Absorbent articles

The use of a humectant and thermoplastic elastomer composition on absorbent articles addresses stickiness and discomfort, ensuring a continuous moisturizing effect and comfortable skin feel.

JP7841840B2Active Publication Date: 2026-04-07KAO CORP
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Patent Information

Authority / Receiving Office
JP · JP
Patent Type
Patents
Current Assignee / Owner
Filing Date
2019-12-23
Publication Date
2026-04-07

AI Technical Summary

Technical Problem

Existing absorbent articles with moisturizing compositions suffer from stickiness and discomfort due to the composition's tendency to flow or adhere to the skin, failing to provide a consistent moisturizing effect.

Method used

A moisturizing composition comprising a humectant and a thermoplastic elastomer with specific properties is applied on the skin-facing surface, ensuring the elastomer's elasticity and adhesion provide a continuous moisturizing effect without excessive stickiness.

Benefits of technology

The absorbent article effectively prevents skin stickiness while maintaining a moisturizing sensation, offering a comfortable and effective skin feel.

✦ Generated by Eureka AI based on patent content.

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Abstract

To provide an absorbent article which can sufficiently make a wearer recall a moisture retaining effect while preventing the stickiness of the skin due to a moisturizer.SOLUTION: In an absorbent article according to the present invention, a moisture retaining composition containing a moisturizer and a thermoplastic elastomer is arranged a skin-facing surface, the basis weight of the moisture retaining composition is equal to or less than 5 g / m2, It is preferable that the mass ratio of the moisturizer in the moisture retaining composition is equal to or less than 50 mass%, it is also preferable that the mass ratio of the thermoplastic elastomer in the moisture retaining composition is equal to or greater than 10 mass%, and it is also preferable that the melting point of the moisturizer is between 20°C and 40°C.SELECTED DRAWING: Figure 2
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Description

Technical Field

[0001] The present invention relates to absorbent articles.

Background Art

[0002] For absorbent articles such as disposable diapers, in addition to improving absorption of urine and the like, higher functionality such as prevention of skin trouble is desired. For example, in Patent Document 1, for the purpose of protecting the skin, there is provided an absorbent article including a liquid-permeable body-side liner, an outer cover, and an absorber located between them, and a composition containing an emollient, a thickener, and a plant active ingredient is disposed on the skin-facing surface of the liner.

[0003] Also, in Patent Document 2, an absorbent article containing a gel-like composition on the surface that comes into contact with the wearer's skin surface is disclosed for the purpose of exhibiting an excellent emollient effect. It is described in this document that this gel-like composition contains two kinds of styrenic thermoplastic elastomers having different weight average molecular weights, an aliphatic hydrocarbon oil, and a fatty acid triglyceride.

Prior Art Documents

Patent Documents

[0004]

Patent Document 1

Patent Document 2

Summary of the Invention

Problems to be Solved by the Invention

[0005] However, the absorbent article described in Patent Document 1 contains a fluid composition, which means that the composition may flow away from the predetermined position where it should be held, resulting in a failure to achieve the desired effect. Furthermore, the composition may adhere to the skin, causing the wearer of the absorbent article to perceive discomfort such as stickiness. Additionally, the absorbent article described in Patent Document 2 releases the oily agent easily with light pressure, making it more likely for the wearer to perceive stickiness caused by the oily agent.

[0006] Therefore, the object of the present invention is to provide an absorbent article that prevents stickiness of the skin caused by moisturizers while giving the wearer the impression of a moisturizing effect. [Means for solving the problem]

[0007] The present invention relates to a moisturizing composition comprising a humectant and a thermoplastic elastomer, which is placed on the skin-facing surface. The basis weight of the aforementioned moisturizing composition is 5 g / m². 2 The following absorbent articles are provided. [Effects of the Invention]

[0008] According to the present invention, an absorbent article is provided that prevents stickiness of the skin caused by moisturizers while giving the wearer the impression of a moisturizing effect. [Brief explanation of the drawing]

[0009] [Figure 1] Figure 1 is a schematic plan view showing an example of the arrangement of fibers and moisturizing composition on the skin-facing surface of the absorbent article of the present invention. [Figure 2] Figure 2(a) is a schematic cross-sectional view showing an example of the state of the moisturizing composition and components immediately after coating with a molten moisturizing composition, and Figure 2(b) is a schematic cross-sectional view showing an example of the state of the moisturizing composition and components after the coated moisturizing composition has cooled and solidified. [Modes for carrying out the invention]

[0010] The present invention will now be described below with reference to the drawings, based on preferred embodiments thereof. The absorbent article of the present invention generally has a longitudinal shape having a longitudinal direction corresponding to the direction extending from the ventral side of the wearer through the crotch area to the dorsal side, and a width direction perpendicular thereto. The absorbent article has a crotch area that is positioned in the crotch area of ​​the wearer, and an ventral and dorsal portion that extends in front of and behind it. The crotch area has an excretory portion that is positioned opposite the wearer's excretory area when the absorbent article is worn, and this excretory portion is usually located in or near the center of the longitudinal direction of the absorbent article.

[0011] Absorbent articles generally comprise a surface sheet located on the side facing the wearer's skin, a back sheet located on the side not facing the skin, and an absorbent material interposed between the two sheets. The surface sheet can be a liquid-permeable sheet, such as a nonwoven fabric or a perforated film, and is preferably a fibrous sheet such as a nonwoven fabric. The surface sheet may have an uneven surface on the side facing the skin. For example, multiple protrusions can be formed in a scattered pattern on the side facing the skin of the surface sheet. Alternatively, alternating ridges and grooves extending in one direction can be formed on the side facing the skin of the surface sheet. For such purposes, the surface sheet can also be formed using two or more nonwoven fabrics.

[0012] On the other hand, as the backing sheet, for example, a liquid-permeable sheet, a liquid-impermeable film, or a spunbond-meltblown-spunbond nonwoven fabric can be used. A liquid-impermeable film may be provided with multiple micropores to give it water vapor permeability. To further improve the feel of the absorbent article, a sheet with a good texture, such as a nonwoven fabric, may be laminated to the outer surface of the backing sheet. When a liquid-permeable sheet is used as the backing sheet, the backing sheet can be the same type of sheet used for the surface sheet.

[0013] In this specification, "skin-facing side" refers to the side of an absorbent article that faces the wearer's skin when the absorbent article is worn, i.e., the side that is relatively closer to the wearer's skin. "Non-skin-facing side" refers to the side of an absorbent article that is opposite to the skin-facing side when the absorbent article is worn, i.e., the side that is relatively further away from the wearer's skin. Here, "when worn" means the normal and proper wearing position, i.e., the state in which the correct wearing position of the absorbent article is maintained.

[0014] The absorbent material comprises an absorbent core. The absorbent core is composed of, for example, a stack of hydrophilic fibers such as cellulose including pulp, a mixed stack of hydrophilic fibers and an absorbent polymer, a deposit of an absorbent polymer, or a laminated structure in which an absorbent polymer is supported between two absorbent sheets. The absorbent core may have at least its skin-facing surface covered with a liquid-permeable core wrap sheet, or the entire surface including the skin-facing and non-skin-facing surfaces may be covered with a core wrap sheet. As the core wrap sheet, for example, thin paper made of hydrophilic fibers or a liquid-permeable nonwoven fabric can be used.

[0015] In addition to the surface sheet, back sheet, and absorbent material described above, depending on the specific application of the absorbent article, leak-proof cuffs extending along the longitudinal direction may be provided on both sides along the longitudinal direction on the skin-facing side. Leak-proof cuffs generally have a base end and a free end. The leak-proof cuff has its base end on the skin-facing side of the absorbent article and stands upright from the skin-facing side. The leak-proof cuff is made of a material that is liquid-resistant or water-repellent and breathable. An elastic member made of elastic thread or the like may be provided in an extended state at or near the free end of the leak-proof cuff. When the absorbent article is worn, this elastic member contracts, causing the leak-proof cuff to stand upright toward the wearer's body, effectively preventing liquid discharged onto the surface sheet from leaking outward in the width direction of the absorbent article along the surface sheet.

[0016] The absorbent article may further have an adhesive layer on the non-skin-facing surface. The adhesive layer is used to secure the absorbent article to underwear or another absorbent article when it is worn.

[0017] The absorbent article of the present invention has a moisturizing composition comprising a humectant and a thermoplastic elastomer on its skin-facing surface. Figure 1 schematically shows an example of the arrangement of the moisturizing composition 1 in a fiber sheet constituting the skin-facing surface of the absorbent article. In Figure 1, for the sake of explanation, the space between the constituent fibers of the fiber sheet is expanded, and the moisturizing composition 1 is shown as being distributed substantially uniformly among the fibers. However, this figure is a simplified representation intended to help understand the respective states of the fibers and moisturizing composition 1 constituting the fiber sheet on the skin-facing surface, and differs from the actual arrangement of fibers and moisturizing composition 1 present in the fiber sheet.

[0018] As shown in Figure 1, the moisturizing composition 1 comprises a thermoplastic elastomer 2 and a moisturizing agent 3 dispersed in the elastomer 2. Focusing on a single fiber F that constitutes a fiber sheet arranged on the skin-facing side, the moisturizing composition 1 is arranged to cover part or all of the surface of the fiber F. When the skin-facing surface of the absorbent article is viewed macroscopically, the moisturizing composition 1 may be arranged in a part of the skin-facing surface or in the entire skin-facing surface. When the moisturizing composition 1 is arranged in a part of the skin-facing surface, examples of arrangement patterns for the moisturizing composition 1 include stripes, scattered dots, and checkerboard patterns. From the viewpoint of fully exhibiting the moisturizing effect, it is preferable that the moisturizing composition 1 is arranged on a component that can directly come into contact with the wearer's skin of the absorbent article, and specific examples of such components include a surface sheet and a sheet that forms a leak-proof cuff.

[0019] The thermoplastic elastomer used in this invention is an organic compound with a weight-average molecular weight of 1000 or more, a melt flow rate (MFR) of 0.1 g / 10 min or more, and a Shore A value of 90 or less. The MFR is measured at 230°C and 21.18 N in accordance with JIS K7210. The Shore A value refers to the hardness value measured by a Type A durometer in accordance with JIS K6253.

[0020] The thermoplastic elastomers described above exhibit fluidity when heated above their melting point, and lose fluidity and become elastic solids when cooled below their melting point. Examples of such thermoplastic elastomers include styrene-based elastomers such as SBS (styrene-butadiene-styrene), SIS (styrene-isoprene-styrene), SIBS (styrene-isoprene-butadiene-styrene), and SEBS (styrene-ethylene-butadiene-styrene); olefin-based elastomers obtained by copolymerizing polyolefins such as polyethylene and polypropylene with ethylene-propylene rubber (EPM) or ethylene-propylene-diene rubber (EPDM); ester-based elastomers obtained by copolymerizing polyester structures with polyether structures; urethane-based elastomers (TPU); amide-based elastomers obtained by copolymerizing polyamide structures with polyether structures; and ethylene vinyl acetate copolymer (EVA). These elastomers can be used individually or in combination of two or more. When applying a moisturizing composition containing a thermoplastic elastomer to an object while it is heated, it is preferable to use at least one of styrene-based elastomers and ethylene vinyl acetate copolymer elastomers as the thermoplastic elastomer, in order to enable the fluidity of the moisturizing composition to be realized at a relatively low temperature, thereby improving both the coating efficiency of the moisturizing composition and the production efficiency of absorbent articles.

[0021] The mass ratio of thermoplastic elastomer to the total mass in the moisturizing composition is preferably 10% by mass or more, more preferably 15% by mass or more, and even more preferably 20% by mass or more, from the viewpoint of ensuring that the elastomer component in the coated moisturizing composition is continuously present and effectively reminds the wearer of the moisturizing effect. Furthermore, the mass ratio of thermoplastic elastomer under the same conditions is preferably 60% by mass or less, more preferably 45% by mass or less, and even more preferably 30% by mass or less, from the viewpoint of ensuring that the humectant is easily present on the surface of the coated moisturizing composition and imparts the moisturizing effect of the humectant to the wearer. By including thermoplastic elastomer in such a mass ratio, when the thermoplastic elastomer comes into contact with the wearer's skin of the absorbent article, the appropriate adhesion caused by the elastomer component can effectively remind the wearer of the moisturizing effect.

[0022] In the thermoplastic elastomer used in the present invention, the value of the polarity term of its surface free energy is preferably 3 mN / m or more, more preferably 4 mN / m or more, and even more preferably 5 mN / m or more, from the viewpoint of facilitating the manifestation of attractive interaction between the elastomer and the skin and making it easier to recall the moisturizing effect. Furthermore, the value of the polarity term of the surface free energy of the thermoplastic elastomer is preferably 40 mN / m or less, more preferably 30 mN / m or less, and even more preferably 20 mN / m or less, from the viewpoint of effectively preventing stickiness caused by excessive adhesion of the moisturizer to the skin. With these values, when the thermoplastic elastomer comes into contact with the wearer's skin of the absorbent article, an attractive interaction is manifested between the elastomer and the skin, further enhancing adhesion to the skin, and thus making it possible to more effectively recall the moisturizing effect to the wearer.

[0023] The polarity term of the surface free energy in thermoplastic elastomers changes depending on the ratio of monomer components that make up the elastomer. Generally, the higher the ratio of monomer components that make up the side chains in elastomer molecules such as styrene and vinyl acetate, the higher the value of the polarity term of the surface free energy.

[0024] In the present invention, the value of the polar term of the surface free energy in the thermoplastic elastomer can be determined by the Owens-Wendt method. Specifically, assuming that the surface free energy γ of a substance consists of the sum of a non-polar term γ d and a polar term γ h in this case, in the relationship between the surface free energy γ S of a solid, the surface free energy γ L of a liquid, and the contact angle θ based on Young's equation between the solid and the liquid, the following equations (1) to (3) hold. γ S =γ S d +γ S h ···(1) γ L =γ L d +γ L h ···(2) (γ S d ×γ L d ) 1 / 2 +(γ S h ×γ L h )​​​​​​​​​​​​​​​​​​​​​And are denoted as θ1, and the surface free energy, nonpolar term, polar term, and contact angle of the second known liquid are given by γ, respectively. L2 gamma L2 d gamma L2 h These are denoted as θ². The values ​​used are those at 20°C. (γ S d ×γ L1 d ) 1 / 2 +(γ S h ×γ L1 h ) 1 / 2 =γ L1 (1+cosθ1) / 2 ···(4) (γ S d ×γ L2 d ) 1 / 2 +(γ S h ×γ L2 h ) 1 / 2 =γ L2 (1+cosθ2) / 2 ···(5)

[0026] The melting point of the thermoplastic elastomer used in the present invention is preferably 50°C or higher, more preferably 70°C or higher, preferably 130°C or lower, and even more preferably 110°C or lower. This configuration facilitates the preparation of the moisturizing composition and allows for successful distribution of the moisturizing composition into an absorbent article while maintaining a state of enhanced dispersibility of the humectant. The method for measuring the melting point will be described later.

[0027] The humectants used in the present invention are organic compounds with a melting point of less than 40°C and encompass all substances that have the function of improving the health of the skin, such as softening or supple the skin, lubricating the skin, providing moisture to the skin, moisturizing the skin, and cleansing the skin. Such substances include, for example, polyols such as glycerin, propylene glycol, dipropylene glycol, 1,3-propylene glycol and sorbitol, water-based components such as organic salts such as sodium lactate, sodium hyaluronate and sodium 2-pyrrolidone-5-carboxylate, liquid paraffin, silicone oil, animal and vegetable oils (olive oil, jojoba oil, safflower oil, squalane and squalene, etc.), monoglycerides, diglycerides, triglycerides, aliphatic ethers (myristyl-1,3-dimethylbutyl ether, palmityl-1,3-dimethylbutyl ether, stearyl-1,3-dimethylbutyl ether, palmityl-1,3-methylpropyl ether, stearyl Examples of oily components include those described in Japanese Patent Publication No. 10-509895, No. 10-509896, No. 11-510082, No. 2003-527147, No. 2003-533244, No. 2004-255164, and No. 2012-143543. In addition to these, diamide derivatives described in International Publication No. 00 / 61097 can be used as oily components. Each of the above-mentioned components can be used individually or in combination of two or more.

[0028] Of the humectants mentioned above, it is preferable to use a diamide derivative, more preferable to use a diamide derivative represented by the following formula (I), and even more preferable to use a diamide derivative represented by the following formula (II). By using a diamide derivative as a humectant, the moisture retention capacity and barrier function of the stratum corneum can be improved, suppressing skin irritation and improving the health of the skin. When using a diamide derivative, only one type of diamide derivative compound may be used, or two or more types may be used.

[0029] [ka]

[0030] [ka]

[0031] The mass ratio of the humectant to the total mass in the moisturizing composition is preferably 50% by mass or less, more preferably 40% by mass or less, even more preferably 30% by mass or less, preferably 5% by mass or more, more preferably 10% by mass or more, and even more preferably 15% by mass or more. By including the humectant in such a mass ratio, it is possible to effectively suppress excessive adhesion of the humectant to the skin while applying a sufficient amount of humectant to the wearer's skin to exert a moisturizing effect, resulting in an absorbent article that maintains a good feel against the skin.

[0032] In particular, the melting point of the humectant used in the present invention is preferably 20°C or higher, more preferably 30°C or higher, preferably 40°C or lower, and even more preferably 38°C or lower. This configuration allows for easy dispersion in a thermoplastic elastomer, and the humectant composition can be placed in an absorbent article while maintaining its dispersion.

[0033] The melting points (°C) of thermoplastic elastomers and humectants are defined by measuring the melting peak temperature of each sample (2 mg sample weight) using a differential scanning calorimeter (Seiko Instruments Inc. DSC6200) at a heating rate of 10°C / min. The melting peak temperature is then determined. Additionally, the softening point (°C) is defined as the intermediate glass transition temperature, measured under the same conditions as the melting point, in accordance with JIS 7121, at which molecular flow of the sample component begins. If the melting point of a component cannot be clearly measured using the above method, that component is defined as having "no melting point." In this case, the softening point is used instead of the melting point.

[0034] The moisturizing composition may consist of only two components: a thermoplastic elastomer and a humectant, or it may further contain other components. When preparing the moisturizing composition, it is preferable that the moisturizing composition contains, in addition to the thermoplastic elastomer and the humectant, an organic compound that is solid at 20°C and has a weight-average molecular weight of less than 1000 (hereinafter also referred to as a "solid low molecular weight component"), in order to improve the compatibility between the thermoplastic elastomer and the humectant, improve dispersibility, and facilitate the placement of the moisturizing composition in the absorbent article, thereby improving the manufacturing efficiency of the absorbent article.

[0035] Examples of solid low-molecular-weight components that can be included in a moisturizing composition include higher alcohols such as lauryl alcohol, oleyl alcohol, stearyl alcohol, isostearyl alcohol, behenyl alcohol, and octyldodecanol; mineral waxes such as ozokerite and ceresin; petroleum waxes such as paraffin wax and microcrystalline wax; synthetic hydrocarbon waxes such as Fischer-Tropsch wax and polyethylene wax; plant waxes such as carnauba wax, candelilla wax, rice wax, sunflower wax, and hydrogenated jojoba oil; animal waxes such as beeswax and whale wax; and waxes such as silicone wax, synthetic beeswax, and synthetic wax. These can be used individually or in combination of two or more. Among these, it is preferable to use solid low-molecular-weight components with relatively high melting points, such as higher alcohols like stearyl alcohol and at least one of paraffin wax, as this can effectively suppress stickiness caused by contact between the moisturizing composition and the skin.

[0036] The mass ratio of solid low molecular weight components to the total mass in the moisturizing composition is preferably 20% by mass or more, more preferably 30% by mass or more, even more preferably 40% by mass or more, preferably 80% by mass or less, more preferably 70% by mass or less, and even more preferably 60% by mass or less. By including solid low molecular weight components in such a mass ratio, the compatibility and dispersibility between the moisturizer and the thermoplastic elastomer are enhanced during the preparation of the moisturizing composition, and the adhesion of the elastomer to the skin and the amount of moisturizer adhering to the skin can be appropriately adjusted. As a result, the moisturizing effect can be effectively conveyed to the wearer while maintaining a good feel of the absorbent article against the skin.

[0037] From the viewpoint of achieving both the moisturizing effect of the humectant and the moisturizing effect on the wearer provided by the thermoplastic elastomer, the basis weight of the moisturizing composition is preferably 5 g / m². 2 More preferably 2 g / m 2 More preferably 1 g / m 2 The following is preferable, with the lower the value, but 0.1 g / m 2The above is realistic. Furthermore, when the moisturizing composition is applied intermittently in a macroscopic manner such as stripes or scattered dots, the basis weight of the moisturizing composition in this invention is calculated by defining the "apparent coated area" as a rectangular area encompassing all coated areas where the shortest distance between coated areas of the moisturizing composition is less than 10 mm, and multiplying the mass (g) of the moisturizing composition placed in the apparent coated area by the area (m²) of the apparent coated area. 2 The value obtained by dividing by ) is used.

[0038] The moisturizing composition may contain an antioxidant in addition to the moisturizer, thermoplastic elastomer, and solid low molecular weight component, from the viewpoint of preventing oxidation of the moisturizing composition during its preparation or during the manufacture of absorbent articles. The antioxidant is preferably an ingredient that does not affect the health of the skin; for example, tocopherol acetate, tocopherol nicotinate, etc., can be used. If an antioxidant is included, its content can be preferably 0.3% by mass or less, and more preferably 0.1% by mass, as a percentage of the total mass of the moisturizing composition excluding the antioxidant.

[0039] An absorbent article on which a moisturizing composition containing the above components is placed on the skin-facing surface can fully exhibit the moisturizing effect of the moisturizer to the wearer of the absorbent article. In addition, due to the elasticity and adhesiveness of the thermoplastic elastomer, the moisturizing effect can be sufficiently recalled when the elastomer comes into contact with the wearer's skin. Furthermore, since the basis weight of the moisturizing composition is below a predetermined value, the absorbent article can be kept to a good feel against the skin. According to a preferred embodiment of the present invention, the wearer can be reminded of the moisturizing effect due to the physical properties of the thermoplastic elastomer, and the moisturizer does not adhere excessively to the skin, resulting in an absorbent article with an even better feel against the skin.

[0040] Absorbent articles with a moisturizing composition on the skin-facing surface can be manufactured, for example, by the following method. Specifically, first, a moisturizing agent, a thermoplastic elastomer, and other components such as solid low-molecular-weight components as needed are mixed under heat to prepare a molten moisturizing composition. Next, the moisturizing composition is applied to components such as surface sheets and leak-proof cuffs that are to be placed on the skin-facing surface of the absorbent article. Then, the components coated with the moisturizing composition are assembled together with other components that make up the absorbent article so that they are placed on the skin-facing surface, thereby manufacturing the absorbent article.

[0041] The method for preparing a molten moisturizing composition is not particularly limited and can be carried out using known mixing methods. When preparing the moisturizing composition, it is preferable to heat it at a temperature above the melting point of the moisturizer, thermoplastic elastomer, and other components as needed, and at a temperature that does not cause denaturation or decomposition of each component, in order to obtain a moisturizing composition in which each component is uniformly dispersed.

[0042] For example, as shown in the examples described later, when EVA or SEBS is used as the thermoplastic elastomer, the compound represented by formula (II) above is used as the humectant, and stearyl alcohol or paraffin wax is used as the solid low molecular weight component, it can preferably be prepared by heating at a temperature of 90°C to 180°C.

[0043] Next, the obtained moisturizing composition is applied in a molten state to components such as surface sheets and leak-proof cuffs that are to be placed on the skin-facing surface of the absorbent article. In this step, the moisturizing composition is applied to the components in a fluid state. The method of applying to the components is not particularly limited, and known means such as application by a coater such as a die coater, gravure coater, or slot coater, or application by roll transfer can be used, and the composition can be applied continuously or intermittently to one side of the component. The amount of moisturizing composition applied in this step can be appropriately adjusted so as to fall within the basis weight range described above. When the moisturizing composition in a molten state is applied to one side of the component, the applied moisturizing composition has high viscosity and therefore does not permeate to the other side of the component being coated.

[0044] Immediately after coating with the moisturizing composition, as shown in Figure 2(a), the moisturizer 3 is uniformly dispersed within the thermoplastic elastomer 2 constituting the moisturizing composition 1 and present on the surface of the constituent member M, such as the fiber F. As the coated moisturizing composition 1 cools over time, for example, when the constituent member is transported to a downstream process, the thermoplastic elastomer 2 in the moisturizing composition 1 solidifies into a rubbery solid, and as shown in Figure 2(b), the moisturizer 3 dispersed within the elastomer 2 bleeds out onto the surface of the thermoplastic elastomer 2. In this way, both a region containing the thermoplastic elastomer 2 and a region containing the moisturizer 3 are formed on the first surface 1a of the constituent member M, which is the coated surface of the moisturizing composition 1. In particular, bleed-out of the humectant 3 onto the surface of the thermoplastic elastomer 2 is more likely to occur when using oily and highly polar humectants such as diamide derivatives. Therefore, by using an oily and highly polar humectant, the compatibility between the thermoplastic elastomer 2 and the humectant 3 can be improved during coating, thereby increasing manufacturing efficiency. Furthermore, after cooling and solidification, or when using absorbent articles, it is advantageous in that the moisturizing effect of the thermoplastic elastomer 2 can be more effectively expressed while simultaneously improving the moisturizing effect of the humectant 3 and maintaining a good feel to the skin.

[0045] The only difference between a molten moisturizing composition and a cooled and solidified moisturizing composition is the dispersion state of each component. Since there is virtually no alteration of the moisturizing composition due to heating and cooling, the composition of the molten moisturizing composition and the cooled and solidified moisturizing composition are substantially the same.

[0046] Subsequently, the component M coated with the moisturizing composition 1 is incorporated by joining it with other components constituting the absorbent article to form the absorbent article of the present invention. When incorporating the component M, by ensuring that the first surface 1a, which is the coated surface of the moisturizing composition 1, forms the skin-facing surface, it is possible to obtain an absorbent article that exhibits the moisturizing effect of the moisturizer 3 while maintaining a good feel against the skin, and that also evokes the moisturizing effect of the thermoplastic elastomer 2.

[0047] Absorbent articles having the above configuration include, but are not limited to, unfoldable disposable diapers, pant-type disposable diapers, sanitary napkins, and incontinence pads.

[0048] Although the present invention has been described above based on its preferred embodiments, the present invention is not limited to the above embodiments. [Examples]

[0049] The present invention will be described in more detail below with reference to examples. However, the scope of the present invention is not limited to these examples.

[0050] [Example 1] A molten moisturizing composition was prepared by adding the compound represented by formula (II) above (melting point: 35°C) as a humectant, EVA (Celanese Corporation, Ateva® 2803G, MFR: 3g / 10min, Shore A value: 81, melting point: 75°C, vinyl acetate content: 28% by mass, weight-average molecular weight 1000 or more) as a thermoplastic elastomer, stearyl alcohol (Higher Alcohol Industry Co., Ltd., Stearyl Alcohol NX, melting point: 59°C, weight-average molecular weight 270) and paraffin wax (Nippon Seiro Co., Ltd., Paraffin Wax-155, melting point: 69°C, weight-average molecular weight 674 or less) as solid low molecular weight components, and DL-α-tocopherol acetate (DSM, melting point: -27.5°C, molecular weight 473) as an antioxidant, in the mass ratios shown in Table 1 below, and mixing at 140°C. The antioxidant was mixed based on a mass ratio when the total mass of the humectant, thermoplastic elastomer, and solid low molecular weight component was set to 100% by mass. This moisturizing composition was continuously coated over the entire surface of one side of a liquid-permeable surface sheet made of nonwoven fabric at the basis weight shown in Table 1 below, and cooled at room temperature. Then, the coated surface of moisturizing composition 1 was assembled so that it faced the skin to obtain a disposable diaper. The polarity term value of the surface free energy of the EVA used in this example was 11.8 mN / m.

[0051] [Examples 2-5] Disposable diapers were obtained in the same manner as in Example 1, except that the amount of moisturizing composition applied was changed as shown in Table 1 below.

[0052] [Example 6] Disposable diapers were obtained in the same manner as in Example 2, except that stearyl alcohol was used as the solid low-molecular-weight component.

[0053] [Example 7] Disposable diapers were obtained in the same manner as in Example 2, except that SEBS (manufactured by Kraton Corporation, G1643, melting point: 74°C, MFR: 19 g / 10 min, Shore A value: 52, styrene content: 19 mass%, weight-average molecular weight 1000 or more) was used as the thermoplastic elastomer, and paraffin wax alone was used as the solid low molecular weight component, and mixed in the mass ratios shown in Table 1 below. The polarity term of the surface free energy of the SEBS used in this example was 4.9 mN / m.

[0054] [Comparative Example 1] Disposable diapers were obtained in the same manner as in Example 1, except that a surface sheet without a moisturizing composition coating was used.

[0055] [Comparative Example 2] Only the compound represented by formula (II) above, at 0.5 g / m 2 Disposable diapers were obtained in the same manner as in Example 1, except that a surface sheet coated with the specified basis weight was used.

[0056] [Comparative Example 3] A mixture of the compound represented by formula (II) and a solid low molecular weight component (stearyl alcohol) in the mass ratios shown in Table 1 below is prepared at 0.5 g / m². 2 Disposable diapers were obtained in the same manner as in Example 1, except that a surface sheet coated with the specified basis weight was used.

[0057] [Evaluation of heat retention] The skin-facing surfaces of the absorbent articles in the examples and comparative examples were touched by five adult men and women, and evaluated according to the following scoring criteria. The results of each evaluation are shown in Table 1 below as the sum of the evaluation scores from the five participants. A higher sum of evaluation scores indicates that the product is more likely to evoke a feeling of moisturizing in the wearer.

[0058] <Evaluation Criteria for Heat Retention> 3 points: It provides excellent moisturizing effects and a superior moisturizing feel. Points 2: It evokes a moisturizing effect and provides a good moisturizing sensation. 1 point: I cannot imagine any moisturizing effect.

[0059] [Evaluation of stickiness] Similar to the evaluation of moisturizing sensation described above, the skin-facing side of the surface sheet was touched by five adult men and women and evaluated according to the following scoring criteria. The evaluation results are shown in Table 1 below as the sum of the evaluation scores from the five participants. A higher total evaluation score indicates that the product prevents stickiness caused by moisturizers and has a better feel on the skin.

[0060] <Criteria for evaluating stickiness> 3 points: The texture is equivalent to that of Comparative Example 1. Points 2: The texture is slightly inferior to that of Comparative Example 1, but it is less sticky. 1 point: The texture is equivalent to that of Comparative Example 2.

[0061] [Table 1]

[0062] As shown in Table 1, the absorbent articles of each example, compared to the comparative example, prevent stickiness on the skin caused by moisturizers while still providing a sufficient moisturizing effect to the wearer. [Explanation of symbols]

[0063] 1 Moisturizing composition 2 Thermoplastic elastomers 3. Moisturizer F Fiber M Components 1a First surface (muscle-opposite surface)

Claims

1. A moisturizing composition containing a humectant and a thermoplastic elastomer is coated onto the components that make up the skin-facing surface. The basis weight of the aforementioned moisturizing composition is 0.3 g / m² or more and 1.0 g / m². 2 The following: An absorbent article wherein the thermoplastic elastomer has a melting point of 50°C or higher.

2. The absorbent article according to claim 1, wherein the mass percentage of the humectant in the humectant composition is 50% by mass or less.

3. The absorbent article according to claim 1 or 2, wherein the mass percentage of the thermoplastic elastomer in the moisturizing composition is 10% by mass or more.

4. The absorbent article according to any one of claims 1 to 3, wherein the moisturizing composition further comprises an organic compound that is solid at 20°C and has a weight-average molecular weight of less than 1000.

5. The absorbent article according to any one of claims 1 to 4, wherein the melting point of the humectant is 20°C or higher and 40°C or lower.

6. The absorbent article according to any one of claims 1 to 5, wherein the value of the polarity term of the surface free energy of the thermoplastic elastomer is 3 mN / m or more.

7. The absorbent article according to any one of claims 1 to 6, wherein the mass percentage of the thermoplastic elastomer in the moisturizing composition is 45% by mass or less.

Citation Information

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