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    • 13. 发明申请
    • ANATOMICAL, PRESSURE-EVENIZING MATTRESS OVERLAY WITH PRESTRESSED CORE, AND BAFFLED, LATERAL-EDGE CORE RESPIRATION
    • 解剖学,压力缓和基础与预制核心和BAFFLED,边缘核心呼吸
    • US20110072589A1
    • 2011-03-31
    • US12960493
    • 2010-12-04
    • Casey A. DennisMichael R. Dennis
    • Casey A. DennisMichael R. Dennis
    • A47C27/14
    • A47C27/14
    • An anatomical pressure-evenizing mattress overlay including a dynamic-response core having spaced, upper and lower, surfaces and an intermediate, perimetral edge. The core is formed including a 100% open-cell, compressible and flowable, viscoelastic foam expanse, and possesses a relaxed-state volume which resides in about an 8-10% nominally compressed condition. Load-transmissively bonded to the entire outside of the core, so as to function as a dynamically-responsive unit with it, and possessing a relaxed-state, internal, prestressed, tension condition, is an elastomeric, moisture- and gas-flow-managing coating, including fluid-flow-controlling, baffled, respiration window structure which exposes a portion of the core's edge to accommodate respiration of and for the interior of the core.
    • 一种解剖压力平缓的床垫覆盖物,包括具有间隔开的上,下表面的动态响应芯和中间的周边边缘。 核心形成包括100%开孔,可压缩和可流动的粘弹性泡沫塑料泡沫,并且具有松弛状态的体积,其驻留在约8-10%的标称压缩状态。 具有松弛状态,内部,预应力,张力状态的负载透过性地结合到芯的整个外部,以便起到与其作用的动态响应单元的作用,是弹性体,湿气和气体流动的, 管理涂层,包括流体流动控制,有障碍的呼吸窗结构,其暴露核心边缘的一部分以适应芯的内部和内部的呼吸。
    • 14. 发明申请
    • Bandaging structure and methodology
    • 绷带结构和方法
    • US20090082711A1
    • 2009-03-26
    • US12313169
    • 2008-11-17
    • Gerhard Paasche
    • Gerhard Paasche
    • A61F13/00
    • A61F13/00021A61F13/0273A61F2013/00119A61F2013/0028A61F2013/00544
    • A dynamic-action, pliable, anatomically conformable bandaging structure for application to an anatomical wound including a pliable, low-rebound, viscoelastic, acceleration-rate-sensitive cushioning expanse which is placeable confrontingly adjacent such a wound, and operatively associated and structurally united with that cushioning expanse, adjustable, pressure-fluid-inflatable structure. An associated methodology features the steps of (a) applying over a wound area a first, dynamic-action bandaging structure in the form of the mentioned cushioning material, (b) by such applying, furnishing dynamic, low-rebound, viscoelastic, acceleration-rate-sensitive pressure-applying behavior, and (c) utilizing the mentioned pressure-fluid-inflatable structure, applying, through the cushioning material, collaborative, dynamic, controlled, contained pressure-fluid action.
    • 一种适用于解剖伤口的动态,柔韧,解剖适形的包扎结构,包括柔韧,低回弹,粘弹性,加速度敏感的缓冲宽度,其可放置在相邻的这种伤口处,并且可操作地相关联并结构上与 该缓冲膨胀,可调,压力 - 流体充气结构。 相关联的方法的特征在于以下步骤:(a)在伤口区域上应用上述缓冲材料形式的第一动态作用包扎结构,(b)通过这种应用,提供动态,低回弹,粘弹性, 速率敏感的压力施加行为,以及(c)利用所提到的压力 - 流体充气结构,通过缓冲材料施加协调的,动态的,受控制的压力流体作用。
    • 16. 发明申请
    • BODY ARMOR STRAND STRUCTURE, METHOD AND PERFORMANCE
    • 身体臂架结构,方法和性能
    • US20070259179A1
    • 2007-11-08
    • US11103688
    • 2005-04-12
    • Thomas OhnstadMichael Dennis
    • Thomas OhnstadMichael Dennis
    • D02G3/00
    • F41H5/0421F41H1/02Y10T428/2973Y10T428/2978Y10T442/3065
    • Structure, methodology and performance involving and utilizing body armor strand material which includes an elongate strand body possessing elongate brittle ceramic surface structure, elongate ductile core structure disposed within that surface structure, and elongate brittle/ductile transition structure operatively interposed and joining the surface and core structures. Methodology includes the steps of preparing a defined mass of elongate ceramic-surfaced, ductile-cored strand elements, each including, along the outside of its length, elongate, sharp-angular edges, and placing that mass in the impact path of such a projectile in a manner whereby edges in the strands face the projectile impact path. Response performance of the invented strand material includes using fragmentation of a surface-hardened ceramic therein to dissipate energy, cutting an impacting projectile into fragments and deflecting those fragments, and telegraphing fragmentation of the ceramic material through a brittle/ductile region in the strand material to a ductile core-region wherein resulting deformation of this core region further dissipates projectile energy.
    • 涉及和利用身体装甲线材的结构,方法和性能,其包括具有细长的脆性陶瓷表面结构的细长线束体,设置在该表面结构内的细长延性芯结构,以及可操作地插入并连接表面和芯的细长的脆性/延性过渡结构 结构。 方法包括以下步骤:准备一定长度的细长陶瓷表面的延性芯线材元件,每个元件沿着其长度的外侧包括细长的锐角边缘,并将该质量放置在这种抛射体的冲击路径中 使得股线中的边缘面向射弹冲击路径。 本发明的股线材料的响应性能包括使用其中的表面硬化的陶瓷的碎裂来消散能量,将冲击的射弹切割成碎片并使这些碎片偏转,并将陶瓷材料的断裂通过线材料中的脆性/延性区域传递到 韧性核心区域,其中该核心区域的最终变形进一步消散射弹能量。