yに向くように複数配している形態であることが好ましい。特に、複数の吸収性ユニット4が互いに交差しないように配されていることが好ましい。図1に示す吸収体1は、均一な幅の長尺状基体部2を有する吸収性ユニット4を複数用い、吸収性ユニット4の縦方向Yが吸収体1の縦方向Yに向くように、該吸収性ユニット4を配して形成されている。 The absorbent body 1 is preferably in a form in which a plurality of the absorbent units 4 are arranged so that the longitudinal direction Y of the absorbent unit 4 faces the longitudinal direction Y of the absorbent body 1 from the viewpoint of ease of transport during manufacturing. In particular, it is preferable that the plurality of absorbent units 4 are arranged so as not to cross each other. The absorbent body 1 shown in FIG. 1 uses a plurality of absorbent units 4 each having an elongated base portion 2 having a uniform width, and the longitudinal direction Y of the absorbent unit 4 is directed to the longitudinal direction Y of the absorbent body 1. The absorbent unit 4 is arranged.
 吸収体1は、縦方向Yの両端部、又は縦方向Yに沿う両側部に、複数の長尺状基体部2が横方向Xに繋がった非スリット領域NTを備えていてもよい。例えば吸収体1は、図2に示すとおり、縦方向Yの両端部に、横方向Xに沿って延びる非スリット領域NTを備えている。すなわち、本実施形態の吸収体1においては、1枚の基材シートを具備しており、該基材シートの縦方向(Y方向)の両端部に非スリット領域NTが設けられ、該非スリット領域NTの間に後述するカット工程によって形成された長尺状基体部が設けられている。あるいは吸収体1は、図3に示すとおり、縦方向Yの両端部に、横方向Xに沿って延びる非スリット領域NTを備えているとともに、横方向Xの両側部に、縦方向Yに沿って延びる非スリット領域を備えていてもよい。このような形態の吸収体1においては、吸収性ユニット4はその縦方向Yが、吸収性物品10の縦方向Yを向くように、吸収体1の縦方向Yの中央域及び横方向Xの中央域に少なくとも配列されている。このような非スリット領域NTを設けると、使用前の状態において、吸収体1のシート形状が維持されやすく、構造が乱れ難くなるとともに、製造時に搬送しやすいという有利な効果が奏される。非スリット領域NTには、吸水性ポリマーの粒子3が配されていないことが好ましい。非スリット領域NTに吸水性ポリマーの粒子3を配していなければ、吸収体1が液を吸収したとしても、非スリット領域NTは吸水性ポリマーの粒子3の膨潤に起因する変形の影響を受けないので、膨潤後の状態においても、吸収体1のシート形状が維持されやすく、構造が乱れ難くなる。これとともに、吸水性ポリマーの粒子3が固定された領域では液が吸収されやすい。これらの結果、吸収体1の全体で吸液性とシート形状の維持とのバランスを取りやすいという利点が生じる。特に、長尺状基体部2における縦方向Yの両端部域において吸水性ポリマーの粒子3が配されていないと、上述した有利な各効果が一層顕著なものとなるので好ましい。とりわけ、長尺状基体部2における縦方向Yの両端部域及び横方向Xの両側部域において吸水性ポリマーの粒子3が配されていないと、上述した有利な各効果が更に一層顕著なものとなる。ここで、膨潤後の状態とは、25℃に調温した生理食塩水(0.9質量%塩化ナトリウム水溶液)中に60分間吸収体1を浸漬した後の吸水性ポリマーの粒子の状態を意味する。 The absorber 1 may include a non-slit region NT in which a plurality of long base portions 2 are connected in the horizontal direction X at both ends in the vertical direction Y or on both sides along the vertical direction Y. For example, the absorbent body 1 includes non-slit regions NT extending along the horizontal direction X at both ends in the vertical direction Y, as shown in FIG. That is, in the absorbent body 1 of the present embodiment, a single base sheet is provided, and non-slit areas NT are provided at both ends in the longitudinal direction (Y direction) of the base sheet. A long base portion formed by a cutting process described later is provided during NT. Or the absorber 1 is equipped with the non-slit area | region NT extended along the horizontal direction X in the both ends of the vertical direction Y, as shown in FIG. A non-slit region extending in the direction may be provided. In the absorbent body 1 having such a configuration, the absorbent unit 4 has a central area in the longitudinal direction Y of the absorbent body 1 and a transverse direction X so that the longitudinal direction Y faces the longitudinal direction Y of the absorbent article 10. Arranged at least in the central area. Providing such a non-slit region NT has an advantageous effect that the sheet shape of the absorbent body 1 is easily maintained in a state before use, the structure is not easily disturbed, and is easily transported during manufacturing. It is preferable that the water-absorbing polymer particles 3 are not arranged in the non-slit region NT. If the water-absorbing polymer particles 3 are not arranged in the non-slit region NT, even if the absorbent 1 absorbs the liquid, the non-slit region NT is affected by deformation caused by the swelling of the water-absorbing polymer particles 3. Therefore, even in the state after swelling, the sheet shape of the absorbent body 1 is easily maintained, and the structure is not easily disturbed. At the same time, the liquid is easily absorbed in the region where the water-absorbing polymer particles 3 are fixed. As a result, there is an advantage that the entire absorbent body 1 can easily balance the liquid absorbency and the maintenance of the sheet shape. In particular, it is preferable that the water-absorbing polymer particles 3 are not disposed in both end regions in the longitudinal direction Y of the long base portion 2 because the advantageous effects described above become more remarkable. In particular, if the water-absorbing polymer particles 3 are not arranged in both end regions in the longitudinal direction Y and both side regions in the transverse direction X of the long base portion 2, the advantageous effects described above are even more remarkable. It becomes. Here, the state after swelling means the state of the water-absorbing polymer particles after the absorbent body 1 is immersed for 60 minutes in a physiological saline (0.9 mass% sodium chloride aqueous solution) adjusted to 25 ° C. To do.
 また吸収体1は、これを構成する長尺状基体部2が、該長尺状基体部2と肌対向面側において隣接する部材と接合されていることが、該長尺状基体部2を含む吸収性ユニット4どうしの間に安定的な間隙Sを形成し得る点から好ましい。この利点を一層顕著なものとする観点から、長尺状基体部2と前記部材との接合位置は、吸収体1の横方向Xの中央域又は縦方向Yの中央域であることが好ましい。前記部材としては、例えば、表面シート11若しくはサブレイヤーシート、又はその双方が挙げられる。なお、吸収体1がコアラップシートを備えている場合、該長尺状基体部2が他の部材に固定されているとは、長尺状基体部2がコアラップシートに固定されているとともに、コアラップシートが他の部材に固定されていることを意味する。この場合、長尺状基体部2とコアラップシートとの固定位置F1と、コアラップシートと他の部材との固定位置F2とは、同位置であってもよく、あるいは異なる位置であってもよい。 Further, the absorbent body 1 has the long base portion 2 constituting the long base portion 2 joined to a member adjacent to the long base portion 2 on the skin facing surface side. This is preferable in that a stable gap S can be formed between the absorbent units 4 included. From the viewpoint of making this advantage even more prominent, the joining position of the elongated base portion 2 and the member is preferably the central region in the transverse direction X or the central region in the longitudinal direction Y of the absorber 1. Examples of the member include the top sheet 11 and / or the sublayer sheet. When the absorbent body 1 includes a core wrap sheet, the long base portion 2 is fixed to another member when the long base portion 2 is fixed to the core wrap sheet. This means that the core wrap sheet is fixed to another member. In this case, the fixing position F1 between the elongated base portion 2 and the core wrap sheet and the fixing position F2 between the core wrap sheet and another member may be the same position or different positions. Good.
 一方、吸収体1は、吸収性ユニット4が形成されている部位において、該吸収体を構成する長尺状基体部2が、該長尺状基体部2と非肌対向面側において隣接する他の部材と非接合状態になっていることが好ましい。こうすることで、長尺状基体部2の非肌対向面に固定されている吸水性ポリマーの粒子3と、それよりも非肌対向面側に位置する部材との間に摩擦が生じた場合であっても、その摩擦によって該吸水性ポリマーの粒子3が長尺状基体部2から剥がれ落ちることが効果的に防止される。また、長尺状基体部2が非肌対向面側において隣接する他の部材と非接合状態になっていることは、吸収性物品10の曲げ剛性を低下させ、該物品10の装着状態での身体追従性を高める点からも有利である。長尺状基体部2が非肌対向面側において隣接する他の部材としては、例えば裏面シート12が典型的なものとして挙げられる。なお、吸収体1がコアラップシートを備えている場合、長尺状基体部2が他の部材と非接合状態になっているとは、長尺状基体部2とコアラップシートとが非接合状態になっていることを意味し、コアラップシートとそれよりも非肌対向面側に位置する部材とが接合状態になっているか、それとも非接合状態になっているかは問わない。 On the other hand, in the absorbent body 1, the long base portion 2 constituting the absorbent body is adjacent to the long base portion 2 on the non-skin-facing surface side in the portion where the absorbent unit 4 is formed. It is preferable that it is in a non-joined state with this member. In this way, when friction occurs between the water-absorbing polymer particles 3 fixed to the non-skin-facing surface of the long base portion 2 and the member located on the non-skin-facing surface side. Even so, it is possible to effectively prevent the water-absorbing polymer particles 3 from being peeled off from the long base portion 2 due to the friction. Moreover, that the elongate base | substrate part 2 is a non-joining state with the other member which adjoins in the non-skin opposing surface side reduces the bending rigidity of the absorbent article 10, and in the mounting state of this article 10 It is also advantageous from the viewpoint of improving the body following ability. As another member with which the elongate base | substrate part 2 adjoins in the non-skin opposing surface side, the back surface sheet 12 is mentioned as a typical thing, for example. In addition, when the absorber 1 is provided with a core wrap sheet, the long base portion 2 and the core wrap sheet are not joined when the long base portion 2 is not joined to other members. It means that it is in a state, and it does not matter whether the core wrap sheet and the member positioned on the non-skin facing surface side are in a joined state or a non-joined state.
 図1に示すとおり、吸収体1においては、長尺状基体部2における非肌対向面の表面にのみ吸水性ポリマーの粒子3が固定されている。すなわち長尺状基体部2における裏面シート12との対向面の表面にのみ吸水性ポリマーの粒子3が固定されている。そして、長尺状基体部2における肌対向面及び側面には吸水性ポリマーの粒子3が非存在状態又は吸水性ポリマーの粒子3が固定されていない状態になっている。また、液を吸収する前の状態の吸収体1においては、同図に示すとおり、隣り合う吸収性ユニット4を構成する長尺状基体部2どうしの位置が、厚み方向Zにおいて概ね一致している。すなわち、各長尺状基体部2は、概ね同一平面上に位置している。 As shown in FIG. 1, in the absorbent body 1, the water-absorbing polymer particles 3 are fixed only on the surface of the long base portion 2 facing the non-skin. That is, the water-absorbing polymer particles 3 are fixed only on the surface of the long base portion 2 facing the back sheet 12. Then, the water-absorbing polymer particles 3 are not present on the skin-facing surface and the side surface of the long base portion 2 or the water-absorbing polymer particles 3 are not fixed. Further, in the absorbent body 1 in a state before absorbing the liquid, as shown in the figure, the positions of the elongated base portions 2 constituting the adjacent absorbent units 4 are substantially the same in the thickness direction Z. Yes. That is, each elongate base | substrate part 2 is located on the substantially same plane.
 吸収体1においては、これを縦方向Yに沿って見たときに、縦方向Yのいずれの部位においても吸水性ポリマーの粒子3が概ね均一に存在している。同様に、吸収体1を横方向Xに沿って見たときに、横方向Xのいずれの部位においても吸水性ポリマーの粒子3が概ね均一に存在している。このように、吸収体1においては縦方向Y及び横方向Xを含むX-Y平面内において、吸水性ポリマーの粒子3が概ね均一に存在している。このような吸水性ポリマーの粒子3の存在態様に代えて、吸収体1を横方向Xに沿って見たときに、中央域と側部域とで吸水性ポリマー3の坪量に差を設けることができる。例えば中央域の吸水性ポリマー3の坪量を、側部域の吸水性ポリマー3の坪量よりも高くすることができる。逆に、中央域の吸水性ポリマー3の坪量を、側部域の吸水性ポリマー3の坪量よりも低くすることもできる。この場合、中央域と側部域とでの吸水性ポリマー3の坪量の差は、ステップ状に変化してもよく、あるいは連続的に変化(漸減又は漸増)してもよい。
 縦方向Yに関しても同様であり、中央域と端部域とで吸水性ポリマー3の坪量に差を設けることができる。例えば吸収体1を縦方向Yに沿って見たときに、中央域の吸水性ポリマー3の坪量を、端部域の吸水性ポリマー3の坪量よりも高くすることができる。逆に、中央域の吸水性ポリマー3の坪量を、端部域の吸水性ポリマー3の坪量よりも低くすることができる。この場合、中央域と端部域とでの吸水性ポリマー3の坪量の差は、ステップ状に変化してもよく、あるいは連続的に変化(漸減又は漸増)してもよい。
In the absorbent body 1, when viewed along the longitudinal direction Y, the water-absorbing polymer particles 3 are present almost uniformly in any part of the longitudinal direction Y. Similarly, when the absorbent body 1 is viewed along the lateral direction X, the water-absorbing polymer particles 3 are present almost uniformly in any part of the lateral direction X. As described above, in the absorbent body 1, the water-absorbing polymer particles 3 exist substantially uniformly in the XY plane including the longitudinal direction Y and the transverse direction X. It replaces with the presence aspect of the particle | grains 3 of such a water absorbing polymer, and when the absorber 1 is seen along the horizontal direction X, a difference is provided in the basic weight of the water absorbing polymer 3 in a center area and a side part area. be able to. For example, the basis weight of the water-absorbing polymer 3 in the central region can be made higher than the basis weight of the water-absorbing polymer 3 in the side region. Conversely, the basis weight of the water-absorbing polymer 3 in the central region can be made lower than the basis weight of the water-absorbing polymer 3 in the side region. In this case, the difference in the basis weight of the water-absorbing polymer 3 between the central region and the side region may change stepwise, or may change continuously (gradual decrease or gradual increase).
The same applies to the longitudinal direction Y, and a difference in the basis weight of the water-absorbing polymer 3 can be provided between the central region and the end region. For example, when the absorbent body 1 is viewed along the longitudinal direction Y, the basis weight of the water-absorbing polymer 3 in the central region can be made higher than the basis weight of the water-absorbing polymer 3 in the end region. Conversely, the basis weight of the water-absorbing polymer 3 in the central region can be made lower than the basis weight of the water-absorbing polymer 3 in the end region. In this case, the difference in basis weight of the water-absorbing polymer 3 between the central region and the end region may be changed stepwise, or may be continuously changed (gradual decrease or increase).
 更に吸収体1においては、図1に示すとおり、吸水性ポリマーの粒子3が液を吸収する前の状態で、吸水性ポリマーの粒子3が、長尺状基体部2の縦方向Yに沿う側縁部2s,2sを越えて横方向Xにはみ出していない。これに加えて、吸水性ポリマーの粒子3が液を吸収する前の状態で、横方向Xに沿って隣り合う吸収性ユニット4どうしの間に間隙Sが生じている。この間隙Sの程度は、0.1mm以上であることが好ましく、0.5mm以上であることが更に好ましい。また、5mm以下であることが好ましく、3mm以下であることが更に好ましい。例えば間隙Sの程度は、0.1mm以上5mm以下であることが好ましく、0.5mm以上3mm以下であることが更に好ましい。 Further, in the absorbent body 1, as shown in FIG. 1, before the water-absorbing polymer particles 3 absorb the liquid, the water-absorbing polymer particles 3 are on the side along the longitudinal direction Y of the long base portion 2. It does not protrude in the lateral direction X beyond the edges 2s, 2s. In addition to this, a gap S is formed between the absorbent units 4 adjacent in the lateral direction X in a state before the water-absorbing polymer particles 3 absorb the liquid. The degree of the gap S is preferably 0.1 mm or more, and more preferably 0.5 mm or more. Moreover, it is preferable that it is 5 mm or less, and it is still more preferable that it is 3 mm or less. For example, the degree of the gap S is preferably 0.1 mm or more and 5 mm or less, and more preferably 0.5 mm or more and 3 mm or less.
 一方、吸収体1においては、図4に示すとおり、吸水性ポリマーの粒子3が液を吸収した後においても、該吸水性ポリマーの粒子3が、長尺状基体部2の縦方向Yに沿う側縁部2s,2sを越えて膨潤しないようになされている。この目的のために、本実施形態では、吸収体1の吸収性ユニット4において、長尺状基体部2と吸水性ポリマーの粒子3とを、接着剤5を介して固定している。 On the other hand, in the absorbent body 1, as shown in FIG. 4, even after the water-absorbing polymer particles 3 absorb the liquid, the water-absorbing polymer particles 3 are along the longitudinal direction Y of the long base portion 2. It is made not to swell beyond the side edges 2s, 2s. For this purpose, in the present embodiment, in the absorbent unit 4 of the absorbent body 1, the long base portion 2 and the water-absorbing polymer particles 3 are fixed via an adhesive 5.
 吸収体1において、吸収体1の幅W1に対する長尺状基体部2の幅W2の割合(W2/W1)は、吸水性ポリマーの粒子3の長尺状基体部2への担持量、膨潤阻害、柔軟性、通気性、吸収体1のシート形状の維持等の観点から、0.001以上であることが好ましく、0.002以上であることが更に好ましく、そして、0.200以下であることが好ましく、0.040以下であることが更に好ましい。具体的には、0.001以上0.200以下であることが好ましく、0.002以上0.040以下であることが更に好ましい。
 同様の観点から、長尺状基体部2の幅W2は、0.3mm以上であることが好ましく、0.6mm以上であることが更に好ましく、そして、10mm以下であることが好ましく、2.0mm以下であることがより好ましく、1.8mm以下であることが更に好ましい。具体的には、長尺状基体部2の幅W2は、0.3mm以上10mm以下であることが好ましく、0.6mm以上2.0mm以下であることがより好ましく、0.6mm以上1.8mm以下であることが更に好ましい。長尺状基体部2の幅W2とは、縦方向Yに沿う長尺状基体部2の両側縁部間の距離のことである。吸収体1の幅W1とは、縦方向Yに沿う吸収体1の両側縁部間の距離のことである。
In the absorbent body 1, the ratio (W2 / W1) of the width W2 of the elongated base portion 2 to the width W1 of the absorbent body 1 is the amount of water-absorbing polymer particles 3 supported on the elongated base portion 2 and inhibits swelling. From the viewpoints of flexibility, air permeability, maintenance of the sheet shape of the absorbent body 1 and the like, it is preferably 0.001 or more, more preferably 0.002 or more, and 0.200 or less. Is preferable, and it is still more preferable that it is 0.040 or less. Specifically, it is preferably 0.001 or more and 0.200 or less, and more preferably 0.002 or more and 0.040 or less.
From the same viewpoint, the width W2 of the elongated base portion 2 is preferably 0.3 mm or more, more preferably 0.6 mm or more, and preferably 10 mm or less, 2.0 mm. More preferably, it is more preferably 1.8 mm or less. Specifically, the width W2 of the elongated base portion 2 is preferably 0.3 mm or more and 10 mm or less, more preferably 0.6 mm or more and 2.0 mm or less, and 0.6 mm or more and 1.8 mm. More preferably, it is as follows. The width W2 of the long base portion 2 is a distance between both side edges of the long base portion 2 along the longitudinal direction Y. The width W1 of the absorbent body 1 is a distance between both side edges of the absorbent body 1 along the longitudinal direction Y.
 吸収性ユニット4を構成する長尺状基体部2(基材シート)は、親水性のものであるか、又は疎水性のものである。隣り合う吸収性ユニット4,4間に生じる間隙Sを通じて透過してきた液が、着用者の体圧によって逆戻りすることを防止する観点から、疎水性のシートからなることが更に好ましい。親水性シートとは、構成繊維1本の接触角が90°未満、又は繊維材料でないシートの場合は、その表面の接触角が90°未満のものと定義される。なお、測定方法は下記方法に則る。親水性シートとしては、例えば親水性材料を含んで構成されるシート状物を用いることができる。その例としては、親水性繊維を含んで構成される繊維シートである紙、不織布、織布、編み物地などが挙げられる。また、親水性樹脂を含んで構成される発泡体などが挙げられる。これらの親水性シートは単独で用いることができ、あるいは2種以上を組み合わせて用いることもできる。一方、疎水性のシートとは、構成繊維1本の接触角が90°以上、又は繊維材料でないシートの場合は、その表面の接触角が90°以上のものと定義される。なお、測定方法は下記方法に則る。疎水性シートとしては、例えば疎水性材料を含んで構成されるシート状物を用いることができる。その例としては、疎水性繊維を含んで構成される繊維シートである不織布などが挙げられる。また、疎水性樹脂を含んで構成される発泡体などが挙げられる。これらの疎水性シートは単独で用いることができ、あるいは2種以上を組み合わせて用いることもできる。これらの疎水性シートのうち、薄くても引っ張り強度が比較的高く、また薄くて柔軟性が高い観点から、疎水性樹脂を含有する繊維を構成繊維として含む不織布が好ましく用いられる。不織布の坪量は、5g/m以上40g/m以下であることが好ましく、10g/m以上30g/m以下であることが更に好ましい。疎水性不織布としては、例えばポリエチレンやポリプロピレン等のポリオレフィン系樹脂を構成繊維とするスパンボンド不織布、メルトブローン不織布、スパンレース不織布、エアスルー不織布など、当該技術分野において公知のものを特に制限なく用いることができる。 The elongate base | substrate part 2 (base material sheet) which comprises the absorptive unit 4 is a hydrophilic thing, or a hydrophobic thing. From the viewpoint of preventing the liquid that has permeated through the gap S generated between the adjacent absorbent units 4 and 4 from being returned by the body pressure of the wearer, it is more preferably made of a hydrophobic sheet. The hydrophilic sheet is defined as one having a contact angle of one constituent fiber of less than 90 °, or in the case of a sheet that is not a fiber material, having a surface contact angle of less than 90 °. In addition, the measuring method follows the following method. As the hydrophilic sheet, for example, a sheet-like material including a hydrophilic material can be used. Examples thereof include paper, nonwoven fabric, woven fabric, and knitted fabric that are fiber sheets configured to contain hydrophilic fibers. Moreover, the foam etc. which are comprised including hydrophilic resin are mentioned. These hydrophilic sheets can be used alone or in combination of two or more. On the other hand, the hydrophobic sheet is defined as a sheet having a contact angle of 90 ° or more of one constituent fiber, or a sheet having a contact angle of 90 ° or more in the case of a sheet that is not a fiber material. In addition, the measuring method follows the following method. As the hydrophobic sheet, for example, a sheet-like material including a hydrophobic material can be used. Examples thereof include a nonwoven fabric that is a fiber sheet configured to include hydrophobic fibers. Moreover, the foam etc. which are comprised including hydrophobic resin are mentioned. These hydrophobic sheets can be used alone or in combination of two or more. Among these hydrophobic sheets, a nonwoven fabric containing fibers containing a hydrophobic resin as constituent fibers is preferably used from the viewpoint of relatively high tensile strength even if it is thin, and thin and high flexibility. The basis weight of the nonwoven fabric is preferably 5 g / m 2 or more and 40 g / m 2 or less, more preferably 10 g / m 2 or more and 30 g / m 2 or less. As the hydrophobic nonwoven fabric, those known in the technical field such as a spunbond nonwoven fabric, a meltblown nonwoven fabric, a spunlace nonwoven fabric, and an air-through nonwoven fabric having a polyolefin resin such as polyethylene and polypropylene can be used without particular limitation. .
<長尺状基体部の親水度の測定方法>
 長尺状基体部を形成するシートの構成繊維に対する水の接触角、又は長尺状基体部の表面に対する水の接触角は次の方法で測定される。測定装置として、協和界面科学株式会社製の自動接触角計MCA-Jを用いる。接触角測定には蒸留水を用いる。インクジェット方式水滴吐出部(クラスターテクノロジー社製、吐出部孔径が25μmのパルスインジェクターCTC-25)から吐出される液量を20ピコリットルに設定して、水滴を、構成繊維の真上に滴下する。滴下の様子を水平に設置されたカメラに接続された高速度録画装置に録画する。録画装置は後に画像解析や画像解析をする観点から、高速度キャプチャー装置が組み込まれたパーソナルコンピュータが望ましい。本測定では、17msec毎に、画像が録画される。録画された映像において、不織布の肌対向面あるいは非肌対向面を形成する構成繊維に水滴が着滴した最初の画像を、付属ソフトウエアFAMAS(ソフトウエアのバージョンは2.6.2、解析手法は液滴法、解析方法はθ/2法、画像処理アルゴリズムは無反射、画像処理イメージモードはフレーム、スレッシホールドレベルは200、曲率補正はしない、とする)にて画像解析を行い、水滴の空気に触れる面と構成繊維のなす角を算出し、接触角とする。
 なお、長尺状基体部が不織布である場合、測定用サンプル(不織布から取り出して得られる構成繊維)は、不織布の構成繊維を最表層から繊維長1mmで裁断し、該構成繊維を接触角計のサンプル台に載せて、水平に維持し、該構成繊維1本につき異なる2箇所の接触角を測定する。前述の各部位において、N=5本の接触角を小数点以下1桁まで計測し、合計10箇所の測定値を平均した値(小数点以下第2桁で四捨五入)を各々の接触角と定義する。
<Measurement method of hydrophilicity of long base part>
The contact angle of water with the constituent fibers of the sheet forming the long base portion or the contact angle of water with the surface of the long base portion is measured by the following method. As a measuring device, an automatic contact angle meter MCA-J manufactured by Kyowa Interface Science Co., Ltd. is used. Distilled water is used for contact angle measurement. The amount of liquid ejected from an ink jet type water droplet ejection section (manufactured by Cluster Technology, Inc., pulse injector CTC-25 having a pore diameter of 25 μm) is set to 20 picoliters, and water droplets are dripped just above the constituent fibers. The state of dripping is recorded on a high-speed recording device connected to a horizontally installed camera. The recording device is preferably a personal computer incorporating a high-speed capture device from the viewpoint of image analysis or image analysis later. In this measurement, an image is recorded every 17 msec. In the recorded video, the first image in which water droplets land on the constituent fibers forming the non-skin facing surface or non-skin facing surface of the nonwoven fabric is the attached software FAMAS (software version is 2.6.2, analysis method) Is the droplet method, the analysis method is the θ / 2 method, the image processing algorithm is non-reflective, the image processing image mode is frame, the threshold level is 200, and the curvature is not corrected) The angle formed between the air contact surface and the constituent fibers is calculated as the contact angle.
In addition, when a long base part is a nonwoven fabric, the sample for a measurement (constituent fiber obtained by taking out from a nonwoven fabric) cuts the constituent fiber of a nonwoven fabric from the outermost layer by fiber length 1mm, and this constituent fiber is contact angle meter. The sample is placed on the sample stage and kept horizontal, and two different contact angles are measured for each constituent fiber. In each of the aforementioned parts, N = 5 contact angles are measured to one decimal place, and a value obtained by averaging a total of 10 measured values (rounded to the second decimal place) is defined as each contact angle.
 長尺状基体部2はその通気度が、吸収体1よりも肌対向面側に位置するシート部材の通気度よりも低くなっていることが好ましい。シートの通気度は、そのシートの液透過性の尺度になるものであるところ、長尺状基体部2の通気度が、吸収体1よりも肌対向面側に位置するシート部材の通気度よりも低くなっていることは、長尺状基体部2の液透過性に比べて、吸収体1よりも肌対向面側に位置するシート部材の液透過性の方が高いことを意味する。こうすることで、肌対向面側に排泄された液が吸収体1まで素早く到達するようになる。特に、液が経血や軟便などの高粘度のものであっても、それらの透過性が良好になる。なお、吸収体1よりも肌対向面側に2枚以上のシート部材が位置する場合には、それらのうちの少なくとも1枚のシート部材の通気度の方が、長尺状基体部2の通気度よりも高ければよい。好ましくは、吸収体1よりも肌対向面側に位置するすべてのシート部材が、長尺状基体部2の通気度よりも高くなっている。 The long base portion 2 preferably has a lower air permeability than the air permeability of the sheet member located on the skin facing surface side than the absorbent body 1. The air permeability of the sheet is a measure of the liquid permeability of the sheet. The air permeability of the long base portion 2 is greater than the air permeability of the sheet member located on the skin facing surface side with respect to the absorbent body 1. The lower value also means that the liquid permeability of the sheet member located on the skin facing surface side than the absorbent body 1 is higher than the liquid permeability of the elongated base portion 2. By carrying out like this, the liquid excreted by the skin opposing surface side comes to arrive at the absorber 1 quickly. In particular, even if the liquid has a high viscosity such as menstrual blood or loose stool, the permeability is improved. When two or more sheet members are positioned on the skin-facing surface side of the absorbent body 1, the air permeability of at least one of the sheet members is the ventilation of the elongated base portion 2. It should be higher than the degree. Preferably, all the sheet members positioned on the skin-facing surface side with respect to the absorbent body 1 have a higher air permeability than the long base portion 2.
 長尺状基体部2の表面に固定される吸水性ポリマー3としては、吸収性物品の技術分野において従来用いられている各種のものを用いることができる。例えば、ポリアクリル酸ソーダ、(アクリル酸-ビニルアルコール)共重合体、ポリアクリル酸ソーダ架橋体、(デンプン-アクリル酸)グラフト重合体、(イソブチレン-無水マレイン酸)共重合体及びそのケン化物、ポリアクリル酸カリウム、並びにポリアクリル酸セシウム等が挙げられ、これらの1種を単独で又は2種以上を混合して用いることができる。吸水性ポリマーの粒子3としては、その形状の違いから、不定形タイプ、塊状タイプ、俵状タイプ、球粒凝集タイプ、球状タイプ等があるが、いずれのタイプも用いることができる。 As the water-absorbing polymer 3 fixed to the surface of the elongated base portion 2, various types conventionally used in the technical field of absorbent articles can be used. For example, poly (sodium acrylate), (acrylic acid-vinyl alcohol) copolymer, cross-linked poly (sodium acrylate), (starch-acrylic acid) graft polymer, (isobutylene-maleic anhydride) copolymer and saponified product thereof, Examples include potassium polyacrylate, cesium polyacrylate, and the like. One of these can be used alone, or two or more can be mixed and used. As the water-absorbing polymer particles 3, there are an amorphous type, a block type, a bowl type, a spherical particle aggregation type, a spherical type, and the like due to the difference in shape, and any type can be used.
 長尺状基体部2の表面に固定される吸水性ポリマー3は、その坪量が、20g/m以上であることが好ましく、50g/m以上であることが更に好ましい。また、400g/m以下であることが好ましく、300g/m以下であることが更に好ましい。例えば吸水性ポリマー3の坪量は、20g/m以上400g/m以下であることが好ましく、50g/m以上300g/m以下であることが更に好ましい。この範囲の坪量で吸水性ポリマーの粒子3を固定させることで、十分な吸水性能が得られる。 Water-absorbing polymer 3 to be fixed to the elongated body portion 2 of the surface, its basis weight is preferably at 20 g / m 2 or more, more preferably 50 g / m 2 or more. Moreover, it is preferable that it is 400 g / m < 2 > or less, and it is still more preferable that it is 300 g / m < 2 > or less. For example, the basis weight of the water-absorbing polymer 3 is preferably 20 g / m 2 or more and 400 g / m 2 or less, and more preferably 50 g / m 2 or more and 300 g / m 2 or less. Sufficient water-absorbing performance can be obtained by fixing the water-absorbing polymer particles 3 with a basis weight within this range.
 長尺状基体部2における非肌対向面側に固定されている吸水性ポリマー3の坪量は以下の方法によって測定する。
<長尺状基体部2における非肌対向面側に固定されている吸水性ポリマー3の坪量の測定方法>
 長尺状基体部2における非肌対向面側に固定されている吸水性ポリマーを、溶剤等を用いて長尺状基体部2から剥離させ、吸水性ポリマーに付着している接着剤を洗浄する。吸水性ポリマーを乾燥させたのち、非肌対向面側に固定されていた吸水性ポリマーの重量を測定し、吸水性ポリマーが固定されていた部分の長尺状基体部2の面積と剥離した吸水性ポリマーの重量から、単位面積当たりに固定されていた吸水性ポリマーの重量を算出し、非肌対向面側の吸水性ポリマーの坪量とする。測定は5枚行い平均値を算出する。
The basis weight of the water-absorbing polymer 3 fixed to the non-skin facing surface side in the long base portion 2 is measured by the following method.
<Measuring method of basis weight of water-absorbing polymer 3 fixed to the non-skin facing surface side in the elongated base portion 2>
The water-absorbing polymer fixed to the non-skin facing surface side of the long base portion 2 is peeled off from the long base portion 2 using a solvent or the like, and the adhesive adhering to the water-absorbing polymer is washed. . After drying the water-absorbing polymer, the weight of the water-absorbing polymer fixed on the non-skin facing surface side is measured, and the area of the long base portion 2 where the water-absorbing polymer is fixed is separated from the absorbed water absorption. The weight of the water-absorbing polymer fixed per unit area is calculated from the weight of the water-soluble polymer, and the basis weight of the water-absorbing polymer on the non-skin facing surface side is calculated. Five measurements are taken and the average value is calculated.
 吸水性ポリマーの粒子3を長尺状基体部2の表面に固定させる方法としては、例えば接着剤を用いる方法や、水素結合等を利用して化学的に固定させる方法がある。また、長尺状基体部2が不織布、織布又は編み物地などの繊維シートである場合には、その構成繊維を起毛させ、起毛した構成繊維の間で吸水性ポリマーの粒子3を固定させる方法を採用することもできる。図1に示す吸収体1においては、接着剤5が用いられている。すなわち、吸収体1の吸水性ポリマーの粒子3は、接着剤5を介して長尺状基体部2の表面に固定されている。このように接着剤5を介して吸水性ポリマーの粒子3が長尺状基体部2の表面に固定されていると、吸収体1の使用前の状態又は膨潤後の状態において、吸水性ポリマーの粒子3が脱落し難くなるので、接着剤5が好ましく用いられる。 Examples of a method for fixing the water-absorbing polymer particles 3 to the surface of the elongated base portion 2 include a method using an adhesive and a method using a hydrogen bond or the like for chemical fixing. Further, when the long base portion 2 is a fiber sheet such as a nonwoven fabric, a woven fabric, or a knitted fabric, a method of raising the constituent fibers and fixing the water-absorbing polymer particles 3 between the raised constituent fibers. Can also be adopted. In the absorbent body 1 shown in FIG. 1, an adhesive 5 is used. That is, the water-absorbing polymer particles 3 of the absorbent body 1 are fixed to the surface of the elongated base portion 2 via the adhesive 5. In this way, when the water-absorbing polymer particles 3 are fixed to the surface of the elongate base portion 2 via the adhesive 5, the water-absorbing polymer particles 3 in the state before use or after swelling of the absorbent body 1. Since the particles 3 are less likely to fall off, the adhesive 5 is preferably used.
 接着剤5としては、例えば、ホットメルト型接着剤が好ましく用いられる。ホットメルト型接着剤としては、スチレン系やオレフィン系のホットメルト型接着剤が挙げられる。スチレン系ホットメルト接着剤としては、スチレン-ブタジエン-スチレン共重合体(SBS)、スチレン-イソプレン-スチレン共重合体(SIS)、SBSの水素添加物であるスチレン-エチレン-ブチレン-スチレン共重合体(SEBS)、及びこれらの2種以上をブレンドしたブレンド系ホットメルト型接着剤を使用することができる。これらの中でも、タック力と凝集力のバランスが取りやすい観点から、特にSISとSBSとのブレンド系ホットメルト型接着剤、又はSISとSEBSのブレンド系ホットメルト型接着剤が好ましく用いられる。ホットメルト型接着剤の塗布量は、0.5g/m以上100g/m以下であることが好ましく、5g/m以上50g/m以下であることが更に好ましい。 As the adhesive 5, for example, a hot-melt adhesive is preferably used. Examples of the hot melt adhesive include styrene and olefin hot melt adhesives. Styrene-based hot melt adhesives include styrene-butadiene-styrene copolymer (SBS), styrene-isoprene-styrene copolymer (SIS), and styrene-ethylene-butylene-styrene copolymer that is a hydrogenated product of SBS. (SEBS) and blended hot-melt adhesives obtained by blending two or more of these can be used. Among these, from the viewpoint of easily balancing the tack force and the cohesive force, a blended hot-melt adhesive of SIS and SBS or a blended hot-melt adhesive of SIS and SEBS is preferably used. The application amount of the hot melt adhesive is preferably 0.5 g / m 2 or more and 100 g / m 2 or less, more preferably 5 g / m 2 or more and 50 g / m 2 or less.
 以上の構成を有する本実施形態の吸収性物品10では、排泄液が、隣り合う吸収性ユニット4間の間隙を通じて透過することが可能なので、排泄液が高粘度のものであっても吸収体1を透過しやすい。その上、吸水性ポリマーの粒子が液を吸収する前後のいずれの状態においても、吸水性ポリマーの粒子3が、長尺状基体部2の縦方向Yに沿う側縁部2s,2sを越えて横方向Xにはみ出していないので、このことによっても厚み方向Zに沿う液の透過が妨げられにくい。特に、吸水性ポリマーの粒子3が液を吸収した後に、該吸水性ポリマーの粒子3が、長尺状基体部2の側縁部2s,2sを越えて膨潤した場合にはゲルブロッキングが起こりやすいところ、本実施形態の吸収性物品10では、そのようなゲルブロッキングの発生が効果的に抑制される。吸収体1を透過した排泄液は、長尺状基体部2の非肌対向面側に配置されている吸水性ポリマーの粒子3によって吸収保持される。吸水性ポリマーの粒子3によって吸収保持された排泄液は、長尺状基体部2に阻止されて肌対向面側に逆戻りしづらい。特に、長尺状基体部2が疎水性のものである場合、逆戻りの防止の効果が一層高くなる。このように本発明の吸収性物品によれば、排泄液が高粘度のものであっても、吸収速度が向上し、また液戻りが起こりにくくなる。 In the absorbent article 10 of the present embodiment having the above-described configuration, the excretory liquid can permeate through the gap between the adjacent absorbent units 4, and therefore the absorbent 1 even if the excretory liquid has a high viscosity. Easy to penetrate. In addition, in any state before and after the water-absorbing polymer particles absorb the liquid, the water-absorbing polymer particles 3 extend beyond the side edges 2s and 2s along the longitudinal direction Y of the elongated base portion 2. Since it does not protrude in the lateral direction X, this also prevents the liquid from penetrating along the thickness direction Z. In particular, if the water-absorbing polymer particles 3 swell beyond the side edges 2s and 2s of the elongated base portion 2 after the water-absorbing polymer particles 3 have absorbed the liquid, gel blocking tends to occur. However, in the absorbent article 10 of this embodiment, the occurrence of such gel blocking is effectively suppressed. The excretory fluid that has permeated through the absorbent body 1 is absorbed and held by the water-absorbing polymer particles 3 disposed on the non-skin facing surface side of the elongated base body 2. The excretory fluid absorbed and retained by the water-absorbing polymer particles 3 is blocked by the elongated base portion 2 and is difficult to return to the skin facing surface side. In particular, when the elongate base portion 2 is hydrophobic, the effect of preventing reversion is further enhanced. As described above, according to the absorbent article of the present invention, even if the excretory fluid has a high viscosity, the absorption rate is improved and the return of the fluid is less likely to occur.
 吸水性ポリマーの粒子3が液を吸収した後においては、図4に示すとおり、隣り合う吸収性ユニット4を構成する長尺状基体部2,2どうしの位置が、厚み方向Zにおいて異なるように吸収性ユニット4が移動しやすい。ここで、「厚み方向Zにおいて異なる」とは、例えば上下にずれる場合や斜めにずれる場合、あるいはその両方が起こる場合等がある。この移動は、吸水性ポリマーの粒子3の膨潤による体積増加に起因している。この移動には、厚み方向Zに沿う長尺状基体部2の平行移動、及び厚み方向Zに対しての長尺状基体部2の傾斜の双方が含まれる。この移動に起因して、吸水性ポリマーの粒子3が液を吸収した後においても、隣り合う吸収性ユニット4間に間隙Sが維持されやすい。このことによってもゲルブロッキングの発生が効果的に抑制され、また厚み方向Zに沿う液の透過が妨げられにくくなる。 After the water-absorbing polymer particles 3 have absorbed the liquid, as shown in FIG. 4, the positions of the elongated base portions 2 and 2 constituting the adjacent absorbent unit 4 are different in the thickness direction Z. The absorbent unit 4 is easy to move. Here, “differing in the thickness direction Z” includes, for example, a case where they deviate vertically, a case where they deviate obliquely, or a case where both occur. This movement is caused by an increase in volume due to swelling of the water-absorbing polymer particles 3. This movement includes both the parallel movement of the long base portion 2 along the thickness direction Z and the inclination of the long base portion 2 with respect to the thickness direction Z. Due to this movement, the gap S is easily maintained between the adjacent absorbent units 4 even after the water-absorbing polymer particles 3 have absorbed the liquid. This also effectively suppresses the occurrence of gel blocking and makes it difficult for the liquid to pass along the thickness direction Z.
 液の吸収によって、吸収性ユニット4,4を厚み方向Zに沿って自由に動かしやすくし、吸水性ポリマーの粒子3の膨潤阻害を一層起こし難くする観点から、液を吸収する前の状態の吸水性ポリマーの粒子3の平均粒子径d1は、20μm以上であることが好ましく、200μm以上であることが更に好ましく、そして、700μm以下であることが好ましく、500μm以下であることが更に好ましい。具体的には、20μm以上700μm以下であることが好ましく、200μm以上500μm以下であることが更に好ましい。一方、液を吸収した膨潤した状態の吸水性ポリマーの粒子3の平均粒子径d2は、200μm以上であることが好ましく、800μm以上であることが更に好ましく、そして、3000μm以下であることが好ましく、2000μm以下であることが更に好ましい。具体的には、200μm以上3000μm以下であることが好ましく、800μm以上2000μm以下であることが更に好ましい。吸水性ポリマーの粒子3の平均粒子径は、以下の測定方法により求められる。 Absorption of liquid before absorption of liquid from the viewpoint of making it easy to move the absorbent units 4 and 4 freely along the thickness direction Z by the absorption of the liquid and making it more difficult to inhibit swelling of the water-absorbing polymer particles 3. The average particle diameter d1 of the conductive polymer particles 3 is preferably 20 μm or more, more preferably 200 μm or more, and preferably 700 μm or less, and more preferably 500 μm or less. Specifically, it is preferably 20 μm or more and 700 μm or less, and more preferably 200 μm or more and 500 μm or less. On the other hand, the average particle diameter d2 of the swollen water-absorbing polymer particles 3 that has absorbed the liquid is preferably 200 μm or more, more preferably 800 μm or more, and preferably 3000 μm or less. More preferably, it is 2000 μm or less. Specifically, it is preferably 200 μm or more and 3000 μm or less, and more preferably 800 μm or more and 2000 μm or less. The average particle diameter of the water-absorbing polymer particles 3 is determined by the following measuring method.
 <液を吸収する前の状態の吸水性ポリマーの粒子の平均粒子径d1の測定方法>
 使用前の状態における平均粒子径d1は、使用前の吸水性ポリマーの粒子を用い、吸水性ポリマーの粒子の直径若しくは長軸を光学顕微鏡観察で測定した。ここで言う直径とは、吸水性ポリマーの粒子が球状の場合の直径を指す。また、長軸とは、吸水性ポリマーの粒子がひし形、長方形、房状、フットボール型などの異型状の場合の最も長い軸を指す。計50個の吸水性ポリマーの粒子の直径又は長軸を測定し、その数平均粒子径を使用前の状態の吸水性ポリマーの粒子の平均粒子径とする。
<Method for Measuring Average Particle Diameter d1 of Water-Absorbing Polymer Particles Before Absorbing Liquid>
The average particle diameter d1 in the state before use was determined by observing the diameter or major axis of the water-absorbing polymer particles with an optical microscope using the water-absorbing polymer particles before use. The diameter here refers to the diameter when the water-absorbing polymer particles are spherical. The long axis refers to the longest axis when the water-absorbing polymer particles have an irregular shape such as a rhombus, rectangle, tuft, and football. The diameter or major axis of a total of 50 water-absorbing polymer particles is measured, and the number average particle diameter is defined as the average particle diameter of the water-absorbing polymer particles in a state before use.
 <液を吸収した後の状態の吸水性ポリマーの粒子の平均粒子径d2の測定方法>
 膨潤後の状態における平均粒子径d2は、吸水性ポリマーの粒子が固定された長尺状基体部2を25℃に調温した生理食塩水(0.9質量%塩化ナトリウム水溶液)中に浸漬させ、浸漬開始から1時間後に長尺状基体部2を生理食塩水から取り出し、30分間垂直状態に吊るして水切りした後、長尺状基体部2の表面の吸水性ポリマーの粒子の直径若しくは長軸を光学顕微鏡観察で測定した。ここで言う直径とは、吸水性ポリマーの粒子が球状の場合の直径を指す。また、長軸とは、吸水性ポリマーの粒子がひし形、長方形、房状、フットボール型などの異型状の場合の最も長い軸を指す。計50個の吸水性ポリマーの粒子の直径若しくは長軸を測定し、その数平均粒子径を膨潤後の状態の吸水性ポリマーの粒子の平均粒子径とする。
<Measuring method of average particle diameter d2 of water-absorbing polymer particles after absorbing liquid>
The average particle diameter d2 in the swollen state is obtained by immersing the long base portion 2 on which the water-absorbing polymer particles are fixed in a physiological saline (0.9 mass% sodium chloride aqueous solution) adjusted to 25 ° C. After 1 hour from the start of immersion, the long base portion 2 is taken out from the physiological saline, suspended in a vertical state for 30 minutes, drained, and then the diameter or long axis of the water-absorbing polymer particles on the surface of the long base portion 2 Was measured by optical microscope observation. The diameter here refers to the diameter when the water-absorbing polymer particles are spherical. The long axis refers to the longest axis when the water-absorbing polymer particles have an irregular shape such as a rhombus, rectangle, tuft, and football. The diameter or major axis of a total of 50 water-absorbing polymer particles is measured, and the number average particle diameter is defined as the average particle diameter of the water-absorbing polymer particles in the swollen state.
 また、液の吸収によって吸収性ユニット4,4を厚み方向Zに沿って自由に動かしやすくする観点から、長尺状基体部2の幅W2と、液を吸収する前の状態の吸水性ポリマーの粒子の平均粒子径d1との関係は、d1/W2の値が0.002以上であることが好ましく、0.100以上であることが更に好ましい。また0.900以下であることが好ましく、0.800以下であることが更に好ましい。例えばd1/W2の値は、0.002以上0.900以下であることが好ましく、0.100以上0.800以下であることが更に好ましい。一方、長尺状基体部2の幅W2と、液を吸収した後の状態の吸水性ポリマーの粒子の平均粒子径d2との関係は、d2/W2の値が0.02以上であることが好ましく、0.45以上であることが更に好ましい。また0.90以下であることが好ましく、0.80以下であることが更に好ましい。例えばd2/W2の値は、0.02以上0.90以下であることが好ましく、0.45以上0.80以下であることが更に好ましい。 Further, from the viewpoint of easily moving the absorbent units 4 and 4 along the thickness direction Z by absorbing the liquid, the width W2 of the elongated base portion 2 and the water-absorbing polymer in the state before absorbing the liquid Regarding the relationship with the average particle diameter d1, the value of d1 / W2 is preferably 0.002 or more, and more preferably 0.100 or more. Moreover, it is preferable that it is 0.900 or less, and it is still more preferable that it is 0.800 or less. For example, the value of d1 / W2 is preferably 0.002 or more and 0.900 or less, and more preferably 0.100 or more and 0.800 or less. On the other hand, the relationship between the width W2 of the elongated base portion 2 and the average particle diameter d2 of the water-absorbing polymer particles after absorbing the liquid is such that the value of d2 / W2 is 0.02 or more. Preferably, it is 0.45 or more. Moreover, it is preferable that it is 0.90 or less, and it is still more preferable that it is 0.80 or less. For example, the value of d2 / W2 is preferably 0.02 or more and 0.90 or less, and more preferably 0.45 or more and 0.80 or less.
 次に、本実施形態の吸収性物品10の製造方法の好ましい一実施形態を、図5を参照して説明する。図5には、本実施形態の吸収性物品10の製造方法に好ましく用いられる製造装置100が示されている。本実施形態の製造装置100は、製造工程の上流側から下流側に向けて、接着剤塗布部120、吸水性ポリマー散布部130及び基材シートカット部110を、この順で備えている。なお、図5に示す製造装置100においては、接着剤塗布部120及び吸水性ポリマー散布部130が一体化した装置を用いているが、接着剤塗布部120及び吸水性ポリマー散布部130が一体化していなくてもよい。前記一体化した装置は、該装置における上流側に接着剤塗布部120が配され、該一体化した装置における下流側に吸水性ポリマー散布部130が配された構成となっている。 Next, a preferred embodiment of the method for manufacturing the absorbent article 10 of the present embodiment will be described with reference to FIG. FIG. 5 shows a manufacturing apparatus 100 that is preferably used in the method for manufacturing the absorbent article 10 of the present embodiment. The manufacturing apparatus 100 of the present embodiment includes an adhesive application unit 120, a water absorbent polymer spraying unit 130, and a base sheet cut unit 110 in this order from the upstream side to the downstream side of the manufacturing process. In the manufacturing apparatus 100 shown in FIG. 5, an apparatus in which the adhesive application unit 120 and the water absorbent polymer spraying unit 130 are integrated is used, but the adhesive application unit 120 and the water absorbent polymer spraying unit 130 are integrated. It does not have to be. The integrated device has a configuration in which an adhesive application unit 120 is disposed on the upstream side of the device, and a water-absorbing polymer spraying unit 130 is disposed on the downstream side of the integrated device.
 接着剤塗布部120は、複数の長尺状基体部2を、搬送方向に沿って搬送させた状態下、各長尺状基体部2における一方の面の表面の横方向Xに距離を隔てた複数箇所に接着剤を塗布する部分である。本実施形態の製造装置100においては、図5に示すとおり、塗布ヘッド121が備えられている。塗布ヘッド121としては、一方向に搬送される基材シート20の一方の面の表面に、横方向Xに距離を隔てた複数箇所から接着剤5を塗布することが可能な構造を有する塗布ヘッド121を用いることができる。塗布ヘッド121は、X1方向においては、吸収体1の吸収領域ATの幅、すなわち横方向Xの長さに対応する長さを有するように形成されている。このように構成された塗布ヘッド121が、長尺状基体部2の一方の面の上に配置されている。 The adhesive application unit 120 is spaced apart in the lateral direction X on the surface of one surface of each long base portion 2 in a state where the plurality of long base portions 2 are transported along the transport direction. This is a portion where an adhesive is applied to a plurality of locations. In the manufacturing apparatus 100 of this embodiment, the coating head 121 is provided as shown in FIG. As the coating head 121, a coating head having a structure capable of coating the adhesive 5 on a surface of one surface of the base sheet 20 conveyed in one direction from a plurality of locations separated in the lateral direction X. 121 can be used. The coating head 121 is formed in the X1 direction so as to have a length corresponding to the width of the absorption region AT of the absorber 1, that is, the length in the lateral direction X. The coating head 121 configured as described above is disposed on one surface of the long base portion 2.
 接着剤塗布部120の下流側に位置する吸水性ポリマー散布部130は、接着剤が塗布された長尺状基体部2を、搬送方向に沿って搬送させた状態下、各長尺状基体部2における該接着剤が塗布された一方の面の表面の横方向Xの全域にわたり吸水性ポリマーの粒子3を散布する部分である。本実施形態の製造装置100においては、図5に示すとおり、吸水性ポリマー導入部131が備えられている。吸水性ポリマー導入部131には、各種公知の導入装置を特に制限なく用いることができる。吸水性ポリマー導入部131は、X1方向においては、吸収体1の吸収領域ATの幅、すなわち横方向Xの長さに対応する長さを有するように形成されている。また、吸水性ポリマー導入部131は、長尺状基体部2の横方向Xの全域にわたり吸水性ポリマーの粒子3を散布できるようにするため、方向X1に沿って吸水性ポリマーの粒子3を散布することが可能な構造を有している。このように構成された吸水性ポリマー導入部131が、長尺状基体部2の一方の面の上に配置されている。 The water-absorbing polymer spraying unit 130 located on the downstream side of the adhesive application unit 120 is configured so that each long base unit 2 is transported along the transport direction of the long base unit 2 coated with the adhesive. 2 is a part in which the water-absorbing polymer particles 3 are dispersed over the entire region in the lateral direction X of the surface of the one surface to which the adhesive is applied. In the manufacturing apparatus 100 of this embodiment, as shown in FIG. 5, a water-absorbing polymer introduction part 131 is provided. For the water-absorbing polymer introduction part 131, various known introduction devices can be used without particular limitation. The water-absorbing polymer introduction part 131 is formed to have a length corresponding to the width of the absorption region AT of the absorbent body 1, that is, the length in the lateral direction X, in the X1 direction. Further, the water-absorbing polymer introduction part 131 spreads the water-absorbing polymer particles 3 along the direction X1 so that the water-absorbing polymer particles 3 can be spread over the entire region in the lateral direction X of the elongated base 2. It has a structure that can be done. The water-absorbing polymer introduction part 131 configured in this way is arranged on one surface of the long base part 2.
 吸水性ポリマー散布部130の下流側に位置する基材シートカット部110は、長尺状基体部2の原料である、親水性を有する帯状の基材シート20に、その搬送方向に沿う複数条の切り込みを入れて、細幅の複数条の長尺状基体部2を得る部分である。基材シート20に複数条の切り込みを入れるためには、各種公知のカット装置を特に制限なく用いることができる。本実施形態の製造装置100においては、図5に示すように、周面に複数のカッター刃111a,111a,111a・・・が配されたロータリーダイ111bと、ロータリーダイ111bに対向配置された、周面が平坦な受けロール112とを備えたカット装置113を用いている。カット装置113の各カッター刃111aは、ロータリーダイ111bの回転方向に沿って配されており、複数のカッター刃111a,111a,111a・・・は、それぞれ、帯状の基材シート20の搬送方向Y1に直交する方向X1に並んで配置されている。直交する方向X1に隣り合うカッター刃111a,111aどうしの間隔は、形成される各長尺状基体部2の幅(横方向(X方向)の長さ)に対応している。ここで、基材シート20の搬送方向Y1は、製造される吸収体1の縦方向(Y方向)に対応しており、直交する方向X1は、製造される吸収体1の横方向(X方向)に対応している。なお、基材シート20のカットには、上刃と下刃の側面を擦り合わせて切断するシェアカット方式のカット装置を用いてもよく、複数のスコアカットナイフを直交する方向X1に並置した装置でもよく、レーザー光を照射して溶断するレーザー装置を用いてもよい。 The base material sheet cut part 110 located downstream of the water-absorbing polymer dispersion part 130 is a plurality of strips along the conveying direction of the base material sheet 20 having hydrophilicity, which is a raw material of the long base part 2. This is a portion where a plurality of narrow elongated base portions 2 are obtained. In order to make a plurality of cuts in the base sheet 20, various known cutting devices can be used without particular limitation. In the manufacturing apparatus 100 of the present embodiment, as shown in FIG. 5, the rotary die 111b having a plurality of cutter blades 111a, 111a, 111a,. A cutting device 113 including a receiving roll 112 having a flat peripheral surface is used. Each cutter blade 111a of the cutting device 113 is arranged along the rotation direction of the rotary die 111b, and the plurality of cutter blades 111a, 111a, 111a,... Are arranged side by side in a direction X1 orthogonal to the. The interval between the cutter blades 111a and 111a adjacent to each other in the orthogonal direction X1 corresponds to the width (length in the horizontal direction (X direction)) of each long base portion 2 to be formed. Here, the conveyance direction Y1 of the base sheet 20 corresponds to the longitudinal direction (Y direction) of the manufactured absorbent body 1, and the orthogonal direction X1 is the lateral direction (X direction) of the manufactured absorbent body 1. ). The base sheet 20 may be cut by using a shear-cut type cutting device that rubs and cuts the side surfaces of the upper blade and the lower blade, and a device in which a plurality of score cut knives are juxtaposed in the orthogonal direction X1. Alternatively, a laser device that melts by irradiating a laser beam may be used.
 図2に示す吸収体1のように、吸収体1が、縦方向Yの両端部に非スリット領域NTを備えている場合には、例えば図6に示すように、各カッター刃111aの周面に、凹部114を形成するようにすればよい。回転するカッター刃111aの外周における凹部114部分の円弧の長さは、図2に示す吸収体1の両端部に配置される非スリット領域NTの縦方向(Y方向)の長さの合計と等しい長さに対応するようにする。このような凹部114を備える複数のカッター刃111a,111a,111a・・・を用意し、X1方向に隣り合うカッター刃111aの凹部114,114どうしの位置を合わせて配置したロータリーダイ111bを用いればよい。なお、回転するカッター刃111aの外周における凹部114を除く部分の円弧の長さが、図2に示す吸収体1の有する長尺状基体部2の縦方向Yの長さに対応している。また、吸収体1が、縦方向Yに沿う両側部に非スリット領域NTを備えている場合には、該非スリット領域NTに対応する位置にカッター刃111aを配しないようにすればよい。 When the absorber 1 includes the non-slit regions NT at both ends in the longitudinal direction Y like the absorber 1 shown in FIG. 2, for example, as shown in FIG. 6, the peripheral surface of each cutter blade 111 a In addition, the recess 114 may be formed. The length of the arc of the concave portion 114 at the outer periphery of the rotating cutter blade 111a is equal to the sum of the lengths in the vertical direction (Y direction) of the non-slit regions NT arranged at both ends of the absorber 1 shown in FIG. Try to accommodate the length. If a plurality of cutter blades 111a, 111a, 111a... Having such a recess 114 are prepared and a rotary die 111b is used in which the positions of the recesses 114, 114 of the cutter blades 111a adjacent to each other in the X1 direction are aligned. Good. In addition, the length of the circular arc of the part except the recessed part 114 in the outer periphery of the rotating cutter blade 111a respond | corresponds to the length of the vertical direction Y of the elongate base | substrate part 2 which the absorber 1 shown in FIG. Moreover, when the absorber 1 is provided with the non-slit area | region NT in the both sides along the vertical direction Y, what is necessary is just not to distribute the cutter blade 111a in the position corresponding to this non-slit area | region NT.
 図5に示す製造装置100においては、接着剤塗布部120及び吸水性ポリマー散布部130が一体化した装置に対向する位置であって、搬送される複数本の長尺状基体部2の下面側(他方の面側)に、バキュームコンベア141が配されている。バキュームコンベア141は、駆動ロール142及び複数の従動ロール143に架け渡された無端状の通気性ベルト144と、通気性ベルト144を挟んで前記一体化した装置に対向する位置に配されたバキュームボックス145とを備えている。バキュームコンベア141上には、複数条の長尺状基体部2が導入されるようになっている。 In the manufacturing apparatus 100 shown in FIG. 5, the adhesive coating section 120 and the water-absorbing polymer spraying section 130 are opposed to the integrated apparatus, and are on the lower surface side of the plurality of long base parts 2 to be conveyed. A vacuum conveyor 141 is arranged on the other surface side. The vacuum conveyor 141 includes an endless breathable belt 144 laid across a drive roll 142 and a plurality of driven rolls 143, and a vacuum box disposed at a position facing the integrated device with the breathable belt 144 interposed therebetween. 145. On the vacuum conveyor 141, a plurality of elongated base portions 2 are introduced.
 図5に示す製造装置100においては、帯状の基材シート20の原反ロールから基材シート20を繰り出す駆動ロール151と、最も下流側に、製造された吸収体1の前駆体1bを搬送する駆動ロール152とを備えている。 In the manufacturing apparatus 100 shown in FIG. 5, the drive roll 151 that feeds the base sheet 20 from the raw roll of the belt-shaped base sheet 20 and the precursor 1 b of the manufactured absorbent body 1 are conveyed to the most downstream side. And a drive roll 152.
 前述した製造装置100を用いて、吸収体1を含む吸収性物品を製造する方法について以下に説明する。この製造方法は、以下の工程を含むものである。
 (イ)一方向に搬送される基材シートの一方の面の表面に、その横方向に距離を隔てた複数箇所に接着剤を塗布する工程。
 (ロ)前記接着剤が塗布された基材シートを、搬送方向に沿って搬送させた状態下、該基材シートにおける該接着剤が塗布された一方の面の表面に、その横方向の全域にわたり吸水性ポリマーの粒子を散布する工程。
 (ハ)前記吸水性ポリマーの粒子が散布された前記基材シートに、前記搬送方向に沿って搬送させた状態下、該接着剤が塗布された箇所間の非塗布箇所において、該搬送方向に沿って切り込みを入れて、細幅の複数条の長尺状基体部を得て、吸収体を製造する工程。
 以下、それぞれの工程について説明する。
A method for manufacturing an absorbent article including the absorbent body 1 using the manufacturing apparatus 100 described above will be described below. This manufacturing method includes the following steps.
(A) The process of apply | coating an adhesive agent to the surface of the one surface of the base material sheet conveyed by one direction in the several places spaced apart in the horizontal direction.
(B) In the state where the base material sheet coated with the adhesive is transported along the transport direction, the entire surface in the lateral direction is applied to the surface of one surface of the base material sheet coated with the adhesive. Spraying water-absorbing polymer particles over the entire surface.
(C) In the non-application area between the areas where the adhesive is applied, in the conveyance direction, in the state of being conveyed along the conveyance direction to the base sheet on which the particles of the water-absorbing polymer are dispersed. A process of manufacturing the absorbent body by cutting along the line to obtain a plurality of narrow long base portions.
Hereinafter, each process will be described.
 先ず、(イ)の工程の実施に先立ち、バキュームボックス145内を、それに接続された排気装置を作動させて負圧にする。次いで、駆動ロール151及び駆動ロール152を駆動させ、カット装置113及び通気性ベルト144を回転させ、バキュームコンベア141を作動させる。そして、駆動ロール151により帯状の基材シート20の原反ロールから基材シート20を繰り出す。
 (イ)の工程においては、原反ロールから繰り出された基材シート20の一方の面の表面に横方向に距離を隔てた複数箇所に接着剤5を塗布する。基材シート20は、バキュームコンベア141で搬送されながら、バキュームボックス145上に位置する間に、接着剤塗布部120の塗布ヘッド121によって、該基材シート20の一方の面の表面に、非カット部NTbを除いて、搬送方向Y1に沿って間欠的に接着剤5が塗布される。
 このとき、横方向Xに距離を隔てた複数箇所に接着剤5を塗布することが重要である。このような塗布形態を採用することで、吸収体1は、液を吸収する前後のいずれの状態においても、吸水性ポリマーの粒子3が、長尺状基体部2の側縁部2sを越えて横方向Xにはみ出さないようになる。散布された吸水性ポリマーの粒子3は、長尺状基体部2の一方の面の表面に塗布された接着剤5を介して長尺状基体部2の一方の面の表面に確実に固定される。
 (イ)の工程を行うには、一方向に搬送される基材シート20の一方の面の表面に、横方向Xに距離を隔てた複数箇所から接着剤5を塗布することが可能な構造を有する塗布ヘッド121を用いればよい。
First, prior to the execution of the step (a), the inside of the vacuum box 145 is made negative by operating the exhaust device connected thereto. Next, the drive roll 151 and the drive roll 152 are driven, the cutting device 113 and the breathable belt 144 are rotated, and the vacuum conveyor 141 is operated. And the base material sheet 20 is let out from the original fabric roll of the strip | belt-shaped base material sheet 20 with the drive roll 151. FIG.
In the step (a), the adhesive 5 is applied to a plurality of locations at a distance in the lateral direction on the surface of one surface of the base sheet 20 fed from the raw roll. While the base sheet 20 is being transported by the vacuum conveyor 141 and is positioned on the vacuum box 145, the base sheet 20 is not cut on the surface of one surface of the base sheet 20 by the application head 121 of the adhesive application unit 120. Except for the part NTb, the adhesive 5 is intermittently applied along the transport direction Y1.
At this time, it is important to apply the adhesive 5 to a plurality of locations spaced in the lateral direction X. By adopting such a coating form, the absorbent body 1 allows the water-absorbing polymer particles 3 to extend beyond the side edge portion 2s of the long base portion 2 in any state before and after absorbing the liquid. It does not protrude in the lateral direction X. The dispersed water-absorbing polymer particles 3 are securely fixed to the surface of one surface of the long base portion 2 via the adhesive 5 applied to the surface of one surface of the long base portion 2. The
In order to carry out the step (a), the adhesive 5 can be applied to the surface of one surface of the base sheet 20 conveyed in one direction from a plurality of locations spaced in the lateral direction X. The coating head 121 having the above may be used.
 (イ)の工程に引き続く(ロ)の工程においては、基材シート20の面のうち、接着剤5が塗布された一方の面の表面に、横方向Xの全域にわたり吸水性ポリマーの粒子3が散布される。基材シート20はバキュームコンベア141で搬送され、バキュームボックス145上に位置する間に、接着剤5が塗布された一方の面の表面に、搬送方向Y1に沿って吸水性ポリマーの粒子3が散布される。ただし、非カット部NTbには吸水性ポリマーの粒子3は散布されない。
 このように吸水性ポリマーの粒子3を散布することにより、接着剤5を介して吸水性ポリマーの粒子3が長尺状基体部2の一方の面(上面)の表面に固定された吸収性ユニット4を複数本形成する。このように形成された複数本の吸収性ユニット4は、それぞれの縦方向(Y方向)が、搬送方向Y1を向くように配列しており、吸収体1の前駆体1bを形成するようになる。
In the step (b) subsequent to the step (b), the water-absorbing polymer particles 3 are formed on the entire surface in the lateral direction X on the surface of one surface of the base sheet 20 to which the adhesive 5 is applied. Is sprayed. While the base material sheet 20 is conveyed by the vacuum conveyor 141 and is located on the vacuum box 145, the water-absorbing polymer particles 3 are scattered along the conveying direction Y1 on the surface of one surface to which the adhesive 5 is applied. Is done. However, the water-absorbing polymer particles 3 are not sprayed on the non-cut portion NTb.
In this way, by absorbing the water-absorbing polymer particles 3, the water-absorbing polymer particles 3 are fixed to the surface of one surface (upper surface) of the long base portion 2 via the adhesive 5. A plurality of 4 are formed. The plurality of absorptive units 4 formed in this way are arranged so that their respective longitudinal directions (Y directions) face the transport direction Y1, and form the precursor 1b of the absorber 1. .
 次いで、(ハ)の工程において、吸水性ポリマーの粒子3が散布された基材シート20を、基材シートカット部110のカット装置113におけるロータリーダイ111bの複数のカッター刃111aと受けロール112との間に供給し、搬送方向Y1に沿って切り込みを入れて、細幅の複数の長尺状基体部2及び該長尺状基体部2の表面に固定された吸水性ポリマーの粒子3を有する複数の吸収性ユニット4を得る。切り込みを入れる箇所は、基材シート20を搬送方向Y1に沿って搬送させた状態下、接着剤が塗布された箇所間の非塗布箇所とする。これによって得られた各吸収性ユニット4においては、その横方向Xの中心域の位置に、縦方向Yに沿って吸水性ポリマーの粒子3が固定された状態となっている。このようにして、吸水性ポリマーの粒子3が長尺状基体部2の一方の面の表面にのみ固定された吸収性ユニット4が複数形成される。このようにして形成された複数の吸収性ユニット4は、それぞれの縦方向Yが、搬送方向Y1を向くように配列しており、吸収体1の前駆体1bを形成する。 Next, in the step (c), the base sheet 20 on which the water-absorbing polymer particles 3 are dispersed, the plurality of cutter blades 111a of the rotary die 111b and the receiving roll 112 in the cutting device 113 of the base sheet cutting unit 110, And a plurality of narrow base portions 2 having a narrow width and water-absorbing polymer particles 3 fixed to the surface of the long base portions 2. A plurality of absorbent units 4 are obtained. The location where the cut is made is a non-application location between locations where the adhesive is applied in a state where the base sheet 20 is conveyed along the conveyance direction Y1. In each of the absorbent units 4 thus obtained, the water-absorbing polymer particles 3 are fixed along the longitudinal direction Y at the position of the central region in the lateral direction X. In this way, a plurality of absorbent units 4 in which the water-absorbing polymer particles 3 are fixed only to the surface of one surface of the elongated base portion 2 are formed. The plurality of absorptive units 4 formed in this way are arranged so that each longitudinal direction Y faces the transport direction Y1, and forms a precursor 1b of the absorber 1.
 本実施態様においては、図5に示すように、ロータリーダイ111bの回転方向に配された複数のカッター刃111aが、それぞれ、帯状の基材シート20の搬送方向Y1に直交する方向X1に並んで配置されているので、帯状の基材シート20を、基材シート20の搬送方向Y1に沿ってカットし、且つ直交する方向X1に複数箇所カットして複数の吸収性ユニット4を形成する。また、カッター刃111aでカットされた部分が吸収性ユニット4の側縁部2sとなる。 In the present embodiment, as shown in FIG. 5, the plurality of cutter blades 111 a arranged in the rotation direction of the rotary die 111 b are arranged in a direction X <b> 1 orthogonal to the conveyance direction Y <b> 1 of the belt-shaped base sheet 20. Since it is arrange | positioned, the strip | belt-shaped base material sheet 20 is cut along the conveyance direction Y1 of the base material sheet 20, and several places are cut | disconnected in the orthogonal | vertical direction X1, and the some absorptive unit 4 is formed. Further, the portion cut by the cutter blade 111 a becomes the side edge 2 s of the absorbent unit 4.
 また、本実施態様においては、複数のカッター刃111aが、それぞれ、凹部114を有しているので、搬送される帯状の基材シート20に、吸収性ユニット4の縦方向Yの長さ分を空けて、間欠的に、非スリット領域NTの縦方向Yの長さの2倍の長さ分に対応する非カット部NTbが形成される。カット工程にて形成された複数の吸収性ユニット4は、搬送方向Y1に平行に形成されており、直交する方向X1に並置して配されている。 Moreover, in this embodiment, since the some cutter blade 111a has the recessed part 114, respectively, the part for the length of the vertical direction Y of the absorptive unit 4 is given to the strip | belt-shaped base material sheet 20 conveyed. The non-cut portion NTb corresponding to the length twice as long as the length in the longitudinal direction Y of the non-slit region NT is intermittently formed. The plurality of absorptive units 4 formed in the cutting step are formed in parallel with the transport direction Y1, and are arranged in parallel in the orthogonal direction X1.
 次いで、吸収体1の前駆体1bを駆動ロール152によって下流側に搬送し、公知の切断装置(図示せず)を用いて、該前駆体1bを、非カット部NTbの搬送方向Y1の長さの二等分の位置毎に切断する。これによって、縦方向Yの両端部に、横方向Xに沿って延びる非スリット領域NTを有する吸収体1が連続して製造される。このように、本製造装置100及びそれを用いた本製造方法によれば、吸収体1を安定的に効率良く製造することができる。その後は、公知の工程に従い、吸収体1における吸水性ポリマーの粒子3が固定された一方の面側に裏面シートを配置するとともに、吸水性ポリマーの粒子3が固定されていない他方の面側に表面シートを配置し、更に必要に応じその他の部材を配置することで、目的とする吸収性物品が得られる。 Next, the precursor 1b of the absorbent body 1 is transported downstream by the drive roll 152, and the precursor 1b is lengthened in the transport direction Y1 of the non-cut portion NTb using a known cutting device (not shown). Cut into two equal positions. Thereby, the absorber 1 which has the non-slit area | region NT extended along the horizontal direction X in the both ends of the vertical direction Y is manufactured continuously. Thus, according to this manufacturing apparatus 100 and this manufacturing method using the same, the absorber 1 can be manufactured stably and efficiently. Thereafter, according to a known process, a back sheet is disposed on one surface side of the absorbent body 1 on which the water-absorbing polymer particles 3 are fixed, and on the other surface side on which the water-absorbing polymer particles 3 are not fixed. A target absorbent article can be obtained by disposing a top sheet and further disposing other members as necessary.
 前記の(イ)ないし(ハ)の工程を備えた製造方法の変形例として、以下の(イ’)ないし(ハ’)の工程を有する方法を採用することもできる。
 (イ’)一方向に搬送される親水性の基材シートの一方の面の表面に、その横方向の全域にわたり接着剤を塗布する工程。
 (ロ’)前記接着剤が塗布された前記基材シートを、前記搬送方向に沿って搬送させた状態下、該基材シートにおける該接着剤が塗布された一方の面の表面に、その横方向に距離を隔てた複数箇所に吸水性ポリマーの粒子を散布する工程。
 (ハ’)前記吸水性ポリマーの粒子が散布された前記基材シートに、前記搬送方向に沿って搬送させた状態下、該吸水性ポリマーの粒子が散布された箇所間の非散布箇所において、該搬送方向に沿って切り込みを入れて、細幅の複数条の長尺状基体部を得て、吸収体を製造する工程。
As a modification of the manufacturing method including the steps (a) to (c), a method having the following steps (a ′) to (c ′) may be employed.
(I ') The process of apply | coating an adhesive over the whole area of the horizontal direction on the surface of one surface of the hydrophilic base material sheet conveyed in one direction.
(B ′) The substrate sheet coated with the adhesive is transported along the transport direction, and the lateral surface of the substrate sheet is coated with the adhesive on the surface of the one surface coated with the adhesive. A step of spraying water-absorbing polymer particles at a plurality of locations separated in a direction.
(C ') In the non-sprayed portion between the portions where the water-absorbing polymer particles are dispersed, in the state where the water-absorbing polymer particles are dispersed, in the state where the water-absorbing polymer particles are dispersed along the conveying direction, A step of producing an absorbent body by making cuts along the conveying direction to obtain a plurality of narrow elongated base portions.
 (イ’)の工程においては、基材シート20の一方の面の表面に、接着剤5を基材シート20における横方向Xの全域にわたって塗布する。基材シート20は、バキュームコンベア141で搬送されながら、バキュームボックス145上に位置する間に、接着剤塗布部120の塗布ヘッド121によって、該基材シート20の一方の面の表面に、非カット部NTbを除いて、搬送方向Y1に沿って間欠的に接着剤5が塗布される。 In the step (ii), the adhesive 5 is applied to the entire surface of the base sheet 20 in the lateral direction X on the surface of one surface of the base sheet 20. While the base sheet 20 is being transported by the vacuum conveyor 141 and is positioned on the vacuum box 145, the base sheet 20 is not cut on the surface of one surface of the base sheet 20 by the application head 121 of the adhesive application unit 120. Except for the part NTb, the adhesive 5 is intermittently applied along the transport direction Y1.
 (イ’)の工程に引き続く(ロ’)の工程においては、基材シート20の面のうち、接着剤5が塗布された一方の面の表面に、横方向に距離を隔てた複数箇所に吸水性ポリマーの粒子3を散布する。基材シート20はバキュームコンベア141で搬送され、バキュームボックス145上に位置する間に、接着剤5が塗布された面に、搬送方向Y1に沿って吸水性ポリマーの粒子3が散布される。ただし、非カット部NTbには吸水性ポリマーの粒子3は散布されない。
 このとき、基材シート20における接着剤5が塗布された一方の面の表面に、横方向Xに距離を隔てた複数箇所に吸水性ポリマーの粒子3を散布することが重要である。このような散布形態を採用することで、吸収体1は、液を吸収する前後のいずれの状態においても、吸水性ポリマーの粒子3が、長尺状基体部2の側縁部2sを越えて横方向Xにはみ出さないようになる。散布された吸水性ポリマーの粒子3は、長尺状基体部2の一方の面の表面に塗布された接着剤5を介して長尺状基体部2に確実に固定される。
 この(ロ’)の工程を行うには、一方向に搬送される基材シート20の一方の面の表面に、横方向Xに距離を隔てた複数箇所から吸水性ポリマーの粒子3を塗布することが可能な構造を有する吸水性ポリマー散布部130を用いればよい。
In the step (b ′) following the step (b ′), among the surfaces of the base material sheet 20, the surface of one surface to which the adhesive 5 has been applied is provided at a plurality of locations spaced in the lateral direction. The water-absorbing polymer particles 3 are sprayed. While the base material sheet 20 is conveyed by the vacuum conveyor 141 and is located on the vacuum box 145, the water-absorbing polymer particles 3 are dispersed along the conveying direction Y1 on the surface to which the adhesive 5 is applied. However, the water-absorbing polymer particles 3 are not sprayed on the non-cut portion NTb.
At this time, it is important to disperse the water-absorbing polymer particles 3 in a plurality of locations at a distance in the lateral direction X on the surface of one surface of the base sheet 20 to which the adhesive 5 is applied. By adopting such a spraying form, the absorbent body 1 allows the water-absorbing polymer particles 3 to exceed the side edge 2s of the long base portion 2 in any state before and after absorbing the liquid. It does not protrude in the lateral direction X. The dispersed water-absorbing polymer particles 3 are securely fixed to the long base portion 2 via an adhesive 5 applied to the surface of one surface of the long base portion 2.
In order to perform the step (b '), the water-absorbing polymer particles 3 are applied to the surface of one surface of the base sheet 20 conveyed in one direction from a plurality of locations spaced in the lateral direction X. What is necessary is just to use the water absorptive polymer spreading | diffusion part 130 which has a structure which can do.
 次いで、(ハ’)の工程において、吸水性ポリマーの粒子3が散布された基材シート20に、搬送方向Y1に沿って切り込みを入れて、細幅の複数の長尺状基体部2及び該長尺状基体部2に固定された吸水性ポリマーの粒子3を有する複数の吸収性ユニット4を得る。切り込みを入れる箇所は、基材シート20を搬送方向Y1に沿って搬送させた状態下、吸水性ポリマーの粒子3が散布された箇所間の非散布箇所とする。これによって得られた各吸収性ユニット4においては、その横方向Xの中心域の位置に、縦方向Yに沿って吸水性ポリマーの粒子3が固定された状態となっている。このようにして、吸水性ポリマーの粒子3が長尺状基体部2の一方の面の表面にのみ固定された吸収性ユニット4が複数形成される。このようにして形成された複数の吸収性ユニット4は、それぞれの縦方向Yが、搬送方向Y1を向くように配列しており、吸収体1の前駆体1bを形成する。その後は図5に示す製造装置を用いた方法と同様の手順が行われ、吸収体1及び吸収性物品10が得られる。 Next, in the step (c ′), the base sheet 20 on which the water-absorbing polymer particles 3 are dispersed is cut along the transport direction Y1 to form a plurality of narrow elongated base parts 2 and the A plurality of absorptive units 4 having water-absorbing polymer particles 3 fixed to the elongated base 2 are obtained. The places where the cuts are made are non-sprayed places between the places where the water-absorbing polymer particles 3 are sprinkled in a state where the base sheet 20 is transported along the transport direction Y1. In each of the absorbent units 4 thus obtained, the water-absorbing polymer particles 3 are fixed along the longitudinal direction Y at the position of the central region in the lateral direction X. In this way, a plurality of absorbent units 4 in which the water-absorbing polymer particles 3 are fixed only to the surface of one surface of the elongated base portion 2 are formed. The plurality of absorptive units 4 formed in this way are arranged so that each longitudinal direction Y faces the transport direction Y1, and forms a precursor 1b of the absorber 1. Thereafter, the same procedure as the method using the manufacturing apparatus shown in FIG. 5 is performed, and the absorbent body 1 and the absorbent article 10 are obtained.
 図7には、別の製造装置100を用いた製造方法が示されている。これまで説明してきた製造方法においては、先ず基材シート20の一方の面の表面に接着剤5の塗布及び吸水性ポリマーの粒子3の散布を行った後に、基材シート20に、搬送方向Y1に沿う複数条の切り込みを入れたが、本実施形態の製造方法では、先ず基材シート20に、搬送方向Y1に沿う複数条の切り込みを入れて、細幅の複数の長尺状基体部2を得た後、該長尺状基体部2の一方の面の表面に接着剤5の塗布及び吸水性ポリマーの粒子3の散布を行う。この製造方法について以下に詳述する。なお図7に示す製造装置100及びそれを用いた製造方法に関し、特に説明しない点については、図5に示す製造装置100及びそれを用いた製造方法に関して上述した説明が適宜適用される。 FIG. 7 shows a manufacturing method using another manufacturing apparatus 100. In the manufacturing method described so far, first, after applying the adhesive 5 and spraying the water-absorbing polymer particles 3 on the surface of one surface of the base sheet 20, the transport direction Y1 is applied to the base sheet 20. In the manufacturing method of the present embodiment, first, a plurality of slits along the transport direction Y1 are first cut into the base sheet 20 to form a plurality of narrow long base portions 2. Then, the adhesive 5 is applied and the water-absorbing polymer particles 3 are sprayed on the surface of one surface of the long base portion 2. This manufacturing method will be described in detail below. In addition, regarding the manufacturing apparatus 100 shown in FIG. 7 and a manufacturing method using the same, the description described above regarding the manufacturing apparatus 100 shown in FIG.
 図7に示す製造装置100は、製造工程の上流側から下流側に向けて、基材シートカット部110、接着剤塗布部120及び吸水性ポリマー散布部130を、この順で備えている。各部110,120,130の構造は、図5に示す製造装置と同様である。この製造装置100を用いて、吸収体1を含む吸収性物品を製造する方法について以下に説明する。この製造方法は、以下の工程を含むものである。
 (ニ)一方向に搬送される親水性の基材シートに、その搬送方向に沿う複数条の切り込みを入れて、細幅の複数条の長尺状基体部を得る工程。
 (ホ)複数条の長尺状基体部を、搬送方向に沿って搬送させた状態下、各長尺状基体部における一方の面の表面の横方向の中央域にのみ接着剤を塗布する工程。
 (ヘ)前記接着剤が塗布された前記長尺状基体部を、前記搬送方向に沿って搬送させた状態下、各長尺状基体部における該接着剤が塗布された一方の面の表面の横方向の全域にわたり吸水性ポリマーの粒子3を散布して、吸収体を製造する工程。
 以下、それぞれの工程について説明する。
 (ニ)の工程においては、駆動ロール151により帯状の基材シート20の原反ロールから繰り出された基材シート20を、基材シートカット部110のカット装置113におけるロータリーダイ111bの複数のカッター刃111aと受けロール112との間に供給し、帯状の基材シート20をカットして複数本の長尺状基体部2を形成する。本実施態様においては、図6に示すように、ロータリーダイ111bの回転方向に配された複数のカッター刃111aが、それぞれ、帯状の基材シート20の搬送方向Y1に直交する方向X1に並んで配置されているので、帯状の基材シート20を、基材シート20の搬送方向Y1に沿ってカットし、且つ直交する方向X1に複数箇所カットして複数本の長尺状基体部2を形成する。また、カッター刃111aでカットされた部分が長尺状基体部2の側縁部2sとなる。
The manufacturing apparatus 100 shown in FIG. 7 includes a base sheet cut part 110, an adhesive application part 120, and a water-absorbing polymer spray part 130 in this order from the upstream side to the downstream side of the manufacturing process. The structure of each part 110,120,130 is the same as that of the manufacturing apparatus shown in FIG. A method for manufacturing an absorbent article including the absorbent body 1 using the manufacturing apparatus 100 will be described below. This manufacturing method includes the following steps.
(D) A step of obtaining a plurality of narrow elongated base portions by cutting a plurality of notches along the conveying direction into a hydrophilic substrate sheet conveyed in one direction.
(E) A step of applying an adhesive only to a central region in the lateral direction of the surface of one surface of each long base portion in a state where a plurality of long base portions are transported along the transport direction. .
(F) The surface of one surface of the long base portion to which the adhesive is applied in a state where the long base portion to which the adhesive has been applied is transported along the transport direction. A step of producing absorbent bodies by spraying water-absorbing polymer particles 3 over the entire region in the lateral direction.
Hereinafter, each process will be described.
In the step (d), a plurality of cutters of the rotary die 111b in the cutting device 113 of the base sheet cutting unit 110 are used to feed the base sheet 20 fed from the raw roll of the strip-shaped base sheet 20 by the driving roll 151. It supplies between the blade 111a and the receiving roll 112, cuts the strip | belt-shaped base material sheet 20, and forms the several elongate base | substrate part 2. As shown in FIG. In this embodiment, as shown in FIG. 6, the plurality of cutter blades 111a arranged in the rotation direction of the rotary die 111b are arranged in a direction X1 orthogonal to the conveyance direction Y1 of the belt-shaped base sheet 20. Since it is arranged, the strip-shaped base sheet 20 is cut along the transport direction Y1 of the base sheet 20 and cut at a plurality of locations in the orthogonal direction X1 to form a plurality of long base portions 2. To do. Further, the portion cut by the cutter blade 111 a becomes the side edge portion 2 s of the long base portion 2.
 本製造方法においては、ロータリーダイ111bが凹部114を有しているので、搬送される帯状の基材シート20に、長尺状基体部2の縦方向Yの長さ分を空けて、間欠的に、非スリット領域NTの縦方向Yの長さの2倍の長さ分に対応する非カット部NTbが形成される。(ニ)の工程において形成された複数の長尺状基体部2は、搬送方向Y1に平行に形成されており、直交する方向X1に並置して配されている。 In the present manufacturing method, since the rotary die 111b has the concave portion 114, the length of the long base portion 2 in the longitudinal direction Y is spaced apart from the belt-like base material sheet 20 to be conveyed intermittently. In addition, a non-cut portion NTb corresponding to a length twice as long as the length in the vertical direction Y of the non-slit region NT is formed. The plurality of long base portions 2 formed in the step (d) are formed in parallel with the transport direction Y1, and are arranged in parallel in the orthogonal direction X1.
 次いで(ホ)の工程において、複数の長尺状基体部2の一方の面の表面の横方向の中央域にのみに接着剤5を塗布する。複数の長尺状基体部2は、バキュームコンベア141で搬送されながら、バキュームボックス145上に位置する間に、接着剤塗布部120の塗布ヘッド121によって、直交する方向X1に並置された複数の長尺状基体部2の一方の面の表面の中央域のみに、非カット部NTbを除いて、搬送方向Y1に沿って間欠的に接着剤5が塗布される。(ホ)の工程を行うには、一方向に搬送される基材シート20の一方の面の表面の、横方向Xの略中央部のみに接着剤5を塗布することが可能な構造を有する塗布ヘッド121を用いればよい。 Next, in the step (e), the adhesive 5 is applied only to the central region in the lateral direction of the surface of one surface of the plurality of long base portions 2. While the plurality of long base portions 2 are conveyed on the vacuum conveyor 141 and positioned on the vacuum box 145, the plurality of long base portions 2 are juxtaposed in the orthogonal direction X1 by the application head 121 of the adhesive application unit 120. The adhesive 5 is intermittently applied along the transport direction Y1 only in the central area of the surface of one surface of the scale-shaped base 2 except for the non-cut portion NTb. In order to perform the step (e), the adhesive 5 can be applied only to the substantially central portion in the lateral direction X of the surface of one surface of the base sheet 20 conveyed in one direction. The coating head 121 may be used.
 (ホ)の工程に引き続く(ヘ)の工程においては、複数の長尺状基体部2の面のうち、接着剤5が塗布された一方の面の表面の横方向Xの全域にわたり、吸水性ポリマーの粒子3が散布される。長尺状基体部2はバキュームコンベア141で搬送され、バキュームボックス145上に位置する間に、接着剤5が塗布された一方の面の表面に、搬送方向Y1に沿って、横方向Xの全域にわたり吸水性ポリマーの粒子3が散布される。ただし、非カット部NTbには吸水性ポリマーの粒子3は散布されない。 In the step (f) subsequent to the step (e), the water absorption is performed over the entire region in the lateral direction X of the surface of the one surface to which the adhesive 5 is applied among the plurality of long base portions 2. Polymer particles 3 are dispersed. The long base portion 2 is transported by the vacuum conveyor 141, and is located on the vacuum box 145, and on the surface of one surface to which the adhesive 5 has been applied, the entire region in the lateral direction X along the transport direction Y1. The particles 3 of the water-absorbing polymer are dispersed over. However, the water-absorbing polymer particles 3 are not sprayed on the non-cut portion NTb.
 散布された吸水性ポリマーの粒子3は、長尺状基体部2の一方の面の表面に塗布された接着剤5を介して長尺状基体部2に確実に固定される。このようにして、吸水性ポリマーの粒子3が長尺状基体部2の一方の面の表面にのみ固定された吸収性ユニット4が複数形成される。このようにして形成された複数の吸収性ユニット4は、それぞれの縦方向Yが、搬送方向Y1を向くように配列しており、吸収体1の前駆体1bを形成する。 The dispersed water-absorbing polymer particles 3 are securely fixed to the long base portion 2 via the adhesive 5 applied to the surface of one surface of the long base portion 2. In this way, a plurality of absorbent units 4 in which the water-absorbing polymer particles 3 are fixed only to the surface of one surface of the elongated base portion 2 are formed. The plurality of absorptive units 4 formed in this way are arranged so that each longitudinal direction Y faces the transport direction Y1, and forms a precursor 1b of the absorber 1.
 次いで、吸収体1の前駆体1bを駆動ロール152によって下流側に搬送し、公知の切断装置(図示せず)を用いて、該前駆体1bを、非カット部NTbの搬送方向Y1の長さの二等分の位置毎に切断する。これによって、縦方向Yの両端部に、横方向Xに沿って延びる非スリット領域NTを有する吸収体1が連続して製造される。このように、本製造装置100及びそれを用いた本製造方法によれば、吸収体1を安定的に効率良く製造することができる。その後は、公知の工程に従い、吸収体1における吸水性ポリマーの粒子3が固定された一方の面側に裏面シートを配置するとともに、吸水性ポリマーの粒子3が固定されていない他方の面側に表面シートを配置し、更に必要に応じその他の部材を配置することで、目的とする吸収性物品が得られる。 Next, the precursor 1b of the absorbent body 1 is transported downstream by the drive roll 152, and the precursor 1b is lengthened in the transport direction Y1 of the non-cut portion NTb using a known cutting device (not shown). Cut into two equal positions. Thereby, the absorber 1 which has the non-slit area | region NT extended along the horizontal direction X in the both ends of the vertical direction Y is manufactured continuously. Thus, according to this manufacturing apparatus 100 and this manufacturing method using the same, the absorber 1 can be manufactured stably and efficiently. Thereafter, according to a known process, a back sheet is disposed on one surface side of the absorbent body 1 on which the water-absorbing polymer particles 3 are fixed, and on the other surface side on which the water-absorbing polymer particles 3 are not fixed. A target absorbent article can be obtained by disposing a top sheet and further disposing other members as necessary.
 前記の(ニ)ないし(ヘ)の工程を備えた製造方法の変形例として、(ホ)及び(ヘ)の工程を、以下の(ホ’)及び(ヘ’)の工程で置き換えた方法を採用することもできる。
 (ホ’)複数条の前記長尺状基体部を、前記搬送方向に沿って搬送させた状態下、各長尺状基体部における一方の面の表面の横方向の全域にわたり接着剤を塗布する工程。
 (へ’)前記接着剤が塗布された前記長尺状基体部を、前記搬送方向に沿って搬送させた状態下、各長尺状基体部における該接着剤が塗布された一方の面の表面のうち、横方向の中央域にのみ吸水性ポリマーの粒子3を散布して、吸収体を製造する工程。
 この(ニ)、(ホ’)及び(ヘ’)の工程を備えた製造方法において、(ヘ’)の工程を行うには、一方向に搬送される基材シート20の一方の面の表面に、横方向Xの中央域にのみ吸水性ポリマーの粒子3を塗布することが可能な構造を有する吸水性ポリマー散布部130を用いればよい。
As a modification of the manufacturing method including the steps (d) to (f), a method in which the steps (e) and (f) are replaced with the following steps (e ') and (f'): It can also be adopted.
(E ') Applying the adhesive over the entire region in the lateral direction of the surface of one surface of each elongated substrate portion in a state where a plurality of the elongated substrate portions are conveyed along the conveyance direction. Process.
(F ') The surface of one surface of each elongated substrate portion coated with the adhesive in a state where the elongated substrate portion coated with the adhesive is conveyed along the conveying direction. Among these, the process of manufacturing the absorber by spraying the water-absorbing polymer particles 3 only in the central region in the lateral direction.
In the manufacturing method including the steps (d), (e ') and (f'), in order to perform the step (f '), the surface of one surface of the base sheet 20 conveyed in one direction. In addition, the water-absorbing polymer spraying portion 130 having a structure capable of applying the water-absorbing polymer particles 3 only in the central region in the lateral direction X may be used.
 以上、本発明をその好ましい実施形態に基づき説明したが、本発明の範囲は前記実施形態に制限されない。例えば前記実施形態の吸収性物品10における吸収体1は、均一な幅の長尺状基体部2を有する吸収性ユニット4を複数用いて形成されているが、これに代えて、長尺状基体部2の幅を不均一としてもよい。 As mentioned above, although this invention was demonstrated based on the preferable embodiment, the range of this invention is not restrict | limited to the said embodiment. For example, the absorbent body 1 in the absorbent article 10 of the above embodiment is formed by using a plurality of absorbent units 4 having the long base portion 2 with a uniform width. The width of the portion 2 may be non-uniform.
 また、上述した図2及び図3に示す吸収体1は、複数の吸収性ユニット4それぞれの縦方向Yが吸収体1の縦方向Yを向くように配列して形成されているが、これに代えて、例えば図8に示すように、複数の吸収性ユニット4それぞれの縦方向Yが吸収体1の横方向Xを向くように配列させてもよい。図8に示す吸収体1は、縦方向Yに沿う両側部に非スリット領域NTを備えている。図8に示す吸収体1は、原反ロールの軸方向に平行に配されたカッター刃111aを、周方向に間欠的に配したロータリーダイ111bと、受けロール112とを用い、該ロータリーダイ111bと該受けロール112との間に基材シート20を供給することにより製造できる。 Moreover, although the absorber 1 shown in FIG.2 and FIG.3 mentioned above is arranged so that the vertical direction Y of each of the some absorptive units 4 may face the vertical direction Y of the absorber 1, it is formed in this. Instead, for example, as shown in FIG. 8, the plurality of absorbent units 4 may be arranged so that the longitudinal direction Y of the absorbent units 4 faces the lateral direction X of the absorbent body 1. The absorber 1 shown in FIG. 8 includes non-slit regions NT on both sides along the vertical direction Y. The absorbent body 1 shown in FIG. 8 uses a rotary die 111b in which cutter blades 111a arranged in parallel to the axial direction of the original fabric roll are intermittently arranged in the circumferential direction and a receiving roll 112, and the rotary die 111b. It can manufacture by supplying the base material sheet 20 between this and the receiving roll 112.
 また吸収体1は、吸収性ユニット4の縦方向Yが複数方向を向くように、該吸収性ユニット4を配列させたものであってもよい。複数方向を向くように吸収性ユニット4を配列させた吸収体1としては、例えば、複数の吸収性ユニット4それぞれの縦方向Yが吸収体1の縦方向Yを向くように配列して形成された領域を、該吸収体1の縦方向Yに沿う両側部に有し、且つ複数の吸収性ユニット4それぞれの縦方向Yが吸収体1の横方向Xを向くように配列して形成された領域を、前記両側部で挟まれた中央部に有する形態等が挙げられる。このような複数方向を向くように吸収性ユニット4を配列させた吸収体1は、例えば、図6に示すロータリーダイ111bと受けロール112とを用いて、搬送される基材シート20の搬送方向Y1に沿う両側部に、該搬送方向Y1に沿う複数条の切り込みを入れ、その後、周方向に間欠的に配したロータリーダイ111bと受けロール112とを用いて、搬送される基材シート20の該搬送方向と直交する方向X1の中央部に、該方向X1に沿う複数条の切り込みを入れることにより形成できる。 Further, the absorbent body 1 may be one in which the absorbent units 4 are arranged so that the longitudinal directions Y of the absorbent units 4 are directed in a plurality of directions. The absorbent body 1 in which the absorbent units 4 are arranged so as to face a plurality of directions is formed, for example, by arranging so that the longitudinal direction Y of each of the plurality of absorbent units 4 faces the longitudinal direction Y of the absorbent body 1. Are formed on both sides along the longitudinal direction Y of the absorbent body 1 and arranged so that the longitudinal direction Y of each of the plurality of absorbent units 4 faces the lateral direction X of the absorbent body 1. The form etc. which have an area | region in the center part pinched | interposed by the said both sides are mentioned. The absorbent body 1 in which the absorptive units 4 are arranged so as to face in such a plurality of directions, for example, using the rotary die 111b and the receiving roll 112 shown in FIG. A plurality of cuts along the conveying direction Y1 are made on both sides along Y1, and then the substrate sheet 20 conveyed using the rotary die 111b and the receiving roll 112 that are intermittently arranged in the circumferential direction. It can be formed by making a plurality of notches along the direction X1 at the center of the direction X1 orthogonal to the transport direction.
 また、上述した実施形態の吸収性物品10における吸収体1は、各吸収性ユニット4及び各長尺状基体部2が縦方向Y方向に略平行に直線状に延びているが、これに代えて吸収性ユニット4及び長尺状基体部2は、縦方向Yに沿って波形の曲線を描くように延びていてもよく、あるいは縦方向Yに沿って山形のジグザグ状に延びていてもよい。 Further, in the absorbent body 1 in the absorbent article 10 of the above-described embodiment, each absorbent unit 4 and each long base portion 2 extend in a straight line substantially parallel to the vertical direction Y direction. The absorptive unit 4 and the elongate base portion 2 may extend so as to draw a waveform curve along the vertical direction Y, or may extend in a mountain-like zigzag shape along the vertical direction Y. .
 更に、上述した吸収性物品10の製造方法において、吸水性ポリマーの粒子3を接着剤5で固定することに代えて、長尺状基体部2の一方の面に起毛加工を施し、起毛した繊維間に吸水性ポリマーの粒子3を固定させる場合には、上述した接着剤塗布工程に代えて、起毛加工工程を行えばよい。起毛加工を施す方法としては、例えば特開2012-092476号公報や特開2013-028891号公報に記載の方法等が挙げられる。 Furthermore, in the manufacturing method of the absorbent article 10 described above, instead of fixing the water-absorbing polymer particles 3 with the adhesive 5, the one side of the long base portion 2 is subjected to raising treatment to raise the fibers. In the case where the water-absorbing polymer particles 3 are fixed in the meantime, a raising process step may be performed instead of the adhesive application step described above. Examples of the method for performing the raising process include the methods described in JP2012-092476A and JP2013-028891A.
 上述した実施形態に関し、本発明は更に以下の吸収性物品を開示する。
<1>
 横方向と、該横方向よりも長さの長い縦方向と、厚み方向とを有する長尺状基体部、及び該長尺状基体部の表面に固定された吸水性ポリマーの粒子を備えた吸収性ユニットを複数本具備し、各該吸収性ユニットを、その縦方向が少なくとも一方向を向くように配列させてなる吸収体を備え、
 前記長尺状基体部における非肌対向面の表面にのみ前記吸水性ポリマーの粒子が固定されており、
 前記吸水性ポリマーの粒子が液を吸収する前においては、該吸水性ポリマーの粒子が、前記長尺状基体部の前記縦方向に沿う側縁部を越えて横方向にはみ出しておらず、且つ該吸水性ポリマーの粒子が液を吸収して膨潤した状態においても、該吸水性ポリマーの粒子が、該長尺状基体部の該縦方向に沿う側縁部を越えて膨潤しないようになされている吸収性物品。
This invention discloses the following absorbent articles further regarding embodiment mentioned above.
<1>
Absorption comprising a long base portion having a horizontal direction, a vertical direction longer than the horizontal direction, and a thickness direction, and water-absorbing polymer particles fixed to the surface of the long base portion A plurality of sexual units, and each absorbent unit is provided with an absorbent body in which the longitudinal direction is oriented in at least one direction,
The water-absorbing polymer particles are fixed only on the surface of the non-skin facing surface in the elongated base portion,
Before the water-absorbing polymer particles absorb the liquid, the water-absorbing polymer particles do not protrude laterally beyond the side edges along the longitudinal direction of the elongated substrate portion, and Even when the water-absorbing polymer particles absorb the liquid and swell, the water-absorbing polymer particles do not swell beyond the side edges along the longitudinal direction of the elongated base portion. Absorbent article.
<2>
 前記長尺状基体部が疎水性のシートからなる前記<1>に記載の吸収性物品。
<3>
 前記吸収性ユニットはその縦方向が、前記物品の縦方向を向くように、前記吸収体の縦方向の中央域及び横方向の中央域に少なくとも配列されている前記<1>又は<2>に記載の吸収性物品。
<4>
 前記吸収体は、横方向に沿って隣り合う前記吸収性ユニットどうしの間に間隙が生じている前記<1>ないし<3>のいずれか1に記載の吸収性物品。
<5>
 隣り合う吸収性ユニットどうしの間には間隙Sが生じており、該間隙Sの程度は、0.1mm以上であることが好ましく、0.5mm以上であることが更に好ましく、また、5mm以下であることが好ましく、3mm以下であることが更に好ましい前記<1>ないし<4>のいずれか1に記載の吸収性物品。
<6>
 前記長尺状基体部が、該長尺状基体部と肌対向面側において隣接する部材と接合されており、
 前記長尺状基体部と前記部材との接合位置は、前記吸収体の横方向の中央域又は縦方向の中央域である前記<1>ないし<5>のいずれか1に記載の吸収性物品。
<2>
The absorbent article according to <1>, wherein the long base portion is made of a hydrophobic sheet.
<3>
In the <1> or <2>, the absorbent unit is arranged at least in a longitudinal central region and a lateral central region of the absorbent body so that a longitudinal direction thereof faces a longitudinal direction of the article. The absorbent article as described.
<4>
The absorbent article according to any one of <1> to <3>, wherein a gap is generated between the absorbent units adjacent to each other along the lateral direction.
<5>
A gap S is formed between adjacent absorbent units, and the degree of the gap S is preferably 0.1 mm or more, more preferably 0.5 mm or more, and 5 mm or less. Preferably, the absorbent article according to any one of <1> to <4>, more preferably 3 mm or less.
<6>
The long base portion is joined to a member adjacent to the long base portion on the skin facing surface side,
The absorbent article according to any one of <1> to <5>, wherein a joining position between the elongated base portion and the member is a lateral central region or a longitudinal central region of the absorber. .
<7>
 前記吸収体のうち、前記吸収性ユニットが形成されている部位において、前記長尺状基体部は、該長尺状基体部と非肌対向面側において隣接する他の部材と非接合状態になっている前記<1>ないし<6>のいずれか1に記載の吸収性物品。
<8>
 前記長尺状基体部はその通気度が、前記吸収体よりも肌対向面側に位置するシート部材の通気度よりも低くなっている前記<1>ないし<7>のいずれか1に記載の吸収性物品。
<9>
 吸収性ユニットは、横方向Xの長さLxが、好ましくは0.3mm以上10mm以下程度、より好ましくは0.6mm以上2.0mm以下程度、更に好ましくは0.6mm以上1.8mm以下程度のものである前記<1>ないし<8>のいずれか1に記載の吸収性物品。
<10>
 吸収性ユニットの縦方向Yの長さLyは、横方向Xの長さLxに対して好ましくは2倍以上3500倍以下、更に好ましくは100倍以上700倍以下になっている前記<1>ないし<9>のいずれか1に記載の吸収性物品。
<11>
 吸収性ユニットの縦方向Yの長さLyは、好ましくは20mm以上1000mm以下、更に好ましくは200mm以上400mm以下になっている前記<1>ないし<10>のいずれか1に記載の吸収性物品。
<7>
Of the absorbent body, in the portion where the absorbent unit is formed, the long base portion is in a non-bonded state with another member adjacent to the long base portion on the non-skin facing surface side. The absorbent article according to any one of <1> to <6>.
<8>
<1> to <7>, wherein the long base portion has a lower air permeability than that of a sheet member positioned on the skin-facing surface side with respect to the absorber. Absorbent article.
<9>
The absorptive unit has a length Lx in the lateral direction X of preferably about 0.3 mm to 10 mm, more preferably about 0.6 mm to 2.0 mm, and still more preferably about 0.6 mm to 1.8 mm. The absorbent article according to any one of the above items <1> to <8>.
<10>
The length Ly in the longitudinal direction Y of the absorbent unit is preferably not less than 2 times and not more than 3500 times, more preferably not less than 100 times and not more than 700 times the length Lx in the transverse direction X <1> to The absorbent article according to any one of <9>.
<11>
The absorbent article according to any one of <1> to <10>, wherein the length Ly in the longitudinal direction Y of the absorbent unit is preferably 20 mm to 1000 mm, more preferably 200 mm to 400 mm.
<12>
 吸収体の平面視において、該吸収体の全体の面積に対する吸収領域ATの面積の割合は、20%以上であることが好ましく、50%以上であることが更に好ましく、そして、100%以下であることが好ましく、90%以下であることが更に好ましい前記<1>ないし<11>のいずれか1に記載の吸収性物品。
<13>
 吸収性ユニットは、1枚の吸収体当たり、3本以上配されていることが好ましく、50本以上配されていることが更に好ましく、そして、1000本以下配されていることが好ましく、500本以下配されていることが更に好ましい前記<1>ないし<12>のいずれか1に記載の吸収性物品。
<14>
 吸収性ユニットの縦方向Yが、吸収体の縦方向Yに向くように複数配している前記<1>ないし<13>のいずれか1に記載の吸収性物品。
<15>
 吸収体は、縦方向Yの両端部、又は縦方向Yに沿う両側部に、複数の長尺状基体部が横方向に繋がった非スリット領域NTを備えていてもよい前記<1>ないし<14>のいずれか1に記載の吸収性物品。
<16>
 非スリット領域NTには、吸水性ポリマーの粒子が配されていない前記<1>ないし<15>のいずれか1に記載の吸収性物品。
<12>
In the plan view of the absorber, the ratio of the area of the absorption region AT to the entire area of the absorber is preferably 20% or more, more preferably 50% or more, and 100% or less. The absorbent article according to any one of <1> to <11>, preferably 90% or less.
<13>
It is preferable that three or more absorbent units are arranged per absorber, more preferably 50 or more, and more preferably 1000 or less, and 500 absorbent units. The absorbent article according to any one of <1> to <12>, which is more preferably arranged as follows.
<14>
The absorbent article according to any one of <1> to <13>, wherein a plurality of the absorbent units are arranged such that the longitudinal direction Y of the absorbent unit faces the longitudinal direction Y of the absorbent body.
<15>
The absorbent body may include a non-slit region NT in which a plurality of elongated base portions are connected in the lateral direction on both ends in the longitudinal direction Y or on both sides along the longitudinal direction Y. <1> to <14> The absorbent article according to any one of 14>.
<16>
The absorbent article according to any one of <1> to <15>, wherein the non-slit region NT is not provided with water-absorbing polymer particles.
<17>
 長尺状基体部おける縦方向Yの両端部域において吸水性ポリマーの粒子が配されていない前記<1>ないし<16>のいずれか1に記載の吸収性物品。
<18>
 長尺状基体部における縦方向Yの両端部域及び横方向Xの両側部域において吸水性ポリマーの粒子が配されていない前記<1>ないし<17>のいずれか1に記載の吸収性物品。
<19>
 吸収体の幅W1に対する長尺状基体部の幅W2の割合は、0.001以上であることが好ましく、0.002以上であることが更に好ましく、そして、0.200以下であることが好ましく、0.040以下であることが更に好ましい前記<1>ないし<18>のいずれか1に記載の吸収性物品。
<20>
 長尺状基体部の幅W2は、0.3mm以上であることが好ましく、0.6mm以上であることが更に好ましく、そして、10mm以下であることが好ましく、2.0mm以下であることがより好ましく、1.8mm以下であることが更に好ましい前記<1>ないし<19>のいずれか1に記載の吸収性物品。
<21>
 液を吸収する前の状態の吸水性ポリマーの粒子の平均粒子径d1は、20μm以上であることが好ましく、200μm以上であることが更に好ましく、そして、700μm以下であることが好ましく、500μm以下であることが更に好ましい前記<1>ないし<20>のいずれか1に記載の吸収性物品。
<17>
The absorbent article according to any one of <1> to <16>, wherein the water-absorbing polymer particles are not arranged in both end regions in the longitudinal direction Y of the long base portion.
<18>
The absorbent article according to any one of <1> to <17>, wherein the water-absorbing polymer particles are not disposed in both end regions in the longitudinal direction Y and both side regions in the lateral direction X of the long base portion. .
<19>
The ratio of the width W2 of the elongated base portion to the width W1 of the absorber is preferably 0.001 or more, more preferably 0.002 or more, and preferably 0.200 or less. The absorbent article according to any one of <1> to <18>, more preferably 0.040 or less.
<20>
The width W2 of the elongated base portion is preferably 0.3 mm or more, more preferably 0.6 mm or more, and preferably 10 mm or less, more preferably 2.0 mm or less. The absorbent article according to any one of <1> to <19>, preferably 1.8 mm or less.
<21>
The average particle diameter d1 of the water-absorbing polymer particles in a state before absorbing the liquid is preferably 20 μm or more, more preferably 200 μm or more, and preferably 700 μm or less, and 500 μm or less. The absorbent article according to any one of <1> to <20>, which is more preferably present.
<22>
 液を吸収した膨潤した状態の吸水性ポリマーの粒子の平均粒子径d2は、200μm以上であることが好ましく、800μm以上であることが更に好ましく、そして、3000μm以下であることが好ましく、2000μm以下であることが更に好ましい前記<1>ないし<21>のいずれか1に記載の吸収性物品。
<23>
 長尺状基体部の幅W2と、液を吸収する前の状態の吸水性ポリマーの粒子の平均粒子径d1との関係は、d1/W2の値が0.002以上であることが好ましく、0.100以上であることが更に好ましく、また0.900以下であることが好ましく、0.800以下であることが更に好ましい前記<1>ないし<22>のいずれか1に記載の吸収性物品。
<24>
 長尺状基体部の幅W2と、液を吸収した後の状態の吸水性ポリマーの粒子の平均粒子径d2との関係は、d2/W2の値が0.020以上であることが好ましく、0.450以上であることが更に好ましく、また0.90以下であることが好ましく、0.80以下であることが更に好ましい前記<1>ないし<23>のいずれか1に記載の吸収性物品。
<25>
 前記吸収性ユニットはその縦方向が、前記物品の縦方向を向くように、前記吸収領域の縦方向の全域にわたって配列されている前記<1>ないし<24>のいずれか1に記載の吸収性物品。
<26>
 一方向に搬送される親水性の長尺状基体部の基材シートの一方の面の表面に、その横方向に距離を隔てた複数箇所に接着剤を塗布し、
 前記接着剤が塗布された前記長尺状基体部の基材シートを、前記搬送方向に沿って搬送させた状態下、該長尺状基体部の基材シートにおける該接着剤が塗布された一方の面の表面に、その横方向の全域にわたり吸水性ポリマーの粒子を散布し、
 前記吸水性ポリマーの粒子が散布された前記長尺状基体部の基材シートに、前記搬送方向に沿って搬送させた状態下、該接着剤が塗布された箇所間の非塗布箇所において、該搬送方向に沿って切り込みを入れて、細幅の複数条の長尺状基体部を得て、吸収体を製造し、
 製造された吸収体における吸水性ポリマーの粒子が固定された一方の面側に裏面シートを配置するとともに、吸水性ポリマーの粒子が固定されていない他方の面側に表面シートを配置する工程を含む、吸収性物品の製造方法。
<22>
The average particle diameter d2 of the swelled water-absorbing polymer particles that have absorbed the liquid is preferably 200 μm or more, more preferably 800 μm or more, and preferably 3000 μm or less, and 2000 μm or less. More preferably, the absorbent article according to any one of the above items <1> to <21>.
<23>
The relationship between the width W2 of the long base portion and the average particle diameter d1 of the water-absorbing polymer particles before absorbing the liquid is preferably such that the value of d1 / W2 is 0.002 or more. The absorbent article according to any one of <1> to <22>, more preferably 100 or more, preferably 0.900 or less, and more preferably 0.800 or less.
<24>
The relationship between the width W2 of the long base portion and the average particle diameter d2 of the water-absorbing polymer particles after absorbing the liquid is preferably such that the value of d2 / W2 is 0.020 or more. The absorbent article according to any one of <1> to <23>, further preferably 450 or more, more preferably 0.90 or less, and still more preferably 0.80 or less.
<25>
The absorptivity according to any one of <1> to <24>, wherein the absorbent unit is arranged over the entire longitudinal direction of the absorbent region so that the longitudinal direction thereof faces the longitudinal direction of the article. Goods.
<26>
On the surface of one surface of the base sheet of the hydrophilic long base portion that is conveyed in one direction, an adhesive is applied to a plurality of locations that are spaced apart in the lateral direction,
While the base sheet of the long base portion coated with the adhesive is transported along the transport direction, the adhesive is applied to the base sheet of the long base portion. Sprinkle particles of water-absorbing polymer over the entire area in the lateral direction on the surface of
In a state where the adhesive sheet is applied to the base sheet of the elongated substrate portion on which the particles of the water-absorbing polymer are dispersed, in a state where the adhesive is applied, Cut along the conveying direction to obtain a plurality of narrow elongated base portions, manufacture an absorber,
A step of disposing a back sheet on one side of the manufactured absorbent body where the water-absorbing polymer particles are fixed, and disposing a surface sheet on the other side of the water-absorbing polymer particles not fixed The manufacturing method of an absorbent article.
<27>
 一方向に搬送される親水性の長尺状基体部の基材シートの一方の面の表面に、その横方向の全域にわたり接着剤を塗布し、
 前記接着剤が塗布された前記長尺状基体部の基材シートを、前記搬送方向に沿って搬送させた状態下、該長尺状基体部の基材シートにおける該接着剤が塗布された一方の面の表面に、その横方向に距離を隔てた複数箇所に吸水性ポリマーの粒子を散布し、
 前記吸水性ポリマーの粒子が散布された前記長尺状基体部の基材シートに、前記搬送方向に沿って搬送させた状態下、該吸水性ポリマーの粒子が散布された箇所間の非散布箇所において、該搬送方向に沿って切り込みを入れて、細幅の複数条の長尺状基体部を得て、吸収体を製造し、
 製造された吸収体における吸水性ポリマーの粒子が固定された一方の面側に裏面シートを配置するとともに、吸水性ポリマーの粒子が固定されていない他方の面側に表面シートを配置する工程を含む、吸収性物品の製造方法。
<28>
 一方向に搬送される親水性の長尺状基体部の基材シートに、その搬送方向に沿う複数条の切り込みを入れて、細幅の複数条の長尺状基体部を得、
 複数条の前記長尺状基体部を、前記搬送方向に沿って搬送させた状態下、各長尺状基体部における一方の面の表面の横方向の中央域にのみ接着剤を塗布し、
 前記接着剤が塗布された前記長尺状基体部を、前記搬送方向に沿って搬送させた状態下、各長尺状基体部における該接着剤が塗布された一方の面の表面の横方向の全域にわたり吸水性ポリマーの粒子を散布して、吸収体を製造し、
 製造された吸収体における吸水性ポリマーの粒子が固定された一方の面側に裏面シートを配置するとともに、吸水性ポリマーの粒子が固定されていない他方の面側に表面シートを配置する工程を含む、吸収性物品の製造方法。
<29>
 一方向に搬送される親水性の長尺状基体部の基材シートに、その搬送方向に沿う複数条の切り込みを入れて、細幅の複数条の長尺状基体部を得、
 複数条の前記長尺状基体部を、前記搬送方向に沿って搬送させた状態下、各長尺状基体部における一方の面の表面の横方向の全域にわたり接着剤を塗布し、
 前記接着剤が塗布された前記長尺状基体部を、前記搬送方向に沿って搬送させた状態下、各長尺状基体部における該接着剤が塗布された一方の面の表面のうち、横方向の中央域にのみ吸水性ポリマーの粒子を散布して、吸収体を製造し、
 製造された吸収体における吸水性ポリマーの粒子が固定された一方の面側に裏面シートを配置するとともに、吸水性ポリマーの粒子が固定されていない他方の面側に表面シートを配置する工程を含む、吸収性物品の製造方法。
<27>
On the surface of one surface of the base sheet of the hydrophilic long base portion conveyed in one direction, an adhesive is applied over the entire area in the lateral direction,
While the base sheet of the long base portion coated with the adhesive is transported along the transport direction, the adhesive is applied to the base sheet of the long base portion. On the surface of the surface, water-absorbing polymer particles are dispersed in a plurality of locations separated in the lateral direction,
Non-sprayed places between the places where the water-absorbing polymer particles are dispersed in a state where the water-absorbing polymer particles are dispersed along the conveying direction on the base sheet of the elongated substrate portion on which the water-absorbing polymer particles are dispersed. In, incision along the conveying direction, to obtain a plurality of narrow elongated base portion, to produce an absorber,
A step of disposing a back sheet on one side of the manufactured absorbent body where the water-absorbing polymer particles are fixed, and disposing a surface sheet on the other side of the water-absorbing polymer particles not fixed The manufacturing method of an absorbent article.
<28>
Into the base sheet of the hydrophilic long base portion transported in one direction, a plurality of strips along the transport direction are put to obtain a plurality of narrow long base portions,
Applying the adhesive only to the central region in the lateral direction of the surface of one surface of each long base portion under the condition where the plurality of long base portions are transported along the transport direction,
In a state where the long base portion coated with the adhesive is transported along the transport direction, a lateral surface of the surface of one surface of the long base portion coated with the adhesive is provided. Sprinkle water-absorbing polymer particles over the entire area to produce an absorber,
A step of disposing a back sheet on one side of the manufactured absorbent body where the water-absorbing polymer particles are fixed, and disposing a surface sheet on the other side of the water-absorbing polymer particles not fixed The manufacturing method of an absorbent article.
<29>
Into the base sheet of the hydrophilic long base portion transported in one direction, a plurality of strips along the transport direction are put to obtain a plurality of narrow long base portions,
Applying an adhesive over the entire region in the lateral direction of the surface of one surface of each long base portion under a state where the plurality of long base portions are transported along the transport direction,
In a state where the long base portion to which the adhesive has been applied is transported along the transport direction, among the surfaces of one surface of the long base portion to which the adhesive has been applied, Sprinkle water-absorbing polymer particles only in the central area of the direction to produce the absorber,
A step of disposing a back sheet on one side of the manufactured absorbent body where the water-absorbing polymer particles are fixed, and disposing a surface sheet on the other side of the water-absorbing polymer particles not fixed The manufacturing method of an absorbent article.
 本発明によれば、排泄液が吸収性ユニット間の間隙を通じて透過することが可能なので、排泄液が高粘度のものであっても吸収体を透過しやすい。吸収体を透過した排泄液は、長尺状基体部の非肌対向面側に配置されている吸水性ポリマーの粒子によって吸収保持される。吸水性ポリマーの粒子によって吸収保持された排泄液は、長尺状基体部に阻止されて逆戻りしづらい。このように本発明の吸収性物品によれば、排泄液が高粘度のものであっても、吸収速度が向上し、また液戻りが起こりにくくなる。
 
According to the present invention, since the excretory fluid can permeate through the gap between the absorbent units, even if the excretory fluid has a high viscosity, it can easily permeate the absorber. The excretory fluid that has passed through the absorber is absorbed and held by particles of the water-absorbing polymer disposed on the non-skin facing surface side of the long base portion. The excretory fluid absorbed and held by the water-absorbing polymer particles is blocked by the long base portion and is difficult to return. As described above, according to the absorbent article of the present invention, even if the excretory fluid has a high viscosity, the absorption rate is improved and the return of the fluid is less likely to occur.

Claims (29)

  1.  横方向と、該横方向よりも長さの長い縦方向と、厚み方向とを有する長尺状基体部、及び該長尺状基体部の表面に固定された吸水性ポリマーの粒子を備えた吸収性ユニットを複数本具備し、各該吸収性ユニットを、その縦方向が少なくとも一方向を向くように配列させてなる吸収体を備え、
     前記長尺状基体部における非肌対向面の表面にのみ前記吸水性ポリマーの粒子が固定されており、
     前記吸水性ポリマーの粒子が液を吸収する前においては、該吸水性ポリマーの粒子が、前記長尺状基体部の前記縦方向に沿う側縁部を越えて横方向にはみ出しておらず、且つ該吸水性ポリマーの粒子が液を吸収して膨潤した状態においても、該吸水性ポリマーの粒子が、該長尺状基体部の該縦方向に沿う側縁部を越えて膨潤しないようになされている吸収性物品。
    Absorption comprising a long base portion having a horizontal direction, a vertical direction longer than the horizontal direction, and a thickness direction, and water-absorbing polymer particles fixed to the surface of the long base portion A plurality of sexual units, and each absorbent unit is provided with an absorbent body in which the longitudinal direction is oriented in at least one direction,
    The water-absorbing polymer particles are fixed only on the surface of the non-skin facing surface in the elongated base portion,
    Before the water-absorbing polymer particles absorb the liquid, the water-absorbing polymer particles do not protrude laterally beyond the side edges along the longitudinal direction of the elongated substrate portion, and Even when the water-absorbing polymer particles absorb the liquid and swell, the water-absorbing polymer particles do not swell beyond the side edges along the longitudinal direction of the elongated base portion. Absorbent article.
  2.  前記長尺状基体部が疎水性のシートからなる請求項1に記載の吸収性物品。 The absorbent article according to claim 1, wherein the elongated base portion is made of a hydrophobic sheet.
  3.  前記吸収性ユニットはその縦方向が、前記物品の縦方向を向くように、前記吸収体の縦方向の中央域及び横方向の中央域に少なくとも配列されている請求項1又は請求項2に記載の吸収性物品。 The said absorptive unit is arrange | positioned at least in the center area of the vertical direction of the said absorber and the center area of a horizontal direction so that the vertical direction may face the vertical direction of the said article | item. Absorbent articles.
  4.  前記吸収体は、横方向に沿って隣り合う前記吸収性ユニットどうしの間に間隙が生じている請求項1ないし3のいずれか一項に記載の吸収性物品。 The absorbent article according to any one of claims 1 to 3, wherein a gap is formed between the absorbent units adjacent to each other along the lateral direction.
  5.  隣り合う前記吸収性ユニットどうしの間には間隙Sが生じており、該間隙Sの程度が、0.1mm以上5mm以下である請求項1ないし4のいずれか一項に記載の吸収性物品。 The absorbent article according to any one of claims 1 to 4, wherein a gap S is formed between the adjacent absorbent units, and the degree of the gap S is 0.1 mm or more and 5 mm or less.
  6.  前記長尺状基体部が、該長尺状基体部と肌対向面側において隣接する部材と接合されており、
     前記長尺状基体部と前記部材との接合位置は、前記吸収体の横方向の中央域又は縦方向の中央域である請求項1ないし5のいずれか一項に記載の吸収性物品。
    The long base portion is joined to a member adjacent to the long base portion on the skin facing surface side,
    The absorbent article according to any one of claims 1 to 5, wherein a joining position between the elongated base portion and the member is a lateral central region or a longitudinal central region of the absorber.
  7.  前記吸収体のうち、前記吸収性ユニットが形成されている部位において、前記長尺状基体部は、該長尺状基体部と非肌対向面側において隣接する他の部材と非接合状態になっている請求項1ないし6のいずれか一項に記載の吸収性物品。 Of the absorbent body, in the portion where the absorbent unit is formed, the long base portion is in a non-bonded state with another member adjacent to the long base portion on the non-skin facing surface side. The absorbent article according to any one of claims 1 to 6.
  8.  前記長尺状基体部はその通気度が、前記吸収体よりも肌対向面側に位置するシート部材の通気度よりも低くなっている請求項1ないし7のいずれか一項に記載の吸収性物品。 The absorptivity according to any one of claims 1 to 7, wherein the elongate base portion has an air permeability lower than that of a sheet member positioned on the skin-facing surface side with respect to the absorber. Goods.
  9.  前記吸収性ユニットは、横方向Xの長さLxが、0.3mm以上10mm以下である請求項1ないし8のいずれか一項に記載の吸収性物品。 The absorbent article according to any one of claims 1 to 8, wherein the absorbent unit has a length Lx in the lateral direction X of not less than 0.3 mm and not more than 10 mm.
  10.  前記吸収性ユニットの縦方向Yの長さLyが、横方向Xの長さLxに対して2倍以上3500倍以下になっている請求項1ないし9のいずれか一項に記載の吸収性物品。 The absorbent article according to any one of claims 1 to 9, wherein a length Ly in the longitudinal direction Y of the absorbent unit is not less than 2 times and not more than 3500 times the length Lx in the transverse direction X. .
  11.  前記吸収性ユニットの縦方向Yの長さLyが、20mm以上1000mm以下になっている請求項1ないし10のいずれか一項に記載の吸収性物品。 The absorbent article according to any one of claims 1 to 10, wherein a length Ly in the longitudinal direction Y of the absorbent unit is 20 mm or more and 1000 mm or less.
  12.  前記吸収体の平面視において、該吸収体の全体の面積に対する吸収領域ATの面積の割合が、20%以上100%以下である請求項1ないし11のいずれか一項に記載の吸収性物品。 The absorbent article according to any one of claims 1 to 11, wherein, in a plan view of the absorber, a ratio of an area of the absorption region AT to an entire area of the absorber is 20% or more and 100% or less.
  13.  前記吸収性ユニットが、1枚の前記吸収体当たり、3本以上1000本以下配されている請求項1ないし12のいずれか一項に記載の吸収性物品。 The absorbent article according to any one of claims 1 to 12, wherein the absorbent unit is arranged in an amount of 3 or more and 1000 or less per one absorber.
  14.  前記吸収性ユニットの縦方向Yが、前記吸収体の縦方向Yに向くように複数配している請求項1ないし13のいずれか一項に記載の吸収性物品。 The absorbent article according to any one of claims 1 to 13, wherein a plurality of the longitudinal directions Y of the absorbent units are arranged so as to face the longitudinal direction Y of the absorbent body.
  15.  前記吸収体は、縦方向Yの両端部、又は縦方向Yに沿う両側部に、複数の前記長尺状基体部が横方向に繋がった非スリット領域NTを備えている請求項1ないし14のいずれか一項に記載の吸収性物品。 The said absorber is equipped with the non-slit area | region NT to which the said some elongate base | substrate part was connected to the horizontal direction in the both ends along the vertical direction Y, or the both sides along the vertical direction Y. The absorbent article as described in any one.
  16.  前記非スリット領域NTに、前記吸水性ポリマーの粒子が配されていない請求項15に記載の吸収性物品。 The absorbent article according to claim 15, wherein the water-absorbing polymer particles are not arranged in the non-slit region NT.
  17.  前記長尺状基体部おける縦方向Yの両端部域に前記吸水性ポリマーの粒子が配されていない請求項1ないし16のいずれか一項に記載の吸収性物品。 The absorbent article according to any one of claims 1 to 16, wherein particles of the water-absorbing polymer are not arranged in both end regions in the longitudinal direction Y of the elongated base portion.
  18.  前記長尺状基体部における縦方向Yの両端部域及び横方向Xの両側部域に吸水性ポリマーの粒子が配されていない請求項1ないし17のいずれか一項に記載の吸収性物品。 The absorbent article according to any one of Claims 1 to 17, wherein particles of the water-absorbing polymer are not disposed in both end regions in the longitudinal direction Y and both side regions in the lateral direction X of the elongated base portion.
  19.  前記吸収体の幅W1に対する前記長尺状基体部の幅W2の割合が、0.001以上0.200以下である請求項1ないし18のいずれか一項に記載の吸収性物品。 The absorbent article according to any one of claims 1 to 18, wherein a ratio of the width W2 of the elongated base portion to the width W1 of the absorber is 0.001 or more and 0.200 or less.
  20.  前記長尺状基体部の幅W2が、0.3mm以上10mm以下である請求項1ないし19のいずれか一項に記載の吸収性物品。 The absorptive article according to any one of claims 1 to 19 whose width W2 of said long base part is 0.3 mm or more and 10 mm or less.
  21.  液を吸収する前の状態の前記吸水性ポリマーの粒子の平均粒子径d1が、20μm以上700μm以下である請求項1ないし20のいずれか一項に記載の吸収性物品。 21. The absorbent article according to any one of claims 1 to 20, wherein an average particle diameter d1 of the water-absorbing polymer particles in a state before absorbing the liquid is 20 μm or more and 700 μm or less.
  22.  液を吸収した膨潤した状態の前記吸水性ポリマーの粒子の平均粒子径d2が、200μm以上3000μm以下である請求項1ないし21のいずれか一項に記載の吸収性物品。 The absorbent article according to any one of claims 1 to 21, wherein an average particle diameter d2 of the water-absorbing polymer particles in a swollen state that has absorbed the liquid is 200 µm or more and 3000 µm or less.
  23.  前記長尺状基体部の幅W2と、液を吸収する前の状態の前記吸水性ポリマーの粒子の平均粒子径d1との関係は、d1/W2の値が0.002以上0.900以下である請求項1ないし22のいずれか一項に記載の吸収性物品。 The relationship between the width W2 of the long base portion and the average particle diameter d1 of the water-absorbing polymer particles before absorbing the liquid is such that the value of d1 / W2 is 0.002 or more and 0.900 or less. The absorptive article according to any one of claims 1 to 22.
  24.  前記長尺状基体部の幅W2と、液を吸収した後の状態の前記吸水性ポリマーの粒子の平均粒子径d2との関係は、d2/W2の値が0.020以上また0.90以下である請求項1ないし23のいずれか一項に記載の吸収性物品。 The relationship between the width W2 of the elongated base portion and the average particle diameter d2 of the water-absorbing polymer particles after absorbing the liquid is such that the value of d2 / W2 is 0.020 or more and 0.90 or less. The absorbent article according to any one of claims 1 to 23.
  25.  前記吸収性ユニットはその縦方向が、前記物品の縦方向を向くように、前記吸収領域の縦方向の全域にわたって配列されている請求項12のいずれか一項に記載の吸収性物品。 The absorbent article according to any one of claims 12 to 13, wherein the absorbent units are arranged over the entire length of the absorbent region so that the longitudinal direction of the absorbent unit faces the longitudinal direction of the article.
  26.  一方向に搬送される親水性の長尺状基体部の基材シートの一方の面の表面に、その横方向に距離を隔てた複数箇所に接着剤を塗布し、
     前記接着剤が塗布された前記長尺状基体部の基材シートを、前記搬送方向に沿って搬送させた状態下、該長尺状基体部の基材シートにおける該接着剤が塗布された一方の面の表面に、その横方向の全域にわたり吸水性ポリマーの粒子を散布し、
     前記吸水性ポリマーの粒子が散布された前記長尺状基体部の基材シートに、前記搬送方向に沿って搬送させた状態下、該接着剤が塗布された箇所間の非塗布箇所において、該搬送方向に沿って切り込みを入れて、細幅の複数条の長尺状基体部を得て、吸収体を製造し、
     製造された吸収体における吸水性ポリマーの粒子が固定された一方の面側に裏面シートを配置するとともに、吸水性ポリマーの粒子が固定されていない他方の面側に表面シートを配置する工程を含む、吸収性物品の製造方法。
    On the surface of one surface of the base sheet of the hydrophilic long base portion that is conveyed in one direction, an adhesive is applied to a plurality of locations that are spaced apart in the lateral direction,
    While the base sheet of the long base portion coated with the adhesive is transported along the transport direction, the adhesive is applied to the base sheet of the long base portion. Sprinkle particles of water-absorbing polymer over the entire area in the lateral direction on the surface of
    In a state where the adhesive sheet is applied to the base sheet of the elongated substrate portion on which the particles of the water-absorbing polymer are dispersed, in a state where the adhesive is applied, Cut along the conveying direction to obtain a plurality of narrow elongated base portions, manufacture an absorber,
    A step of disposing a back sheet on one side of the manufactured absorbent body where the water-absorbing polymer particles are fixed, and disposing a surface sheet on the other side of the water-absorbing polymer particles not fixed The manufacturing method of an absorbent article.
  27.  一方向に搬送される親水性の長尺状基体部の基材シートの一方の面の表面に、その横方向の全域にわたり接着剤を塗布し、
     前記接着剤が塗布された前記長尺状基体部の基材シートを、前記搬送方向に沿って搬送させた状態下、該長尺状基体部の基材シートにおける該接着剤が塗布された一方の面の表面に、その横方向に距離を隔てた複数箇所に吸水性ポリマーの粒子を散布し、
     前記吸水性ポリマーの粒子が散布された前記長尺状基体部の基材シートに、前記搬送方向に沿って搬送させた状態下、該吸水性ポリマーの粒子が散布された箇所間の非散布箇所において、該搬送方向に沿って切り込みを入れて、細幅の複数条の長尺状基体部を得て、吸収体を製造し、
     製造された吸収体における吸水性ポリマーの粒子が固定された一方の面側に裏面シートを配置するとともに、吸水性ポリマーの粒子が固定されていない他方の面側に表面シートを配置する工程を含む、吸収性物品の製造方法。
    On the surface of one surface of the base sheet of the hydrophilic long base portion conveyed in one direction, an adhesive is applied over the entire area in the lateral direction,
    While the base sheet of the long base portion coated with the adhesive is transported along the transport direction, the adhesive is applied to the base sheet of the long base portion. On the surface of the surface, water-absorbing polymer particles are dispersed in a plurality of locations separated in the lateral direction,
    Non-sprayed places between the places where the water-absorbing polymer particles are dispersed in a state where the water-absorbing polymer particles are dispersed along the conveying direction on the base sheet of the elongated substrate portion on which the water-absorbing polymer particles are dispersed. In, incision along the conveying direction, to obtain a plurality of narrow elongated base portion, to produce an absorber,
    A step of disposing a back sheet on one side of the manufactured absorbent body where the water-absorbing polymer particles are fixed, and disposing a surface sheet on the other side of the water-absorbing polymer particles not fixed The manufacturing method of an absorbent article.
  28.  一方向に搬送される親水性の長尺状基体部の基材シートに、その搬送方向に沿う複数条の切り込みを入れて、細幅の複数条の長尺状基体部を得、
     複数条の前記長尺状基体部を、前記搬送方向に沿って搬送させた状態下、各長尺状基体部における一方の面の表面の横方向の中央域にのみ接着剤を塗布し、
     前記接着剤が塗布された前記長尺状基体部を、前記搬送方向に沿って搬送させた状態下、各長尺状基体部における該接着剤が塗布された一方の面の表面の横方向の全域にわたり吸水性ポリマーの粒子を散布して、吸収体を製造し、
     製造された吸収体における吸水性ポリマーの粒子が固定された一方の面側に裏面シートを配置するとともに、吸水性ポリマーの粒子が固定されていない他方の面側に表面シートを配置する工程を含む、吸収性物品の製造方法。
    Into the base sheet of the hydrophilic long base portion transported in one direction, a plurality of strips along the transport direction are put to obtain a plurality of narrow long base portions,
    Applying the adhesive only to the central region in the lateral direction of the surface of one surface of each long base portion under the condition where the plurality of long base portions are transported along the transport direction,
    In a state where the long base portion coated with the adhesive is transported along the transport direction, a lateral surface of the surface of one surface of the long base portion coated with the adhesive is provided. Sprinkle water-absorbing polymer particles over the entire area to produce an absorber,
    A step of disposing a back sheet on one side of the manufactured absorbent body where the water-absorbing polymer particles are fixed, and disposing a surface sheet on the other side of the water-absorbing polymer particles not fixed The manufacturing method of an absorbent article.
  29.  一方向に搬送される親水性の長尺状基体部の基材シートに、その搬送方向に沿う複数条の切り込みを入れて、細幅の複数条の長尺状基体部を得、
     複数条の前記長尺状基体部を、前記搬送方向に沿って搬送させた状態下、各長尺状基体部における一方の面の表面の横方向の全域にわたり接着剤を塗布し、
     前記接着剤が塗布された前記長尺状基体部を、前記搬送方向に沿って搬送させた状態下、各長尺状基体部における該接着剤が塗布された一方の面の表面のうち、横方向の中央域にのみ吸水性ポリマーの粒子を散布して、吸収体を製造し、
     製造された吸収体における吸水性ポリマーの粒子が固定された一方の面側に裏面シートを配置するとともに、吸水性ポリマーの粒子が固定されていない他方の面側に表面シートを配置する工程を含む、吸収性物品の製造方法。
     
    Into the base sheet of the hydrophilic long base portion transported in one direction, a plurality of strips along the transport direction are put to obtain a plurality of narrow long base portions,
    Applying an adhesive over the entire region in the lateral direction of the surface of one surface of each long base portion under a state where the plurality of long base portions are transported along the transport direction,
    In a state where the long base portion to which the adhesive has been applied is transported along the transport direction, among the surfaces of one surface of the long base portion to which the adhesive has been applied, Sprinkle water-absorbing polymer particles only in the central area of the direction to produce the absorber,
    A step of disposing a back sheet on one side of the manufactured absorbent body where the water-absorbing polymer particles are fixed, and disposing a surface sheet on the other side of the water-absorbing polymer particles not fixed The manufacturing method of an absorbent article.
PCT/JP2016/079864 2015-10-07 2016-10-06 Absorbent article WO2017061576A1 (en)

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JP2019063014A (en) * 2017-09-28 2019-04-25 花王株式会社 Manufacturing method of absorber
DE112017007901T5 (en) * 2017-10-03 2020-05-14 Kao Corporation METHOD FOR PRODUCING AN ABSORPTION BODY AND DEVICE FOR PRODUCING AN ABSORPTION BODY
JP6683795B1 (en) * 2018-11-14 2020-04-22 花王株式会社 Absorber manufacturing method and manufacturing apparatus

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