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    • 1. 发明授权
    • Two-sided nonwoven fabrics having a three-dimensional image
    • 具有三维图像的双面无纺织物
    • US07047606B2
    • 2006-05-23
    • US10400242
    • 2003-03-27
    • Miguel RiveraRalph A. Moody, IIIMichael J. Putnam
    • Miguel RiveraRalph A. Moody, IIIMichael J. Putnam
    • D04H1/46
    • D04H1/495D04H1/4374D04H1/498
    • The present invention is directed to a method of forming a two-sided nonwoven fabric, which exhibits a pronounced three-dimensional image that is durable to both converting and end-use application. In particular, the present invention contemplates that a fabric is formed from a first precursor web comprising a first fibrous matrix and a second precursor web comprising a second fibrous matrix. Between the first and second precursor web, a fluid-pervious support layer or scrim, is interposed and subjected to hydroentanglement on a moveable imaging surface having a three-dimensional image transfer device. By formation of a nonwoven fabric in this fashion, a three-dimensional image that is durable to abrasion and distortion due to elongation is imparted and a product formed which exhibits on its opposite surfaces the unique properties of the respective fibrous matrix used.
    • 本发明涉及一种形成双面无纺布的方法,其显示出对转化和最终使用应用都耐用的显着的三维图像。 特别地,本发明预期织物由包含第一纤维基质的第一前体纤维和包含第二纤维基质的第二前体纤维形成。 在第一和第二前体纤维网之间插入可渗透的支撑层或稀松布,并在具有三维图像转移装置的可移动成像表面上进行水刺。 通过以这种方式形成无纺布,赋予由于伸长而耐磨损和变形耐久的三维图像,并且形成了在其相对表面上显示所使用的各个纤维基质的独特性质的产品。
    • 3. 发明申请
    • LIQUID MANAGEMENT LAYER FOR PERSONAL CARE ABSORBENT ARTICLES
    • 个人护理吸收物品液体管理层
    • US20120209233A1
    • 2012-08-16
    • US13026059
    • 2011-02-11
    • John F. SteffenPierre D. GrondinRalph A. Moody, III
    • John F. SteffenPierre D. GrondinRalph A. Moody, III
    • A61L15/22
    • A61L15/24C08L23/12
    • A liquid management layer constructed from large diameter uncrimped fibers in the form of a spunbond nonwoven web is described. Embodiments of the liquid management layer can include a plurality of thermoplastic fibers in the form of a spunbond nonwoven web where the plurality of thermoplastic fibers are randomly oriented and uncrimped, where the liquid management layer has a maximum void volume of 25 cc/g and a web density of at least 0.05 g/cc, where the liquid management layer has a maximum thickness of 1.5 mm, a basis weight of at least 30 g/m2 and a rewet value of less than 0.4 g according to test method WSP 70.8, and where the liquid management layer has an average fiber diameter of at least 40 microns based on the number of thermoplastic fibers in the liquid management layer and where less than 10% by count of the plurality of thermoplastic fibers in the liquid management layer have an absolute fiber diameter less than 30 microns. Additional embodiments of the invention include a personal care absorbent article incorporating the liquid management layer over an absorbent core.
    • 描述了由纺粘非织造纤维网形式的大直径未卷曲纤维构成的液体管理层。 液体管理层的实施例可以包括纺粘非织造纤维网形式的多个热塑性纤维,其中多个热塑性纤维是随机取向和未卷曲的,其中液体管理层具有25cc / g的最大空隙体积和 纸张密度为至少0.05g / cc,其中根据测试方法WSP 70.8,液体管理层的最大厚度为1.5mm,基重至少为30g / m 2,再润湿值为小于0.4g; 其中液体管理层的平均纤维直径基于液体管理层中的热塑性纤维的数量至少为40微米,并且其中液体管理层中多个热塑性纤维的数量少于10%具有绝对的纤维 直径小于30微米。 本发明的另外的实施方案包括在吸收芯上结合有液体管理层的个人护理吸收制品。
    • 6. 发明授权
    • Liquid management layer for personal care absorbent articles
    • 用于个人护理吸收制品的液体管理层
    • US08426671B2
    • 2013-04-23
    • US13026059
    • 2011-02-11
    • John F. SteffenPierre D. GrondinRalph A. Moody, III
    • John F. SteffenPierre D. GrondinRalph A. Moody, III
    • A61F13/531A61F13/53
    • A61L15/24C08L23/12
    • A liquid management layer constructed from large diameter uncrimped fibers in the form of a spunbond nonwoven web is described. Embodiments of the liquid management layer can include a plurality of thermoplastic fibers in the form of a spunbond nonwoven web where the plurality of thermoplastic fibers are randomly oriented and uncrimped, where the liquid management layer has a maximum void volume of 25 cc/g and a web density of at least 0.05 g/cc, where the liquid management layer has a maximum thickness of 1.5 mm, a basis weight of at least 30 g/m2 and a rewet value of less than 0.4 g according to test method WSP 70.8, and where the liquid management layer has an average fiber diameter of at least 40 microns based on the number of thermoplastic fibers in the liquid management layer and where less than 10% by count of the plurality of thermoplastic fibers in the liquid management layer have an absolute fiber diameter less than 30 microns. Additional embodiments of the invention include a personal care absorbent article incorporating the liquid management layer over an absorbent core.
    • 描述了由纺粘非织造纤维网形式的大直径未卷曲纤维构成的液体管理层。 液体管理层的实施例可以包括纺粘非织造纤维网形式的多个热塑性纤维,其中多个热塑性纤维是随机取向和未卷曲的,其中液体管理层具有25cc / g的最大空隙体积和 纸张密度为至少0.05g / cc,其中根据测试方法WSP 70.8,液体管理层的最大厚度为1.5mm,基重至少为30g / m 2,再润湿值为小于0.4g; 其中液体管理层的平均纤维直径基于液体管理层中的热塑性纤维的数量至少为40微米,并且其中液体管理层中多个热塑性纤维的数量少于10%具有绝对的纤维 直径小于30微米。 本发明的另外的实施方案包括在吸收芯上结合有液体管理层的个人护理吸收制品。
    • 8. 发明授权
    • Composite nonwoven fabric
    • 复合无纺布
    • US06381817B1
    • 2002-05-07
    • US09815527
    • 2001-03-23
    • Ralph A. Moody, III
    • Ralph A. Moody, III
    • D04H1300
    • A41D31/0016A41D13/12D04H1/495Y10T442/689
    • A composite nonwoven fabric is formed by providing a synthetic fiber web comprising staple length polymeric fibers, and a cellulosic fiber web, preferably comprising wood pulp fibers. Prior to integration of the webs, the synthetic fiber web is subjected to hydroentangling to form a partially entangled web, with the cellulosic fiber web thereafter juxtaposed with the partially entangled web for hydroentanglement and integration of the webs. Pre-entanglement of the synthetic fiber web desirably acts to minimize the energy input required for integration of the cellulosic fiber and synthetic fiber webs, and also desirably acts to abate loss of the cellulosic fibers during hydroentanglement and integration of the webs.
    • 通过提供包含短纤维聚合物纤维的合成纤维网和优选包含木浆纤维的纤维素纤维网形成复合非织造织物。 在将纤维网整合之前,将合成纤维网进行水力缠结以形成部分缠结的纤维网,其中纤维素纤维网片随后与部分缠结纤维网并置,以使纤维网进行水刺和整合。 理想地,合成纤维网的预缠结最小化使纤维素纤维和合成纤维网一体化所需的能量输入最小化,并且还期望地起到减轻纤维素纤维在水刺和整合期间的损失。