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    • 2. 发明授权
    • LATCHING SYSTEM
    • 拉链系统
    • EP2389520B1
    • 2013-12-25
    • EP10701765.9
    • 2010-01-19
    • Fin Quiver, Inc.
    • KOELLING, FredSUBRAMANYAM, Venugopal
    • A43C15/16A63C17/01B63B35/79F16B21/18
    • F16B2/14A43C15/161A63C17/01A63C17/017B63B35/7909B63B35/793F16B21/18Y10T24/45262Y10T24/45984Y10T29/4995Y10T29/53943Y10T403/7037
    • Devices and methods based upon the concept of a split ring having certain multiple interior angles to engage a stem or post having annular ring(s) with angular geometries that are complimentary to those of the split ring. The disclosure provides designs for a wide range of insertion and desertion forces between latch engagement stems and latch engagement bodies. Changes to insertion contact angles and contact area on engagement stems and corresponding changes to insertion contact angles and engagement areas on engagement bodies can significantly modify insertion forces required to engage various devices. Similarly, changes in degrees of angle between desertion angles and contact areas on engagement stems with corresponding changes in desertion angles and contact areas on engagement bodies will significantly modify the total desertion forces required to disengage various devices. Accordingly, the instant latching mechanism provides insertion and desertion forces that can be controlled independently of each other.
    • 基于具有特定多个内角的开口环的概念的装置和方法涉及具有与开口环的环形环具有互补的角形几何形状的环形环的杆或柱。 本公开提供了用于闩锁接合杆和闩锁接合体之间的广泛的插入和离开力的设计。 接合杆上的插入接触角和接触区域的改变以及接合体上的插入接触角和接合区域的相应改变可以显着改变接合各种装置所需的插入力。 类似地,接合杆上的抛弃角和接触区之间的角度变化以及接合体上的抛弃角和接触面积的相应变化将显着改变分离各种装置所需的总离开力。 因此,瞬时闭锁机构提供了可以彼此独立控制的插入力和推离力。