WO2017219671A1 - Absorbent core with efficient flow guide property and breathability - Google Patents

Absorbent core with efficient flow guide property and breathability Download PDF

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Publication number
WO2017219671A1
WO2017219671A1 PCT/CN2017/072159 CN2017072159W WO2017219671A1 WO 2017219671 A1 WO2017219671 A1 WO 2017219671A1 CN 2017072159 W CN2017072159 W CN 2017072159W WO 2017219671 A1 WO2017219671 A1 WO 2017219671A1
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layer
nonwoven fabric
absorbent core
fabric layer
absorbent
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PCT/CN2017/072159
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French (fr)
Chinese (zh)
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覃叙钧
唐亮
甘益
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湖南康程护理用品有限公司
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Publication of WO2017219671A1 publication Critical patent/WO2017219671A1/en

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    • AHUMAN NECESSITIES
    • A61MEDICAL OR VETERINARY SCIENCE; HYGIENE
    • A61FFILTERS IMPLANTABLE INTO BLOOD VESSELS; PROSTHESES; DEVICES PROVIDING PATENCY TO, OR PREVENTING COLLAPSING OF, TUBULAR STRUCTURES OF THE BODY, e.g. STENTS; ORTHOPAEDIC, NURSING OR CONTRACEPTIVE DEVICES; FOMENTATION; TREATMENT OR PROTECTION OF EYES OR EARS; BANDAGES, DRESSINGS OR ABSORBENT PADS; FIRST-AID KITS
    • A61F13/00Bandages or dressings; Absorbent pads
    • A61F13/15Absorbent pads, e.g. sanitary towels, swabs or tampons for external or internal application to the body; Supporting or fastening means therefor; Tampon applicators
    • A61F13/53Absorbent pads, e.g. sanitary towels, swabs or tampons for external or internal application to the body; Supporting or fastening means therefor; Tampon applicators characterised by the absorbing medium
    • A61F13/534Absorbent pads, e.g. sanitary towels, swabs or tampons for external or internal application to the body; Supporting or fastening means therefor; Tampon applicators characterised by the absorbing medium having an inhomogeneous composition through the thickness of the pad
    • A61F13/537Absorbent pads, e.g. sanitary towels, swabs or tampons for external or internal application to the body; Supporting or fastening means therefor; Tampon applicators characterised by the absorbing medium having an inhomogeneous composition through the thickness of the pad characterised by a layer facilitating or inhibiting flow in one direction or plane, e.g. a wicking layer

Definitions

  • the invention belongs to the field of sanitary articles, and in particular relates to an absorbent core body with high flow conductivity and gas permeability.
  • the currently known absorbent cores for treating human waste can be roughly divided into two types.
  • One is a composite core body, as shown in Fig. 1, generally consisting of two outermost layers of dust-free paper 1, a middle layer nonwoven fabric 2, and two layers of SAP3 (superabsorbent resin).
  • the other is a cotton core body, as shown in Fig. 2, which consists of a dust-free paper 1 or a hydrophilic cloth wrapped with fluff pulp 13 and SAP3.
  • the above-mentioned core body is flat after absorbing liquid, and has a large contact area with the skin, and the amount of SAP that can be added is limited. Adding a large amount of SAP easily causes SAP to slide and has a distinct graininess, and the core body will be formed after the liquid absorption. Layers and slides pile up.
  • this type of core needs to increase the amount of hot melt adhesive when adding a large amount of SAP. Otherwise, a large amount of SAP is easy to move, resulting in uneven distribution, and too much hot melt adhesive will cause absorption speed. With the permeability is significantly reduced, and the hand feels stiff.
  • the two types of cores are flat after aspiration, even if the pattern is pressed on the core, it will be opened after the liquid absorption, so that the surface layer of the product contacts the skin. Large, the surface air of the skin can not fully circulate and form convection, the harmful gas volatilized by the liquid, easy to cause damage to the skin, and induce various skin diseases that are prone to skin.
  • this type of core expands in volume after SAP aspiration, and the particles are mobile. Even if the mesh or streaks are pressed on the absorbent body, the embossing is propped up after the liquid absorption, resulting in the inability to fix the position of the SAP particles. In the case of a slight external force, the SAP in the aspiration part is easily displaced, resulting in local accumulation of agglomerates and other parts of the fault, which not only affects the secondary absorption effect, but also affects the wearing comfort.
  • this type of core generally uses a large amount of fluff pulp. After liquid absorption, most of the liquid is instantaneously captured by the fluff pulp, which is difficult to diffuse to both ends, and it is easy to cause the core to partially expand and bulge into a bag shape.
  • the lock water is not strong, it is easy to cause liquid reverse osmosis, and it is easy to volatilize to damage the skin or affect the skin feel.
  • the present invention aims to provide an absorbent core which is capable of maximizing the flow conductivity and reducing the degree of plasticization of the nonwoven fabric, and which is soft, comfortable, and breathable.
  • an absorbent core having high-efficiency flow conductivity and gas permeability comprising a surface layer, a bottom layer and an absorbing layer between the surface layer and the bottom layer, the absorbing layer comprising the surface of the surface layer a non-woven fabric layer in which a super absorbent resin is uniformly spread in the nonwoven fabric layer;
  • the surface layer and the non-woven layer are laminated to form a composite layer, and the composite layer is provided with a flow guiding groove, the guiding groove dividing the core into a plurality of absorption regions;
  • a composite layer with a flow guiding groove is connected to the upper surface of the bottom layer
  • a highly water-absorptive resin is uniformly spread between the lower surface of the nonwoven fabric layer and the upper surface of the underlayer.
  • the above scheme improves the current planar absorption core into a three-dimensional absorption core, and uses a diversion groove to divide the core into a plurality of pieces, and expands to form a mountain-like shape after the first liquid absorption, and the potential energy of the liquid in the second liquid absorption. Under the action of natural downward flow, the liquid conduction absorption is accelerated, and the secondary absorption speed is effectively improved.
  • the higher protrusion formed after aspiration reduces the contact area of the top layer with the skin and improves the gas permeability.
  • SAP can be placed in a relatively small space to prevent SAP shifts. This makes it possible to add more SAP without using a large amount of hot melt adhesive, and has no graininess.
  • Adding more SAP between the lower surface of the nonwoven layer and the upper surface of the underlayer facilitates multiple absorption of the liquid core.
  • the non-woven fabric layer comprises a first non-woven fabric layer and a second non-woven fabric layer under the first non-woven fabric layer, and the first super-absorbent resin is evenly spread in the first non-woven fabric layer.
  • a second super absorbent resin is uniformly spread in the second nonwoven fabric layer, and a third super absorbent resin is evenly spread between the lower surface and the bottom layer of the second nonwoven fabric layer;
  • An air passage is formed between the first nonwoven fabric layer and the second nonwoven fabric layer.
  • the air passage acts as a ventilation and does not suffocate, and after suctioning, it can provide sufficient expansion space for the SAP.
  • the first, second, and third superabsorbent resins are different in type, and the liquid absorption speeds of the first, second, and third superabsorbent resins are gradually increased, and the liquid absorption speed from top to bottom is slowed down to Fast gradient difference.
  • the different types of SAP are layered in multiple layers, which reduces the pile-like graininess of SAP due to movement. According to the characteristics of SAP, the position and amount of SAP can be selected to adjust the absorption speed of the core as needed. Dryness and the like enhance the designability of the core performance. Thereby, the overall utilization rate of the core body is improved, and the absorption speed of the core body and the multiple liquid absorption effect are remarkably improved.
  • the flow guiding groove is S-shaped or linear.
  • the manner in which the surface layer and the nonwoven fabric layer are bonded together is one or more of hot rolling, ultrasonic bonding, seam sewing, and adhesive bonding.
  • connection between the composite layer with the flow guiding groove and the bottom layer is glue bonding.
  • the flow guiding grooves are made by thermal bonding.
  • the core does not thermally bond the surface layer, the nonwoven layer and the bottom layer, but the composite layer is firstly combined to minimize the plasticization of the nonwoven fabric, increase the softness and comfort, and improve the touch.
  • the design of the flow guiding groove can form a stable air passage on the surface of the core, which accelerates the rapid diffusion of the liquid along the channel and improves the overall utilization of the core.
  • SAP is divided into multiple layers to greatly improve the accommodability of the core, and the middle part of the material adopts the glueless bonding process, so that the overall sizing amount of the core body is significantly reduced, which is more conducive to liquid infiltration and effectively improve the absorption speed. .
  • the SAP layered blank in the core makes the matching form diversified, and can comprehensively design the model and application amount of SAP in each layer from the aspects of water saturation, liquid permeability and reverse osmosis, which greatly improves the core.
  • the core does not use fluff pulp. Most of the liquid is absorbed by SAP at the beginning, and a small part is temporarily stored by fiber non-woven fabric or dry paper, and then all absorbed and locked by SAP. Most of the harmful gases that can be volatilized will volatilize outward through the gas permeable film and the underlying nonwoven fabric, and the volatilization from the surface layer of the absorber is minimal, and the damage to the skin is minimized.
  • FIG. 1 is a structural view of an absorbent core in the prior art.
  • FIG. 2 is a structural view of another absorbent core in the prior art.
  • Figure 3 is a plan view of an absorbent core according to Embodiment 1 of the present invention.
  • Figure 4 is a cross-sectional view showing an absorbent core according to Embodiment 1 of the present invention.
  • Figure 5 is a cross-sectional view showing an absorbent core of Example 2 of the present invention.
  • Figure 6 is a plan view of an absorbent core according to Embodiment 3 of the present invention.
  • an absorbent core having high flow conductivity and gas permeability includes a surface layer 4, a bottom layer 5, and an absorbent layer between the surface layer 4 and the bottom layer 5.
  • the absorbent layer includes a nonwoven fabric layer 6 bonded to the lower surface of the surface layer 4, and a highly water-absorptive resin is uniformly spread in the nonwoven fabric layer 6.
  • the surface layer 4 and the non-woven fabric layer 6 are bonded together to form a composite layer, and the composite layer is provided with an S-shaped flow guiding groove 7, which divides the core into a plurality of absorption regions.
  • the composite layer with the flow guiding grooves 7 is connected to the upper surface of the bottom layer 5.
  • a super absorbent resin is uniformly spread between the lower surface of the nonwoven fabric layer 6 and the upper surface of the underlayer 5.
  • the manner in which the surface layer 4 and the nonwoven fabric layer 6 are bonded together is one or more of hot rolling, ultrasonic bonding, seam sewing, and adhesive bonding.
  • connection between the composite layer with the flow guiding grooves 7 and the bottom layer 5 is adhesively bonded.
  • the flow guiding groove 7 is made by thermal bonding.
  • the diversion groove 7 is used to divide the core into a plurality of pieces, and after the first absorption, the liquid expands to form a mountain-like shape. When the liquid is sucked for the second time, the liquid naturally conducts downward under the action of the gravitational potential energy, thereby accelerating the liquid conduction absorption.
  • SAP can be placed in a relatively small space to prevent SAP shifts. This makes it possible to add more SAP without using a large amount of hot melt adhesive, and has no graininess.
  • More SAP is added between the lower surface of the nonwoven fabric layer 6 and the upper surface of the bottom layer 5, which facilitates multiple absorption of the core.
  • Example 1 is repeated, except that the nonwoven fabric layer 6 includes a first nonwoven fabric layer 61 and a second nonwoven fabric layer 62 located below the first nonwoven fabric layer 61.
  • the first superabsorbent resin 9 is uniformly spread in the first nonwoven fabric layer 61.
  • the second superabsorbent resin 10 is uniformly spread in the second nonwoven fabric layer 62.
  • the third superabsorbent resin 11 is uniformly spread between the lower surface of the second nonwoven fabric layer 62 and the underlayer 5.
  • An air passage 12 is formed between the first nonwoven fabric layer 61 and the second nonwoven fabric layer 62 by a glueless process. Before the liquid is sucked, the air passage acts as a ventilation and does not suffocate, and after suctioning, it can provide sufficient expansion space for the SAP.
  • the first, second, and third superabsorbent resins are different in type, and the liquid absorption speeds of the first, second, and third superabsorbent resins are gradually increased, and the gradient from the top to the bottom is slow to fast. difference.
  • SAP Different types are laid in multiple layers, which reduces the pile-like graininess of SAP due to movement.
  • the position and amount of SAP can be selected to adjust the absorption speed and dryness of the core as needed. Etc., enhances the designability of core performance.
  • Example 1 or 2 is repeated, except that the flow guiding groove 7 is linear.

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Abstract

An absorbent core with efficient flow guide property and breathability, comprising a surface layer (4), a bottom layer (5), and an absorbent layer between the surface layer (4) and the bottom layer (5). The absorbent layer comprises a non-woven fabric layer (6) attached to the lower surface of the surface layer (4); a super absorbent polymer is uniformly scattered in the non-woven fabric layer (6); the surface layer (4) and the non-woven fabric layer (6) are attached to each other to form a composite layer; flow guide grooves (7) are formed on the composite layer and divide the absorbent core into a plurality of absorbent regions; the composite layer possessing the flow guide grooves (7) is connected with the upper surface of the bottom layer (5); a super absorbent polymer is uniformly scattered between the lower surface of the non-woven fabric layer (6) and the upper surface of the bottom layer (5). According to the absorbent core, the plasticization extent of the non-woven fabric (6) can be minimized, the softness and comfort can be enhanced, and the tactile impression can be improved. Super absorbent polymers with different properties are matchedly scattered between layers of the absorbent core, and obvious protrusions would be formed after liquid is absorbed by the absorbent core; the absorbent core feels soft and comfortable and is good in breathability, high in absorbed liquid spreading speed, and small in skin contact area.

Description

一种具备高效导流性与透气性的吸收芯体Absorbing core body with high efficiency of flow conductivity and gas permeability 技术领域Technical field
本发明属于卫生用品领域,具体涉及一种具备高效导流性与透气性的吸收芯体。The invention belongs to the field of sanitary articles, and in particular relates to an absorbent core body with high flow conductivity and gas permeability.
背景技术Background technique
目前已知的处理人体排泄物的吸收芯体大体可分两种。The currently known absorbent cores for treating human waste can be roughly divided into two types.
一种是复合芯体,如图1所示,一般由最外两层无尘纸1,中层无纺布2,以及两层SAP3(高吸水性树脂)组成。One is a composite core body, as shown in Fig. 1, generally consisting of two outermost layers of dust-free paper 1, a middle layer nonwoven fabric 2, and two layers of SAP3 (superabsorbent resin).
另一种是棉芯体,如图2所示,由无尘纸1或亲水布包裹绒毛浆13与SAP3组成。The other is a cotton core body, as shown in Fig. 2, which consists of a dust-free paper 1 or a hydrophilic cloth wrapped with fluff pulp 13 and SAP3.
除了上述常见结构外,也有部分厂家在吸收体结构上做细微的调整,如在图1的结构上再添加一层木浆,以及在图2的棉芯体上用磨轮压花型。In addition to the above-mentioned common structure, some manufacturers make fine adjustments on the structure of the absorber, such as adding a layer of wood pulp to the structure of Fig. 1, and embossing the pattern on the cotton core of Fig. 2 with a grinding wheel.
上述芯体在吸收液体后均为平面状,与皮肤接触面积大,且所能添加的SAP量有限,添加大量SAP容易造成SAP滑动并伴有明显颗粒感,在吸液后将发生芯体分层与滑动成堆。The above-mentioned core body is flat after absorbing liquid, and has a large contact area with the skin, and the amount of SAP that can be added is limited. Adding a large amount of SAP easily causes SAP to slide and has a distinct graininess, and the core body will be formed after the liquid absorption. Layers and slides pile up.
使用以上结构吸收芯体的产品,在实际使用过程中,有以下几种弊端:The products using the above structure to absorb the core have the following drawbacks in actual use:
1.如图1所示,该类型芯体需要添加大量SAP时需要通过加大热熔胶的使用量,否则大量的SAP容易移动,造成分布不均匀,而热熔胶过多将造成吸收速度与透气性明显下降,且手感僵硬。1. As shown in Figure 1, this type of core needs to increase the amount of hot melt adhesive when adding a large amount of SAP. Otherwise, a large amount of SAP is easy to move, resulting in uneven distribution, and too much hot melt adhesive will cause absorption speed. With the permeability is significantly reduced, and the hand feels stiff.
2.如图1、图2所示,该两种类型芯体在吸液后成平面状,即使在芯体上压制花纹也会在吸液之后被撑开,使产品面层与皮肤接触面积大,皮肤表面空气无法充分流通并形成对流,液体挥发出来的有害气体,易对皮肤造成伤害,诱发各种易发皮肤病。2. As shown in Fig. 1 and Fig. 2, the two types of cores are flat after aspiration, even if the pattern is pressed on the core, it will be opened after the liquid absorption, so that the surface layer of the product contacts the skin. Large, the surface air of the skin can not fully circulate and form convection, the harmful gas volatilized by the liquid, easy to cause damage to the skin, and induce various skin diseases that are prone to skin.
3.如图1所示,该类型芯体吸液扩散效果弱,二次吸收速度慢,芯体利用率不高。3. As shown in Fig. 1, the diffusion effect of this type of core is weak, the secondary absorption speed is slow, and the core utilization rate is not high.
4.如图2所示,该类型芯体在SAP吸液后,体积膨胀,颗粒具有可移动性。即使在吸收体上压制了网格或条纹,吸液后也会把压纹撑起,导致无法固定SAP颗粒的位置。稍有外力作用的情况下,吸液部分的SAP很容易移位,导致局部堆积成团而其他部位发生断层情况,不仅影响二次吸液效果,还影响穿着的舒适性。4. As shown in Figure 2, this type of core expands in volume after SAP aspiration, and the particles are mobile. Even if the mesh or streaks are pressed on the absorbent body, the embossing is propped up after the liquid absorption, resulting in the inability to fix the position of the SAP particles. In the case of a slight external force, the SAP in the aspiration part is easily displaced, resulting in local accumulation of agglomerates and other parts of the fault, which not only affects the secondary absorption effect, but also affects the wearing comfort.
5.如图2所示,该类型芯体一般大量使用绒毛浆,吸液后大部分液体被绒毛浆瞬时捕捉,难以向两端扩散,容易造成芯体局部膨胀鼓起成包状。除易造成断层外,锁水不牢,容易造成液体反渗,且易挥发出来损害皮肤或影响皮肤触感。5. As shown in Fig. 2, this type of core generally uses a large amount of fluff pulp. After liquid absorption, most of the liquid is instantaneously captured by the fluff pulp, which is difficult to diffuse to both ends, and it is easy to cause the core to partially expand and bulge into a bag shape. In addition to easy to cause faults, the lock water is not strong, it is easy to cause liquid reverse osmosis, and it is easy to volatilize to damage the skin or affect the skin feel.
发明内容 Summary of the invention
针对上述问题,本发明旨在提供一种能够最大限度提升导流性、降低无纺布塑化程度,柔软舒适、透气性好的吸收芯体。In view of the above problems, the present invention aims to provide an absorbent core which is capable of maximizing the flow conductivity and reducing the degree of plasticization of the nonwoven fabric, and which is soft, comfortable, and breathable.
本发明解决问题的技术方案是:一种具备高效导流性与透气性的吸收芯体,包括表层、底层以及在表层和底层之间的吸收层,所述吸收层包括与表层下表面贴合的无纺布层,无纺布层内均匀撒播有高吸水性树脂;The technical solution to solve the problem of the present invention is: an absorbent core having high-efficiency flow conductivity and gas permeability, comprising a surface layer, a bottom layer and an absorbing layer between the surface layer and the bottom layer, the absorbing layer comprising the surface of the surface layer a non-woven fabric layer in which a super absorbent resin is uniformly spread in the nonwoven fabric layer;
所述表层与无纺布层贴合形成复合层,复合层上设有导流沟槽,该导流沟槽将芯体划分成多块吸收区域;The surface layer and the non-woven layer are laminated to form a composite layer, and the composite layer is provided with a flow guiding groove, the guiding groove dividing the core into a plurality of absorption regions;
带有导流沟槽的复合层与底层上表面连接;a composite layer with a flow guiding groove is connected to the upper surface of the bottom layer;
无纺布层下表面与底层上表面之间均匀撒播有高吸水性树脂。A highly water-absorptive resin is uniformly spread between the lower surface of the nonwoven fabric layer and the upper surface of the underlayer.
上述方案将目前的平面吸收芯体改进为立体吸收芯体,采用导流沟槽将芯体分成多块,第一次吸液后膨胀形成山峰状,第二次吸液时,液体在重力势能作用下自然往下导流,加速了液体传导吸收,有效的提高了二次吸收速度。吸液后形成的更高的凸起减小了面层与皮肤的接触面积,改善了透气性。The above scheme improves the current planar absorption core into a three-dimensional absorption core, and uses a diversion groove to divide the core into a plurality of pieces, and expands to form a mountain-like shape after the first liquid absorption, and the potential energy of the liquid in the second liquid absorption. Under the action of natural downward flow, the liquid conduction absorption is accelerated, and the secondary absorption speed is effectively improved. The higher protrusion formed after aspiration reduces the contact area of the top layer with the skin and improves the gas permeability.
将芯体分成多块的另一个好处就是可以让SAP位于一个相对狭小的空间内,防止SAP移位。使得可以在不大量使用热熔胶的情况下添加更多SAP,且无颗粒感。Another benefit of dividing the core into multiple pieces is that SAP can be placed in a relatively small space to prevent SAP shifts. This makes it possible to add more SAP without using a large amount of hot melt adhesive, and has no graininess.
无纺布层下表面与底层上表面之间添加更多的SAP,有利于液体芯体的多次吸收。Adding more SAP between the lower surface of the nonwoven layer and the upper surface of the underlayer facilitates multiple absorption of the liquid core.
进一步的,所述无纺布层包括第一无纺布层以及位于第一无纺布层下方的第二无纺布层,第一无纺布层内均匀撒播有第一高吸水性树脂,第二无纺布层内均匀撒播有第二高吸水性树脂,第二无纺布层下表面与底层之间均匀撒播有第三高吸水性树脂;Further, the non-woven fabric layer comprises a first non-woven fabric layer and a second non-woven fabric layer under the first non-woven fabric layer, and the first super-absorbent resin is evenly spread in the first non-woven fabric layer. a second super absorbent resin is uniformly spread in the second nonwoven fabric layer, and a third super absorbent resin is evenly spread between the lower surface and the bottom layer of the second nonwoven fabric layer;
所述第一无纺布层与第二无纺布层之间形成有空气通道。An air passage is formed between the first nonwoven fabric layer and the second nonwoven fabric layer.
在没吸液前空气通道起到空气流通穿戴不闷的作用,吸液后能提供给SAP足够的膨胀空间。Before the liquid is sucked, the air passage acts as a ventilation and does not suffocate, and after suctioning, it can provide sufficient expansion space for the SAP.
优选的,所述第一、第二、第三高吸水性树脂型号不同,第一、第二、第三高吸水性树脂吸液速度依次逐渐增强,构成由上至下吸液速度由慢到快的梯度差。所述不同型号的SAP分多层铺设,减少了SAP因移动所产生的成堆颗粒感,可根据SAP的特性来选择SAP所铺放的位置和用量,以根据需要调整芯体的吸收速度、干爽性等,增强了芯体性能的可设计性。从而提高了芯体的整体利用率,并显著提升了芯体的吸收速度与多次吸液效果。Preferably, the first, second, and third superabsorbent resins are different in type, and the liquid absorption speeds of the first, second, and third superabsorbent resins are gradually increased, and the liquid absorption speed from top to bottom is slowed down to Fast gradient difference. The different types of SAP are layered in multiple layers, which reduces the pile-like graininess of SAP due to movement. According to the characteristics of SAP, the position and amount of SAP can be selected to adjust the absorption speed of the core as needed. Dryness and the like enhance the designability of the core performance. Thereby, the overall utilization rate of the core body is improved, and the absorption speed of the core body and the multiple liquid absorption effect are remarkably improved.
具体的,导流沟槽为S形或直线形。Specifically, the flow guiding groove is S-shaped or linear.
所述表层与无纺布层贴合的方式为热轧、超声波粘合、线缝、胶粘合中的一种或几种。The manner in which the surface layer and the nonwoven fabric layer are bonded together is one or more of hot rolling, ultrasonic bonding, seam sewing, and adhesive bonding.
所述带有导流沟槽的复合层与底层之间连接方式为胶粘合。 The connection between the composite layer with the flow guiding groove and the bottom layer is glue bonding.
所述导流沟槽采用热粘合制成。The flow guiding grooves are made by thermal bonding.
本发明的显著效果是:The significant effects of the present invention are:
1.芯体并没有将表层、无纺布层和底层一起热粘合,而是部分层之间先复合,能够最大限度的降低无纺布塑化程度,增加柔软舒适度,改善触感。1. The core does not thermally bond the surface layer, the nonwoven layer and the bottom layer, but the composite layer is firstly combined to minimize the plasticization of the nonwoven fabric, increase the softness and comfort, and improve the touch.
2.导流型沟槽的设计,在芯体表面能形成稳定的空气通道,加速了液体沿通道快速扩散,同时提高了芯体的整体利用率。2. The design of the flow guiding groove can form a stable air passage on the surface of the core, which accelerates the rapid diffusion of the liquid along the channel and improves the overall utilization of the core.
3.SAP分多层下料,使芯体的可容纳性大幅提升,且中间部分材料采用无胶粘合工艺,使芯体整体施胶量明显下降更有利于液体下渗,有效改善吸收速度。3. SAP is divided into multiple layers to greatly improve the accommodability of the core, and the middle part of the material adopts the glueless bonding process, so that the overall sizing amount of the core body is significantly reduced, which is more conducive to liquid infiltration and effectively improve the absorption speed. .
4.芯体中的SAP分层下料使得搭配形式多样化,可以从饱水量、通液性、反渗量等各方面来综合设计各层SAP的型号与施加量,极大的提升了芯体性能的可设计性。4. The SAP layered blank in the core makes the matching form diversified, and can comprehensively design the model and application amount of SAP in each layer from the aspects of water saturation, liquid permeability and reverse osmosis, which greatly improves the core. The designability of body performance.
5.芯体不使用绒毛浆,大部分液体在开始阶段被SAP吸收,少部分被纤维无纺布或干法纸暂存,而后由SAP全部吸收并锁定。能够挥发出来的有害气体,大部分会经过透气薄膜和底层无纺布向外挥发,从吸收体表层挥发出来的微乎其微,对皮肤造成的损害减少到最低程度。5. The core does not use fluff pulp. Most of the liquid is absorbed by SAP at the beginning, and a small part is temporarily stored by fiber non-woven fabric or dry paper, and then all absorbed and locked by SAP. Most of the harmful gases that can be volatilized will volatilize outward through the gas permeable film and the underlying nonwoven fabric, and the volatilization from the surface layer of the absorber is minimal, and the damage to the skin is minimized.
附图说明DRAWINGS
下面结合附图对本发明作进一步说明。The invention will now be further described with reference to the accompanying drawings.
图1为现有技术中一种吸收芯体结构图。1 is a structural view of an absorbent core in the prior art.
图2为现有技术中另一种吸收芯体结构图。2 is a structural view of another absorbent core in the prior art.
图3为本发明实施例1吸收芯体俯视图。Figure 3 is a plan view of an absorbent core according to Embodiment 1 of the present invention.
图4为本发明实施例1吸收芯体截面图。Figure 4 is a cross-sectional view showing an absorbent core according to Embodiment 1 of the present invention.
图5为本发明实施例2吸收芯体截面图。Figure 5 is a cross-sectional view showing an absorbent core of Example 2 of the present invention.
图6为本发明实施例3吸收芯体俯视图。Figure 6 is a plan view of an absorbent core according to Embodiment 3 of the present invention.
图中:1-无尘纸,2-中层无纺布,3-SAP,4-表层,5-底层,6-无纺布层,7-导流沟槽,9-第一高吸水性树脂,10-第二高吸水性树脂,11-第三高吸水性树脂,12-空气通道,13-绒毛浆,61-第一无纺布层,62-第二无纺布层。In the figure: 1-dust-free paper, 2-intermediate nonwoven, 3-SAP, 4-surface, 5-bottom, 6-nonwoven layer, 7-flow trench, 9-first superabsorbent resin , 10 - second super absorbent resin, 11 - third super absorbent resin, 12 - air passage, 13 - fluff pulp, 61 - first nonwoven fabric layer, 62 - second nonwoven fabric layer.
具体实施方式detailed description
实施例1Example 1
如图3~4所示,一种具备高效导流性与透气性的吸收芯体,包括表层4、底层5以及在表层4和底层5之间的吸收层。所述吸收层包括与表层4下表面贴合的无纺布层6,无纺布层6内均匀撒播有高吸水性树脂。 As shown in FIGS. 3 to 4, an absorbent core having high flow conductivity and gas permeability includes a surface layer 4, a bottom layer 5, and an absorbent layer between the surface layer 4 and the bottom layer 5. The absorbent layer includes a nonwoven fabric layer 6 bonded to the lower surface of the surface layer 4, and a highly water-absorptive resin is uniformly spread in the nonwoven fabric layer 6.
所述表层4与无纺布层6贴合形成复合层,复合层上设有S形导流沟槽7,该导流沟槽7将芯体划分成多块吸收区域。The surface layer 4 and the non-woven fabric layer 6 are bonded together to form a composite layer, and the composite layer is provided with an S-shaped flow guiding groove 7, which divides the core into a plurality of absorption regions.
带有导流沟槽7的复合层与底层5上表面连接。The composite layer with the flow guiding grooves 7 is connected to the upper surface of the bottom layer 5.
无纺布层6下表面与底层5上表面之间均匀撒播有高吸水性树脂。A super absorbent resin is uniformly spread between the lower surface of the nonwoven fabric layer 6 and the upper surface of the underlayer 5.
所述表层4与无纺布层6贴合的方式为热轧、超声波粘合、线缝、胶粘合中的一种或几种。The manner in which the surface layer 4 and the nonwoven fabric layer 6 are bonded together is one or more of hot rolling, ultrasonic bonding, seam sewing, and adhesive bonding.
所述带有导流沟槽7的复合层与底层5之间连接方式为胶粘合。所述导流沟槽7采用热粘合制成。The connection between the composite layer with the flow guiding grooves 7 and the bottom layer 5 is adhesively bonded. The flow guiding groove 7 is made by thermal bonding.
采用导流沟槽7将芯体分成多块,第一次吸液后膨胀形成山峰状,第二次吸液时,液体在重力势能作用下自然往下导流,加速了液体传导吸收。The diversion groove 7 is used to divide the core into a plurality of pieces, and after the first absorption, the liquid expands to form a mountain-like shape. When the liquid is sucked for the second time, the liquid naturally conducts downward under the action of the gravitational potential energy, thereby accelerating the liquid conduction absorption.
将芯体分成多块的另一个好处就是可以让SAP位于一个相对狭小的空间内,防止SAP移位。使得可以在不大量使用热熔胶的情况下添加更多SAP,且无颗粒感。Another benefit of dividing the core into multiple pieces is that SAP can be placed in a relatively small space to prevent SAP shifts. This makes it possible to add more SAP without using a large amount of hot melt adhesive, and has no graininess.
无纺布层6下表面与底层5上表面之间添加更多的SAP,有利于芯体的多次吸收。More SAP is added between the lower surface of the nonwoven fabric layer 6 and the upper surface of the bottom layer 5, which facilitates multiple absorption of the core.
实施例2Example 2
如图5所示,重复实施例1,所不同的是:所述无纺布层6包括第一无纺布层61以及位于第一无纺布层61下方的第二无纺布层62。第一无纺布层61内均匀撒播有第一高吸水性树脂9。第二无纺布层62内均匀撒播有第二高吸水性树脂10。第二无纺布层62下表面与底层5之间均匀撒播有第三高吸水性树脂11。As shown in FIG. 5, Example 1 is repeated, except that the nonwoven fabric layer 6 includes a first nonwoven fabric layer 61 and a second nonwoven fabric layer 62 located below the first nonwoven fabric layer 61. The first superabsorbent resin 9 is uniformly spread in the first nonwoven fabric layer 61. The second superabsorbent resin 10 is uniformly spread in the second nonwoven fabric layer 62. The third superabsorbent resin 11 is uniformly spread between the lower surface of the second nonwoven fabric layer 62 and the underlayer 5.
第一无纺布层61与第二无纺布层62之间采用无胶工艺形成有空气通道12。在没吸液前空气通道起到空气流通穿戴不闷的作用,吸液后能提供给SAP足够的膨胀空间。An air passage 12 is formed between the first nonwoven fabric layer 61 and the second nonwoven fabric layer 62 by a glueless process. Before the liquid is sucked, the air passage acts as a ventilation and does not suffocate, and after suctioning, it can provide sufficient expansion space for the SAP.
所述第一、第二、第三高吸水性树脂型号不同,第一、第二、第三高吸水性树脂吸液速度依次逐渐增强,构成由上至下吸液速度由慢到快的梯度差。The first, second, and third superabsorbent resins are different in type, and the liquid absorption speeds of the first, second, and third superabsorbent resins are gradually increased, and the gradient from the top to the bottom is slow to fast. difference.
不同型号的SAP分多层铺设,减少了SAP因移动所产生的成堆颗粒感,可根据SAP的特性来选择SAP所铺放的位置和用量,以根据需要调整芯体的吸收速度、干爽性等,增强了芯体性能的可设计性。Different types of SAP are laid in multiple layers, which reduces the pile-like graininess of SAP due to movement. According to the characteristics of SAP, the position and amount of SAP can be selected to adjust the absorption speed and dryness of the core as needed. Etc., enhances the designability of core performance.
实施例3Example 3
如图6所示,重复实施例1或2,所不同的是,导流沟槽7为直线形。 As shown in Fig. 6, Example 1 or 2 is repeated, except that the flow guiding groove 7 is linear.

Claims (7)

  1. 一种具备高效导流性与透气性的吸收芯体,包括表层(4)、底层(5)以及在表层(4)和底层(5)之间的吸收层,其特征在于:所述吸收层包括与表层(4)下表面贴合的无纺布层(6),无纺布层(6)内均匀撒播有高吸水性树脂;An absorbent core having high flow conductivity and gas permeability, comprising a surface layer (4), a bottom layer (5), and an absorption layer between the surface layer (4) and the bottom layer (5), characterized in that: the absorption layer The nonwoven fabric layer (6) is bonded to the lower surface of the surface layer (4), and the super absorbent resin is uniformly spread in the nonwoven fabric layer (6);
    所述表层(4)与无纺布层(6)贴合形成复合层,复合层上设有导流沟槽(7),该导流沟槽(7)将芯体划分成多块吸收区域;The surface layer (4) is bonded to the non-woven fabric layer (6) to form a composite layer, and the composite layer is provided with a flow guiding groove (7), and the guiding flow groove (7) divides the core into a plurality of absorption regions. ;
    带有导流沟槽(7)的复合层与底层(5)上表面连接;a composite layer with a flow guiding groove (7) is connected to the upper surface of the bottom layer (5);
    无纺布层(6)下表面与底层(5)上表面之间均匀撒播有高吸水性树脂。A highly water-absorptive resin is uniformly spread between the lower surface of the nonwoven fabric layer (6) and the upper surface of the underlayer (5).
  2. 根据权利要求1所述的具备高效导流性与透气性的吸收芯体,其特征在于:所述无纺布层(6)包括第一无纺布层(61)以及位于第一无纺布层(61)下方的第二无纺布层(62),第一无纺布层(61)内均匀撒播有第一高吸水性树脂(9),第二无纺布层(62)内均匀撒播有第二高吸水性树脂(10),第二无纺布层(62)下表面与底层(5)之间均匀撒播有第三高吸水性树脂(11);The absorbent core having high-efficiency flow conductivity and gas permeability according to claim 1, wherein the nonwoven fabric layer (6) comprises a first nonwoven fabric layer (61) and a first nonwoven fabric a second nonwoven fabric layer (62) under the layer (61), the first super absorbent resin (9) is uniformly spread in the first nonwoven fabric layer (61), and the second nonwoven fabric layer (62) is evenly distributed. a second superabsorbent resin (10) is spread, and a third superabsorbent resin (11) is uniformly spread between the lower surface of the second nonwoven fabric layer (62) and the bottom layer (5);
    所述第一无纺布层(61)与第二无纺布层(62)之间形成有空气通道(12)。An air passage (12) is formed between the first nonwoven fabric layer (61) and the second nonwoven fabric layer (62).
  3. 根据权利要求2所述的具备高效导流性与透气性的吸收芯体,其特征在于:第一、第二、第三高吸水性树脂吸液速度依次逐渐增强,构成由上至下吸液速度由慢到快的梯度差。The absorbent core having high-efficiency flow conductivity and gas permeability according to claim 2, wherein the first, second, and third superabsorbent resins have a liquid absorbing rate which is gradually increased to form a top to bottom wicking. The gradient is slow to fast.
  4. 根据权利要求1所述的具备高效导流性与透气性的吸收芯体,其特征在于:导流沟槽(7)为S形或直线形。The absorbent core having high-efficiency flow conductivity and gas permeability according to claim 1, wherein the flow guiding groove (7) is S-shaped or linear.
  5. 根据权利要求1所述的具备高效导流性与透气性的吸收芯体,其特征在于:所述表层(4)与无纺布层(6)贴合的方式为热轧、超声波粘合、线缝、胶粘合中的一种或几种。The absorbent core having high-efficiency flow conductivity and gas permeability according to claim 1, wherein the surface layer (4) and the nonwoven fabric layer (6) are bonded together by hot rolling, ultrasonic bonding, or the like. One or several of seams and glue bonds.
  6. 根据权利要求1所述的具备高效导流性与透气性的吸收芯体,其特征在于:所述带有导流沟槽(7)的复合层与底层(5)之间连接方式为胶粘合。The absorbent core having high-efficiency flow conductivity and gas permeability according to claim 1, wherein the connection between the composite layer with the flow guiding groove (7) and the bottom layer (5) is adhesive. Hehe.
  7. 根据权利要求1所述的具备高效导流性与透气性的吸收芯体,其特征在于:所述导流沟槽(7)采用热粘合制成。 The absorbent core having high flow conductivity and gas permeability according to claim 1, wherein the flow guiding groove (7) is made by thermal bonding.
PCT/CN2017/072159 2016-06-23 2017-01-23 Absorbent core with efficient flow guide property and breathability WO2017219671A1 (en)

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CN108773117A (en) * 2018-08-24 2018-11-09 美佳德科技(无锡)有限公司 A kind of high-efficiency water-absorbing non-woven fabrics
CN114569368A (en) * 2022-03-21 2022-06-03 北京倍舒特妇幼用品有限公司 Carbon fiber medical nursing pad product and preparation method thereof
CN116725777A (en) * 2023-08-09 2023-09-12 露乐健康科技股份有限公司 Breathable core and breathable paper diaper
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CN108403301A (en) * 2018-01-31 2018-08-17 东莞市润葆纸业有限公司 A kind of novel super absorbent resin core material and processing technology
CN108743046A (en) * 2018-05-31 2018-11-06 湖南康程护理用品有限公司 A kind of compound core body and its manufacturing method
CN108773117A (en) * 2018-08-24 2018-11-09 美佳德科技(无锡)有限公司 A kind of high-efficiency water-absorbing non-woven fabrics
CN114569368A (en) * 2022-03-21 2022-06-03 北京倍舒特妇幼用品有限公司 Carbon fiber medical nursing pad product and preparation method thereof
CN116725777A (en) * 2023-08-09 2023-09-12 露乐健康科技股份有限公司 Breathable core and breathable paper diaper
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