Absorbent article

The absorbent article design with compression grooves and non-adhesive sections between sheets ensures even distribution of excreted liquids, enhancing absorption efficiency and comfort.

JP2025174292APending Publication Date: 2025-11-28OJI HLDG CORP
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Patent Information

Application Number
JP2024080477
Authority / Receiving Office
JP · JP
Patent Type
Applications
Current Assignee / Owner
Filing Date
2024-05-16
Publication Date
2025-11-28

AI Technical Summary

Technical Problem

Compressed grooves in absorbent articles may not effectively disperse excreted liquids like urine throughout the absorbent body, leading to uneven absorption.

Method used

An absorbent article design with an absorbent body featuring compression grooves and non-adhesive portions between water-permeable sheets, allowing liquids to diffuse evenly across the absorbent body.

Benefits of technology

Enhances the distribution of excreted liquids like urine throughout the absorbent body, improving absorption efficiency and comfort by preventing localized absorption.

✦ Generated by Eureka AI based on patent content.

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Abstract

To provide an absorbent article that diffuses discharged liquid such as urine discharged by a wearer over an entire absorbent.SOLUTION: An absorbent article includes: an absorbent having an absorbent mat and a first water-permeable sheet disposed on a skin surface side of a wearer of the absorbent mat; a compressed groove formed by being linearly compressed from the skin surface side of the absorbent; one or a plurality of second water-permeable sheets adhering to the skin surface side of the first water-permeable sheet; an inflow portion into which a discharged liquid discharged by the wearer flows from the skin surface side of the second water-permeable sheet; and a non-adhesion portion in which the water-permeable sheets do not adhere to each other between at least one water-permeable sheet from the first water-permeable sheet of the inflow portion to the second water-permeable sheet on the skin surface side in an extending direction of the compressed groove.SELECTED DRAWING: Figure 6
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Description

[Technical Field]

[0001] The present invention relates to an absorbent article. [Background technology]

[0002] Absorbent articles such as disposable diapers, absorbent pads, and sanitary products have been developed. The absorbent articles include an absorbent body that absorbs liquids such as urine excreted by the wearer. For example, Patent Document 1 discloses an absorbent article that includes compressed grooves formed by compression. [Prior art documents] [Patent documents]

[0003] [Patent Document 1] Japanese Patent Application Publication No. 2019-103782 Summary of the Invention [Problem to be solved by the invention]

[0004] Compressed grooves are often formed for the purpose of dispersing urine and other excreted liquids excreted by the wearer throughout the absorbent body and efficiently absorbing the urine and other excreted liquids throughout the absorbent body. However, because excreted liquids such as urine are absorbed into the absorbent body while passing through the compressed grooves, there is a risk that they may not be able to be dispersed throughout the absorbent body.

[0005] An object of the present invention is to provide an absorbent article that diffuses excreted liquid such as urine excreted by a wearer throughout the entire absorbent body. [Means for solving the problem]

[0006] An absorbent article according to one aspect of the present invention comprises: an absorbent body having an absorbent mat and a first water-permeable sheet arranged on the wearer's skin side of the absorbent mat; a compression groove formed by linearly compressing the absorbent body from the skin-facing side; One or more second water-permeable sheets adhered to the skin side of the first water-permeable sheet; an inflow portion into which the liquid discharged by the wearer flows from the skin side of the second water-permeable sheet; In the extension direction of the compression groove, there is a non-adhesive portion between at least one of the water-permeable sheets from the first water-permeable sheet of the inlet portion to the second water-permeable sheet on the skin side, in which the water-permeable sheets are not adhered to each other. [Effects of the Invention]

[0007] According to the present invention, it is possible to diffuse excreted liquid such as urine excreted by the wearer throughout the absorbent body. [Brief explanation of the drawings]

[0008] [Figure 1] FIG. 1 is a perspective view showing the appearance of a diaper according to an embodiment. [Figure 2] FIG. 2 is an exploded perspective view of the diaper according to the embodiment. [Figure 3] FIG. 3 is a plan view of the diaper according to the embodiment. [Figure 4] FIG. 4 is a cross-sectional view of a diaper according to an embodiment. [Figure 5] FIG. 5 is a diagram showing compressed grooves provided in a diaper according to an embodiment. [Figure 6] FIG. 6 is an enlarged view of a compressed groove provided in a diaper according to an embodiment. [Figure 7] FIG. 7 is a plan view (part 1) showing an adhesive pattern to be applied to the skin-facing side of the upper-layer core wrap sheet provided in the diaper according to the embodiment. [Figure 8] FIG. 8 is a plan view showing a tear occurring in a compressed groove provided in a diaper according to an embodiment. [Figure 9] FIG. 9 is a diagram showing the relationship between the stretch direction of the top sheet and the fiber orientation direction of the upper core wrap sheet of the diaper according to the embodiment. [Figure 10] FIG. 10 is a plan view (part 2) showing the adhesive pattern of the adhesive to be applied to the skin-facing side of the upper-layer core wrap sheet provided in the diaper according to the embodiment. [Figure 11]FIG. 11 is a plan view (part 3) showing the adhesive pattern of the adhesive to be applied to the skin-facing side of the upper-layer core wrap sheet provided in the diaper according to the embodiment. [Figure 12] FIG. 12 is a diagram showing the shape of compressed grooves provided in the diaper according to the embodiment. DETAILED DESCRIPTION OF THE INVENTION

[0009] DETAILED DESCRIPTION OF THE PREFERRED EMBODIMENTS The following describes embodiments of the present invention. The embodiments described below are merely aspects of the present invention and are not intended to limit the technical scope of the present invention.

[0010] <Embodiment> In this embodiment, the longitudinal direction of a tape-type disposable diaper (an example of an "absorbent article" in the present application, hereinafter simply referred to as "diaper") is the direction connecting the front body portion, which is positioned opposite the wearer's abdomen, and the back body portion, which is positioned opposite the wearer's back. Between the front body portion (one side in the longitudinal direction) and the back body portion (the other side in the longitudinal direction) (the center in the longitudinal direction), a crotch portion, which is positioned between the wearer's crotch (facing the crotch), is located. Furthermore, when the diaper is worn by a wearer (hereinafter abbreviated as "worn state"), the side facing the wearer's skin (the inner side when worn) is the skin-facing side, and the side opposite the skin-facing side (the outer side when worn) is the non-skin-facing side. Furthermore, the direction connecting the skin-facing side and the non-skin-facing side is the thickness direction, and the direction perpendicular to both the longitudinal direction and the thickness direction is the width direction. Furthermore, a view from the thickness direction is a planar view. The left-right direction of the diaper is defined as the right side of the wearer's right hand and the left side of the wearer's left hand when the diaper is worn.

[0011] FIG. 1 is a perspective view of a diaper 1 according to this embodiment. FIG. 2 is an exploded perspective view of the diaper 1 according to this embodiment. FIG. 3 is a plan view of the diaper 1 in a stretched state, viewed from the skin-facing side. The diaper 1 has a crotch region 1B, which corresponds to the crotch area covering the wearer's genitals when worn; a front body region 1F, which is located in front of the crotch region 1B and corresponds to the wearer's front body; and a back body region 1R, which is located behind the crotch region 1B and corresponds to the wearer's back body. Tapes 2L and 2R are attached to the left and right edges of the back body region 1R, and can be attached to front patches 2F, which are provided on the non-skin-facing side of the front body region 1F. When the front body region 1F is positioned on the wearer's abdominal side and the back body region 1R is positioned on the wearer's back side, the diaper 1 is secured to the wearer's body by encircling the wearer's abdominal circumference and thighs. Since the diaper 1 is fixed to the wearer's body in this manner, the wearer can stand and walk around while wearing the diaper 1.

[0012] The diaper 1 includes an absorbent body 6, which is capable of absorbing and retaining exudates discharged by the wearer, and is located mainly near the crotch region 1B. The diaper 1 also includes leg gathers 3AL, 3AR around the wearer's legs (thighs) to prevent gaps from forming between the diaper 1 and the wearer's skin, which could serve as a path for exudates to escape. Leakage barrier walls 3BL, 3BR are provided on the inside of the leg gathers 3AL, 3AR in the width direction of the diaper 1. The leg gathers 3AL, 3AR and the leakage barrier walls 3BL, 3BR adhere closely to the wearer's skin due to the elasticity of the elastic members. Therefore, exudates discharged from the wearer's genitals are absorbed by the absorbent body 6 of the diaper 1 without leaking out. The elastic members may be selected from thread-like or strip-like rubber, as appropriate.

[0013] The diaper 1 has a cover sheet 4 that forms the outer surface when worn. The cover sheet 4 is a sheet-like member with a generally rectangular appearance, with constrictions 4KL and 4KR in the areas corresponding to the long sides, and forms the exterior surface of the diaper 1. The constrictions 4KL and 4KR are provided in the areas where the wearer's thighs are located. The cover sheet 4 is provided to reinforce the back sheet 5 (described later) and to improve the feel. For example, to prevent leakage of excrement, a nonwoven fabric made of a liquid-impermeable thermoplastic resin can be used as the material for the cover sheet 4. Examples of liquid-impermeable thermoplastic resins include polyethylene (PE) and polypropylene (PP). The cover sheet 4 is not limited to a single-layer structure, but may also be a multi-layer structure having an inner cover sheet and an outer cover sheet.

[0014] The diaper 1 further comprises a back sheet 5, an absorbent body 6, and a top sheet 8 (an example of the "second water-permeable sheet" referred to in the present application), which are layered in this order on the wearer's skin-facing side of the cover sheet 4. The top sheet 8 may consist of a single sheet, or multiple sheets may be layered together. The back sheet 5, the absorbent body 6, and the top sheet 8 are all sheet-like members having a substantially rectangular appearance, and are layered in this order on the cover sheet 4 with their longitudinal directions aligned with the longitudinal direction of the cover sheet 4. Like the cover sheet 4, the back sheet 5 is a sheet made of a liquid-impermeable thermoplastic resin material to prevent leakage of excrement. The back sheet 5 is preferably made of a moisture-permeable material to prevent stuffiness when worn.

[0015] The top sheet 8 is the portion that contacts the wearer's skin when the diaper 1 is worn. It is a stretchable, water-permeable sheet made of a liquid-permeable material that is stretchable and allows excreted liquids such as urine to pass through. The top sheet 8 may be made of a woven fabric, a nonwoven fabric, a porous film, or the like. The nonwoven fabric may be made of thermoplastic resin fibers such as polypropylene, polyethylene, polyester, or nylon that have been hydrophilically treated. Alternatively, air-through nonwoven fabric, point-bonded nonwoven fabric, spun-bonded nonwoven fabric, or melt-blown nonwoven fabric may be used. When the diaper 1 is worn, excreted liquid passes through the top sheet 8, which may come into contact with the wearer's skin, and enters the absorbent body 6, where it is absorbed. The longitudinal direction of the diaper 1 is the same as the longitudinal directions of the absorbent body 6 and the top sheet 8.

[0016] The back sheet 5, absorbent body 6, and top sheet 8 all extend from the front body region 1F to the back body region 1R. Therefore, when the wearer's genitals are covered with the cover sheet 4, in which the back sheet 5, absorbent body 6, and top sheet 8 are laminated, the longitudinal ends of the back sheet 5, absorbent body 6, and top sheet 8 are located on the wearer's ventral and dorsal sides. In other words, the wearer's genitals are covered by the absorbent body 6 from the ventral to dorsal sides of the wearer. Therefore, whether the wearer is in a ventral or dorsal position when excreting fluid, the fluid excreted by the wearer comes into contact with the absorbent body 6 via the top sheet 8.

[0017] The diaper 1 also includes elastic members 4SL, 4SR for forming the leg gathers 3AL, 3AR described above, which are provided between the cover sheet 4 and the back sheet 5 so as to be stretchable in the longitudinal direction of the diaper 1. The number of elastic members 4SL, 4SR (two in this embodiment) is determined based on the elastic force (contractile force) required for the design of the diaper 1. The elastic members 4SL, 4SR may not be provided.

[0018] The diaper 1 also has a pair of water-impermeable side sheets 9L, 9R arranged on the skin-facing sides of both widthwise sides of the diaper 1 and extending along the longitudinal direction. The side sheets 9L, 9R are arranged so that their longitudinal ends coincide with the longitudinal ends of the top sheet 8. Similar to the cover sheet 4, the side sheets 9L, 9R have constrictions 9KL, 9KR in the areas where the wearer's thighs are located. The side sheets 9L, 9R have fixing regions 9LA, 9RA arranged on the outer sides in the widthwise direction. The fixing regions 9LA, 9RA are arranged on the non-skin-facing sides. The top sheet 8 is bonded to the other member by a hot melt adhesive.

[0019] The side sheets 9L, 9R have rubber threads 9EL, 9ER arranged along their longitudinal direction to form the leak barrier walls 3BL, 3BR. When the diaper 1 is worn, i.e., when the diaper 1 is U-shaped in side view, the contractile force of the rubber threads 9EL, 9ER draws the side sheets 9L, 9R longitudinally and causes them to rise from the top sheet 8, thereby forming the leak barrier walls 3BL, 3BR that prevent the outflow of exuded liquid.

[0020] The side sheets 9L, 9R are bonded to the top sheet 8 with a hot melt adhesive. The widthwise inner edges of this hot melt adhesive form fold lines 3LL, 3LR (see FIG. 3), and the insides of the fold lines 3LL, 3LR form the upstanding leakage barrier walls 3BL, 3BR. That is, the fold lines 3LL, 3LR are the upstanding edges of the leakage barrier walls 3BL, 3BR. The widthwise inner edges of the side sheets 9L, 9R from the fold lines 3LL, 3LR are the leakage barrier walls 3BL, 3BR, and the widthwise inner edges of the side sheets 9L, 9R are the free edges 9LB, 9RB of the leakage barrier walls 3BL, 3BR. Two rubber threads 9EL, 9ER, which are thread-like elastic members, are arranged side by side in the width direction near the free edges 9LB, 9RB of the side sheets 9L, 9R. Note that only one rubber thread 9EL, 9ER may be arranged. The elastic threads 9EL, 9ER are fixed to the side sheets 9L, 9R with hot melt adhesive in a stretched state in the longitudinal direction of the diaper 1. The side sheets 9L, 9R have fixing portions 33L, 33R near their longitudinal ends. The fixing portions 33L, 33R fix the side sheets 9L, 9R to the top sheet 8, and serve as longitudinal starting points for the leakage barrier walls 3BL, 3BR when they rise. The side sheets 9L, 9R are also bonded to the top sheet 8 on their outer widthwise sides, but on the inner longitudinal sides of the fixing portions 33L, 33R, the inner widthwise sides of the fixing portions are not bonded with the hot melt adhesive, allowing them to rise toward the skin. When the elastic threads 9EL, 9ER contract and the leakage barrier walls 3BL, 3BR on the inner side of the fold lines 3LL, 3LR rise toward the skin, the free ends 9LB, 9RB become the tips on the skin-facing side. The upright leakage preventing walls 3BL, 3BR inhibit the movement of discharged liquid and loose stools outward in the width direction of the leakage preventing walls 3BL, 3BR, thereby suppressing lateral leakage of these.

[0021] The diaper 1 has an inlet section R into which excreted fluid from the wearer flows from the skin-facing side of the top sheet 8. The inlet section R is, for example, a urethral opening-corresponding region RF corresponding to the wearer's urethral opening or an anus-corresponding region RB corresponding to the wearer's anus when the diaper 1 is worn. The urethral opening-corresponding region RF faces the wearer's urethral opening when the diaper 1 is worn, and is the position where the wearer urinates. In FIG. 3, an example of a position directly corresponding to the wearer's urethral opening is indicated by a +, and the area surrounded by a circle is the urethral opening-corresponding region RF. The anus-corresponding region RB faces the wearer's anus when the diaper 1 is worn, and is the position where the wearer defecates. In FIG. 3, an example of a position directly corresponding to the wearer's anus is indicated by an ×, and the area surrounded by a circle is the anus-corresponding region RB. The urethral opening corresponding region RF is the region corresponding to the wearer's abdominal one-third of the total longitudinal length of the diaper 1 divided into three equal parts, and the surrounding region, and the anus corresponding region RB is the region corresponding to the wearer's dorsal one-third of the total longitudinal length of the diaper 1 divided into three equal parts, and the surrounding region.

[0022] FIG. 4 is a widthwise cross-sectional view of the diaper 1 taken along line AA in FIG. 3. The diaper 1 includes an absorbent body 6 that absorbs and retains excreted fluids such as urine. The absorbent body 6 is disposed on the non-skin-facing side of the top sheet 8, including the crotch region 1B, to absorb excreted fluids from the wearer. In this embodiment, the absorbent body 6 includes an absorbent core 6C (an example of the "absorbent mat" referred to in this application) and a core wrap sheet 7 that covers part or all of the absorbent core 6C. The longitudinal direction of the absorbent body 6 coincides with the longitudinal direction of the absorbent core 6C, the longitudinal direction of the core wrap sheet 7, and the longitudinal direction of the diaper 1.

[0023] In plan view, the absorbent core 6C has a generally gourd-like shape, with the front and back body regions 1F and 1R being wider than the crotch region 1B and the crotch region 1B being narrowed. The crotch region 1B is sandwiched between the wearer's legs, so it is subjected to compressive pressure inward in the width direction. Meanwhile, the front and back body regions 1F and 1R are subjected to pressure in the thickness direction of the absorbent core 6C due to the wearer's weight. To accommodate these pressures, the absorbent core 6C is narrowed in the crotch region 1B. In the front and back body regions 1F and 1R, the width of the absorbent core 6C is increased to increase the area on which the weight is applied, thereby preventing deformation in the thickness direction. For this reason, it is preferable that the absorbent core 6C be generally gourd-shaped. The absorbent core 6C may also be generally rectangular.

[0024] The absorbent core 6C has a mat structure in which granular absorbent resin (polymeric water-absorbing material) such as SAP (Super Absorbent Polymer), a hydrophilic polymer with a cross-linked structure that can absorb and retain water, is held in the gaps between short fibers of cellulosic fibers such as pulp, rayon, or cotton, or short fibers made from synthetic fibers such as polyethylene, polypropylene, or polyethylene terephthalate that have been hydrophilically treated. These short fibers and SAP are examples of absorbent materials.

[0025] In this embodiment, SAP particles refer to a granulated resin composition containing SAP. The term "SAP-containing resin composition" as used herein encompasses both a composition consisting solely of SAP and a composition containing SAP as the main component, with other substances added to the extent that they do not adversely affect water absorption. Examples of "other substances" include additives (such as surface modifiers added to hydrophobize the particle surface) and unreacted monomers remaining during the synthesis of SAP. SAP particles can absorb approximately 10 to 100 times their own weight in liquid. The SAP particles may be, for example, granular particles with a diameter of approximately 0.1 to 0.5 mm before absorbing liquid.

[0026] While SAP particles gel and can retain liquid, it takes a certain amount of time for the liquid to be absorbed. In diaper 1, the short fibers slow down the discharged liquid while diffusing it within the absorbent core 6C until the SAP particles have absorbed the liquid, allowing the discharged liquid to be absorbed by a wide range of SAP particles, thereby preventing the liquid from flowing back.

[0027] The absorbent core 6C may have three low-bulk portions (not shown) extending in the longitudinal direction of the absorbent core 6C and spaced apart in the width direction. The low-bulk portions are portions of the absorbent material composed of the above-mentioned short fibers and SAP particles that are less bulky than the surrounding absorbent material and are formed in a concave shape from the skin-facing side to the non-skin-facing side. Urine and other excreted fluids discharged by the wearer are dispersed throughout the absorbent core 6C along the low-bulk portions provided on the skin-facing side of the absorbent core 6C. This allows the diaper 1 to efficiently absorb urine and other excreted fluids discharged by the wearer throughout the entire absorbent core 6C.

[0028] The absorbent core 6C may have an upper-layer absorbent mat arranged on the top sheet 8 side and a lower-layer absorbent mat arranged on the side not facing the wearer's skin.

[0029] The core wrap sheet 7 is a water-permeable sheet that sandwiches the absorbent core 6C, and more specifically, it covers the skin-facing side, side, and non-skin-facing side of the absorbent core 6C. The core wrap sheet 7 maintains the shape of the absorbent core 6C when not in contact with excreted liquid, preventing it from losing its shape and preventing the SAP particles contained in the absorbent core 6C from escaping. Furthermore, SAP particles when not absorbing moisture are hard and sand-like, and if these SAP particles escape from the absorbent body 6 and come into direct contact with the wearer's skin, they may cause discomfort to the wearer. For this reason, the absorbent core 6C is sandwiched between the core wrap sheets 7 to prevent the absorbent core 6C from losing its shape and to prevent the SAP particles from escaping outside the absorbent body 6.

[0030] In this embodiment, the core wrap sheet 7 is made of a pulp fiber sheet or a thin nonwoven fabric. The core wrap sheet 7 is formed of two sheets: an upper-layer core wrap sheet 7A (an example of the "first water-permeable sheet" referred to in this application) that is placed between the absorbent core 6C and the top sheet 8, and a lower-layer core wrap sheet 7B that is placed on the non-skin-facing side of the absorbent core 6C. The upper-layer core wrap sheet 7A and the lower-layer core wrap sheet 7B of the core wrap sheet 7 are formed from the same material. However, the upper-layer core wrap sheet 7A and the lower-layer core wrap sheet 7B may also be formed from different materials. As an example, the upper-layer core wrap sheet 7A can be an air-through nonwoven fabric, and the lower-layer core wrap sheet 7B can be tissue paper.

[0031] In this embodiment, the core wrap sheet 7 is arranged to cover the skin-facing side, side surfaces, and non-skin-facing side of the absorbent core 6C. As shown in Fig. 4, the lower core wrap sheet 7B is arranged on the non-skin-facing side of the absorbent core 6C, covers the side surfaces of the absorbent core 6C, and is also arranged to cover the widthwise outer sides of the upper core wrap sheet 7A. Here, the upper core wrap sheet 7A and the lower core wrap sheet 7B are laminated on both widthwise sides of the skin-facing side of the absorbent core 6C, forming a laminated section 7S.

[0032] The absorbent body 6 provided in the diaper 1 according to this embodiment has compressed grooves formed by squeezing the absorbent body 6 from the skin-facing side. Fig. 5 is a plan view of the diaper 1 showing the compressed grooves 20. For ease of explanation, some components have been omitted from the illustration. The compressed grooves 20 in this embodiment are composed of a plurality of grooves, including grooves 20A and grooves 20B that intersect with each other, as shown in Fig. 5.

[0033] As shown in FIG. 5, the groove 20A extends linearly from the front right side to the rear left side of the diaper 1, and the groove 20B extends linearly from the front left side to the rear right side of the diaper 1. The grooves 20A and 20B have uniform depths and widths throughout their extension direction and are formed in a grid pattern diagonal to the long or short sides of the absorbent body 6. The extension direction of the grooves 20A and 20B is not limited to the example configuration shown in FIG. 5. For example, the groove 20A may extend from the front to the rear of the diaper 1, and the groove 20B may extend from the right to the left side of the diaper 1. The grooves 20A and 20B may be formed in a grid pattern parallel to the long or short sides of the absorbent body 6. FIG. 6 is an enlarged view of the compressed groove 20. FIG. 6(A) is a cross-sectional view of the compressed groove 20 cut in the width direction. Fig. 6(B) is an enlarged view showing the non-bonded portion 21H and the bonded portion 21K in Fig. 6(A). In this embodiment, the grooves 20A and 20B have the same configuration, and therefore will be described below as compressed grooves 20. For ease of explanation, some components are not shown.

[0034] Air flows along the compressed grooves 20 provided on the skin-facing side of the absorbent body 6, thereby improving the breathability of the diaper 1. Liquid excreted by the wearer, such as urine, is dispersed throughout the absorbent body 6 along the compressed grooves 20 provided on the skin-facing side of the absorbent body 6. This allows the diaper 1 to efficiently absorb liquid excreted by the wearer, such as urine, throughout the entire absorbent body 6. Furthermore, providing the compressed grooves 20 in the absorbent body 6 makes it easier to bend, thereby improving the comfort of the diaper 1 when worn by the wearer.

[0035] By extending the compressed grooves 20 over the entire absorbent core 6C, excreted liquids such as urine can be diffused and absorbed throughout the entire absorbent core 6C, thereby improving the absorption efficiency of excreted liquids such as urine. However, when the top sheet 8 and the core wrap sheet 7, which is located on the non-skin-facing side of the top sheet 8, are adhered and tightly attached to each other, the speed at which excreted liquids such as urine flow into the absorbent core 6C via the top sheet 8 increases. As a result, excreted liquids such as urine are absorbed and retained in the absorbent core 6C before being diffused throughout the entire absorbent core 6C. As a result, even if the compressed grooves 20 extend over the entire absorbent core 6C, there is a risk that excreted liquids such as urine may not be diffused throughout the entire absorber 6.

[0036] On the other hand, the diaper 1 according to this embodiment has an extended compressed groove 20 as shown in FIG. In the region where the compressed grooves 20 extend, there is a non-adhesive portion 21H between the top sheet 8 and the upper core wrap sheet 7A where the top sheet 8 and the upper core wrap sheet 7A are not adhered to each other. That is, in the region where the compressed grooves 20 extend, the top sheet 8 and the upper core wrap sheet 7A are intermittently adhered. In the non-adhesive portion 21H, the top sheet 8 and the upper core wrap sheet 7A are not adhered to each other, so the top sheet 8 is separated from the upper core wrap sheet 7A. Air enters the space formed when the top sheet 8 is separated from the upper core wrap sheet 7A, and the non-adhesive portion 21H forms an air layer. The air layer prevents excreted fluids such as urine from flowing from the top sheet 8 to the upper core wrap sheet 7A.

[0037] When multiple water-permeable sheets are stacked on the skin-facing side of the absorbent core 6C, the non-adhesive portion 21H only needs to be provided between at least one of the multiple stacked water-permeable sheets. By providing the non-adhesive portion 21H on the skin-facing side of the absorbent core 6C and forming an air layer, it is possible to prevent excreted liquids such as urine from flowing into the absorber 6.

[0038] A plurality of non-adhesive portions 21H are provided at a distance from each other, and an adhesive portion 21K is provided between two adjacent non-adhesive portions 21H, where the top sheet 8 and the upper core wrap sheet 7A are adhered to each other. Because the adhesive portion 21K adheres the top sheet 8 and the upper core wrap sheet 7A to each other, the top sheet 8 and the upper core wrap sheet 7A are in close contact with each other, and excreted liquids such as urine are easily absorbed into the absorbent body 6 through the top sheet 8.

[0039] Furthermore, by providing adhesive zones 21K where the top sheet 8 and the upper core wrap sheet 7A are bonded to each other, the top sheet 8 is shaped to match the shapes of the compressed grooves 20 provided on the skin-facing side of the absorbent body 6, and the upper core wrap sheet 7A and the top sheet 8 are closely attached to each other. That is, grooves corresponding to the compressed grooves 20 are provided in the top sheet 8. Air flows along the grooves provided in the top sheet 8, improving the breathability of the diaper 1. Furthermore, excreted liquids such as urine excreted by the wearer are dispersed along the grooves provided in the top sheet 8 to the portions of the top sheet 8 that overlap the absorbent body 6. This allows the diaper 1 to efficiently absorb excreted liquids such as urine excreted by the wearer using the entire absorbent body 6.

[0040] Here, the adhesive region 21K is bonded with an adhesive such as a hot melt adhesive. When the adhesive region 21K is formed using a water-impermeable adhesive, the water-impermeable adhesive prevents excreted liquids such as urine from flowing to the non-skin-facing side of the top sheet 8. Therefore, the adhesive region vicinity 21N shown in FIG. 6(B) is the region where excreted liquids such as urine are most likely to flow to the non-skin-facing side of the top sheet 8. For this reason, it is preferable that the adhesive pattern be, for example, spiral or serpentine. By forming the adhesive pattern into a spiral or serpentine shape, the top sheet 8 and the upper core wrap sheet 7A are in close contact with each other in the adhesive region vicinity 21N even if no adhesive is used. Therefore, this is preferable because excreted liquids such as urine are more easily absorbed by the absorbent core 6C in the adhesive region vicinity 21N.

[0041] Figure 7 is a diagram showing the adhesive pattern of adhesive 21 forming adhesive areas 21K when the upper layer core wrap sheet 7A is viewed from the skin-facing side. Figure 7(A) is a diagram showing a pattern in which adhesive 21 is applied in a spiral shape to the upper layer core wrap sheet 7A. The adhesive 21 may be applied in a spiral shape to the upper layer core wrap sheet 7A as shown in Figure 7(A). The spiral-shaped adhesive 21 is formed in a continuous line, and portions of the adhesive 21 and multiple non-adhesive areas 21H are arranged alternately along a predetermined direction. After applying adhesive 21 to the upper layer core wrap sheet 7A, a top sheet 8 is placed on the upper layer core wrap sheet 7A, thereby intermittently adhering the upper layer core wrap sheet 7A and the top sheet 8.

[0042] 7(B) and 7(C) are diagrams showing patterns in which adhesive 21 is applied in a serpentine shape onto upper layer core wrap sheet 7A. The serpentine shape is made up of multiple mountain shapes and multiple valley shapes alternating. The meandering shape may be a shape in which multiple arc shapes are lined up, or a shape in which two adjacent arc shapes are oriented in different directions. The adhesive 21 applied in a serpentine shape is applied in a continuous line, with portions of the adhesive 21 and multiple non-adhesive portions 21H arranged alternately along a predetermined direction. After applying the adhesive 21 to the upper layer core wrap sheet 7A, the top sheet 8 is placed on the upper layer core wrap sheet 7A, thereby intermittently adhering the upper layer core wrap sheet 7A and the top sheet 8.

[0043] The predetermined direction may be the orientation direction of the fibers contained in the upper layer core wrap sheet 7A (hereinafter referred to as the "fiber orientation direction of the upper layer core wrap sheet 7A"), or may be a direction perpendicular to the fiber orientation direction of the upper layer core wrap sheet 7A. Furthermore, the predetermined direction is not limited to these, and may be another direction.

[0044] The thickness of the adhesive portion 21K and the size of the non-adhesive portion 21H provided between two adjacent adhesive portions 21K can be set to any value within a range that allows for sufficient adhesive strength. For example, the thickness of adhesives 21A to 21C shown in FIG. 7 may be 0.1 mm or more and 2 mm or less. For example, the size of the non-adhesive portion 21H provided between adhesives 21A and 21B shown in FIG. 7 may be 1 mm or more and 20 mm or less. For example, the width of the compressed groove 20 may be 0.5 mm or more and 20 mm or less, and the depth of the compressed groove 20 may be 0.5 mm or more and 5 mm or less.

[0045] In this way, the diaper 1 according to this embodiment has non-adhesive sections 21H between the top sheet 8 and the upper core wrap sheet 7A, and by intermittently adhering the top sheet 8 and the upper core wrap sheet 7A, the adhesive sections 21K promote the flow of discharged liquid such as urine from the top sheet 8 into the absorbent body 6, and the non-adhesive sections 21H inhibit the flow of discharged liquid such as urine from the top sheet 8 into the absorbent body 6. This allows discharged liquid such as urine to flow over the entire extension direction of the compressed grooves 20. Therefore, the absorbent body 6 can absorb discharged liquid such as urine throughout the entire absorbent body 6, which can shorten the time it takes to absorb discharged liquid such as urine compared to absorbing discharged liquid such as urine in only a portion of the absorbent body 6.

[0046] The absorbent core 6C and the upper core wrap sheet 7A are bonded together with an adhesive such as a hot melt adhesive. Here, the adhesive density between the absorbent core 6C and the upper core wrap sheet 7A is higher than the adhesive density of the adhesive portion 21K, so excreted liquids such as urine can easily flow in from any part of the upper core wrap sheet 7A facing the absorbent core 6C and are absorbed by the entire absorbent core 6C.

[0047] When the upper core wrap sheet 7A of the absorbent body 6 is provided with compressed grooves 20, the upper core wrap sheet 7A is pulled along the shape of the compressed grooves 20 during the manufacturing process in which the absorbent body 6 is compressed from the skin-facing side. Pulling the upper core wrap sheet 7A thins the upper core wrap sheet 7A, making the thinner portions of the upper core wrap sheet 7A more susceptible to tearing. Figure 8(A) is a plan view showing tears (tears) that occur in the compressed grooves 20 when the upper core wrap sheet 7A is viewed from the skin-facing side. Figure 8(B) is an enlarged view of Figure 8(A). As shown in Figures 8(A) and 8(B), the tears in the upper core wrap sheet 7A spread along the grooves 20B. The tears in the upper core wrap sheet 7A may also spread along the grooves 20A.

[0048] Furthermore, when the upper layer core wrap sheet 7A becomes thin, cracks are likely to occur in the upper layer core wrap sheet 7A along the fiber orientation direction of the upper layer core wrap sheet 7A, and the upper layer core wrap sheet 7A may break from the cracks in the upper layer core wrap sheet 7A. When the upper layer core wrap sheet 7A is pulled, the cracks in the upper layer core wrap sheet 7A may spread in a direction perpendicular to the fiber orientation direction of the upper layer core wrap sheet 7A.

[0049] Figure 9 is a diagram showing the relationship between the extension direction of the top sheet 8 and the fiber orientation direction of the upper core wrap sheet 7A. In Figure 9, the extension direction of the top sheet 8 is a direction perpendicular to the fiber orientation direction of the upper core wrap sheet 7A, but the extension direction of the top sheet 8 may also be a direction intersecting the fiber orientation direction of the upper core wrap sheet 7A.

[0050] When a tear in the upper core wrap sheet 7A propagates in a direction perpendicular to the fiber orientation direction of the upper core wrap sheet 7A, a portion of the upper core wrap sheet 7A becomes movable in a direction perpendicular to the fiber orientation direction of the upper core wrap sheet 7A. If the upper core wrap sheet 7A tears and a portion of the upper core wrap sheet 7A moves in a direction perpendicular to the fiber orientation direction of the upper core wrap sheet 7A, the top sheet 8 bonded to the upper core wrap sheet 7A may also tear. In this embodiment, the top sheet 8 is a stretchable, extensible sheet, and an example is an air-through nonwoven fabric. In this embodiment, the absorbent body 6 and the top sheet 8 are laminated so that the extension direction of the extensible top sheet 8 is intersecting or perpendicular to the fiber orientation direction of the upper core wrap sheet 7A. As a result, even if the upper core wrap sheet 7A tears and part of the upper core wrap sheet 7A moves in a direction perpendicular to the fiber orientation direction of the upper core wrap sheet 7A, the top sheet 8 stretches, thereby preventing tearing of the top sheet 8. Therefore, even if the upper core wrap sheet 7A tears, it is possible to prevent the absorbent material contained in the absorbent core 6C from leaking out from the top sheet 8.

[0051] Furthermore, the position at which the adhesive 21 constituting the adhesive portion 21K is applied may be adjusted to prevent cracks in the upper layer core wrap sheet 7A from spreading. The extending direction of the adhesive portion 21K may be the same as or approximately the same as the fiber orientation direction of the upper layer core wrap sheet 7A. For example, in the case of the upper layer core wrap sheet 7A shown in Figures 7(A) to 7(C), portions of the adhesive 21 and non-adhesive portions 21H (areas in Figure 7 where the adhesive 21 is not applied) are arranged alternately along the fiber orientation direction of the upper layer core wrap sheet 7A. Because the adhesive 21 increases the strength of the adhesive portion 21K to which the adhesive 21 is applied, cracks in the upper layer core wrap sheet 7A in the fiber orientation direction of the upper layer core wrap sheet 7A are prevented from spreading beyond the adhesive 21. In detail, if a tear occurs in the upper layer core wrap sheet 7A between one portion of the adhesive 21A and another portion of the adhesive 21A, the spread of the tear in the upper layer core wrap sheet 7A in the fiber orientation direction of the upper layer core wrap sheet 7A will be contained between the one portion of the adhesive 21A and the other portion of the adhesive 21A. In this way, the spread of the tear in the upper layer core wrap sheet 7A that occurs between the one portion of the adhesive 21A and the other portion of the adhesive 21A is suppressed by the one portion of the adhesive 21A and the other portion of the adhesive 21A.

[0052] The extending direction of at least some of the multiple adhesive portions 21K may be the same as or approximately the same as the fiber orientation direction of the upper layer core wrap sheet 7A. As described above, if a tear occurs in the upper layer core wrap sheet 7A along the fiber orientation direction of the upper layer core wrap sheet 7A, the tear may spread in a direction perpendicular to the fiber orientation direction of the upper layer core wrap sheet 7A. Furthermore, a tear may occur in the upper layer core wrap sheet 7A between adjacent adhesives 21 among the multiple adhesives 21. For example, a tear may occur in the upper layer core wrap sheet 7A between adhesive 21A and adhesive 21B. In this case, the adhesives 21A and 21B suppress the spread of the tear in the upper layer core wrap sheet 7A in a direction perpendicular to the fiber orientation direction of the upper layer core wrap sheet 7A.

[0053] 7(A) to 7(C), when the upper layer core wrap sheet 7A is viewed in a plane, the extension direction of the compressed grooves 20 and the extension direction of the adhesive 21 may intersect. Therefore, when the upper layer core wrap sheet 7A is viewed in a plane, part of the compressed grooves 20 and part of the adhesive 21 may overlap.

[0054] When the extension direction of the compressed grooves 20 intersects with the extension direction of the adhesive 21, the adhesive 21 extends to part of the area where the compressed grooves 20 are formed in the upper layer core wrap sheet 7A, and the non-adhesive portion 21H extends to most of the area where the compressed grooves 20 are formed in the upper layer core wrap sheet 7A. This prevents the force when the upper layer core wrap sheet 7A is pulled during the manufacturing process of the compressed grooves 20 from being transmitted to the top sheet 8 in the area where the compressed grooves 20 are formed in the upper layer core wrap sheet 7A, and prevents the top sheet 8 from tearing.

[0055] One of the multiple adhesive portions 21K may be adjacent to another of the multiple adhesive portions 21K. For example, adhesive 21A and adhesive 21B may be adjacent to each other, or adhesive 21B and adhesive 21C may be adjacent to each other. Furthermore, when the upper layer core wrap sheet 7A is viewed in plan, a portion of one adhesive 21 of the multiple adhesive portions 21K may overlap a portion of another adhesive 21 of the multiple adhesive portions 21K. FIG. 10 is a plan view showing the adhesive pattern of adhesive 21 applied to the skin-facing side of the upper layer core wrap sheet 7A. As shown in FIGS. 10(A) to 10(C), when the upper layer core wrap sheet 7A is viewed in plan, a portion of adhesive 21A may overlap a portion of adhesive 21B, and a portion of adhesive 21B may overlap a portion of adhesive 21C. The longer the gap between the multiple adhesive portions 21K in the fiber orientation direction of the upper layer core wrap sheet 7A, the more likely it is that a tear in the upper layer core wrap sheet 7A that occurs between the multiple adhesive portions 21K will spread along the fiber orientation direction of the upper layer core wrap sheet 7A. When a portion of the adhesive 21 of one of the multiple adhesive portions 21K overlaps with a portion of the adhesive 21 of another of the multiple adhesive portions 21K, the length of the gap between the multiple adhesive portions 21K in the fiber orientation direction of the upper layer core wrap sheet 7A becomes shorter. Therefore, a tear in the upper layer core wrap sheet 7A that occurs between the multiple adhesive portions 21K can be prevented from spreading along the fiber orientation direction of the upper layer core wrap sheet 7A.

[0056] The extending direction of the adhesive portion 21K may be the same as or approximately the same as the extending direction of some of the compressed grooves 20. FIG. 11 is a plan view showing the adhesive pattern of the adhesive 21 applied to the skin side of the upper layer core wrap sheet 7A. In FIG. 11, the adhesive 21 is applied in a spiral shape to the upper layer core wrap sheet 7A. As shown in FIG. 11, the extending direction of the adhesives 21A-21C is the same as or approximately the same as the extending direction of the grooves 20A. If a tear occurs in the upper layer core wrap sheet 7A along the extending direction of the grooves 20A, the tear in the upper layer core wrap sheet 7A may grow in a direction perpendicular to the extending direction of the grooves 20A. By having the extending direction of the adhesives 21A-21C be the same as or approximately the same as the extending direction of the grooves 20A, the adhesives 21A-21C suppress the spread of the tear in the upper layer core wrap sheet 7A in the direction perpendicular to the extending direction of the grooves 20A.

[0057] Furthermore, a tear may occur in the upper layer core wrap sheet 7A between two of the adhesives 21. For example, a tear may occur in the upper layer core wrap sheet 7A between adhesives 21A and 21B. In this case, the adhesives 21A and 21B suppress the spread of the tear in the upper layer core wrap sheet 7A in a direction perpendicular to the extension direction of the groove 20A. In this way, by arranging a portion of the compressed groove 20 between two of the adhesives 21K, the two of the adhesives 21K suppress the spread of the tear in the upper layer core wrap sheet 7A. The configuration is not limited to the example shown in FIG. 11 , and the extension direction of the adhesives 21A to 21C may be the same or approximately the same as the extension direction of the groove 20B. Furthermore, a linear adhesive 21 may be formed on the skin-facing side of the upper layer core wrap sheet 7A. In addition, a serpentine-shaped adhesive 21 may be formed on the skin-facing side of the upper core wrap sheet 7A, or an adhesive 21 having a shape in which multiple arc shapes and multiple straight shapes are arranged alternately may be formed on the upper core wrap sheet 7A.

[0058] In the region where the compression groove 20 extends, the non-adhesive portion 21H corresponds to at least the inlet portion R. It is preferable to provide the non-adhesive portion 21H in a region where the inlet portion R is located. If the non-adhesive portion 21H is not provided in the inlet portion R, when the wearer urinates once, excreted liquid such as urine is likely to be absorbed by the inlet portion R and the absorber 6 in its vicinity, and there is a risk that the inlet portion R and the absorber 6 in its vicinity will reach the maximum absorption capacity that the absorber 6 can absorb. Therefore, when the wearer urinates a second time, excreted liquid such as urine will not be absorbed by the inlet portion R and the absorber 6 in its vicinity, and will overflow between the wearer and the diaper 1. Furthermore, most of the excreted liquid such as urine excreted in the second urination will need to flow to the absorber 6 other than the inlet portion R and its vicinity, and it may take a long time for the excreted liquid to be absorbed by the absorber 6.

[0059] By providing the non-adhesive portions 21H in the region corresponding to the inlet portion R in the extension direction of the compressed grooves 20, the non-adhesive portions 21H inhibit the inflow of excreted liquids such as urine from the top sheet 8 into the absorbent body 6, thereby preventing the inlet portion R and the absorbent body 6 from retaining the maximum absorption capacity that they can absorb. Furthermore, after one urination, the top sheet 8 and the upper core wrap sheet 7A corresponding to the non-adhesive portions 21H are wetted by excreted liquids such as urine, so the area of ​​the air layer is narrowed or eliminated to bring the top sheet 8 and the upper core wrap sheet 7A into close contact. This allows the absorbent body 6 to absorb and retain excreted liquids such as urine even in the inlet portion R and its vicinity when absorbing excreted liquids such as urine from the second urination onwards. Therefore, since it is not necessary for most excreted liquids such as urine to flow to the absorbent body 6 other than the inlet portion R and its vicinity, the time it takes for the absorbent body 6 to absorb excreted liquids such as urine can be shortened compared to when the non-adhesive portions 21H are not provided in the inlet portion R.

[0060] FIG. 12 is a diagram showing the shape of the compressed grooves 20. FIG. 12(A) is a diagram showing grooves 20A and 20B according to this embodiment. It is preferable to provide the non-adhesive portions 21H on the skin-facing side of the intersections 20K (an example of the "intersections" referred to herein) of the grooves 20A and 20B. To diffuse excreted fluids such as urine throughout the absorbent body 6, it is preferable to provide multiple compressed grooves 20 and have the multiple compressed grooves 20 intersect with each other to extend throughout the absorbent body 6. However, during the manufacturing process in which the absorbent body 6 is compressed from the skin-facing side, the intersections 20K are pulled along the shapes of the grooves 20A and 20B, which may cause the upper-layer core wrap sheet 7A corresponding to the intersections 20K to become thinner. Therefore, excreted fluids such as urine are more easily absorbed by the absorbent body 6 at the intersections 20K than at the upper-layer core wrap sheet 7A other than the intersections 20K. By providing non-adhesive portion 21H on the non-skin-facing side of intersection 20K, an air layer is formed on the skin-facing side of intersection 20K, and absorption of excreted liquid such as urine by absorbent body 6 can be suppressed.

[0061] Furthermore, by providing non-adhesive portions 21H at the intersections 20K, the force of the air layer pulling the upper core wrap sheet 7A is less likely to be transmitted to the top sheet 8, preventing tearing of the top sheet 8. Furthermore, when adhesive portions 21K are placed at the intersections 20K, the adhesive portions 21K at the intersections 20K prevent tears in the upper core wrap sheet 7A from spreading.

[0062] A non-adhesive portion 21H may be arranged on part or all of the bottom surface of the compressed groove 20 corresponding to the intersection 20K. This makes it difficult for the force generated when the upper core wrap sheet 7A tears to be transmitted to the top sheet 8 at the bottom surface of the compressed groove 20 corresponding to the intersection 20K, thereby preventing the top sheet 8 from tearing. Furthermore, when an adhesive portion 21K is arranged on the bottom surface of the compressed groove 20 corresponding to the intersection 20K, the adhesive 21 forming the adhesive portion 21K on the bottom surface of the compressed groove 20 prevents the tear in the upper core wrap sheet 7A from spreading.

[0063] Non-adhesive portions 21H may be arranged on some or all of the side surfaces of the compressed grooves 20 corresponding to the intersections 20K. This makes it difficult for the force generated when the upper core wrap sheet 7A is torn to be transmitted to the top sheet 8 on the side surfaces of the compressed grooves 20 corresponding to the intersections 20K, thereby preventing the top sheet 8 from tearing. Furthermore, when adhesive portions 21K are arranged on the side surfaces of the compressed grooves 20 corresponding to the intersections 20K, the spread of the tear in the upper core wrap sheet 7A is provided on the side surfaces of the compressed grooves 20. This is suppressed by the adhesive 21 forming the bonded joint 21K.

[0064] Furthermore, the upper-layer core wrap sheet 7A at the intersection 20K is easily torn because it is pulled by the shapes of the grooves 20A and 20B as described above. If the upper-layer core wrap sheet 7A at the intersection 20K is torn, the absorbent core 6C that absorbs excreted liquids such as urine becomes exposed on the non-skin-facing side of the top sheet 8 and absorbs excreted liquids such as urine. Therefore, by providing a non-adhesive portion 21H on the non-skin-facing side of the intersection 20K and forming an air layer, excreted liquids such as urine can be allowed to flow throughout the entire area of ​​the compressed grooves 20.

[0065] 12(B), multiple compressed grooves 20 may be arranged in a hexagonal honeycomb lattice pattern, extending in three directions. In this case, it is preferable to provide non-adhesive portions 21H on the skin-facing side of base portion 20M, which serve as base points from which multiple compressed grooves 20 overlap and extend in different directions. By providing non-adhesive portions 21H on the skin-facing side of base portion 20M, an air layer is formed on the skin-facing side of base portion 20M, making it possible to prevent excreted liquids such as urine from being absorbed by absorbent body 6.

[0066] The distance between the multiple adhesive portions 21K is preferably equal to or smaller than the average particle size of the SAP particles. If the size of the cracks in the upper core wrap sheet 7A is equal to or smaller than the average particle size of the SAP particles contained in the absorbent core 6C, the SAP particles will have difficulty passing through the cracks in the upper core wrap sheet 7A, thereby preventing the SAP particles from leaking out of the top sheet 8. Therefore, the size of the cracks in the upper core wrap sheet 7A is preferably equal to or smaller than the average particle size of the SAP particles. Because the expansion of the cracks in the upper core wrap sheet 7A is prevented by the multiple adhesive portions 21K, if the spacing between the multiple adhesive portions 21K is narrow, the cracks in the upper core wrap sheet 7A will be smaller. Therefore, the distance between the multiple adhesive portions 21K is preferably equal to or smaller than the average particle size of the SAP particles.

[0067] On the other hand, if the spacing between the multiple adhesive regions 21K is narrow, the rate at which moisture inflows into the absorbent core 6C will be slow if a water-impermeable adhesive is used to bond the upper core wrap sheet 7A and the top sheet 8. Furthermore, if the distance between the multiple adhesive regions 21K is short and the average particle diameter of the SAP particles is large, the rate at which moisture inflows into the absorbent core 6C will be slow. If the distance between the multiple adhesive regions 21K is long and the average particle diameter of the SAP particles is small, the rate at which moisture inflows into the absorbent core 6C will be fast. To increase the rate at which moisture inflows into the absorbent core 6C while suppressing leakage of the SAP particles, it is preferable that the average particle diameter of the SAP particles be 200 μm or more and 600 μm or less, and that the average distance between each of the multiple adhesive regions 21K is 0.5 to 3 times the average particle diameter of the SAP particles. For example, in the configuration shown in FIG. 7(A), the average distance between adhesive 21A and adhesive 21B may be 0.5 to 3 times the average particle diameter of the SAP particles. The extending direction of the multiple adhesive portions 21K may be the same as or approximately the same as the fiber orientation direction of the upper layer core wrap sheet 7A, or may be the same as or approximately the same as the extending direction of some of the multiple compressed grooves 20. It is preferable that some or all of the SAP particles are not adhered to the upper layer core wrap sheet 7A.

[0068] In this embodiment, when the upper layer core wrap sheet 7A is viewed in a plane, an example is shown in which the extension direction of the compressed grooves 20 and the extension direction of the adhesive 21 intersect, but this configuration example is not limited to this. For example, when the upper layer core wrap sheet 7A is viewed in a plane, the extension direction of the grooves 20A and the extension direction of the adhesive 21 may be parallel, and the extension direction of the grooves 20B and the extension direction of the adhesive 21 may intersect. When the upper layer core wrap sheet 7A is viewed in a plane, the extension direction of the grooves 20B and the extension direction of the adhesive 21 may intersect, and the extension direction of the grooves 20B and the extension direction of the adhesive 21 may be parallel. When the upper layer core wrap sheet 7A is viewed in a plane, a portion of the compressed grooves 20 and a portion of the adhesive 21 may overlap. When the upper layer core wrap sheet 7A is viewed in a plane, a portion of the grooves 20A and a portion of the adhesive 21 may overlap, and a portion of the grooves 20B and the adhesive 21 may overlap. may overlap with a part of the

[0069] The compressed grooves 20 may be arranged in a grid pattern with a plurality of grooves angled in the longitudinal direction of the absorbent core 6C, and may be arranged so that the continuous direction (stretching direction) of the continuous linear adhesive 21 coincides with the longitudinal direction of the absorbent core 6C. For example, the grid of the plurality of compressed grooves 20 may be inclined at 45 degrees with respect to the longitudinal direction of the absorbent core 6C.

[0070] <Other embodiments> The present invention is applicable not only to tape-type diapers but also to pants-type diapers and absorbent pads.

[0071] The features included in each of the embodiments and modifications thereof disclosed above can be combined with each other. [Explanation of symbols]

[0072] 1. Diapers 1F: Front body area 1B...Inseam area 1R: Back body area 2F Front patch 2L, 2R Tape 3LL, 3LR... Folded line 3BL,3BR··Leakage prevention wall 33L,33R・Fixed part 4. Cover sheet 4SL, 4SR, 9EL, 9ER... Elastic thread 5. Back seat 6. Absorber 6C··Absorbent Core 7. Core wrap sheet 7A··Upper layer core wrap sheet 7B··Lower layer core wrap sheet 7S...Laminated section 8. Top sheet 9L, 9R side seats 9LA,9RA·Fixed area 9LB,9RB··Free end 20. Compression groove 20A,20B·Groove 20K...intersection 20M Base 21. Adhesive 21K...Adhesive part 21N Near the adhesive joint 21H...Non-adhesive part R··Inflow section RF: Urethral opening area RB··Anal region

Claims

1. an absorbent body having an absorbent mat and a first water-permeable sheet disposed on the wearer's skin side of the absorbent mat; a compression groove formed by linearly compressing the absorbent body from the skin side; One or more second water-permeable sheets adhered to the skin side of the first water-permeable sheet; an inflow portion into which the liquid discharged by the wearer flows from the skin side of the second water-permeable sheet; and a non-adhesive portion provided between at least one water-permeable sheet from the first water-permeable sheet arranged in the compression groove extending to the inlet portion to the second water-permeable sheet on the skin side, in which the water-permeable sheets are not adhered to each other. Absorbent articles.

2. The inlet portion is an area corresponding to the wearer's urethral opening or anus. The absorbent article of claim 1.

3. The compression grooves are provided in plurality, The plurality of compression grooves have intersections where they intersect with each other, The non-adhesive portion is provided on the skin side of the intersection portion. The absorbent article according to claim 1 or 2.

4. The compression grooves are provided in plurality, A plurality of the compression grooves overlap each other and have a base portion serving as a base point extending in different directions from each other, The non-adhesive portion is provided on the skin-facing side of the base. The absorbent article according to claim 1 or 2.

5. the second water-permeable sheet is extensible; The extension direction of the second water-permeable sheet is a direction intersecting or perpendicular to the orientation direction of the fibers contained in the first water-permeable sheet, The absorbent article according to claim 1 or 2.

6. The first water-permeable sheet and the second water-permeable sheet are bonded together, and a plurality of adhesive portions are provided between the first water-permeable sheet and the second water-permeable sheet at intervals, The extending direction of at least some of the plurality of adhesive portions is the same as the orientation direction of the fibers contained in the first water-permeable sheet. The absorbent article according to claim 1 or 2.

7. a plurality of adhesive portions provided between the first water-permeable sheet and the second water-permeable sheet at intervals, the adhesive portions being constituted by a continuous line of adhesive that bonds the first water-permeable sheet and the second water-permeable sheet; A part of the adhesive and a plurality of the non-adhesive portions are alternately arranged along the orientation direction of the fibers contained in the first water-permeable sheet. The absorbent article according to claim 1 or 2.

8. When the first water-permeable sheet is viewed in a plane, the adhesive is applied in a spiral shape or a serpentine shape. The absorbent article of claim 7.

9. one of the plurality of adhesive portions and another of the plurality of adhesive portions are disposed adjacent to each other; The absorbent article of claim 7.

10. When the first water-permeable sheet is viewed in a plane, a part of the adhesive of one of the plurality of adhesive portions overlaps with a part of the adhesive of another of the plurality of adhesive portions. The absorbent article of claim 7.

Citation Information

Patent Citations

  • Absorbent article

    JP2019103782A