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    • 7. 发明授权
    • Mine resistant combat boot, blast mitigating
    • 防地雷作战引爆,减震
    • US09127914B2
    • 2015-09-08
    • US13918420
    • 2013-06-14
    • David J. Millar
    • David J. Millar
    • A43B13/12F41H1/00A43B13/14A43B13/02A43B3/00A43B7/32
    • F41H1/00A43B3/0026A43B7/32A43B13/026A43B13/127A43B13/141
    • A blast deflecting boot has a V like shaped sole, a layer to reduce and to stop high velocity fragments, a padded core that limits the blast forces transmitted to the lower leg of a soldier, and an upper of high velocity blast fragment reducing fabric. The invention provides the sole within a layer of non-slip urethane that contains energy absorbing foam, a layer of high velocity fragment reducing para-aramid or ultra-high molecular weight polyethylene UHMWPE fabric, and a core of closed cell single or multiple density high energy absorbing foam or silicone that absorbs impact forces. The insole has a high velocity fragment reducing layer system of multiple layers of UHMWPE, or para-aramid. The sole of the present invention may have a unitary form or be assembled from multiple sections.
    • 爆炸偏转靴具有V形鞋底,减少并停止高速碎片的层,限制传递到士兵小腿的爆炸力的衬垫芯和高速炸碎片减少织物的上部。 本发明提供了一层防滑氨酯,其中包含能量吸收泡沫,高速片段还原对位芳族聚酰胺或超高分子量聚乙烯UHMWPE织物层,以及单孔或多密度密闭高密度的核心 能量吸收泡沫或吸收冲击力的硅树脂。 鞋垫具有多层UHMWPE或对位芳族聚酰胺的高速度碎片还原层系统。 本发明的唯一可以具有整体形式或从多个部分组装。
    • 9. 发明申请
    • WEARABLE AIR BLAST PROTECTION DEVICE HAVING AT LEAST TWO ATTENUATING REGIONS
    • 具有至少两个强度降低的区域的耐磨空气保护装置
    • US20150090107A1
    • 2015-04-02
    • US14307400
    • 2014-06-17
    • Elwha LLC
    • Philip Andrew EckhoffRoderick A. HydeMuriel Y. IshikawaJordin T. KareLowell L. Wood, Jr.
    • F41H5/04G06F17/50F41H1/00
    • F41H5/04A41D31/005B32B2307/10B32B2571/00F41H1/00F41H1/04F42D5/045G06F17/50G06F17/5009Y10T29/49826Y10T29/49947Y10T156/1002
    • A method of designing a wearable air blast wave energy protection device includes computer modeling at least two candidate reflective materials for a first human-protective and primarily reflective response to a specified incident air blast wave energy. The method includes selecting a layer of a first material from the at least two candidate reflective materials based on the computer modeling of the at least two candidate reflective materials. The method includes computer modeling at least two candidate attenuative materials for a second human-protective and primarily attenuative response and computer modeling another at least two candidate attenuative materials for a third human-protective and primarily attenuative response. The method further includes selecting a first attenuating-region material and a second attenuating-region material. The method further includes electronically maintaining informational data corresponding to the selected layer of the first material, the selected first attenuating-region material, and the selected second attenuating-region material.
    • 一种设计可佩戴空气冲击波能量保护装置的方法包括:计算机模拟至少两种候选反射材料,用于对特定的入射气体冲击波能量的第一人为保护和主要反射响应。 该方法包括基于至少两个候选反射材料的计算机建模从所述至少两个候选反射材料中选择第一材料层。 该方法包括计算机模拟用于第二人类保护和主要衰减响应的至少两种候选衰减材料,并且计算机对另一种至少两种候选衰减材料进行建模,用于第三人体保护性和主要是衰减性应答。 该方法还包括选择第一衰减区域材料和第二衰减区域材料。 该方法还包括电子地维护对应于所选择的第一材料层,所选择的第一衰减区域材料和所选择的第二衰减区域材料的信息数据。
    • 10. 发明授权
    • Process for the manufacture of multilayer articles
    • 制造多层制品的方法
    • US08979523B2
    • 2015-03-17
    • US14131585
    • 2012-07-06
    • David Samuel Thompson
    • David Samuel Thompson
    • B29C35/02B29C70/42F41H1/00B32B37/10B32B41/00B29C70/44B29C43/12
    • F41H1/00B29C35/0227B29C43/12B29C70/44B30B5/02B30B11/001B32B37/10B32B37/1009B32B41/00B32B2309/12B32B2571/02
    • A method and apparatus for manufacturing composite articles such as laminate ballistic protection and structural reinforcements. The method involves placing a composite assembly in a sealable membrane system, e.g. a vacuum bag and placing the vacuum bag in a pressure vessel to apply heat and pressure to the composite assembly, thereby manufacturing a composite article. The apparatus comprises: a pressure vessel; a source of processing liquid to apply isostatic pressure to the vacuum bag; processing liquid heating, cooling, pressurizing and circulating means; and a control system to control the heating, cooling and pressurizing means. The sealable membrane system may preferably comprise: a sealable membrane to separate the composite article from the processing liquid and maintain the composite article below atmospheric pressure; and a membrane to cushion the composite article and resist adhesion of the article to other membranes. The processing liquid is preferably silicone oil.
    • 用于制造复合制品的方法和装置,例如层压防弹和结构增强件。 该方法包括将复合组件放置在可密封的膜系统中,例如。 真空袋并将真空袋放置在压力容器中以对复合组件施加热量和压力,从而制造复合制品。 该装置包括:压力容器; 一种处理液体的来源,对真空袋施加等静压力; 处理液体加热,冷却,加压和循环装置; 以及用于控制加热,冷却和加压装置的控制系统。 可密封膜系统可以优选包括:可密封膜,以将复合制品与处理液体分离并将复合制品保持在大气压之下; 以及用于缓冲复合制品并阻止制品与其它膜粘附的膜。 处理液优选为硅油。