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    • 34. 发明申请
    • LATCH
    • US20140062102A1
    • 2014-03-06
    • US14116096
    • 2012-05-11
    • Robert GrantMichael Block
    • Robert GrantMichael Block
    • E05C1/14
    • E05C1/145B64D11/04E05B5/00E05B41/00E05B59/00E05B63/14E05B65/1086E05C1/004E05C1/04E05C1/065Y10T292/0967
    • A latch includes a first locking bolt, where a first extended position of the first locking bolt defines a first locked condition and a first retracted position defines a first unlocked condition. The latch also includes a second locking bolt, where a second extended position of the second locking bolt defines a second locked condition and a second retracted position defines a second unlocked condition. A biasing member operatively connects to the first locking bolt to bias the first locking bolt in the first extended position. A lever pivotally connects to the housing and operatively connects to the first locking bolt such that movement of the lever from a closed position to an opened position causes at least the first locking bolt to move from the first extended position to the first retracted position. A locking indicator is provided in associated with the second locking bolt.
    • 闩锁包括第一锁定螺栓,其中第一锁定螺栓的第一延伸位置限定第一锁定状态,并且第一缩回位置限定第一解锁状态。 闩锁还包括第二锁定螺栓,其中第二锁定螺栓的第二延伸位置限定第二锁定状态,而第二缩回位置限定第二解锁状态。 偏置构件可操作地连接到第一锁定螺栓,以将第一锁定螺栓偏压在第一延伸位置。 杠杆枢转地连接到壳体并且可操作地连接到第一锁定螺栓,使得杠杆从关闭位置到打开位置的运动使得至少第一锁定螺栓从第一延伸位置移动到第一缩回位置。 锁定指示器设置成与第二锁定螺栓相关联。
    • 40. 发明申请
    • Electrochemical sensor
    • 电化学传感器
    • US20060266658A1
    • 2006-11-30
    • US10568331
    • 2004-08-05
    • Robert Grant
    • Robert Grant
    • G01N27/26
    • G01N27/4067G01N27/4074
    • An organic contaminant molecule sensor is described for use in a low oxygen concentration monitored environment. The sensor comprises an electrochemical cell, which is formed from a measurement electrode coated with (or formed from) a catalyst having the ability to catalyse the dissociative adsorption of the organic contaminant molecule, the electrode being positioned for exposure to the monitored environment, a reference electrode coated with (or comprised from) a catalyst selected for its ability to catalyse the dissociation of oxygen to oxygen anions, the reference electrode being positioned within a reference environment, and a solid state oxygen anion conductor disposed between and bridging the measurement and reference electrodes, wherein oxygen anion conduction occurs at or above a critical temperature, Tc. Sealing means are provided for separating the reference environment from the monitored environment. Means are also provided for controlling and monitoring the temperature of the cell, and for controlling the electrical current (Ip) flowing between the reference and measurement electrodes. At temperatures (Tads) below Tc, organic contaminant molecules are adsorbed onto and dissociated at the surface of the measurement electrode leading to the build up of carbonaceous deposits at the surface thereof. At temperatures (Ttit) above Tc, an electrical current (Ip) is passed between the reference and measurement electrode thereby to control the number of oxygen anions passing from the reference electrode to the measurement electrode to oxidise the carbonaceous deposits formed at the surface thereof and the formation of carbon dioxide.
    • 描述了一种有机污染物分子传感器用于低氧浓度监测环境。 该传感器包括电化学电池,该电化学电池由涂覆有(或由其形成)的催化剂的测量电极形成,所述催化剂具有催化有机污染物分子的解离吸附的能力,该电极定位用于暴露于被监视的环境中, 电极被涂覆有(或由其组成)催化剂,其催化剂能够催化氧与氧阴离子的解离,参考电极位于参考环境内,固态氧阴离子导体设置在桥接测量和参考电极之间 其中氧阴离子导电发生在临界温度T T以上。 提供密封装置用于将参考环境与被监视环境分离。 还提供了用于控制和监测电池的温度并用于控制在参考电极和测量电极之间流动的电流(I SUB)的装置。 在低于T c C的温度下,有机污染物分子被吸附到测量电极的表面并离解,导致在表面积累碳质沉积物 其中。 在高于T c C的温度(T T)下,在参考电极和测量电极之间通过电流(I P),从而控制 从参考电极传递到测量电极的氧阴离子数量,以氧化其表面形成的碳质沉积物和形成二氧化碳。