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    • 51. 发明授权
    • Safety helmet
    • 安全帽
    • US5448780A
    • 1995-09-12
    • US100599
    • 1993-07-30
    • Ricky J. Gath
    • Ricky J. Gath
    • A42B3/08A42B3/10A42B3/16A42B3/22A42B3/26A42B3/28A42B3/30A42B3/32A42B1/08
    • A42B3/225A42B3/08A42B3/10A42B3/16A42B3/26A42B3/28A42B3/30A42B3/326
    • A high performance sport safety helmet. The helmet is formed by an outer shell adapted for fitting upon a wearer's head, with a frontal periphery defining a centrally arched portion forming a front opening exposing the face and a major portion of the forehead of the wearer. The shell further has a base periphery defining an arcuate base opening for receiving the wearer's neck. A flexible resilient expandable front band is secured to and extends across the front opening of the shell with a substantial portion of the band lying below the centrally arched portion. The band snugly engages and substantially completely covers the forehead of the wearer. An articulated shell liner is secured to and covers the inner surface of the shell. The liner is partially separable and non-detachable from the shell. A visor is pivotally secured to the shell and nestable between the shell and the shell liner for selectively shielding the front opening of the shell.
    • 高性能运动安全头盔。 头盔由适于安装在佩戴者头部上的外壳形成,前外围限定中央拱形部分,形成暴露面部的前开口和穿用者前额的大部分。 壳体还具有限定用于接纳穿戴者的颈部的弓形基部开口的基部周边。 柔性弹性可膨胀前带固定到壳体的前开口并延伸穿过壳体的前开口,其中大部分带位于中央拱形部分的下方。 乐队紧贴地并且基本上完全覆盖佩戴者的前额。 铰接的外壳衬套被固定并覆盖壳的内表面。 衬套是部分可分离的,不可脱离壳体。 遮阳板枢转地固定到壳体上并且可嵌套在壳体和壳体衬套之间,用于选择性地屏蔽壳体的前开口。
    • 59. 发明申请
    • OFF-ROAD ROLLING FILM VISION SYSTEM
    • US20170313543A1
    • 2017-11-02
    • US15650864
    • 2017-07-15
    • Mark Kulik
    • Mark Kulik
    • B65H75/14A61F9/02B65H16/06A42B3/26B65H18/00B65H18/02B65H18/10
    • Disclosed is an Off-Road Rolling Film Vision System comprising a Controller Module (200), a Takeup Module (300), and a Rollout Module (400). The Controller Module (200) comprises a Command Input (205), a Controller Process Module (210), a Command Transmitter (215), and a Power Supply (220). The Controller Module (200) is configured to remotely control a Motor (325) in the Takeup Module (300). The Command Input (205) comprises at least one Button configured to accept a knuckle bump for controlling a Motor (325) in the Takeup Module (300) when the Controller Module (200) is attached to a handlebar of an off-road vehicle. The at least one Button configured to accept a knuckle bump may be configured to be adjacent to a user's metacarpophalangeal index finger joint. The at least one Button configured to accept a knuckle bump may be configured to be adjacent to a user's metacarpophalangeal thumb joint. The Takeup Module (300) comprises a Motor Compartment (305), a Takeup Spool Compartment (310), a Takeup Spool Gear Compartment (315), a Takeup Film Window (320), a Motor (325), a Motor Gearbox (330), and at least one Takeup Spool Gear (340). The Takeup Module (300) may further comprise a Takeup Spool Window (350) configured to provide a view of a Takeup Spool (345) within the Takeup Module (300). Also disclosed is a Takeup Spool (500) comprising a Spool Alignment Tab Wheel (505), a Spool Ribbed Shaft (510), a Rib Quarter Section Cutout (515), a Spool Alignment Slot Wheel (525), a Spool Alignment Tab (530), a Spool Alignment Slot (535), a Plurality of Wheel Cutouts (540), and a Plurality of Wheel Slots (545). Also disclosed is a method for maintaining clear vision with goggles comprising receiving a command input via a knuckle bump, transmitting a designated signal to a module comprising a Motor and a Takeup Spool, activating the Motor to cause the Takeup Spool to rotate, and winding a Transparent Film a designated distance over goggles.