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    • 7. 发明申请
    • Self-balancing, load-distributing helmet structure
    • 自平衡,负载分配头盔结构
    • US20060096011A1
    • 2006-05-11
    • US11061916
    • 2005-02-18
    • Michael DennisGerhard Paasche
    • Michael DennisGerhard Paasche
    • A42B3/00
    • A42B3/145A42B3/08A42B3/127
    • A self-seeking, load-distributing, load-balancing and shock-managing head-engaging system for use inside, and in association with, the shell of a helmet, including (a) a collection of configurationally changeable, shock-absorbing pads removeably and changeably attached/attachable effectively as a variable distribution to the inside of such a shell, and (b) a cinchable, self-seeking/adjusting, self-load-balancing and load distributing chin-strap subsystem operatively associated with the pad distribution, and also attached to the shell. This sub-system is sensitive to the then-particularities of such a pad distribution, and is operable, on cinching of the subsystem through the simple act of pulling on just two strap ends, to stabilize the associated helmet shell on the head of a wearer, with all of the pads in the then-distribution of pads being thereby drawn into proper, defined, shock-managing, load-distributing and load-balancing condition relative to the wearer's head.
    • 一种自动寻找,负载分配,负载平衡和冲击管理头部接合系统,用于头盔壳体内部和与之相关联,包括(a)可移除的可组态变化的减震垫的集合 并且可变地附接/有效地附接到这种壳体的内部的可变分布,以及(b)可操作地与衬垫分配相关联的可绑定,自寻找/调节,自负载平衡和负载分配下巴子系统, 并附加在外壳上。 该子系统对这种垫分布的特殊性是敏感的,并且可以通过简单地拉动仅两个条带端部来对子系统进行收紧,以将相关的头盔壳体稳定在佩戴者的头部上 因此,垫的分布中的所有垫因此相对于佩戴者的头部被拉入适当的,限定的,冲击管理,负载分配和负载平衡状态。
    • 8. 发明申请
    • Headset-accommodating, load-balancing, helmet strap system
    • 头戴耳机,负载平衡,头盔系带
    • US20060179537A1
    • 2006-08-17
    • US11354803
    • 2006-02-15
    • Michael DennisGerhard Paasche
    • Michael DennisGerhard Paasche
    • F41H1/04
    • A42B3/08A42B3/12A42B3/14F41H1/04
    • A self load-balancing, headset-wearing accommodating helmet strap system useable with a helmet shell having front, rear and opposite lateral sides, and including (a) a chin-strap cinching subsystem having (1) a pair of opposite-side, elongate, flexible, lateral strap elements intended for use on opposite lateral sides of such a helmet shell, and (2) an elongate chin-engaging component with opposite ends slideably mounted on and between the opposite ends of different ones of the lateral strap elements, and (b), for each of the lateral strap elements, a pair of attaching devices, with one such device being designed for attaching one end of a lateral strap element adjacent an associated front lateral side of a helmet shell, and the other attaching device being designed for attaching the other end of the same lateral strap element adjacent an associated rear lateral side of the helmet shell. The system of the invention accommodates other helmet-internal componentry (namely, a suspension and attached load-cushioning pads) in a manner easily enabling lateral self-load-balancing of an entire helmet system, and in a context which also accommodates the non-interfering wearing of an audio communication headset.
    • 一种自负荷平衡头戴式头戴式头盔带系统,其可用于具有前,后和相对侧面的头盔外壳,并且包括(a)下巴紧固子系统,其具有(1)一对相对侧的细长 ,用于在这种头盔外壳的相对侧面上使用的柔性侧面带元件,和(2)细长的下巴接合部件,其两端可滑动地安装在不同侧面带元件的相对端之间和之间,以及 (b)中,对于每个横向带元件,一对附接装置,其中一个这样的装置被设计成用于将侧向带元件的一端邻近头盔壳体的相关联的前侧面附接,另一个附接装置是 设计用于将相同的侧带元件的另一端附接在头盔壳体的相关联的后侧面附近。 本发明的系统以容易实现整个头盔系统的侧向自负载平衡的方式适应其他头盔内部组件(即,悬架和附接的负载缓冲垫),并且在也适应非紧固件的上下文中, 干扰音频通信耳机的佩戴。
    • 9. 发明申请
    • Probe-style, quick-attach interconnect mechanism
    • 探头式,快速连接机构
    • US20070194173A1
    • 2007-08-23
    • US11787504
    • 2007-04-16
    • Gerhard Paasche
    • Gerhard Paasche
    • B64D11/00
    • B64D11/06B60N2/0155B60N2/3043B60N2/305F16B2/10F16B21/06
    • Dual-action, spring-biased, probe-style latching structure including (a) first and second reversibly moveable relative-motion components operatively associated with one another, and each moveable between spaced first and second limit positions, and (b) biasing springs for these components, each urging its associated component in a common direction toward the component's first limit position. Motion of the first component from its first limit position toward its second limit position, against the resistance of the first component's biasing spring, accommodates snap-response movement of the second component toward its first limit position, and motion of the second component from its first limit position toward its second limit position, against the resistance of the second component's biasing spring, accommodates snap-response movement of the first component toward its first limit position.
    • 双作用,弹簧偏置的探针式闩锁结构,包括(a)第一和第二可逆运动的相对运动部件,其可操作地彼此相关联,并且每个在相互间隔的第一和第二极限位置之间运动,以及(b) 这些部件每个都朝向组件的第一极限位置沿着共同的方向推动其相关部件。 第一部件从其第一限位位置朝向第二限位位置抵抗第一部件的偏置弹簧的阻力的运动适应第二部件朝向其第一极限位置的快动响应运动,以及第二部件从其第一限位位置的运动 限制位置朝着其第二限位位置抵抗第二部件的偏置弹簧的阻力,适应第一部件朝向其第一极限位置的卡扣响应运动。
    • 10. 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。