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    • 3. 发明授权
    • Micro-engineered poly-fiber geo-composite articles and methods of manufacturing the same
    • 微型多光纤复合材料制品及其制造方法
    • US08927097B2
    • 2015-01-06
    • US13848025
    • 2013-03-20
    • PEBA Trading & Manufacturing Corporation
    • David R. Mune
    • C04B14/38C04B7/00C04B24/00B44F7/00D04H3/00D06N7/00
    • B44F7/00B28B1/30B28B1/52C04B20/0052C04B28/065D04H3/00D06N7/00Y02W30/97C04B14/308C04B14/42C04B16/0641C04B22/143C04B24/2641C04B24/383C04B16/0633C04B22/10C04B14/465C04B14/48C04B16/0658C04B16/0683C04B16/0691C04B18/24
    • A molded, decorative article having a fiber-reinforced geo-composite wall with a thickness of between 4-10 mm and a method of manufacturing the same, the fiber-reinforced geo-composite wall comprising, before curing, predominately 45-55 by weight % mineral-based type III clinker, 24-28 by weight % water, and 8-9 by weight % hydration control agent, the combination of clinker, water, and hydration control agent forming a basic water-reactive rapid-setting cementious binder, the hydration control agent controlling curing time of the water-reactive rapid-setting cementious binder, 1-2 by weight % combination of micro-fibers and macro-fibers dispersed evenly within the cementious binder, the micro-fibers being 3-6 mm and the macro-fibers being 7-25 mm in length, 0.03-0.10 by weight % combination of rheology modifier, polymer modifier, and moisture retention agent, 0-0.18 by weight % combination of dispersion agent and water-reduction agent, and 6-12 by weight % engineered fiber fabric laminated into the fiber-reinforced geo-composite wall before curing, and wherein, after curing, the fiber-reinforced geo-composite wall has a density between 1.5 and 2.0 g/cm3.
    • 一种具有厚度在4-10mm之间的纤维增强的地层复合材料壁的模制的装饰制品及其制造方法,所述纤维增强的地层复合材料壁在固化之前主要包含45-55重量% %矿物类型III熟料,24-28重量%水和8-9重量%水合控制剂,熟料,水和水合控制剂的组合形成碱性水反应性快速凝固粘合剂, 水合控制剂控制水反应性快速凝固胶结剂的固化时间,将微纤维和大分子纤维的1-2重量%组合均匀分散在胶结粘合剂中,微纤维为3-6mm, 长纤维长度为7-25mm,流变改性剂,聚合物改性剂和保湿剂的组合为0.03-0.10重量%,分散剂和减水剂的组合为0-0.18重量%,以及6- 12重量%工程纤维织物lami 在固化之前加入到纤维增强的地质复合材料壁中,并且其中,在固化之后,纤维增强的地层复合材料壁的密度为1.5-2.0g / cm3。
    • 5. 发明申请
    • PRESSURE SENSING MAT
    • 压力传感垫
    • US20130091961A1
    • 2013-04-18
    • US13644961
    • 2012-10-04
    • STRYKER CORPORATION
    • Geoffrey L. Taylor
    • G01L5/00B32B5/26D04H3/00
    • G01L5/00B32B3/04B32B5/024B32B5/026B32B5/26B32B2255/02B32B2255/205B32B2262/0261B32B2262/0276B32B2262/14B32B2307/20B32B2479/00B32B2535/00D04H3/00D04H3/04G01L1/146G01L1/16G01L1/18G01L1/205
    • A pressure sensing sheet includes at least first, second, and third layers wherein the first and third layers each have conductive paths defined therein that are separated by nonconductive spacers. The orientation of the conductive paths of the first layer are transverse to the orientation of the conductive paths of the third layer. The second layer is made of material that has an electrical characteristic that changes with applied pressure, such as, but not limited to, piezoresistive or piezoelectric material. The first and/or third layers are made from multi-material sheets wherein a first type of material will repel conductive particles when subjected to an autocatalytic coating process, while the second type of material will bond with the conductive particles during the autocatalytic coating process. The use of different materials in the first and/or third layers facilitates the manufacturing of the conductive paths and nonconductive spacers.
    • 压力感测板包括至少第一层,第二层和第三层,其中第一层和第三层各自具有限定在其中的导电路径,其被非导电间隔物隔开。 第一层的导电路径的取向横向于第三层的导电路径的取向。 第二层由具有随着施加的压力而变化的电特性的材料制成,例如但不限于压阻或压电材料。 第一层和/或第三层由多材料板制成,其中第一类型的材料在经受自动催化涂覆工艺时将排斥导电颗粒,而第二类型的材料将在自催化涂覆过程期间与导电颗粒结合。 在第一和/或第三层中使用不同的材料有助于导电路径和非导电间隔物的制造。
    • 9. 发明授权
    • Nozzle block for electrospinning
    • 用于静电喷嘴的喷嘴块
    • US07988439B2
    • 2011-08-02
    • US11917331
    • 2006-03-16
    • Hak-Yong Kim
    • Hak-Yong Kim
    • D01D4/06
    • D01D4/02D01D5/0069D01F8/00D04H1/728D04H3/00D04H3/005D04H3/033D04H3/16
    • Disclosed is a nozzle block for electrospinning which is able to simultaneously electrically spin two or more different types of polymer spinning dopes, wherein a single-layer distribution plate for dividing a planar space within the nozzle block into two or more segments is installed within the nozzle block. The apparatus is simple because a single-layer distribution plate is installed instead of a conventional multi layer distribution plate. A hybrid nano fiber laminate can be prepared without any additional laminating procedure because two or more different polymer spinning dopes can be simultaneously electrically spun through different nozzles arranged within the same nozzle block. It is possible to prepare a hybrid nano fiber nonwoven fabric or filaments or the like composed of two or more types of nano fibers different in thermal properties or physical properties because their fiber diameter or polymer type are different from each other.
    • 公开了一种用于静电纺丝的喷嘴块,其能够同时电动旋转两种或更多种不同类型的聚合物纺丝剂,其中用于将喷嘴块内的平面空间分成两个或更多个部分的单层分配板安装在喷嘴内 块。 该装置简单,因为安装了单层分配板而不是传统的多层分配板。 可以制备混合纳米纤维层压体而不需要任何另外的层压方法,因为两个或多个不同的聚合物纺丝剂可以通过布置在相同喷嘴块内的不同喷嘴同时电纺丝。 由于它们的纤维直径或聚合物类型彼此不同,可以制备由热性能或物理性质不同的两种或更多种纳米纤维组成的混合纳米纤维非织造织物或长丝等。