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    • 22. 发明申请
    • THREE DIMENSIONAL GLOVE WITH PERFORMANCE-ENHANCING LAYER LAMINATED THERETO
    • 具有性能增强层的三维手套
    • US20140026290A1
    • 2014-01-30
    • US13949279
    • 2013-07-24
    • Warwick Mills Inc.
    • Charles A. Howland
    • A41D19/015
    • A41D19/015A41D19/01558B32B1/00B32B5/024B32B5/026B32B7/12B32B27/12B32B27/20B32B27/40B32B2274/00B32B2307/51B32B2437/02
    • A 3D hand-shaped glove includes a performance-enhancing layer laminated to a fabric glove shell. A flat, solid laminate preform can be prepared with printed graphics, fabric layers, oriented films, dense and/or concentrated fillers, and other features. The 3D hand-shaped glove shell is placed on a 3D laminating form, and the preform is laminated thereto while preserving the 3D shape. In embodiments, the laminating form includes opposing flat surfaces, and a platen or roller press is used. In other embodiments, a bladder or vacuum bag press is used to laminate the preform to a curved or otherwise shaped surface of the laminating form. In embodiments, edge peel resistance is enhanced by extending the perimeter of a low modulus upper layer beyond underlying layers and bonding it directly to the glove shell. Recovery of the glove shell after deformation by the laminating form can provide a warping deformation of the laminate preform.
    • 3D手形手套包括层压到织物手套壳上的性能增强层。 可以用印刷图形,织物层,取向膜,致密和/或浓缩填料以及其它特征来制备扁平的固体层压预制件。 将3D手形手套壳放置在3D层压形式上,并将预成型件层压到同时保持3D形状。 在实施例中,层压形式包括相对的平坦表面,并且使用压板或辊压机。 在其他实施例中,使用气囊或真空袋压力机将预成型件层压成层压形式的弯曲或其它形状的表面。 在实施例中,通过将低模量上层的周长延伸超过下层并将其直接粘合到手套壳来增强边缘剥离阻力。 通过层压形式在变形后恢复手套壳可以提供叠层预制件的翘曲变形。
    • 23. 发明申请
    • SUICIDE BOMBER BLAST THREAT MITIGATION SYSTEM
    • SUICIDE BOMBER BLAST威胁减轻系统
    • US20110271825A1
    • 2011-11-10
    • US13102070
    • 2011-05-06
    • Charles A. Howland
    • Charles A. Howland
    • F41H5/04F42B12/00F41H5/08F42B14/06
    • F42D5/05F41B15/10F41H13/0006F42B12/625F42B14/06
    • A non-lethal, sabot-deployed blast shield mitigates a suicide bomber by wrapping around the bomber and positioning a plurality of protective layers over an explosive device to absorb emitted heat, shock waves, and projectiles if the device is detonated. Stand-offs such as inflatable beams or pillows provide break-away zones between the protective layers, allowing some layers to expand to a point of failure and absorb the maximum possible energy. Inner layers absorb shock waves and heat. One or more outer layers resist projectile penetration. Protective layers can be positioned on opposing sides of a suspect in case two explosive devices are present. Shields can deploy with sufficient energy to knock down a bomber. In embodiments, a plurality of shields can be applied without interference therebetween. In some embodiments, a round shield includes bolas which spread the shield in flight in a cast-net dynamic and wrap around the suspect for shield attachment.
    • 非致命的,破坏部署的防风罩通过缠绕轰炸机并通过爆炸装置定位多个保护层来减轻自杀炸弹手,以吸收发射的热量,冲击波和射弹(如果装置被引爆)。 诸如充气梁或枕头的支架在保护层之间提供了隔离区域,允许一些层膨胀到故障点并吸收最大可能的能量。 内层吸收冲击波和热量。 一个或多个外层抵抗射弹穿透。 在存在两个爆炸装置的情况下,保护层可以位于嫌疑犯的相对侧上。 盾牌可以用足够的能量部署以击倒轰炸机。 在实施例中,可以施加多个屏蔽,而不会妨碍它们之间的干扰。 在一些实施例中,圆形护罩包括弹药,其将屏蔽物在飞行中以铸网动态传播并围绕嫌疑人缠绕以进行盾构附接。
    • 27. 发明申请
    • Carrier fiber assembly for tissue structures
    • 用于组织结构的载体纤维组件
    • US20050118716A1
    • 2005-06-02
    • US10976952
    • 2004-10-29
    • Charles HowlandVirginia Houston-HowlandJennifer White
    • Charles HowlandVirginia Houston-HowlandJennifer White
    • A61F2/02A61L27/36A61L27/58G01N20060101
    • A61L27/3691A61L27/3683A61L27/58Y10S623/915
    • Methods and structures are disclosed where carrier fiber is used to enable the assembly of two and three dimensional structures of autologous tissue. Tissue is harvested from the donor, integrated with a carrier fiber, and assembled into complex forms rapidly. The structures can be tailored to the requirements of a specific medical procedure. The tissue is kept live and viable during extracorporeal assembly and the finished structure is emplaced in the donor's body. The use of a carrier fiber leader for pre-threading integration and assembly machines facilitates machine set up, drawing of the tissue into the process, and rapid integration and assembly of the multi-dimensional structures. Assembly can include providing tissue and fiber leaders extending from the structure for attaching the structure in place. The carrier fiber either is bio-absorbed as new tissue forms, or forms a bio-compatible substructure for the patient's native tissue.
    • 公开了使用载体纤维来实现自体组织的二维和三维结构的组装的方法和结构。 从供体收获组织,与载体纤维结合,并快速组装成复杂形式。 结构可以根据具体医疗程序的要求进行调整。 组织在体外组装过程中保持活力和活力,并将成品结构放置在供体的身体中。 使用载体纤维引导器进行预穿线整合和组装机器,便于机器设置,将组织拉伸到工艺中,以及快速整合和组装多维结构。 组装可以包括提供从结构延伸的组织和纤维束头,用于将结构附接到位。 载体纤维作为新组织形成生物吸收,或形成用于患者天然组织的生物相容性子结构。