CN101646558B - 复合片和采用复合片的吸收性物品 - Google Patents

复合片和采用复合片的吸收性物品 Download PDF

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CN101646558B
CN101646558B CN2008800101306A CN200880010130A CN101646558B CN 101646558 B CN101646558 B CN 101646558B CN 2008800101306 A CN2008800101306 A CN 2008800101306A CN 200880010130 A CN200880010130 A CN 200880010130A CN 101646558 B CN101646558 B CN 101646558B
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composite sheet
mentioned
sheet
nonwoven fabrics
face
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CN101646558A (zh
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川上祐介
阿部耕三
鹭坂三奈子
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Unicharm Corp
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    • 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
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    • 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
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    • A61F13/00Bandages or dressings; Absorbent pads
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    • A61F13/49Absorbent articles specially adapted to be worn around the waist, e.g. diapers
    • A61F13/49007Form-fitting, self-adjusting disposable diapers
    • A61F13/49009Form-fitting, self-adjusting disposable diapers with elastic means
    • A61F13/49011Form-fitting, self-adjusting disposable diapers with elastic means the elastic means is located at the waist region
    • A61F13/49012Form-fitting, self-adjusting disposable diapers with elastic means the elastic means is located at the waist region the elastic means being elastic panels
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    • A61F13/511Topsheet, i.e. the permeable cover or layer facing the skin
    • DTEXTILES; PAPER
    • D04BRAIDING; LACE-MAKING; KNITTING; TRIMMINGS; NON-WOVEN FABRICS
    • D04HMAKING TEXTILE FABRICS, e.g. FROM FIBRES OR FILAMENTARY MATERIAL; FABRICS MADE BY SUCH PROCESSES OR APPARATUS, e.g. FELTS, NON-WOVEN FABRICS; COTTON-WOOL; WADDING ; NON-WOVEN FABRICS FROM STAPLE FIBRES, FILAMENTS OR YARNS, BONDED WITH AT LEAST ONE WEB-LIKE MATERIAL DURING THEIR CONSOLIDATION
    • D04H1/00Non-woven fabrics formed wholly or mainly of staple fibres or like relatively short fibres
    • D04H1/40Non-woven fabrics formed wholly or mainly of staple fibres or like relatively short fibres from fleeces or layers composed of fibres without existing or potential cohesive properties
    • D04H1/58Non-woven fabrics formed wholly or mainly of staple fibres or like relatively short fibres from fleeces or layers composed of fibres without existing or potential cohesive properties by applying, incorporating or activating chemical or thermoplastic bonding agents, e.g. adhesives
    • D04H1/593Non-woven fabrics formed wholly or mainly of staple fibres or like relatively short fibres from fleeces or layers composed of fibres without existing or potential cohesive properties by applying, incorporating or activating chemical or thermoplastic bonding agents, e.g. adhesives to layered webs
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    • B32B5/24Layered products characterised by the non- homogeneity or physical structure, i.e. comprising a fibrous, filamentary, particulate or foam layer; Layered products characterised by having a layer differing constitutionally or physically in different parts characterised by the presence of two or more layers which are next to each other and are fibrous, filamentary, formed of particles or foamed one layer being a fibrous or filamentary layer
    • B32B5/26Layered products characterised by the non- homogeneity or physical structure, i.e. comprising a fibrous, filamentary, particulate or foam layer; Layered products characterised by having a layer differing constitutionally or physically in different parts characterised by the presence of two or more layers which are next to each other and are fibrous, filamentary, formed of particles or foamed one layer being a fibrous or filamentary layer another layer next to it also being fibrous or filamentary
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    • B32B7/04Interconnection of layers
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    • B32B7/04Interconnection of layers
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    • YGENERAL TAGGING OF NEW TECHNOLOGICAL DEVELOPMENTS; GENERAL TAGGING OF CROSS-SECTIONAL TECHNOLOGIES SPANNING OVER SEVERAL SECTIONS OF THE IPC; TECHNICAL SUBJECTS COVERED BY FORMER USPC CROSS-REFERENCE ART COLLECTIONS [XRACs] AND DIGESTS
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  • Health & Medical Sciences (AREA)
  • Engineering & Computer Science (AREA)
  • Vascular Medicine (AREA)
  • Epidemiology (AREA)
  • Biomedical Technology (AREA)
  • Heart & Thoracic Surgery (AREA)
  • Life Sciences & Earth Sciences (AREA)
  • Animal Behavior & Ethology (AREA)
  • General Health & Medical Sciences (AREA)
  • Public Health (AREA)
  • Veterinary Medicine (AREA)
  • Textile Engineering (AREA)
  • Absorbent Articles And Supports Therefor (AREA)
  • Laminated Bodies (AREA)
  • Nonwoven Fabrics (AREA)

Abstract

本发明提供用于一次性尿布等的吸收性物品时、相对于肌肤面的舒适性高的复合片。该复合片(1)是用粘接剂(4)将伸缩性无纺布(2)与非伸缩性片(3)粘接而形成的片。伸缩性无纺布(2)在伸长了的状态下与非伸缩性片粘接。该复合片(1)的接触面积率为65%以上,并且,透气阻值为0.20KPa·s/m以下。由于满足该物性值,作为一次性尿布等的吸收性物品的构成部件使用时,吸汗性和透气性好。

Description

复合片和采用复合片的吸收性物品
技术领域
本发明涉及复合片和采用该复合片的吸收性物品。
背景技术
在一次性尿布等的吸收性物品中,要求使穿着者没有不适感,并且,要求能随着穿着时或穿着中的身体动作而伸缩,为此,采用将无纺布、弹性部件组合起来的各种构成部件。
为了提高吸收性物品在穿着时的舒适性,例如提高透气性、吸汗性,对这些构成部件作了各种改进。
例如,日本特开2000-189454号公报(下面称为专利文献1)中公开了一种一次性尿布,其目的是提高一次性尿布的腰带区域的透气性和吸汗性,形成在腰带域的端翼是可透气的,同时,在该端翼的内面,配置了透气性吸汗片。
发明内容
在专利文献1中,在配置了透气性吸汗片的端翼上,安装了在腰围方向弹性伸缩的线状弹性部件。该弹性部件呈线状且只在腰围方向伸缩,所以,透气性吸汗片也与其一起连动、不规则地收缩,结果,该片与肌肤的接触面积减小。因此,热、汗容易积存在透气性吸汗片与肌肤之间,穿着时不舒服。另外,线状的弹性部件局部地施加线压,对肌肤有较强的物理性刺激,舒适性差。
为了保证在穿着一次性尿布时的舒适性,同时满足以下2个条件是很重要的,(1)减少对肌肤的物理性刺激,(2)适度地保持肌肤的湿润状态(确保适度的吸汗性和透气性)。但是,在已往的构成部件中,尤其是条件(2)不能满足。
本发明的目的是提供一种复合片,该复合片在用于一次性尿布等的吸收性物品时,热和汗不积存,另外,也可减少对肌肤的物理性刺激,结果,穿着时肌肤面的舒适感好。
本发明者们,着眼于将伸缩性无纺布以伸长的状态、局部地与非伸缩性片接合而形成的伸缩性复合片。新发现在该构造中,穿着时相对于肌肤面的舒适性与复合片对肌肤的接触面积率和透气性有关,通过调节该接触面积率和透气性,在穿着时,热和汗不会积存,也可消除所谓发粘的感觉。即,通过使复合片具有预定范围的接触面积率和透气性,可以满足上述(2)的适度保持肌肤湿润状态的条件(确保适度的吸汗性和透气性)。
另外,根据本发明,复合片自身整体具有很好的伸缩性,即使没有弹性部件,也能作为包含腰围折皱部的一次性尿布的构成部件。因此,根据需要可以满足上述(1)的减少对肌肤的物理性刺激的条件。
具体地说,本发明提供以下的物品。
(1).复合片,是将伸缩性无纺布以伸长的状态贴合在非伸缩性片上而形成的,上述复合片的任一个面中的、135%伸长时及170%伸长时的接触面积率都在65%以上;上述复合片的150%伸长时的透气阻值在0.20KPa·s/m以下。(这里,接触面积率,是将水性涂料涂敷在上述伸长状态的复合片的一个面上,将滤纸重叠在该面上,在250g的加载下保持10秒钟后转移到滤纸上的水性涂料的面积比例。)
(2).在(1)记载的复合片中,上述伸缩性无纺布在两面连续地交替形成了若干个带状疏区域和若干个带状密区域,一个面上的带状密区域和另一个面上的带状密区域交替地形成。
(3).在(1)或(2)记载的复合片中,上述非伸缩性片和上述伸缩性无纺布用粘接剂贴合在一起。
(4).在(1)至(3)中任一项记载的复合片中,上述复合片的伸缩性无纺布面中的上述接触面积率为80%以上。
(5).在(1)至(4)中任一项记载的复合片中,上述复合片的150%伸长时的结露量为7g/m2以下。(这里,结露量,是将复合片与40℃的水面相向配置,在20℃×60%RH的环境下放置一小时后,该相向面上附着的水分量。)
(6).在(1)至(5)中任一项记载的复合片中,上述复合片的150%伸长时的蒸发率为65%以上。
(7).在(1)至(6)中任一项记载的复合片中,上述复合片的150%伸长时的透湿度为3000g/m2·24小时·atom以上。
(8).在(1)至(7)中任一项记载的复合片中,上述伸缩性无纺布至少包含部分地拉伸了的热可塑性纤维、和不同于上述热可塑性纤维的弹性体纤维。
(9).在(1)至(8)中任一项记载的复合片中,上述伸缩性无纺布中的上述弹性体纤维和上述热可塑性纤维以80∶20~25∶75的比例混合。
(10).在(1)至(9)中任一项记载的复合片中,上述非伸缩性片粘贴在上述伸缩性无纺布的两面,
(11).吸收性物品,至少备有吸收体、和(1)至(10)中任一项记载的复合片,上述复合片配置在该吸收性物品被穿着时的肌肤相接面侧。
(12).在(11)中记载的吸收性物品中,具有长度方向和与该长度方向垂直的宽度方向,并备有上述吸收体和上述复合片,上述吸收体是沿着上述长度方向配置的大致纵长状,上述复合片具有朝向形成在上述宽度方向两边的内侧呈U字形的切入部,上述宽度方向是上述伸长方向。
(13).在(12)中记载的吸收性物品中,上述伸缩性无纺布面配置在肌肤相接面侧。
(14).复合片,包含有在吸收性物品被穿着时配置在肌肤相接面侧的伸缩性无纺布,上述复合片的任一个面中的、135%伸长时及170%伸长时的接触面积率都在65%以上,上述复合片的150%伸长时的透气阻值在0.20KPa·s/m以下。(这里,接触面积率,是将水性涂料涂敷在上述伸长状态的复合片的一个面上,将滤纸重叠在该面上,在250g的加载下保持10秒钟后,转移到滤纸上的水性涂料的面积比例。)
根据本发明提供的复合片,是将伸缩性无纺布在伸长的状态下用热熔性粘接剂粘接到非伸缩性片上而形成的,该复合片具有预定范围的接触面积率和透气性,穿着时,热和汗不会积存,也可消除所谓发粘的感觉。
附图说明
图1是本发明的复合片的立体图。
图2是图1中X-X方向的剖面放大图。
图3是本发明中的伸缩性无纺布的立体图。
图4是对本发明的伸缩性无纺布坯料实施齿轮拉伸加工、形成伸缩性无纺的示意图。
图5是说明本发明的复合片的制造方法的图。
图6是表示本发明的复合片的另一实施方式的剖面放大图。
图7A是表示将本发明的复合片的非伸缩性片面与肌肤面密接的状态的示意图。
图7B是表示将本发明的复合片的非伸缩性片面与肌肤面密接的状态的示意图。
图8A是表示将本发明的复合片的伸缩无纺布面与肌肤面密接的状态的示意图。
图8B是表示将本发明的复合片的伸缩无纺布面与肌肤面密接的状态的示意图。
图9A是使已往的复合片与肌肤面密接的状态的示意图。
图9B是使已往的复合片与肌肤面密接的状态的示意图。
图10是表示使用本发明的复合片的吸收性物品的一个例子、即一次性尿布的正面图。
图11是本发明的一次性尿布的展开图。
具体实施方式
下面,先说明本发明的复合片的构造,接着说明该复合片应具有的预定物性,最后说明采用该复合片的吸收性物品
[复合片的构造]
图1是表示本发明的复合片的一实施方式的立体图。图2是图1中X-X方向的剖面放大图。如图1和图2所示,本发明的复合片1是用粘接剂4把伸缩性无纺布2和非伸缩性片3粘接起来的片。具体地说,复合片1是将伸缩性无纺布2在其伸长的状态与非伸缩性片3贴合而成的。
将粘接剂4以一定间隔呈带状地涂敷在非伸缩性片3上,再贴合到伸长状态的伸缩性无纺布2上,这样形成了复合片1。因此,当伸缩性无纺布2的伸长状态解除时,非伸缩性片3依照涂敷了粘接剂4的粘接图案被粘接,同时,未粘接的部分松弛,规则地形成了若干个折皱。另外,本发明中的粘接剂的涂敷并不限定于该实施方式这样的间歇式涂敷,也可以全面地涂敷。
图3是伸缩性无纺布2的立体图。如图3所示,伸缩性无纺布2是弹性体纤维和可拉伸的热可塑性纤维随机配置而形成的无纺布。另外,作为本发明的伸缩性无纺布一例的伸缩性无纺布2,在制造无纺布时的设备的制造流程方向(MD:设备方向),用后述的齿轮加工,在两面交替地形成了若干个带状疏区域即疏区域21和若干个带状密区域即密区域22。一个面上的若干个密区域22与另一个面上的若干个密区域22在复合片1的制造流程方向(MD)交替地形成。
伸缩性无纺布2中采用的可拉伸的热可塑性纤维,例如可使用聚烯烃、聚酯系的纤维。具体地说,可使用聚丙烯、聚乙烯、聚对苯二甲酸乙二醇酯、聚对苯二甲酸丁二醇酯。另外,伸缩性无纺布2中采用的弹性体纤维,例如可使用氨基甲酸乙酯系、聚苯乙烯、橡胶系等的纤维。具体地说,可使用聚氨酯等。
可拉伸的热可塑性纤维和弹性体纤维的混合率(重量比)例如可以是80∶20~25∶75。如果可拉伸的热可塑性纤维的混合率大于80%,则有时伸缩性无纺布2的变形大,反之,如果弹性体纤维的混合率大于75%,则有时手感发粘。另外,热可塑性纤维和弹性体纤维的平均纤维径,优选是10~35μm。另外,热可塑性纤维和弹性体纤维随机地混纤。
为了使复合片1具有所需的强度,伸缩性无纺布2在松弛时的单位面积重量优选是20~100g/m2。可拉伸的热可塑性纤维在松弛时的单位面积重量优选是4~60g/m2。弹性体纤维的单位面积重量优选是5~70g/m2
图4是说明对伸缩性无纺布坯料实施齿轮拉伸加工状态的图。伸缩性无纺布坯料5被一对赋形辊10、10挤压,使可拉伸的热可塑性纤维伸长,并且,利用弹性体纤维的伸缩性,对伸缩性无纺布坯料5付与伸缩性。该拉伸加工方式并不限定于上述的齿轮加工,也可以用其它的辊拉伸加工等进行。
非伸缩性片3,可根据需要而适当变更,例如,可以使用纺粘型无纺布、熔喷型无纺布、热辊型无纺布、将纺粘型无纺布与熔喷型无纺布组合起来的SMS无纺布、热风型无纺布、射流喷网型无纺布、气流成网型无纺布等公知的各种无纺布。非伸缩性片3的单位面积重量优选是10~50g/m2
复合片1是用粘接剂4将伸缩性无纺布2和非伸缩性片3粘接而成的。所用的粘接剂4例如优选是热熔性粘接剂。复合片1,是把伸缩性无纺布2在其伸长的状态用粘接剂4粘接在非伸缩性片3上而形成的。相邻的热熔粘接部之间的间隔在15mm以内,优选在10mm以内。另外,粘接剂4的单位面积重量优选是0.5~15g/m2
图5是表示复合片1的制造方法之一例的图。首先,抽出卷绕在坯料卷轴31上的、齿轮拉伸加工前的伸缩性无纺布坯料5。接着,将伸缩性无纺布坯料5插入一对带齿辊32之间,进行齿轮拉伸加工。这样,伸缩性无纺布坯料5成为具有伸缩性的伸缩性无纺布2。然后,该具有伸缩性的伸缩性无纺布2被辊34、35拉伸,再通过夹持辊39之间。另一方面,卷绕在坯料卷轴37上的非伸缩性片3,用粘接剂涂敷装置38在其预定区域上涂敷了热熔性粘接剂,使其通过一对夹持辊39之间。伸缩性无纺布2和非伸缩性片3同时通过夹持辊39而贴合在一起。然后,解除伸缩性无纺布2和非伸缩性片3的伸长状态,可得到复合片1。这样得到的复合片1的伸长率优选在150%以上、350%以下,厚度在1mm以上、4mm以下。
另外,本发明的复合片并不限定于上述那样的、伸缩性无纺布2和非伸缩性片3的两层构造。例如,也可以如图6所示那样,是非伸缩性片3/伸缩性无纺布2/非伸缩性片3的三层构造。
[复合片的物性]
<接触面积率>
在本发明中,上述复合片1的任一面中的、135%伸长时及170%伸长时的接触面积率都在65%以上。优选该值为80%以上,在90%以上则更好。另外,上限优选在99%以下。
该接触面积率的概念,是将复合片用于肌肤接触面时、把对肌肤的接触率数值化了的参数。本发明的特征之一是,该接触面积率高的时候吸汗效果好,有较高舒适性。而在已往公知的伸缩性材料中,对肌肤的接触面积过高时,反而有发粘的感觉,不能保持舒适性。另外,如果接触面积低,则在肌肤面与片之间形成了较多的不必要空间,吸汗性差。本发明的复合片可以消除该问题,促进穿着时的吸汗、透过、蒸发,实现穿着时的舒适性。
图7A、7B是表示图2的复合片1的非伸缩性片3侧与肌肤面相接时的接触状态的图。这里,图7A是表示在制造流程方向135%伸长时的状态的示意图,图7B是表示在制造流程方向170%伸长时的状态的示意图。肌肤从图中的箭头方向相接。另外,所说的在制造流程方向135%伸长时,是设想作为后述一次性尿布的主体时使用时的、通常穿着时的伸长程度。所说的在制造流程方向170%伸长时,是设想复合片的最大伸长时的伸长程度。
在图7A、7B中,与肌肤面相接时,非伸缩性片3上的未粘接部分松弛而形成的若干个细小折皱,由形成在伸缩性无纺布2上的粘接剂4等间隔地支承着。因此,若干个细小的折皱稳定地形成在伸缩性无纺布2上。另外,由于该折皱只由非伸缩性片3形成,所以,容易被低的应力压扁。因此,可提高接触面积率。
图8A、8B是表示图2的复合片1的伸缩性无纺布2侧与肌肤面相接时的接触状态的图。这时,由于是平滑的伸缩性无纺布2与肌肤面接触,所以接触面积率比图7A、7B更高。
另一方面,图9A、9B表示已往的一次性尿布的腰围折裥部中采用的构成部件100。这里,在2片非伸缩性片120之间配置着线状的弹性部件110。这时,由弹性部件的伸缩产生的折皱大,不稳定而卷曲。另外,整体的厚度也厚,刚性也大,所以,折皱不容易被与肌肤相接产生的应力压扁,因此,接触面积减小,吸汗性差,不舒适感增加。
本发明中的接触面积率是用以下方法测定的值。
a)首先,把复合片以预定的伸长状态(在制造流程方向135%、170%两种)、测定面朝上地固定在平面的支承板上(试验片在伸长状态下是50×50mm)
b)接着,将水性涂料(颜料∶水=2∶1,颜料是日本株式会社サクラクレパス制“加入サクラマツト水彩塑胶管(ポリチユ一ブ)的水彩颜料”蓝色)均匀涂敷在复合片的测定面上,
c)把日本东洋滤纸株式会社制No.2的滤纸(50×50mm)重叠在测定面上,再用平板压,在250g加载下(包含平板)保持10秒钟。
d)用图像解析法,将转移到滤纸上的水性涂料的面积比例作为2元化求出,得到接触面积率(%)。
<透气阻值>
上述接触面积率为65%以上时,吸汗良好,但是,为了保证穿着时的舒适性,复合片的透气性必须在预定值以上。为此,在本发明中,复合片的、在制造流程方向150%伸长时的透气阻值为0.20KPa·s/m以下。如果在此范围内,吸取的汗能良好地蒸发,则无损于舒适性。
另外,本发明中的透气阻值是透气性的指标之一,例如,可用日本カト-テツク株式会社的KES-F8测定器测定。用该测定方法测定的透气阻值,在0.06~1.245KPa·s/m以下的范围内时,认为与弗雷泽型透气流量的换算值相关。
<结露量>
在本发明的复合片中,复合片的制造流程方向150%伸长时的结露量优选是7g/m2以下。该结露量是与上述接触面积率相关的参数,结露量多于7g/m2时,不能充分吸汗,舒适性降低。
另外,本发明中的结露量是用下述方法测定的值。
a)把400cc、40℃的水放入500cc的烧杯中。
b)把测定面朝向水面侧的复合片以预定的伸长状态相向配置(相向距离20mm),在20℃×60%RH的环境中放置一小时。
c)用滤纸吸取附着在该测定面上的水分量,将该吸水量(吸水前后的滤纸的重量差)换算为每单位面积的量,作为结露量(g/m2)。
<蒸发率>
在本发明的复合片中,复合片的制造流程方向150%伸长时的蒸发量优选是65%以上。该蒸发量是与上述透气性相关的参数。蒸发率优选在65%以上,在70%以上更好,在75%以上尤其好,在80%以上则更好。蒸发量在65%以上时,吸取的汗能迅速蒸发,可保持舒适性。另外,上限优选在99%以下。
本发明中的蒸发率是用下述方法测定的值。
a)把人工皮肤(日本出光テクノフアイン会社制PBZ13001)调温至36℃。
b)用喷雾器把1.0g的水呈雾状地喷在该人工皮肤面上的70×70mm的区域。
c)把复合片的测定面朝向人工皮肤面侧地载置在人工皮肤上,在196g/70×70mm的荷载下,在20℃×60%RH的环境中放置(吸收)1分钟,然后去掉加载。
d)再在20℃×60%RH的环境中放置20分钟(蒸发)。
e)把1.0g-残留在人工皮肤上的水分-附着在测定面上的水分量作为蒸发量(g),把蒸发量对喷雾的水量的比例(%)作为蒸发率。
<透湿度>
在本发明的复合片中,复合片的横方向150%伸长时的透湿度优选是3000g/m2·24小时·atom以上。透湿度在该范围时,可以使吸取的汗迅速蒸发,可保持舒适性。
另外,本发明中的透湿度是用ASTM E96~66、JISZ0208(杯法)的变形法得到的值,是在40℃×60%RH的环境下、杯内是水时的测定值。
[吸收性物品]
上述复合片1例如可用于作为吸收性物品的一次性尿布中。下面,把朝向穿着者身体的一侧作为肌肤相接面侧,把肌肤相接面侧的相反侧作为非肌肤相接面侧。
图10是表示使用本发明复合片的吸收性物品之一例、即短裤型一次性尿布50的正面图。图11是一次性尿布50的展开图。一次性尿布50备有形成本体的主体54、配置在主体54的肌肤相接面侧的透液性表面片51、配置在主体54的非肌肤相接面侧的不透液性背面片53、夹在该表面片51与主体54之间的液体保持性的吸收体芯52。
主体54由前身区域55和后身区域56形成为短裤形,具有形成前身区域55的端部的前腰部折皱57、和形成后身区域56的端部的后腰部折皱58。在主体54的纵方向两边缘,形成了以横方向大致中央为顶点的、朝该主体54的内侧呈大致U字形的切入部59。用接合部63将主体54的前身区域55和后身区域56相互接合而成为短裤时,该切入部59形成腿部开口部60。另外,将前身区域55和后身区域56相互接合,形成了腰部开口部61。
在本实施方式中,作为主体54,使用具有伸缩性的复合片1,其伸长方向是图11的宽度方向。因此,在腰部折皱57、58的部分不配置橡胶线等的弹性部件,在把该主体54的前身区域55和后身区域56接合而成为短裤时,前身区域55和后身区域56借助复合片1,沿短裤的外周具有伸缩性。因此,一次性尿布50,随着穿着动作或穿着时身体的活动具有伸缩性。由于不需要弹性部件,所以,可减少对肌肤的物理性刺激。当然,在本发明中,根据需要也可以在腰部折皱、腿部折皱处配置弹性部件。
另外,在本实施方式中,复合片1,如图8所示,伸缩性无纺布2作为肌肤相接面,如图10所示,表面呈现出由非伸缩性片3产生的折皱。本发明中,并不限定于此,复合片1的非伸缩性片3也可以作为肌肤相接面,但是,通过采用本实施方式的形态,可以提高对肌肤的接触面积率,所以优选。
另外,在本实施方式中,对形成为短裤型的一次性尿布作了说明,但本发明并不限定于此。本发明的复合片也可以作为其它的产品使用。例如,该复合片也可以作为带固定型吸收性物品中的侧翼、侧伸缩式的短裤型尿布的的侧伸缩片、卫生巾中的与内裤固定用的翼片、一次性手术服的袖口等的伸缩部件、一次性口罩的耳带、一次性包装袋、湿布材的表面材料等作用。
实施例
下面,说明本发明的实施例,这些实施例仅仅作为适于说明本发明的例子,对本发明不构成任何限定。
[实施例1]
将聚丙烯纤维(PP)和聚氨酯纤维(TPU)以45∶55的比例制作成伸缩性无纺布坯料5。接着,用赋形辊10,在制造流程方向对该伸缩性无纺布坯料5实施齿轮拉伸加工,得到了伸缩性无纺布2。伸缩性无纺布坯料5的单位面积重量是35g/m2
然后,在使该伸缩性无纺布2在制造流程方向伸长了2.3倍的状态下,与单位面积重量为19g/m2的非伸缩性片3(聚丙烯纺粘型无纺布)热熔接合,得到了复合片1。另外,将粘接剂4涂敷在非伸缩性片3上,其涂敷图案是螺旋状涂敷,热熔性粘接剂的单位面积重量是2g/m2。得到的复合片1的最大伸长率是210%,厚度是1.8mm。
[比较例]
把作为市售一次性尿布的构成部件使用的、下述构造的复合片,作为比较例1、比较例2。
比较例1
聚丙烯纺粘型无纺布(单位面积重量19g/m2)/弹性部件(弹性线)/聚丙烯SMS无纺布(单位面积重量15g/m2)/聚丙烯纺粘型无纺布(单位面积重量19g/m2)。
比较例2
聚丙烯针刺结合型无纺布(单位面积重量28g/m2)/弹性部件(开孔薄膜,单位面积重量70g/m2)/聚丙烯针刺结合型无纺布(单位面积重量28g/m2)。
[试验例1]
用上述测定方法,对实施例1a、实施例1b、比较例1、比较例2测定了接触面积率、透气阻值、结露量、蒸发率、透湿度。结果汇总如表1所示。
另外,在实施例1a中,作为一次性尿布使用时,设定伸缩性无纺布侧是肌肤相接面,接触面积率、结露量、蒸发率、透湿度是将伸缩性无纺布侧作为测定面测定的,透气阻值也是测定从伸缩性无纺布侧的透气阻力。另外,在实施例1b中,作为一次性尿布使用时,设定非伸缩性片侧是肌肤相接面,接触面积率、结露量、蒸发率、透湿度是将非伸缩性片侧作为测定面测定的,透气阻值也是测定从非伸缩性片侧的透气阻力。
[表1]
从表1的结果可知,在实施例1a、1b中,制造流程方向135%伸长时和制造流程方向170%伸长时的接触面积率都高达65%以上,透气阻值也在0.20KPa·s/m以下,吸汗性、透气性好。而在配置着弹性部件的比较例1中,接触面积率低,在60%以下,蒸发率也低,为60%。另外,在层之间设有薄膜状弹性体的比较例2中,透气阻值高,蒸发率也低,所以,舒适性差。

Claims (6)

1.一种复合片,是将伸缩性无纺布以伸长状态贴合在非伸缩性片上而形成的,其特征在于,
上述复合片的任一个面中的、135%伸长时及170%伸长时的接触面积率都在65%以上;
上述复合片的150%伸长时的透气阻值在0.20KPa·s/m以下;
上述伸缩性无纺布在两面连续地交替形成了若干个带状疏区域和若干个带状密区域,并且一个面上的带状密区域和另一个面上的带状密区域交替地形成,
这里,接触面积率,是将水性涂料涂敷在上述伸长状态的复合片的一个面上,将滤纸重叠在该面上,在250g的加载下保持10秒钟后转移到滤纸上的水性涂料的面积比例。
2.如权利要求1所述的复合片,其特征在于,上述非伸缩性片和上述伸缩性无纺布用粘接剂贴合在一起。
3.如权利要求1或2所述的复合片,其特征在于,上述复合片的150%伸长时的结露量为7g/m2以下;
这里,结露量,是将复合片与40℃的水面相向配置,在20℃×60%RH的环境下放置一小时后,该相向面上附着的水分量。
4.如权利要求1或2所述的复合片,其特征在于,上述复合片的150%伸长时的蒸发率为65%以上。
5.如权利要求1或2所述的复合片,其特征在于,上述复合片的150%伸长时的透湿度为3000g/m2.24小时.atom以上。
6.一种吸收性物品,至少备有吸收体和权利要求1至5中任一项记载的复合片,上述复合片配置在该吸收性物品被穿着时的肌肤相接面。
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