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    • 1. 发明申请
    • Protective footwear
    • 防护鞋
    • US20060059718A1
    • 2006-03-23
    • US11094596
    • 2005-03-31
    • Denis Dion
    • Denis Dion
    • A43B13/22
    • A43B7/32
    • A protective footwear incorporating a special ballistic grade pliable protector designed to protect the vulnerable arch area of the foot from multi-directional punctures. As an integral part of the boot, the protector provides protection from different sharp objects having multiple angles of incident. The protector is made of multiple layers of woven ballistic fabric and is adapted to trap the sharp point of the protruding object in its fabric webbing preventing it from being redirected to a more vulnerable and exposed area of the foot.
    • 一种防护鞋,结合了专门的防弹级柔韧保护器,旨在保护足部的易损弓部区域免受多方向穿刺。 作为防护罩的一个组成部分,保护器提供了防止具有多个入射角的不同尖锐物体的保护。 保护器由多层编织弹道织物制成,并且适于将突出物体的尖锐部分捕获在其织物织带中,防止其被重定向到脚的较脆弱和暴露的区域。
    • 2. 发明申请
    • WATERPROOF BREATHABLE BOOT
    • 防水呼吸机
    • US20150335097A1
    • 2015-11-26
    • US14284740
    • 2014-05-22
    • LES CHAUSSURES STC INC.
    • Michel BISSON
    • A43B7/12A43B23/02
    • A43B7/125A43B23/022A43B23/0235A43B23/0245A43B23/06
    • A waterproof breathable boot comprises a sole, at least two panels forming an external shell having an outer most surface waterproof, an internal layer separate from the outer shell and connected to the external shell by the sole such that a gap of air is formed between the internal layer and the external shell, and a drying insert connected to the internal layer. The at least two panels are waterproofly bonded to each other. An adhesive is in direct contact with a first portion of the inner surface and a second portion of the outer surface waterproofly for bonding the first portion to the second portion. The internal layer has wicking properties and is protected from an outside of the boot by the external shell. A method of manufacturing a waterproof breathable boot is also presented.
    • 防水透气靴包括鞋底,至少两个板,其形成具有外表面防水的外壳,与外壳分离并且通过鞋底连接到外壳的内层,使得空​​气间隙形成在 内层和外壳,以及连接到内层的干燥插入件。 所述至少两个面板彼此防水地结合。 粘合剂与内表面的第一部分直接接触,外表面的第二部分防水地将第一部分粘合到第二部分。 内层具有芯吸性能,并通过外壳从外壳防护。 还提出了制造防水透气靴的方法。
    • 6. 发明授权
    • Fluid compression system
    • 流体压缩系统
    • US09175676B2
    • 2015-11-03
    • US13060878
    • 2010-11-29
    • Regis FortinAndre EmondMichel Bisson
    • Regis FortinAndre EmondMichel Bisson
    • F01B7/20F04B25/02A43B13/20F04B9/14
    • F04B25/02A43B13/203F04B9/14
    • A fluid pump (10) has a compression member (12) having a variably-sized compression surface (13b) movable against fluid pressure in a chamber (22). The effective surface area of the compression member (12) decreases in size together with a corresponding cross-sectional area of the chamber (22) from a maximal area at a beginning of the compression stroke to a minimal area at the end of the compression stroke. Using a variably-sized surface area to compress a fluid volume allows obtaining a rapid gain of fluid pressure even for applications in which the compression member (12) is actuated at relatively low frequencies and under the action of relatively small forces.
    • 流体泵(10)具有压缩构件(12),该压缩构件(12)具有可抵抗腔室(22)中的流体压力移动的可变大小的压缩表面(13b)。 压缩构件(12)的有效表面积与压缩冲程开始时的最大面积相对应的腔室(22)的相应横截面面积减小到压缩冲程结束时的最小面积 。 使用可变尺寸的表面积来压缩流体体积,即使在压缩构件(12)以相对较低的频率并且在相对较小的力的作用下被致动的应用也可以获得流体压力的快速增益。
    • 7. 发明申请
    • FLUID COMPRESSION SYSTEM
    • 流体压缩系统
    • US20120233989A1
    • 2012-09-20
    • US13060878
    • 2010-11-29
    • Regis FortinAndre EmondMichel Bisson
    • Regis FortinAndre EmondMichel Bisson
    • F01B7/20F04B33/00F15B1/02
    • F04B25/02A43B13/203F04B9/14
    • A fluid pump (10) has a compression member (12) having a variably-sized compression surface (13b) movable against fluid pressure in a chamber (22). The effective surface area of the compression member (12) decreases in size together with a corresponding cross-sectional area of the chamber (22) from a maximal area at a beginning of the compression stroke to a minimal area at the end of the compression stroke. Using a variably-sized surface area to compress a fluid volume allows obtaining a rapid gain of fluid pressure even for applications in which the compression member (12) is actuated at relatively low frequencies and under the action of relatively small forces.
    • 流体泵(10)具有压缩构件(12),该压缩构件(12)具有可抵抗腔室(22)中的流体压力移动的可变大小的压缩表面(13b)。 压缩构件(12)的有效表面积与压缩冲程开始时的最大面积相对应的腔室(22)的相应横截面面积减小到压缩冲程结束时的最小面积 。 使用可变尺寸的表面积来压缩流体体积,即使在压缩构件(12)以相对较低的频率并且在相对较小的力的作用下被致动的应用也可以获得流体压力的快速增益。