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    • 6. 发明申请
    • PRINTABLE ELASTIC COMPOSITE
    • 可打印弹性复合材料
    • WO2009095802A1
    • 2009-08-06
    • PCT/IB2009/050026
    • 2009-01-06
    • KIMBERLY-CLARK WORLDWIDE, INC.LAKE, Matthew, B.FITTS, JR., James, R.
    • LAKE, Matthew, B.FITTS, JR., James, R.
    • B41M5/00B29C55/02B29C59/02
    • B41M5/0064B32B37/0076B32B37/144B32B38/145B32B2305/20B32B2307/51B32B2307/75B41M5/0047Y10T156/1056Y10T428/24281
    • A composite that contains an elastic film laminated to a meltblown facing is provided. During lamination, apertures and discrete bond sites may be concurrently formed in the elastic film. The discrete bond sites may be located proximate (adjacent or near to) a perimeter defined by corresponding apertures formed by displacement of the film. The location of the bond sites adjacent to or near the apertures may enhance the durability of the meltblown facing by strengthening the area surrounding the apertures. Furthermore, the content of the elastic film and the temperature/pressure of lamination may be selected to that the film possesses a sufficient tack for adhering to the facing at regions other than those fused together by the bonding elements of the patterned roll. Such secondary bonding further stabilizes the meltblown facing and renders it suitable for printing. Further, the film is under tension in the machine direction during lamination. Subsequent to lamination, however, the film is retracted so that the facing retracts toward its original machine direction length, thereby gathering and forming pleats. It has been discovered that these pleats have a relatively small amplitude (height), as well as a substantially uniform frequency across the surface of the facing. Such a small height and increased regularity improves the ability to transfer an ink to 'peaks' of the pleats, thereby improving print quality and uniformity.
    • 提供了一种包含层压在熔喷面上的弹性薄膜的复合体。 在层压期间,可以在弹性膜中同时形成孔和离散的接合位点。 离散的接合位点可以位于由通过膜的位移形成的相应孔限定的周边(邻近或接近)附近。 靠近孔附近的接合位置的位置可以通过加强孔周围的区域来增强熔喷面的耐久性。 此外,可以选择弹性膜的含量和层压温度/压力,使得该膜具有足够的粘合性,以便通过图案化辊的粘结元件熔融在一起的区域以外的区域附着在面上。 这种二次粘合进一步稳定了熔喷面,使其适合印刷。 此外,膜在层压期间在机器方向上处于张力下。 然后,在层压之后,膜缩回,使得面朝向其原始机器方向长度缩回,从而收集和形成褶。 已经发现,这些褶皱具有相对较小的幅度(高度)以及穿过表面的表面的基本均匀的频率。 这样小的高度和增加的规则性提高了将墨水转移到褶皱的“峰值”的能力,从而提高印刷质量和均匀性。