会员体验
专利管家(专利管理)
工作空间(专利管理)
风险监控(情报监控)
数据分析(专利分析)
侵权分析(诉讼无效)
联系我们
交流群
官方交流:
QQ群: 891211   
微信请扫码    >>>
现在联系顾问~
热词
    • 22. 发明申请
    • MIXED FIBERS AND NONWOVEN FABRICS MADE FROM THE SAME
    • 混合纤维和非织造织物
    • US20110250815A1
    • 2011-10-13
    • US13167989
    • 2011-06-24
    • Behnam Pourdeyhimi
    • Behnam Pourdeyhimi
    • D04H3/02D01F8/00D04H1/46D04H13/00
    • D01D5/36D01D5/082D04H3/105D04H3/11D04H3/16Y10T442/60Y10T442/608Y10T442/609Y10T442/615Y10T442/619
    • The subject matter disclosed herein relates generally to the production of a predetermined ratio of multicomponent fibers in combination with monocomponent fibers or other multicomponent fibers, preferably through a spunbonding process. After extrusion, these fibers can produce a fiber network that is subsequently bonded to produce a nonwoven fabric comprising multiple types of fibers. The multicomponent fibers within the network may be processed to remove one component by dissolution or to split the individual components into separate fibers. As a result, the fabric will be comprised of fibers with a range of diameters (micro- or nano-denier fibers as well as higher denier fibers) such that the fibers will not pack as tightly as in a homogeneous nonwoven fabric produced from one type of monocomponent or multicomponent fiber. The present invention additionally relates to methods for producing nonwoven fabrics with increased loft, breathability, strength, compressive properties, and filtration efficiency.
    • 本文公开的主题一般涉及多组分纤维与单组分纤维或其它多组分纤维的组合的预定比例的生产,优选通过纺粘方法。 在挤出之后,这些纤维可以产生随后结合的纤维网,以生产包含多种纤维的非织造织物。 网络中的多组分纤维可以被处理以通过溶解除去一种组分或将各组分分裂成单独的纤维。 结果,织物将由具有一定范围直径的纤维(微米或纳米旦尼尔纤维以及较高的旦尼尔纤维)组成,使得纤维将不会像由一种类型生产的均匀无纺织物那样紧密地包装 的单组分或多组分纤维。 本发明还涉及具有增加的蓬松度,透气性,强度,压缩性能和过滤效率的无纺织物的制造方法。
    • 24. 发明授权
    • Process of making mixed fibers and nonwoven fabrics
    • 制造混纺纤维和非织造织物的方法
    • US07981336B2
    • 2011-07-19
    • US12184773
    • 2008-08-01
    • Behnam Pourdeyhimi
    • Behnam Pourdeyhimi
    • D01D5/30D01D5/32D01D5/36D01D5/42D04H3/02
    • D01D5/36D01D5/082D04H3/105D04H3/11D04H3/16Y10T442/60Y10T442/608Y10T442/609Y10T442/615Y10T442/619
    • The subject matter disclosed herein relates generally to the production of a predetermined ratio of multicomponent fibers in combination with monocomponent fibers or other multicomponent fibers, preferably through a spunbonding process. After extrusion, these fibers can produce a fiber network that is subsequently bonded to produce a nonwoven fabric comprising multiple types of fibers. The multicomponent fibers within the network may be processed to remove one component by dissolution or to split the individual components into separate fibers. As a result, the fabric will be comprised of fibers with a range of diameters (micro- or nano-denier fibers as well as higher denier fibers) such that the fibers will not pack as tightly as in a homogeneous nonwoven fabric produced from one type of monocomponent or multicomponent fiber. The present invention additionally relates to methods for producing nonwoven fabrics with increased loft, breathability, strength, compressive properties, and filtration efficiency.
    • 本文公开的主题一般涉及多组分纤维与单组分纤维或其它多组分纤维的组合的预定比例的生产,优选通过纺粘方法。 在挤出之后,这些纤维可以产生随后结合的纤维网,以生产包含多种纤维的非织造织物。 网络中的多组分纤维可以被处理以通过溶解除去一种组分或将各组分分裂成单独的纤维。 结果,织物将由具有一定范围直径的纤维(微米或纳米旦尼尔纤维以及较高的旦尼尔纤维)组成,使得纤维将不会像由一种类型生产的均匀无纺织物那样紧密地包装 的单组分或多组分纤维。 本发明还涉及具有增加的蓬松度,透气性,强度,压缩性能和过滤效率的无纺织物的制造方法。
    • 25. 发明授权
    • Non-woven textile microwave antennas and components
    • 无纺布微波天线和组件
    • US07463198B2
    • 2008-12-09
    • US11305677
    • 2005-12-16
    • Michael A. DeaettWilliam H. Weedon, IIIBehnam Pourdeyhimi
    • Michael A. DeaettWilliam H. Weedon, IIIBehnam Pourdeyhimi
    • H01Q1/38
    • H01Q1/38H01Q21/065H01Q21/08
    • A method of constructing an antenna, filter, or similar structure comprising one or more planar electrically conductive radiating and/or receiving elements having conductive feedlines attached thereto and a planar around reference conductor spaced therefrom by a spacer layer, comprising the steps of: providing a planar dielectric fabric spacer layer; applying conductive material to a first side of said spacer layer, by an embroidery process employing conductive thread or yarn, to define said electrically conductive radiating and/or receiving elements having conductive feedlines attached thereto; providing a planar around reference conductor on the opposite side of said planar spacer layer in a position corresponding to the pattern of said electrically conductive radiating and/or receiving elements having conductive feedlines attached thereto; and providing a connection whereby said conductive feedlines attached to said electrically conductive radiating and/or receiving elements, and said planar around reference conductor, can each be connected to associated signal transmitting and/or receiving equipment.
    • 一种构造天线,滤波器或类似结构的方法,包括具有连接到其上的导电馈线的一个或多个平面导电辐射和/或接收元件以及通过间隔层与其隔开的平面周围参考导体,包括以下步骤: 平面介质织物间隔层; 通过使用导电丝或纱线的刺绣工艺将导电材料施加到所述间隔层的第一侧,以限定具有连接到其上的导电馈线的所述导电辐射和/或接收元件; 在与所述导电辐射和/或接收元件的图案对应的位置处在所述平面间隔层的相对侧上提供平面周围参考导体,所述导电辐射和/或接收元件具有连接到其上的导电馈线; 并且提供连接,其中附接到所述导电辐射和/或接收元件的所述导电馈线以及所述平面周围参考导体可以连接到相关联的信号发射和/或接收设备。