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    • 1. 发明申请
    • VIA FERRATA SAFETY SYSTEM
    • 威盛FARATA安全系统
    • US20090235425A1
    • 2009-09-24
    • US12193608
    • 2008-08-18
    • Ben WalkerBrendan PerkinsBill Belcourt
    • Ben WalkerBrendan PerkinsBill Belcourt
    • A62B35/00
    • A63B29/02A62B1/16A62B35/04
    • The present invention relates to a via ferrata safety system that improves user safety by increasing the reliable activation of the energy absorption system. The via ferrata system includes a harness coupling member, two fixed cable coupling members, and an energy absorption system. The energy absorption system is coupled to both the harness coupling member and the two fixed cable coupling members. The two fixed cable coupling members are independently coupled to the energy absorption system and to one another. The coupling between the two fixed cable coupling members is proportionally weaker than the independent coupling between the two fixed cable coupling members and the energy absorption system. This proportional weakness of the coupling between the fixed cable coupling members allows each of the fixed cable coupling members to act independently in the event that one of the cable coupling members is coupled to a point between the user and the energy absorption system.
    • 本发明涉及通过增加能量吸收系统的可靠启动来提高用户安全性的通孔铁氧体安全系统。 通孔电镀系统包括线束联接构件,两个固定电缆耦合构件和能量吸收系统。 能量吸收系统耦合到线束联接构件和两个固定电缆耦合构件。 两个固定的电缆耦合构件独立地耦合到能量吸收系统和彼此。 两个固定电缆耦合构件之间的耦合比两个固定电缆耦合构件和能量吸收系统之间的独立耦合成比例地弱。 在固定电缆耦合构件之间的耦合的这种比例弱点允许固定电缆耦合构件中的每一个在电缆耦合构件中的一个耦合到使用者和能量吸收系统之间的点之间独立地起作用。
    • 2. 发明授权
    • Via ferrata safety system
    • 通过ferrata安全系统
    • US09144711B2
    • 2015-09-29
    • US12193608
    • 2008-08-18
    • Ben WalkerBrendan PerkinsBill Belcourt
    • Ben WalkerBrendan PerkinsBill Belcourt
    • A63B29/02A62B1/16A62B35/04
    • A63B29/02A62B1/16A62B35/04
    • The present invention relates to a via ferrata safety system that improves user safety by increasing the reliable activation of the energy absorption system. The via ferrata system includes a harness coupling member, two fixed cable coupling members, and an energy absorption system. The energy absorption system is coupled to both the harness coupling member and the two fixed cable coupling members. The two fixed cable coupling members are independently coupled to the energy absorption system and to one another. The coupling between the two fixed cable coupling members is proportionally weaker than the independent coupling between the two fixed cable coupling members and the energy absorption system. This proportional weakness of the coupling between the fixed cable coupling members allows each of the fixed cable coupling members to act independently in the event that one of the cable coupling members is coupled to a point between the user and the energy absorption system.
    • 本发明涉及通过增加能量吸收系统的可靠启动来提高用户安全性的通孔铁氧体安全系统。 通孔电镀系统包括线束联接构件,两个固定电缆耦合构件和能量吸收系统。 能量吸收系统耦合到线束联接构件和两个固定电缆耦合构件。 两个固定的电缆耦合构件独立地耦合到能量吸收系统和彼此。 两个固定电缆耦合构件之间的耦合比两个固定电缆耦合构件和能量吸收系统之间的独立耦合成比例地弱。 在固定电缆耦合构件之间的耦合的这种比例弱点允许固定电缆耦合构件中的每一个在电缆耦合构件中的一个耦合到使用者和能量吸收系统之间的点之间独立地起作用。
    • 4. 发明申请
    • Systems and Methods for Integrated Pole Structure and Function
    • 集成极结构与功能的系统与方法
    • US20160310827A1
    • 2016-10-27
    • US15131363
    • 2016-04-18
    • Joe SpataroBill BelcourtKasey JarvisBrendan Perkins
    • Joe SpataroBill BelcourtKasey JarvisBrendan Perkins
    • A63C11/22A45B9/04A45B9/02
    • A63C11/227A45B9/02A45B9/04A45B2009/005A45B2009/007A63C11/222A63C11/24
    • A pole system comprising a continuous elongated frame forming both structural and functional geometries relating to the handle and shaft portions. The continuous elongated frame may include an internal cavity and a variable wall thickness along the lengthwise dimension. The handle portion of the continuous elongated frame includes a cap region, grip region, and a retention region. The independent regions of the handle portion may include substantially different cross sectional shapes to facilitate the corresponding functional characteristics. For example, the grip region may include an ergonomic tapered oval cross sectional shape to facilitate optimal engagement with a user's hand. The shaft portion of the continuous elongated frame is disposed between the handle portion and the bottom end of the continuous elongated frame. The tip is either integrated as a portion of the continuous elongated frame or translatably coupled via a lower pole member.
    • 一种杆系统,包括连续细长框架,其形成与手柄和轴部分有关的结构和功能几何形状。 连续细长框架可以包括沿着纵向维度的内部空腔和可变的壁厚。 连续细长框架的把手部分包括盖区域,握持区域和保持区域。 手柄部分的独立区域可以包括基本上不同的横截面形状以便于相应的功能特性。 例如,把手区域可以包括符合人体工程学的锥形椭圆形横截面形状,以便于与使用者的手最佳接合。 连续细长框架的轴部分设置在手柄部分和连续细长框架的底端之间。 尖端被整合为连续细长框架的一部分,或者经由下极构件平移地联接。
    • 8. 发明申请
    • Systems for Assisted Braking Belay with a Lever Disengagement Mechanism
    • 用于扶手脱机机制的辅助制动系统
    • US20140262610A1
    • 2014-09-18
    • US14206418
    • 2014-03-12
    • Paul OddouJake HallBill BelcourtBen Walker
    • Paul OddouJake HallBill BelcourtBen Walker
    • A62B1/14
    • A62B1/14
    • One embodiment of the present invention relates to an assisted braking belay system with a housing, a camming mechanism, and a lever mechanism with a lever disengagement mechanism. The housing may include a substantially enclosed rope channel through which a rope may extend to the climber. The camming mechanism is moveably coupled to the housing and configured to automatically engage a camming surface upon the rope across the rope channel if the rope translates through the channel at a particular speed. The lever mechanism enables a belayer to selectively disengage the camming mechanism and release the camming surface from the rope thereby allowing the rope to translate through the rope channel. The lever disengagement mechanism is configured to automatically disengage the lever mechanism from the camming mechanism thereby enabling the camming mechanism to automatically reengage the camming surface upon the rope across the channel.
    • 本发明的一个实施例涉及一种具有壳体,凸轮机构和具有杠杆分离机构的杠杆机构的辅助制动保持系统。 壳体可以包括基本上封闭的绳索通道,绳索可以通过该绳索通道延伸到登山者。 凸轮机构可移动地联接到壳体并且被配置为如果绳索以特定速度翻转通过通道,则自动地将绳索上的凸轮表面接合在绳索通道上。 杠杆机构使得隔板能够选择性地脱离凸轮机构并将凸轮表面从绳索释放,从而允许绳索通过绳索通道平移。 杠杆分离机构被配置为自动地将杠杆机构与凸轮机构分离,从而使得凸轮机构能够自动地重新接合绳索上的凸轮表面穿过通道。
    • 10. 发明授权
    • Wire-gate carabiner
    • 线闸门
    • US08234761B2
    • 2012-08-07
    • US12636111
    • 2009-12-11
    • Peter T. GompertJacob HallPaul TerryBenjamin WalkerBill Belcourt
    • Peter T. GompertJacob HallPaul TerryBenjamin WalkerBill Belcourt
    • F16B45/02
    • F16B45/02Y10T24/45335Y10T24/4545
    • One embodiment of the present invention relates to an improved wire-gate carabiner system including a frame, gate, and gate biasing system. The gate is pivotably coupled to the frame across an opening to form a continuously enclosed inner region in a closed configuration. The gate may be referred to as a wire-type gate in that it includes an arch and two ends. The arch is looped over a hook disposed on the keyed region of the frame in the closed configuration. The two ends are pivotably coupled to the frame at two independent gate coupling points on the pivot region so as to utilize the torsional rigidity of the gate structure as the gate biasing system. The keyed region of the frame includes a hook and a cover. The cover is oriented and shaped to laterally shield the arch and hook from undesirable couplings.
    • 本发明的一个实施例涉及一种改进的线栅搭扣系统,其包括框架,门和门偏置系统。 门通过开口枢转地联接到框架,以形成处于闭合构型的连续封闭的内部区域。 栅极可以被称为线型栅极,因为它包括拱形和两端。 拱形物环绕在设置在框架的键合区域上的钩子处于闭合构型。 两个端部在枢转区域上的两个独立的门连接点处可枢转地联接到框架,以便利用栅极结构的扭转刚度作为栅极偏置系统。 框架的键区域包括一个钩子和一个盖子。 盖被定向和成形以横向地屏蔽拱和钩以防止不期望的联接。