Abstract:
A magnetorheological clutch comprises a stationary part, a rotating primary part with primary laminated strips and a secondary part with secondary laminated strips, whereby a controllable magnetic field acts upon the magnetorheological fluid. The aim of the invention is to allow transmission of a highest possible torque in a smallest possible space and with minimal power consumption. Said aim is achieved, whereby a number of solenoid coils, each having a first yoke with a substantially radial winding axis, are alternately oppositely polarized; the first yokes have cylindrical front faces, whereby the magnetic field lines radially enter and exit said yokes, the primary laminated strips and secondary laminated strips form closed cylindrical envelopes and second outer and inner yokes are provided radially outside of and radially inside the first yokes, whereby the magnetic field lines radially enter the second yokes and radially exit said yokes in the opposite direction.
Abstract:
A hinge assembly (300) for use in a flat display monitor includes a base seat (10), a support seat (20) and a pivotal mechanism. The pivotal mechanism comprises a pivotal shaft (30) having at least one flat surface (310). The base seat defines a pivotal hole (142) therein. The support seat defines an engaging hole (242). The base seat is rotatable relative to the support seat. The pivotal shaft passes through the pivotal hole of the base seat and the engaging hole of the support seat. One of the base seat and the support seat defines a protrusion (143). The protrusion is substantially V-shaped and has two edges (1432, 1434). The flat surface of the pivotal shaft pivotally engages with the protrusion. Another one of the pivotal hole of the base seat and the engaging hole of the support seat non-rotatably engages with the pivotal shaft.
Abstract:
A drive for pivoting a flap on a body of a vehicle about a pivot axis, with a drive motor, by means of which an output driving the flap pivotably can be driven rotatably via a drive train having an epicyclic gear. The epicyclic gear has a sun gear, an internally toothed rim, a planet gear which is in engagement with the sun gear and the internally toothed rim, and a planet carrier which carries the planet gear and which is connected fixedly in terms of rotation to a shaft coaxial with respect to the axis of rotation of the planet carrier. The rotational movement of a component of the epicyclic gear can be braked by a brake. In particular, the brake can stop the rotational movement of the internally toothed rim, the sun gear can be driven rotatably by the drive motor, and the shaft of the planet carrier can form the output.
Abstract:
A method of dynamically damping an electric motor (12) that is controlled by an H-bridge driver (16) by interdigitating power pulses with braking pulses by switching from a power switch mode to a shorting circuit mode with switches (22 and 26) closed that brakes the electric motor.
Abstract:
There is provided a hinge rotatably connecting a first body to a sacond body, including (a) a main body to be fixed onto the first body, the main bodyr including a hollow cylindrical portion horizontally extending, (b) a rotation shaft fixed at one end to the second body and rotatably connected at the other end to the main body, (c) an outer collar connected to the hollow cylindrical portion of the main body in a direction in which the hollow cylindrical portion extended extends and (d) a frictional collar filling space therewith between the rotation shaft and both the outer collar and the hollow cylindrical portion. For instance, the first body may be a keyboard, and the second body may be a display screen in a note-type computer. The hinge ensures smooth rotation between the first and second bodies, and further ensures a greater upper limit in the rotation number than that of a conventional hinge used in a note-type computer.
Abstract:
Door hinge with a locking device based on a field force, including a cylinder divided by a piston into working spaces that are filled with an operating medium whose viscosity can be changed by means of a field force. The working spaces are connected to one another by at least one flow connection that is subject to the influence of a field force generating element. The door hinge is designed as a pivot bearing, wherein the cylinder takes the form of a bearing eye and the piston takes the form of a rotary piston with at least one blade.
Abstract:
An automatic door operator for swing doors which uses a worm gear transmission to connect the motor to a belt and pulley which in turn is connected to a spur gear and drive gear. The door arm of the swing door is connected to a double-ended shaft which is part of the drive gear. A rack and pinion gear and spring are used to provide the closing force to the door arm. The motor is mounted over the spring and the belt and pulleys are located alongside the motor which results in a compact non-handed design.
Abstract:
1,227,248. Door closing device. OY WARTSILLA AB. 20 Aug., 1968 [21 Aug., 1967], No. 39682/68. Heading E2M. [Also in Division F2] A fluid-braked door closing device has a piston 2 screw-threadedly engaged by a cylinder 1, the piston having a fluid chamber 4 which communicates with the cylinder via a non-return valve 8 and a return duct provided with an adjustable throttling means 13 which may be operated from outside the device. There is also a constant throttling means provided by an annular gap 10 between the piston and cylinder and an opening 11 in the piston wall. Movement of a door attached to the arm 7 causes rotation and thus axial displacement of the piston so that fluid flows from the chamber 4 to chamber 5 via valve 8. When the door is released, a spring 9 urges the cylinder I back to its initial position relative to the piston 2, fluid returning to the chamber 4 via ducts 12 and 11. The screw 13 may be made of a material having a greater coefficient of expansion than that of the piston so that the throttling effect and thus the closing speed of the door remains substantially unchanged with changes in temperature.
Abstract:
The invention relates to a fitting arrangement having a furniture connecting fitting, in particular a hatch holder, which can be used to attach a furniture hatch or a door can be to a cabinet body in a swiveling manner, wherein an interlock (200) and a bracket (300) are provided, which can be used to connect the furniture hatch in a form-fitting and/or form-locked manner to the furniture body in a closed position of a kinematic arrangement (30) of the furniture connecting fitting, wherein the kinematic arrangement (30) has levers and links, which can be used to move the furniture hatch or door from the closed position into an open position, wherein a spring element (38.2) is provided which, in the closed position of the kinematic arrangement (30), introduces a prestress into the kinematic arrangement (30) in the opening direction, and wherein the interlock (200) and the bracket (300) form a release mechanism, which can be used to release the connection between the interlock (200) and the bracket (300) in the closed position of the kinematic arrangement. Such a fitting arrangement can be used to effect a convenient opening of a door or hatch from the closed position.
Abstract:
A hinge for articulatedly connecting first and second components, with first and second hinge parts for fastening to the first and second components, respectively, with a first pivot arm which comprises a first articulation axis on the first hinge part and a second articulation axis on the second hinge part, wherein the first hinge part comprises a longitudinal guide for the first articulation axis of the first pivot arm, and with a second pivot arm which comprises a first articulation axis on the first hinge part and a second articulation axis on the second hinge part, wherein the first hinge part comprises a damping element, wherein the first pivot arm is connected to a braking element, wherein a setting element is provided which comprises a pressing part, which acts on the damping element, and an actuating part, wherein the actuating part is in an access hole of the first hinge part.