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    • 21. 发明授权
    • Fire hydrant locking device
    • 消防栓锁定装置
    • US06994106B1
    • 2006-02-07
    • US11010492
    • 2004-12-13
    • Charles L. HackleyGerald J. WeilandKing C. Embry
    • Charles L. HackleyGerald J. WeilandKing C. Embry
    • F11K35/00
    • F16K35/10E03B9/06Y10T70/5628Y10T70/5637Y10T70/5664Y10T137/7062Y10T137/7256
    • A locking device to inhibit unauthorized operation of a fire hydrant includes a locking plug having a bottom opening that fits over an actuating nut of the hydrant. The locking plug has a cylindrically-shaped body formed with an upper actuator nut. A peripheral groove in a sidewall of the plug body is located above a set of inward extending, threaded bores for set screws to affix the locking plug to the hydrant actuating nut. Fitting over the plug is a cap having a passageway that intersects tangentially with the plug groove. A locking pin on a hasp bracket then is inserted into the cap passageway to form an interference fit with the plug groove. Rotating the bracket upward positions a staple post on the cap in a slot in the hasp bracket. A padlock then secures the position of the hasp bracket to inhibit access to the plug actuator nut and operatively connected hydrant actuating nut.
    • 防止消防栓未经许可的操作的锁定装置包括具有底部开口的锁定塞,该底部开口装配在消防栓的致动螺母上。 锁定塞具有形成有上致动器螺母的圆柱形主体。 塞体的侧壁中的周边凹槽位于一组向内延伸的螺纹孔的上方,用于固定螺钉,以将锁定塞固定到消防栓致动螺母上。 插入插头是具有与插塞槽切向相交的通道的帽。 然后将卡扣支架上的锁定销插入盖通道中以与插塞槽形成过盈配合。 向上旋转支架,将支架上的订书钉柱定位在支架上的插槽中。 挂锁然后固定搭扣支架的位置,以阻止进入插头执行器螺母和操作连接的消防栓执行螺母。
    • 24. 发明授权
    • Optical recording medium and method
    • US06611484B2
    • 2003-08-26
    • US09973042
    • 2001-10-10
    • Syuji Tsukamoto
    • Syuji Tsukamoto
    • F11B700
    • G11B7/24085G11B7/0045G11B7/00455G11B7/007G11B7/24
    • An optical recording medium, which is suitable for multi-level recording forming a recording mark at multiple stages, is obtained. An optical recording medium, which is constructed in a manner that a recording mark is formed on the recording layer by irradiating a laser beam so as to record information, the recording layer being continuously formed in a relative moving direction to the laser beam with plural virtual recording cells, each of which has an arbitrary unit length and a unit width perpendicular to the unit length in the relative moving direction, plural-stage irradiation times being set with respect to the virtual recording cell so that the irradiation time becomes long successively from the first to final stages, a laser beam power being set in at least one irradiation time of the plural-stage irradiation times so as to intermittently become larger than a predetermined threshold value when the laser beam is irradiated to the virtual recording cell, and recording marks being formed in the virtual recording cell and giving plural-stages different optical reflectance to the virtual recording cell.