Absorbent article manufacturing method and absorbent article manufacturing device
The method of laminating and air-blowing absorbent materials on rotating drums addresses misalignment issues, ensuring proper integration and comfort in absorbent articles by preventing leakage.
Patent Information
- Application Number
- JP2022115859
- Authority / Receiving Office
- JP · JP
- Patent Type
- Patents
- Current Assignee / Owner
- Filing Date
- 2022-07-20
- Publication Date
- 2025-12-09
- Estimated Expiration
- 2042-07-20
AI Technical Summary
Absorbent articles face misalignment issues when manufacturing the absorbent core by pressing a lower-layer and upper-layer absorbent material, leading to potential leakage and discomfort during use.
A manufacturing method involving laminating the lower and upper-layer absorbent materials on rotating forming drums, followed by air blowing to roughen the surfaces before pressing, ensuring proper alignment and integration.
Prevents misalignment of absorbent materials, reducing leakage and enhancing comfort by ensuring effective absorption and fit to the wearer's body shape.
Smart Images

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Abstract
Description
[Technical Field]
[0001] The present invention relates to a method and an apparatus for manufacturing an absorbent article. [Background technology]
[0002] BACKGROUND ART Absorbent articles that absorb liquids such as urine and body fluids are known (for example, Patent Document 1). [Prior art documents] [Patent documents]
[0003] [Patent Document 1] Japanese Patent Application Publication No. 2019-97871 Summary of the Invention [Problem to be solved by the invention]
[0004] Absorbent articles have an absorbent core. The absorbent core is manufactured by pressing a lower-layer absorbent material and an upper-layer absorbent material. If the lower-layer absorbent material and the upper-layer absorbent material are misaligned when pressed, it may be impossible to manufacture the desired absorbent core. The present invention aims to prevent misalignment when the lower-layer absorbent material and the upper-layer absorbent material are pressed. [Means for solving the problem]
[0005] The present invention is a method for manufacturing an absorbent article having an absorbent core in which a lower-layer absorbent material and an upper-layer absorbent material are laminated, and includes a first forming step of forming the lower-layer absorbent material on the surface of a rotatable first forming drum, a second forming step of forming the upper-layer absorbent material on the surface of a rotatable second forming drum, a pressing step of pressing the lower-layer absorbent material peeled off from the surface of the first forming drum and the upper-layer absorbent material peeled off from the surface of the second forming drum, and a blowing step of blowing air onto at least one of the lower-layer absorbent material and the upper-layer absorbent material before the lower-layer absorbent material and the upper-layer absorbent material are pressed by the pressing step. [Effects of the Invention]
[0006] According to the present invention, displacement of the upper and lower absorbent materials when they are pressed is prevented. [Brief explanation of the drawings]
[0007] [Figure 1] FIG. 1 is a plan view of an absorbent pad according to an embodiment. [Figure 2] FIG. 2 is an exploded perspective view of the absorbent pad according to the embodiment. [Figure 3] FIG. 3 is a diagram showing the internal structure of the absorbent pad according to the embodiment. [Figure 4] FIG. 4 is a flowchart showing the steps for manufacturing the absorbent core of the absorbent pad according to the embodiment. [Figure 5] FIG. 5 is a diagram showing an example of an apparatus for manufacturing an absorbent pad. [Figure 6] FIG. 6(A) is a perspective view showing a part of the upper-layer absorbent mat, and FIG. 6(B) is a side view showing a part of the upper-layer absorbent mat. DETAILED DESCRIPTION OF THE INVENTION
[0008] Hereinafter, embodiments of the present invention will be described with reference to the drawings. Note that the configurations of the following embodiments are examples, and the present invention is not limited to the configurations of these embodiments.
[0009] <Embodiment> In this embodiment, a replaceable absorbent pad (an example of the "absorbent article" in this application) The longitudinal direction is the direction connecting the front body, which is placed opposite the wearer's abdomen, and the back body, which is placed opposite the back. The crotch section, which is placed between the front body (one side in the longitudinal direction) and the back body (the other side in the longitudinal direction) (at the center in the longitudinal direction), is connected to and located under the wearer's crotch (facing the crotch). When the absorbent pad is worn by a wearer (hereinafter referred to as the "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. The thickness direction is the direction connecting the skin-facing side and the non-skin-facing side, and the width direction is the direction perpendicular to both the longitudinal direction and the thickness direction. A plan view is defined as a view from the thickness direction.
[0010] FIG. 1 is a plan view of an absorbent pad according to this embodiment. The absorbent pad 1 includes a crotch region 1B, which corresponds to the crotch area covering the wearer's genitals when worn; a front region 1F, located on the abdominal side of the crotch region 1B and corresponding to the wearer's front and waist; and a back region 1R, located on the back side of the crotch region 1B and corresponding to the wearer's back and waist. An absorbent body is incorporated centered around the crotch region 1B. In the front and back regions 1F and 1R, in the absorbent body-free areas in the transverse and longitudinal directions of the absorbent pad, all sheets covering the absorbent body are bonded with a hot-melt adhesive or the like, preventing the inflow of bodily fluids from non-adhesive areas and regulating the position of the absorbent body. The absorbent pad 1 is worn between the underwear and the skin, providing close contact with the wearer's skin. Furthermore, if this absorbent pad 1 is worn inside a tape-type diaper or pants-type diaper, the absorbent pad 1 absorbs excreted liquid, so even if the wearer excretes liquid, only the absorbent pad 1 needs to be replaced and the diaper itself can be reused.
[0011] Furthermore, the absorbent pad 1 is provided with elastic bodies 2L, 2R in areas surrounding the wearer's legs (thighs) to prevent the formation of gaps between the absorbent pad 1 and the wearer's skin that could serve as outflow paths for liquid. The elastic bodies 2L, 2R extend in the longitudinal direction of the absorbent pad 1. Elastic bodies 3BL, 3BR are attached to the ends of side sheets 8L, 8R, which are a pair of side sheets extending more inward in the skin-facing width direction of the absorbent pad 1 than the elastic bodies 2L, 2R, on the center side in the width direction of the absorbent pad 1. When worn, the side sheets 8L, 8R stand up due to the force of the elastic bodies 3BL, 3BR, and become three-dimensional gathers 3L, 3R. The absorbent pad 1 conforms to the wearer's body shape due to the force of the elastic bodies 2L, 2R that function as leg gathers, and adheres closely to the wearer's skin due to the three-dimensional gathers 3L, 3R that stand up due to the force of the elastic bodies 3BL, 3BR, so that bodily fluids discharged from the wearer are absorbed by the absorbent body of the absorbent pad 1 without leaking from the absorbent pad 1. Note that elastic members constituting the elastic bodies 2L, 2R and the elastic bodies 3BL, 3BR can be selected appropriately from rubber threads, band-shaped rubber, etc. Furthermore, the elastic bodies 2L, 2R, 3BL, 3BR may be multiple parallel rubber threads.
[0012] FIG. 2 is an exploded perspective view of the absorbent pad according to this embodiment. The absorbent pad 1 includes side sheets 8L, 8R forming three-dimensional gathers 3L, 3R, a top sheet 7, a back sheet 5, an absorbent body 6, and a cover sheet 4 including elastic bodies 2L, 2R, which are layered in this order from the skin-facing side to the non-skin-facing side. The absorbent body 6 is absent at the front and back body ends of the absorbent pad 1, and all sheets are bonded together. The absorbent body 6 may be rectangular. The sheets may be bonded together using methods such as hot-melt adhesive or ultrasonic welding. The top sheet 7 is an example of a skin-facing sheet in the present disclosure, and the back sheet 5 is an example of a non-skin-facing sheet in the present disclosure.
[0013] The cover sheet 4 is a strong sheet that forms the exterior surface of the absorbent pad 1 and makes it easier to maintain the overall shape of the absorbent pad 1. The cover sheet 4 is generally made of a nonwoven fabric made of synthetic fibers such as polypropylene, polyethylene, polyethylene terephthalate, etc. The cover sheet 4 may be liquid-permeable or liquid-impermeable. In addition, the liquid-impermeable nonwoven fabric may be perforated at multiple locations to provide breathability. In this embodiment, Although the cover sheet 4 is present, the back sheet 5, which will be described later, may also have a shape-retaining effect, and the cover sheet 4 may be omitted. The back sheet 5 is a liquid-impermeable sheet. One example of the back sheet 5 is a film sheet made of a thermoplastic liquid-impermeable resin such as polyethylene film to prevent leakage of discharged liquid. The back sheet 5 is moisture-permeable and gas-permeable, i.e., gas-permeable, to prevent stuffiness when worn.
[0014] The top sheet 7 is placed on the wearer's skin side so as to cover the water-absorbing surface of the absorbent body 6, and is made of a spunbond nonwoven fabric containing thermoplastic resin fibers, an air-through nonwoven fabric, or the like. This top sheet 7 is liquid permeable in part or in whole. Therefore, when the absorbent pad 1 is placed, bodily fluids excreted by the wearer pass through the top sheet 7, which may come into contact with the wearer's skin, into the absorbent body 6, and are absorbed therein. The top sheet 7 may also be hydrophilic. The longitudinal direction of the absorbent pad 1 is the same as the longitudinal directions of the absorbent body 6 and the top sheet 7.
[0015] The back sheet 5, absorbent body 6, and top sheet 7 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 7 are laminated, the longitudinal ends of the back sheet 5, absorbent body 6, and top sheet 7 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 the dorsal sides. Therefore, whether the wearer is lying supine or prone, excreted fluid comes into contact with the absorbent body 6 via the top sheet 7.
[0016] The side sheets 8L, 8R are made of a moisture-permeable but water-impermeable nonwoven fabric. As mentioned above, the side sheets 8L, 8R adhere closely to the skin as three-dimensional gathers 3L, 3R. Therefore, exudates that come into contact with the side sheets 8L, 8R do not leak further in the width direction of the absorbent pad 1, and the moisture contained in the exudates is gradually absorbed by the absorbent body 6. The top sheet 7 is made of a hydrophilic nonwoven fabric that feels pleasant against the skin. It directly receives bodily fluids by coming into contact with the skin and gradually absorbs them into the absorbent body 6. It also prevents backflow of bodily fluids already absorbed by the absorbent body 6. The elastic bodies 2L, 2R are provided at the widthwise ends of the absorbent pad 1, and the contractile force of the elastic bodies 2L, 2R urges the absorbent pad 1 to conform to the wearer's body shape. In other words, the elastic bodies 2L, 2R function as side gathers.
[0017] FIG. 3 is a diagram showing the internal structure of the absorbent pad according to this embodiment. Specifically, it is a cross-sectional view of the absorbent pad 1 of FIG. 1 taken along line AA. The absorbent pad 1 has an absorbent body 6 wrapped in a top sheet 7 provided on the skin-facing side of the absorbent body 6, side sheets 8L and 8R provided on the lateral sides of the absorbent body 6, and a back sheet 5 provided on the non-skin-facing side of the absorbent body 6. The absorbent body 6 has an absorbent core 6C and a core wrap sheet 6W wrapping the absorbent core 6C. The top sheet 7 and the side sheets 8L and 8R are joined at both skin-facing end portions of the top sheet 7, and the side sheets 8L and 8R and the back sheet 5 are joined on the non-skin-facing side. In this way, the sheets wrapping the absorbent body 6 are joined together to form a bag-like space, so the absorbent body 6 does not escape from this bag-like space.
[0018] The absorbent body 6 has a structure in which granular absorbent resin 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 fibers, rayon fibers, or cotton fibers, or short fibers made by hydrophilizing synthetic fibers such as polyethylene, polypropylene, or polyethylene terephthalate. Therefore, in the absorbent body 6, the volume change of the absorbent resin before and after absorbing liquid basically occurs within the short fibers that hold the absorbent resin in the gaps. Therefore, when the entire absorbent body 6 is viewed from above, From an overall perspective, it can be said that the expansion rate of the thickness of the absorbent body 6 that has absorbed the liquid is not as large as the expansion rate of the absorbent resin itself.
[0019] In this disclosure, SAP particles refer to granular resin compositions containing SAP. The term "SAP-containing resin compositions" as used herein encompasses both compositions consisting solely of SAP and compositions containing SAP as the primary 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.
[0020] The absorbent core 6C of the absorbent pad 1 according to this embodiment is formed by stacking multiple absorbent mats. Specifically, the absorbent core 6C includes an upper-layer absorbent mat 6a provided on the wearer's skin side and a lower-layer absorbent mat 6b provided on the wearer's non-skin side. The upper-layer absorbent mat 6a and the lower-layer absorbent mat 6b are stacked such that their stacking surfaces face each other. The stacking surface of the upper-layer absorbent mat 6a is perpendicular to the thickness direction of the upper-layer absorbent mat 6a and faces the non-skin side of the wearer. The stacking surface of the lower-layer absorbent mat 6b is perpendicular to the thickness direction of the lower-layer absorbent mat 6b and faces the wearer's skin side. Therefore, the stacking surface of the upper-layer absorbent mat 6a faces the lower-layer absorbent mat 6b, and the stacking surface of the lower-layer absorbent mat 6b faces the upper-layer absorbent mat 6a. The upper absorbent mat 6a is an example of an upper absorbent material in the present disclosure, and the lower absorbent mat 6b is an example of a lower absorbent material in the present disclosure.
[0021] The upper-layer absorbent mat 6a may be formed by mixing pulp fibers and SAP particles. In this case, when discharged liquid flows into the upper-layer absorbent mat 6a from the top sheet 7 side, the discharged liquid is absorbed by the SAP particles contained in the upper-layer absorbent mat 6a and can be fixed. The lower-layer absorbent mat 6b may be formed by mixing pulp fibers and SAP particles. Furthermore, the lower-layer absorbent mat 6b may be designed so as not to include SAP particles. When the lower-layer absorbent mat 6b does not contain SAP particles, it is formed by molding pulp fibers.
[0022] The upper-layer absorbent mat 6a may have a width equal to or greater than that of the lower-layer absorbent mat 6b across the entire longitudinal region of the absorbent body 6. The lower-layer absorbent mat 6b may have a width equal to or greater than that of the upper-layer absorbent mat 6a across the entire longitudinal region of the absorbent body 6. For example, the upper-layer absorbent mat 6a may be hourglass-shaped, and the lower-layer absorbent mat 6b may be substantially rectangular. The area of the absorbent body 6 into which the most discharged liquid flows is the widthwise center. By making the absorbent core 6C a multi-layer structure in this area, discharged liquid can be absorbed efficiently.
[0023] The crotch region 1B is sandwiched between the wearer's legs, and is therefore subjected to inward compressive pressure in the width direction. On the other hand, the front body region 1F and the back body region 1R are subjected to pressure in the thickness direction of the absorbent body 6 due to the weight of the wearer. To accommodate these pressures, the crotch region 1B of the upper-layer absorbent mat 6a is provided with a constriction.
[0024] SAP particles can absorb and fix discharged liquid, but it takes a certain amount of time to absorb the discharged liquid. The lower-layer absorbent mat 6b temporarily retains and diffuses the discharged liquid that the upper-layer absorbent mat 6a was unable to absorb, allowing the discharged liquid to be absorbed over a wider area of the upper-layer absorbent mat 6a. When SAP particles absorb water and expand, a phenomenon known as core blocking can occur, blocking the flow path of the discharged liquid. However, the lower-layer absorbent mat 6b contains only a small amount of SAP particles, allowing the discharged liquid to move relatively easily within the lower-layer absorbent mat 6b. Therefore, the lower-layer absorbent mat 6b has higher liquid diffusibility than the upper-layer absorbent mat 6a and functions as a diffusion layer for the discharged liquid.
[0025] The absorbent core 6C has SAP layers 11L and 11R disposed between the upper and lower absorbent mats 6a and 6b. The SAP layers 11L and 11R are formed by a collection of SAP particles. As shown in FIG. 3, the SAP layer 11L is disposed on the left side of the absorbent core 6C, and the SAP layer 11R is disposed on the right side of the absorbent core 6C. The SAP layers 11L and 11R may be rectangular, elliptical, or other polygonal in plan view. By providing the SAP layers 11L and 11R between the upper and lower absorbent mats 6a and 6b, the absorbent core 6C can increase its overall absorption capacity of exudate. Alternatively, SAP particles may be dispersed in the widthwise center between the upper and lower absorbent mats 6a and 6b to form a SAP layer having the SAP layers 11L and 11R.
[0026] The SAP layers 11L, 11R are formed, for example, by scattering SAP particles on the lower absorbent mat 6b during the manufacturing process of the absorbent core 6C. The SAP layers 11L, 11R are sandwiched between the upper absorbent mat 6a and the lower absorbent mat 6b. This prevents the SAP particles contained in the SAP layers 11L, 11R from moving even when the absorbent pad 1 moves due to the wearer's movements. Alternatively, an adhesive may be applied to the surface of the lower absorbent mat 6b to adhere the SAP particles to the surface of the lower absorbent mat 6b.
[0027] The core wrap sheet 6W is a thin, liquid-permeable sheet. By wrapping the absorbent core 6C with the core wrap sheet 6W, the SAP of the absorbent core 6C described above is less likely to be mixed with other structures. It also prevents the absorbent core 6C from losing its shape. The core wrap sheet 6W can be formed from a nonwoven fabric or pulp fiber, and tissue paper is an example of pulp fiber. The absorbent body 6 is wrapped in a back sheet 5 and a top sheet 7, and these sheets also help prevent the absorbent body 6 from losing its shape. Therefore, a configuration without the core wrap sheet 6W is also possible. In the configuration shown in Figure 3, the core wrap sheet 6W is composed of two sheets: an upper-layer core wrap sheet 6Wa and a lower-layer core wrap sheet 6Wb. The upper-layer core wrap sheet 6Wa covers the top sheet 7 side, which is the skin-facing side of the absorbent core 6C, and the lower-layer core wrap sheet 6Wb covers the back sheet 5 side, which is the non-skin-facing side of the absorbent core 6C, and the side surfaces of the absorbent core 6C. The upper-layer core wrap sheet 6Wa and the lower-layer core wrap sheet 6Wb are laminated and bonded to each other at both widthwise ends of the skin-facing side of the absorbent core 6C. Therefore, the skin-facing side of the absorbent body 6 is made up of the upper-layer core wrap sheet 6Wa, and the side and non-skin-facing sides of the absorbent body 6 are made up of the lower-layer core wrap sheet 6Wb.
[0028] The lower-layer core wrap sheet 6Wb and the back sheet 5 are bonded together with multiple adhesives HM, such as hot melt adhesive, applied in a generally linear pattern along the longitudinal direction of the absorbent pad 1, forming a bonded region. When viewed in the width direction, the adhesive HM is applied intermittently to form multiple spaced-apart bonded sections, and between the bonded sections, non-bonded regions where no adhesive HM is applied are formed in a generally linear pattern when viewed in the longitudinal direction. Any discharged liquid that penetrates between the lower-layer core wrap sheet 6Wb and the back sheet 5 is retained in the non-bonded regions. When the core wrap sheet is composed of two sheets, the upper-layer core wrap sheet 6Wa and the lower-layer core wrap sheet 6Wb may be made of the same material. The upper-layer core wrap sheet 6Wa and the lower-layer core wrap sheet 6Wb may be, for example, tissue paper. Alternatively, the upper-layer core wrap sheet 6Wa and the lower-layer core wrap sheet 6Wb may be made of different materials.
[0029] Next, a manufacturing method of the absorbent pad 1 according to this embodiment will be described. The manufacturing method of the absorbent pad 1 according to this embodiment is characterized by the process of manufacturing the absorbent core 6C, and hence the process of manufacturing the absorbent core 6C will be described below. FIG. 4 is a flow chart of the process of manufacturing the absorbent core 6C according to this embodiment. First, in step S101, a first forming process is carried out to form the lower absorbent mat 6b. In step S102, a first blowing process is carried out to blow air onto the lower absorbent mat 6b. In step S103, In this step, a spraying step is performed in which SAP particles are sprayed onto the surface of the lower absorbent mat 6b. By spraying the SAP particles onto the surface of the lower absorbent mat 6b, SAP layers 11L and 11R are formed on the surface of the lower absorbent mat 6b.
[0030] In step S104, a second forming step is carried out to form the upper-layer absorbent mat 6a. In step S105, a second blowing step is carried out to blow air onto the upper-layer absorbent mat 6a. In step S106, a pressing step is carried out to press the upper-layer absorbent mat 6a and the lower-layer absorbent mat 6b together with the stacked surfaces of the upper-layer absorbent mat 6a and the lower-layer absorbent mat 6b overlapping each other. The absorbent pad 1 is manufactured using an absorbent core 6C manufactured by pressing the upper-layer absorbent mat 6a and the lower-layer absorbent mat 6b.
[0031] In the manufacturing method of the absorbent pad 1 according to this embodiment, the first and second spraying steps are carried out before the upper and lower absorbent mats 6a, 6b are pressed in the pressing step. However, the manufacturing method of the absorbent pad 1 according to this embodiment is not limited to this, and at least one of the first and second spraying steps may be carried out before the upper and lower absorbent mats 6a, 6b are pressed in the pressing step.
[0032] In step S102, when air is blown onto the layered surface of the lower absorbent mat 6b, the layered surface of the lower absorbent mat 6b becomes rough, and the lower absorbent mat 6b becomes bulky. Roughening the layered surface of the lower absorbent mat 6b increases the fitting force between the lower absorbent mat 6b and the SAP layers 11L, 11R. In addition, in step S105, when air is blown onto the layered surface of the upper absorbent mat 6a, the layered surface of the upper absorbent mat 6a becomes rough, and the upper absorbent mat 6a becomes bulky. Roughening the layered surface of the upper absorbent mat 6a increases the fitting force between the upper absorbent mat 6a and the SAP layers 11L, 11R. The increased fitting force between at least one of the upper and lower absorbent mats 6a and 6b and the SAP layers 11L, 11R further suppresses the movement of SAP particles contained in the SAP layers 11L, 11R during the manufacturing process of the absorbent pad 1. When the manufactured absorbent pad 1 is worn by a wearer and the absorbent pad 1 moves due to the wearer's movements, the movement of the SAP particles contained in the SAP layers 11L, 11R is further suppressed.
[0033] For example, if the stacking surfaces of the upper and lower absorbent mats 6a, 6b are not roughened, there is a possibility that the upper and lower absorbent mats 6a, 6b will become misaligned when they are pressed together. If misalignment occurs when the upper and lower absorbent mats 6a, 6b are pressed together, it will be impossible to manufacture the desired absorbent core 6C, and discharged liquid may leak from the absorbent core 6C or the comfort of wearing the absorbent pad 1 may be impaired. If at least one of the stacking surfaces of the upper and lower absorbent mats 6a, 6b becomes roughened, the fibers of the upper and lower absorbent mats 6a, 6b will be more likely to become entangled with the fibers of the lower absorbent mat 6b when they are stacked together. This increases the fitting force between the upper and lower absorbent mats 6a, 6b, preventing misalignment of the upper and lower absorbent mats 6a, 6b when they are pressed, making it possible to manufacture the desired absorbent core 6C. Misalignment of the upper and lower absorbent mats 6a, 6b is also prevented after the absorbent pad 1 is manufactured. Preventing misalignment of the upper and lower absorbent mats 6a, 6b prevents leakage of exudate from the absorbent core 6C, improving the comfort of wearing the absorbent pad 1. Furthermore, the speed at which exudate moves from the upper and lower absorbent mats 6a to 6b increases, and the amount of exudate that moves also increases.
[0034] Next, the manufacturing method of the absorbent pad 1 according to this embodiment will be described in more detail with reference to Fig. 5. Fig. 5 is a diagram showing an example of a manufacturing apparatus 30 for the absorbent pad 1. The manufacturing apparatus 30 used in the manufacturing method of the absorbent pad 1 includes a conveying path 31, a forming device 32, and an air blowing device. 5. The manufacturing apparatus 30 includes a forming device 32, a SAP spraying device 34, a forming device 35, an air blowing device 36, and a pressing device 37. The forming device 32 includes a forming drum 41 and a supplying device 42. The forming device 35 includes a forming drum 43 and a supplying device 44. The pressing device 37 includes a first roller 45 and a second roller 46. Note that not all of the components of the manufacturing apparatus 30 shown in FIG. 5 are essential, and components of the manufacturing apparatus 30 may be added or deleted as appropriate.
[0035] The transport path 31 is a conveyor that transports the upper absorbent mat 6a and the lower absorbent mat 6b in a predetermined direction. The forming device 32 is a device that forms the lower absorbent mat 6b on the surface of the forming drum 41. The forming drum 41 is a rotating body that can rotate in the direction of arrow R1. The supply device 42 supplies fibers (hereinafter referred to as lower fiber) for forming the lower absorbent mat 6b to the surface (outer circumferential surface) of the forming drum 41. A forming mold for forming the lower fiber into a predetermined shape is provided on the surface of the forming drum 41. The lower absorbent mat 6b is formed on the surface of the forming drum 41 by supplying the lower fiber to the forming mold on the surface of the forming drum 41. The surface of the forming drum 41 may be provided with one forming mold or multiple forming molds. Multiple forming molds may be provided on the surface of the forming drum 41 so that multiple forming molds are lined up in the circumferential direction of the forming drum 41.
[0036] The forming drum 41 has a built-in suction mechanism, which sucks the lower absorbent mat 6b formed on the surface of the forming drum 41. As the forming drum 41 rotates, the suction mechanism stops suctioning when the lower absorbent mat 6b formed on the surface of the forming drum 41 moves near the transport path 31. This causes the lower absorbent mat 6b to peel off from the surface of the forming drum 41 and move from the forming drum 41 to the transport path 31. In other words, the lower absorbent mat 6b is transferred from the forming drum 41 to the transport path 31. In this way, a peeling step is performed in which the lower absorbent mat 6b is peeled off from the surface of the forming drum 41. The peeling step in which the lower absorbent mat 6b is peeled off from the surface of the forming drum 41 is an example of a first peeling step.
[0037] The air blowing device 33 blows air onto the lower absorbent mat 6b. The air blowing device 33 may be an air blower (air supply device) having a tank for storing air and a nozzle for blowing the air stored in the tank onto the lower absorbent mat 6b. The position at which the air is blown may be variable or may be fixed. The air blowing device 33 may be capable of blowing air onto a plurality of positions. The air blowing device 33 may blow air onto the lower absorbent mat 6b for a predetermined period from before the peeling process of the lower absorbent mat 6b is started until the peeling process of the lower absorbent mat 6b is completed.
[0038] The air blowing device 33 may blow air onto the layered surface of the lower absorbent mat 6b while the peeling step of the lower absorbent mat 6b is being performed. In this case, the air blowing device 33 may blow air between the lower absorbent mat 6b and the surface of the forming drum 41. Specifically, air is blown between the layered surface of the lower absorbent mat 6b and the surface of the forming drum 41. The air blowing device 33 may blow air in the direction opposite to the rotation direction of the forming drum 41 (the direction of arrow R1). The air blowing device 33 may blow air onto the end of the lower absorbent mat 6b downstream of the rotation direction of the forming drum 41 by blowing air from the downstream side to the upstream side of the rotation direction of the forming drum 41. This applies a force to the lower absorbent mat 6b in a direction different from the force that peels the lower absorbent mat 6b from the surface of the forming drum 41 toward the conveying path 31. As a result, the lower absorbent mat 6b is easily peeled off from the surface of the forming drum 41 at the end of the lower absorbent mat 6b on the downstream side in the rotation direction of the forming drum 41.
[0039] The air blowing device 33 may blow air onto the layered surface of the lower absorbent mat 6b after the peeling step of the lower absorbent mat 6b has been completed. The air blowing device 33 may blow air onto the layered surface of the lower absorbent mat 6b during the conveying step of conveying the lower absorbent mat 6b peeled from the surface of the forming drum 41. For example, the air blowing device 33 may blow air onto the layered surface of the lower absorbent mat 6b for a predetermined period from when the conveyance of the lower absorbent mat 6b begins until the lower absorbent mat 6b is conveyed below the SAP sprayer 34. The air blowing device 33 may blow air onto the layered surface of the lower absorbent mat 6b during the peeling step of the lower absorbent mat 6b, and then blow air again onto the layered surface of the lower absorbent mat 6b after the peeling step of the lower absorbent mat 6b has been completed. The amount of air blown onto the layered surface of the lower absorbent mat 6b while the peeling process of the lower absorbent mat 6b is being performed may be the same as or different from the amount of air blown onto the layered surface of the lower absorbent mat 6b after the peeling process of the lower absorbent mat 6b has been performed.
[0040] The lower absorbent mat 6b is transported below the SAP sprayer 34. The SAP sprayer 34 sprays SAP particles onto the stacked surface of the lower absorbent mat 6b, forming SAP layers 11L, 11R on the stacked surface of the lower absorbent mat 6b. After the air spraying process onto the stacked surface of the lower absorbent mat 6b, the SAP sprayer 34 sprays SAP particles onto the stacked surface of the lower absorbent mat 6b, forming SAP layers 11L, 11R on the stacked surface of the lower absorbent mat 6b. Because the air spraying process onto the stacked surface of the lower absorbent mat 6b roughens the stacked surface of the lower absorbent mat 6b, the movement of the SAP particles contained in the SAP layers 11L, 11R is further suppressed.
[0041] The SAP sprayer 34 may spray SAP particles onto the area of the stacked surface of the lower absorbent mat 6b onto which the air has been blown. When air is blown onto the entire stacked surface of the lower absorbent mat 6b, the SAP sprayer 34 may spray SAP particles onto the entire stacked surface of the lower absorbent mat 6b. When air is blown onto a partial area of the stacked surface of the lower absorbent mat 6b, the SAP sprayer 34 may spray SAP particles onto a partial area of the stacked surface of the lower absorbent mat 6b.
[0042] The forming device 35 is a device that forms the upper-layer absorbent mat 6a on the surface of the forming drum 43. The forming drum 43 is a rotating body that can rotate in the direction of arrow R2. The supply device 44 supplies fibers (hereinafter referred to as upper-layer fibers) for forming the upper-layer absorbent mat 6a to the surface (outer peripheral surface) of the forming drum 43. A molding die for molding the upper-layer fibers into a predetermined shape is provided on the surface of the forming drum 43, and the upper-layer absorbent mat 6a is formed on the surface of the forming drum 43 by supplying the upper-layer fibers to the molding die on the surface of the forming drum 43. The surface of the forming drum 43 may be provided with one molding die or multiple molding dies. Multiple molding dies may be provided on the surface of the forming drum 43 so that multiple molding dies are lined up in the circumferential direction of the forming drum 43.
[0043] The forming drum 43 has a built-in suction mechanism, which sucks the upper-layer absorbent mat 6a formed on the surface of the forming drum 43. The lower-layer absorbent mat 6b is transported below the forming drum 43, and as the forming drum 43 rotates, the upper-layer absorbent mat 6a formed on the surface of the forming drum 43 moves above the lower-layer absorbent mat 6b, and the suction by the suction mechanism is stopped. As a result, the upper-layer absorbent mat 6a is peeled off from the surface of the forming drum 43, and the upper-layer absorbent mat 6a moves from the forming drum 43 to the conveying path 31 with the layered surface of the upper-layer absorbent mat 6a and the layered surface of the lower-layer absorbent mat 6b overlapping. In other words, the upper-layer absorbent mat 6a is transferred from the forming drum 43 to the conveying path 31. In this way, a peeling step is performed in which the upper-layer absorbent mat 6a is peeled off from the surface of the forming drum 43. The peeling step in which the upper-layer absorbent mat 6a is peeled off from the surface of the forming drum 43 is an example of a second peeling step.
[0044] The air blowing device 36 blows air onto the upper absorbent mat 6a. The air blowing device 36 may be an air blowing device (air supply device) having a tank for storing air and a nozzle for blowing the air stored in the tank onto the upper absorbent mat 6a. The position at which the air is blown may be variable or may be fixed. The air blowing device 36 may be capable of blowing air onto a plurality of positions. The air blowing device 36 may blow air onto the upper absorbent mat 6a for a predetermined period from before the peeling process of the upper absorbent mat 6a is started until the peeling process of the upper absorbent mat 6a is completed.
[0045] The air blowing device 36 may blow air onto the upper-layer absorbent mat 6a while the peeling process of the upper-layer absorbent mat 6a is being performed. The air blowing device 36 may blow air between the upper-layer absorbent mat 6a and the surface of the forming drum 43 while the peeling process of the upper-layer absorbent mat 6a is being performed. Specifically, air is blown between the surface of the upper-layer absorbent mat 6a opposite to the stacked surface and the surface of the forming drum 43. The air blowing device 36 may blow air in the direction opposite to the rotation direction of the forming drum 43 (the direction of arrow R2). The air blowing device 36 may blow air onto the end of the upper-layer absorbent mat 6a downstream of the rotation direction of the forming drum 43 by blowing air from the downstream side to the upstream side of the rotation direction of the forming drum 43. This applies a force to the upper-layer absorbent mat 6a in a direction different from the force that peels the upper-layer absorbent mat 6a from the surface of the forming drum 43 toward the conveying path 31. As a result, the upper absorbent mat 6a is easily peeled off from the surface of the forming drum 43 at the end of the upper absorbent mat 6a on the downstream side in the rotation direction of the forming drum 43.
[0046] The air blowing device 36 may blow air onto the layered surface of the upper-layer absorbent mat 6a for a predetermined period from before the peeling process of the upper-layer absorbent mat 6a is started until the peeling process of the upper-layer absorbent mat 6a is completed. The amount of air blown between the upper-layer absorbent mat 6a and the surface of the forming drum 43 may be the same as or different from the amount of air blown onto the layered surface of the upper-layer absorbent mat 6a.
[0047] The upper and lower absorbent mats 6a and 6b are transported to a press device 37. The press device 37 presses the lower absorbent mat 6b peeled off from the surface of the forming drum 41 and the upper absorbent mat 6a peeled off from the surface of the forming drum 43. The press device 37 presses the upper and lower absorbent mats 6a and 6b with the stacked surfaces of the upper and lower absorbent mats 6a and 6b overlapping. The first roller 45 is a rotating body that can rotate in the direction of arrow R3. The second roller 46 is a rotating body that can rotate in the direction of arrow R4. As the first roller 45 and the second roller 46 rotate, the upper and lower absorbent mats 6a and 6b are pressed by the first roller 45 and the second roller 46. As a result, the upper and lower absorbent mats 6a and 6b are pressed with the stacked surfaces of the upper and lower absorbent mats 6a and 6b overlapping. As described above, by roughening at least one of the stacking surfaces of the upper absorbent mat 6a and the lower absorbent mat 6b, the positional shift of the upper absorbent mat 6a and the lower absorbent mat 6b is prevented when the upper absorbent mat 6a and the lower absorbent mat 6b are pressed.
[0048] A plurality of lower absorbent mats 6b may be formed in a continuous state on the surface of the forming drum 41, and a plurality of upper absorbent mats 6a may be formed in a continuous state on the surface of the forming drum 43. In this case, the upper and lower absorbent mats 6a, 6b are pressed together and then cut to a predetermined size to produce a plurality of absorbent cores 6C. Alternatively, the upper and lower absorbent mats 6a, 6b may be cut to a predetermined size and then pressed together.
[0049] Alternatively, a plurality of lower absorbent mats 6b may be formed discontinuously on the surface of the forming drum 41, and a plurality of upper absorbent mats 6a may be formed discontinuously on the surface of the forming drum 43. This makes it possible to omit the step of cutting the upper absorbent mats 6a and the lower absorbent mats 6b. By forming a plurality of lower absorbent mats 6b discontinuously on the surface of the forming drum 41, each of the plurality of lower absorbent mats 6b can be easily peeled off from the surface of the forming drum 41. By forming a plurality of upper absorbent mats 6a discontinuously on the surface of the forming drum 43, each of the plurality of upper absorbent mats 6a can be easily peeled off from the surface of the forming drum 43.
[0050] The forming device 32, forming drum 41, and supply device 42 arranged on the upstream side of the conveying path 31 may be referred to as a first forming device, a first forming drum, and a first supply device. The forming device 35, forming drum 43, and supply device 44 arranged on the downstream side of the conveying path 31 may be referred to as a second forming device, a second forming drum, and a second supply device.
[0051] Next, the mold provided on the surface of the forming drum 43 will be described. For example, a mold for forming the upper-layer absorbent mat 6a shown in FIG. 6 may be provided on the surface of the forming drum 43. FIG. 6(A) is a perspective view showing a portion of the upper-layer absorbent mat 6a, and FIG. 6(B) is a side view showing a portion of the upper-layer absorbent mat 6a. FIGS. 6(A) and 6(B) show one of both longitudinal end portions of the upper-layer absorbent mat 6a. One of both longitudinal end portions of the upper-layer absorbent mat 6a is the end of the upper-layer absorbent mat 6a on the downstream side in the rotation direction of the forming drum 43. The configuration of the other of both longitudinal end portions of the upper-layer absorbent mat 6a may be the same as the configuration of one of both longitudinal end portions of the upper-layer absorbent mat 6a. The configuration of the upper-layer absorbent mat 6a shown in FIGS. 6(A) and 6(B) can also be applied to the lower-layer absorbent mat 6b. Therefore, a mold for forming a lower absorbent mat 6b having the same structure as the upper absorbent mat 6a shown in FIGS. 6(A) and 6(B) may be provided on the surface of the forming drum 41.
[0052] One of the longitudinal ends of the upper-layer absorbent mat 6a has a first portion 21, which is a pillar portion (thick portion), and a second portion 22, which is a recessed portion recessed deeper than the first portion 21 toward the longitudinal center of the upper-layer absorbent mat 6a. One of the longitudinal ends of the upper-layer absorbent mat 6a may have the first portion 21 and the second portion 22, or both longitudinal ends of the upper-layer absorbent mat 6a may have the first portion 21 and the second portion 22. The second portion 22 is a thin portion thinner than the first portion 21. As shown in FIGS. 6(A) and 6(B), the second portion 22 has a gradient portion (gradient shape) that gradually becomes thinner toward the longitudinal end of the upper-layer absorbent mat 6a. When the upper-layer absorbent mat 6a is formed on the surface of the forming drum 43, the thickness of the second portion 22 gradually becomes thinner toward the downstream side in the rotation direction of the forming drum 43. The sloped surface of the second portion 22 may be a curved surface or an inclined surface. The sloped surface of the second portion 22 is continuous with the surface opposite to the stacked surface of the upper-layer absorbent mat 6a and is also continuous with the side surface of the end of the upper-layer absorbent mat 6a.
[0053] The first portion 21 and the second portion 22 are adjacent to each other along the width direction of the upper-layer absorbent mat 6a. In Figures 6(A) and 6(B), the multiple first portions 21 and the multiple second portions 22 are arranged so as to be alternately adjacent to each other along the width direction of the upper-layer absorbent mat 6a. Therefore, the multiple first portions 21 are arranged intermittently along the width direction of the upper-layer absorbent mat 6a, and the multiple second portions 22 are arranged intermittently along the width direction of the upper-layer absorbent mat 6a. One first portion 21 and one second portion 22 may be arranged so as to be adjacent to each other along the width direction of the upper-layer absorbent mat 6a.
[0054] The surface of the forming drum 43 is provided with a forming die having grooves and protrusions corresponding to the shapes of the first portion 21 and the second portion 22. By supplying the upper layer fibers to the formed mold, an upper layer absorbent mat 6 a having a first portion 21 and a second portion 22 is formed on the surface of the forming drum 43 .
[0055] The second portion 22 is recessed more toward the center in the longitudinal direction of the upper-layer absorbent mat 6a than the first portion 21. Therefore, when air is blown onto the end portion of the upper-layer absorbent mat 6a downstream in the rotation direction of the forming drum 43, air is likely to enter between the upper-layer absorbent mat 6a and the surface of the forming drum 43 from the second portion 22. This causes a force to be applied to the upper-layer absorbent mat 6a in a direction different from the force that pulls the upper-layer absorbent mat 6a from the surface of the forming drum 43 toward the conveying path 31. As a result, the upper-layer absorbent mat 6a is likely to peel off from the surface of the forming drum 43 at the end portion of the upper-layer absorbent mat 6a downstream in the rotation direction of the forming drum 43.
[0056] Providing the first portion 21 at the end of the upper-layer absorbent mat 6a prevents the second portion 22 from being torn when the upper-layer absorbent mat 6a is peeled off from the surface of the forming drum 43. Providing the first portion 21 at the end of the upper-layer absorbent mat 6a makes it possible to control the flow direction of the air blown onto the end of the upper-layer absorbent mat 6a, and enables the air to flow in a concentrated manner between the upper-layer absorbent mat 6a and the surface of the forming drum 43.
[0057] The second portion 22 has a gradient portion that gradually becomes thinner toward the longitudinal end of the upper-layer absorbent mat 6a. The second portion 22 is adjacent to the first portion 21 and functions as a support portion that supports the first portion 21. By making the gradient surface of the second portion 22 a curved or inclined surface, air can more easily enter between the upper-layer absorbent mat 6a and the surface of the forming drum 43 from the second portion 22.
[0058] 6(A) and 6(B), the second portion 22 may have other shapes. The inclined surface of the second portion 22 may be continuous with the surface opposite to the stacked surface of the upper-layer absorbent mat 6a and may also be continuous with the stacked surface of the upper-layer absorbent mat 6a. The second portion 22 may have a stepped portion (stepped shape) that gradually becomes thinner toward the longitudinal end of the upper-layer absorbent mat 6a.
[0059] <Variations> A modified example of this embodiment will now be described. The air blowing device 33 and the air blowing device 36 may be integrated. For example, an air blowing device having the configuration of the air blowing device 33 and the configuration of the air blowing device 36 may blow air onto at least one of the upper-layer absorbent mat 6a and the lower-layer absorbent mat 6b. Furthermore, the air blowing device 33 may blow air onto at least one of the upper-layer absorbent mat 6a and the lower-layer absorbent mat 6b, or the air blowing device 36 may blow air onto at least one of the upper-layer absorbent mat 6a and the lower-layer absorbent mat 6b.
[0060] Although the present embodiment has been described above, the present invention is not limited to the above embodiment. In the above embodiment, an absorbent pad has been described as an example, but the present invention is not limited to this and can also be applied to absorbent articles such as tape-type disposable diapers and pants-type disposable diapers.
[0061] The features included in the embodiments and modifications disclosed above can be combined with each other. [Explanation of symbols]
[0062] 1. Absorbent pad 1B...Inseam area 1F: Front body area 1R: Back area 2L, 2R... Elastic body 3BL, 3BR... Elastic body 3L, 3R: 3D gathers 4. Cover sheet 5. Back seat 6. Absorber 6C··Absorbent Core 6a··Upper layer absorbent mat 6b Lower layer absorbent mat 6W Core Wrap Sheet 6Wa··Upper core wrap sheet 6Wb Lower core wrap sheet 7. Top sheet 8L, 8R side seats HM Hot Melt 11L,11R··SAP layer 21...Part 1 22...Second part 30...Manufacturing equipment 31. Transport path 32,35·forming device 33,36 Air blowing device 34...SAP spraying equipment 37 Press equipment 41,43 Forming drum 42,44·Feeding device 45··First roller 46··Second roller
Claims
1. A method for manufacturing an absorbent article having an absorbent core in which a lower-layer absorbent material and an upper-layer absorbent material are laminated, comprising: a first forming step of forming the lower layer absorbent material on a surface of a rotatable first forming drum; a second forming step of forming the upper layer absorbent material on a surface of a rotatable second forming drum; a pressing step of pressing the lower-layer absorbent material peeled off from the surface of the first forming drum and the upper-layer absorbent material peeled off from the surface of the second forming drum; a blowing step of blowing air onto at least one of the lower-layer absorbent material and the upper-layer absorbent material from outside the first forming drum and the second forming drum before the lower-layer absorbent material and the upper-layer absorbent material are pressed in the pressing step; A method for manufacturing an absorbent article comprising the steps of:
2. a first peeling step of peeling the lower-layer absorbent material from the surface of the first forming drum, the blowing step includes blowing air between the lower-layer absorbent material and the surface of the first forming drum while the first peeling step is being performed. A method for manufacturing the absorbent article according to claim 1.
3. the blowing step includes blowing air onto an end of the lower-layer absorbent material on the downstream side in the rotation direction of the first forming drum by flowing air from the downstream side to the upstream side in the rotation direction of the first forming drum. A method for manufacturing the absorbent article according to claim 2.
4. the end portion of the lower-layer absorbent material on the downstream side in the rotation direction of the first forming drum has a first portion and a second portion that is thinner than the thickness of the first portion of the end portion of the lower-layer absorbent material, a thickness of the second portion of the end portion of the lower-layer absorbent material gradually decreasing toward the downstream side in the rotation direction of the first forming drum; A method for manufacturing an absorbent article according to claim 3.
5. a plurality of the lower-layer absorbent materials are formed in a discontinuous state on the surface of the first forming drum; A method for manufacturing the absorbent article according to claim 2.
6. a second peeling step of peeling the upper-layer absorbent material from the surface of the second forming drum, the blowing step includes blowing air between the upper layer absorbent material and the surface of the second forming drum while the second peeling step is being performed. A method for manufacturing the absorbent article according to claim 1.
7. the blowing step includes blowing air onto an end of the upper-layer absorbent material on the downstream side in the rotation direction of the second forming drum by flowing air from the downstream side to the upstream side in the rotation direction of the second forming drum. The method for manufacturing the absorbent article according to claim 6.
8. the end portion of the upper-layer absorbent material on the downstream side in the rotation direction of the second forming drum has a first portion and a second portion that is thinner than the thickness of the first portion of the end portion of the upper-layer absorbent material, a thickness of the second portion of the end portion of the upper-layer absorbent material gradually decreasing toward the downstream side in the rotation direction of the second forming drum; A method for manufacturing an absorbent article according to claim 7.
9. a plurality of the upper-layer absorbent materials are formed in a discontinuous state on the surface of the second forming drum; The method for manufacturing the absorbent article according to claim 6.
10. the pressing step includes pressing the lower-layer absorbent material and the upper-layer absorbent material together in a state where the stacking surfaces of the lower-layer absorbent material and the upper-layer absorbent material are superimposed on each other; the blowing step includes blowing air onto at least one of the stacking surface of the lower-layer absorbent material and the stacking surface of the upper-layer absorbent material. A method for manufacturing the absorbent article according to any one of claims 1 to 9.
11. a spraying step of spraying particles of SAP, which is a superabsorbent polymer, onto the layered surface of the lower-layer absorbent material peeled off from the surface of the first forming drum, The spraying step is carried out after air is blown onto the layered surface of the lower-layer absorbent material. The method for manufacturing an absorbent article according to claim 10.
12. a conveying step of conveying the lower-layer absorbent material peeled off from the surface of the first forming drum, the blowing step includes blowing air onto the layered surface of the lower-layer absorbent material while the conveying step is being performed. The method for manufacturing an absorbent article according to claim 10.
13. An apparatus for manufacturing an absorbent article having an absorbent core in which a lower-layer absorbent material and an upper-layer absorbent material are laminated, comprising: a first forming device that forms the lower layer absorbent material on a surface of a rotatable first forming drum; a second forming device that forms the upper layer absorbent material on the surface of a rotatable second forming drum; 、 a press device that presses the lower-layer absorbent material peeled off from the surface of the first forming drum and the upper-layer absorbent material peeled off from the surface of the second forming drum; a blowing device that blows air onto at least one of the lower-layer absorbent material and the upper-layer absorbent material from outside the first forming drum and the second forming drum before the lower-layer absorbent material and the upper-layer absorbent material are pressed by the press device; An absorbent article manufacturing apparatus comprising:
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