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    • 1. 发明授权
    • Piezoelectrically driven fast response high-torque clutch unit
    • 压电式快速响应高扭矩离合器单元
    • US4636679A
    • 1987-01-13
    • US818923
    • 1986-01-15
    • Bryan L. GlettMark A. Murphy
    • Bryan L. GlettMark A. Murphy
    • F16D27/00F16D41/07F16D41/08F16D45/00F16D47/06H01L41/08
    • F16D28/00F16D41/07F16D41/084F16D45/00F16D47/06
    • The coupling of driving shaft with a driven shaft is accomplished at high torques and high speeds of rotation using a piezoelectric shack, a passive clutch system, and a hydraulic clutch activation system. The piezoelectric stack is housed in the rotating driving shaft, and extends along the axis of the shaft when it receives an engagement signal. This extension of the piezoelectric stack depresses a disk spring into the hydraulic cavity of the housing of the hydraulic clutch activation system. The pressure thereby generated in the hydraulic fluid compresses a compression ring onto a control disk and translates any rotation of the compression ring into the control disk. A torsion rod in the center axis of the control disk is rotated and, in turn, rotates a plug connected to a sprag clutch. This rotation serves to rotate the sprags into a locking position so that the sprag clutch engages the driving shaft with the driven shaft.
    • 驱动轴与从动轴的联接是通过使用压电棚架,被动离合器系统和液压离合器启动系统的高转矩和高转速实现的。 压电堆叠被容纳在旋转的驱动轴中,并且当它接收到接合信号时沿轴的轴线延伸。 压电叠层的这种延伸将盘簧压入液压离合器启动系统的壳体的液压腔中。 由此在液压流体中产生的压力将压缩环压缩到控制盘上,并将压缩环的任何旋转转换成控制盘。 控制盘的中心轴上的扭杆被旋转,并且使连接到楔形离合器的插头旋转。 该旋转用于将楔形物旋转到锁定位置,使得楔形离合器与驱动轴与从动轴接合。
    • 4. 发明授权
    • Convection heat trap
    • 对流热阱
    • US6164333A
    • 2000-12-26
    • US264845
    • 1999-03-02
    • Mark A. MurphyWesley O. Dunn
    • Mark A. MurphyWesley O. Dunn
    • F16K15/16F16K15/00
    • F16K15/16Y10T137/778Y10T137/7891
    • A water heater including a water-tight tank, a cold water inlet and a hot water inlet in the tank. A first heat trap assembly is mounted at the cold water inlet and a second heat trap assembly is mounted at the hot water outlet. The first and second heat trap assemblies are adapted to allow flow of water both into and out of the tank when hot water is drawn out of the hot water outlet. The first and second heat trap assemblies are adapted to reduce convection heat loss from inside the tank when the water heater is in a stable condition, i.e., when water is not being drawn out of the hot water outlet. The heat trap assemblies are comprised of a housing member having a flange and a cylindrical body formed integrally therewith and a bushing member having a flange and a cylindrical body formed integrally therewith. The body of the bushing member is securely mounted inside the body portion of the housing member. A flapper valve member having a central flapper section and an outside ring section is secured between the flanges of the housing member and the flange of the bushing member. The central flapper section of the flapper valve member is movable with respect to the ring section of the flapper valve member in response to a pressure differential across the first and second heat trap assemblies.
    • 一个热水器,包括一个水箱,一个冷水入口和一个热水入口。 第一个热阱组件安装在冷水入口处,第二个热阱组件安装在热水出口处。 当热水从热水出口排出时,第一和第二热阱组件适于允许水进入和离开罐的水流。 第一和第二散热器组件适于当热水器处于稳定状态时,即当水不从热水出口排出时,减少从罐内的对流热损失。 散热器组件包括具有凸缘和与其一体形成的圆柱体的壳体构件和具有与其一体形成的凸缘和圆柱体的衬套构件。 衬套构件的主体牢固地安装在壳体构件的主体部分内。 具有中央挡板部分和外环部分的挡板阀构件固定在壳体构件的凸缘和衬套构件的凸缘之间。 挡板阀构件的中央挡板部分响应于横跨第一和第二热阱组件的压差而相对于挡板阀构件的环部分可移动。