Abstract:
A roof rail for vehicles with a tubular gallery rod (1) and a pair of rail feet (2) which are arranged at its ends, are supported on a vehicle's roof (4). The rail feet (2) are each formed from the same length of material as the gallery rod (1) and consist of bent and flared end sections of the gallery rod (1). The gallery rod (1) has a continuously increasing cross section proceeding from the transition region of one rail foot (2) up to the transition region into the other rail foot (2). A manufacturing process for the roof rail is also disclosed in which a length of extruded material having an expansion fold is formed with arcing end portions. The length of material is then placed in a molding tool and pressurized to expand the material such that it forms a roof rail.
Abstract:
A rotary idle-speed actuator for controlling a throttle cross-section in a line carrying combustion air for an internal combustion engine has an actuating motor with a stator and a rotor. The rotor is mounted on a shaft of a throttle member which more or less opens a control opening. The rotor has a cup-shaped form with a bottom and a cylinder-jacket-shaped wall. The stator has field windings and is arranged together with the field windings inside the rotor, and the stator is mounted only at its end which is opposite to the bottom of the rotor.
Abstract:
A harvesting machine is provided with a foreign material protective device to extract stones, sand and other material from the harvesting goods which are gathered by the header. With the present invention, the protective device is provided with a housing defined by two longitudinal walls, perpendicular to the flow of crop material, and two side walls, parallel to the flow of crop material. The longitudinal walls of the housing diverge slightly towards the outlet opening of the housing. The outlet opening is closed by a door having an impeller which extends into the housing when the door is closed. The impeller ejects material from the housing through the outlet opening when the door is opened.
Abstract:
In a window lifter, an electric motor drives a window lifting arm via a gear arrangement. The gear arrangement includes a pinion interconnected with a larger diameter gear with both rotatably mounted on a pin. The pin is secured at one end to a base plate and at its other end to a stirrup. The pinion bears against the base plate, the stirrup extends outwardly from diametrically opposite sides of the gear and is connected at its ends outwardly from the gear to the base plate.
Abstract:
During the positioning of a control device for controlling an electromechanical drive, contact elements, which are connected to the control device in a fixed manner, are positioned in relation to one or more openings in a connector collar. To position the control device, the latter is displaced into a predetermined position. The predetermined position is defined, for example, by a guide or a stop. The contact elements are a component of an electric and/or optical junction which connects the drive device to other functional units, for example to a door control device or a motor vehicle battery. To position the contact elements in the connector collar of a connecting element which lies on the side of the drive device in the junction, the contact elements are positioned in relation to openings in the connector collar by being displaced together with the control device into the predetermined position. The positioning operation can be automated by a machine, for example by means of corresponding orientation indicators in the drive housing.
Abstract:
The present invention provides a mechanical interface apparatus (1) for a motor drive unit (2) in motor vehicles, in particular in a motor vehicle door, which is firmly connected to the drive unit (2) and has holding and guide devices (4, 6) for holding a control or plug unit (3a, 3b), with a cut-out (5), which passes all the way through, being formed between the interface apparatus (1) and the drive unit (2) in order to pass through at least one plug contact (30), a component mount (31) or the like for the control or plug unit (3a, 3b); and with at least two guide devices (8, 9) being provided in or close to the drive unit (2) for guiding the plug contacts (30) and/or the component mounts (31) or various control or plug units (3a, 3b) of this type.
Abstract:
An electric-motor-driven window operating system for installation in motor vehicle doors with a drive unit (2) arranged in a damp-proof housing (1) and connected to a rotation speed sensor (30) and controllable by an electronic control and regulating unit (4). The electronic control and regulating unit (4), the drive unit (2) and the rotation speed sensor (3; 30, 31, 32) are arranged in a common damp-proof housing (1).
Abstract:
A drive unit for winding and unwinding a transport cable for a safety belt includes a motor driven take-up roll positioned within a housing and rotatable about a winding axis. The take-up roll has a radially outwardly facing surface encircling the winding axis. A casing encloses the take-up roll and has a radially inwardly facing surface spaced outwardly from the radially outwardly facing surface. When the cable is wound into the housing it winds onto the radially outwardly facing surface and when it is unwound it contacts the radially inwardly facing surface on the casing. The radially inwardly facing surface is frusto-conical in the direction of the winding axis with the larger diameter portion of the surface located closer to the opening from the housing through which the cable passes. Adjacent its larger diameter end, the radially inwardly facing surface has a circumferentially and radially extending step for preventing bending or kinking of the cable.
Abstract:
An electro-mechanical drive device for adjustment devices of a motor vehicle, more particularly for a window lifter, has a gearing with a gear housing, an electric motor mechanically connected to the gearing, a control device mounted in the gearing housing and having at least one power semi-conductor for controlling the electric motor, and means as a heat sink thermally coupled to the power semi-conductor to draw off the waste heat from the power semi-conductor. The means which as heat sink draws off the waste heat from the power semi-conductor is integrated in the gear housing. With the integration of the means for drawing off the waste heat into the gear housing it is possible for the means to undertake further mechanical or thermal functions extending beyond the function as heat sink.
Abstract:
An electrical window lift drive especially for use in a motor vehicle, includes a drive housing, an electric motor attached to the housing having a shaft extending into the interior of the housing. A worm gear is mounted on the motor shaft for rotation thereby. A worm wheel is mounted for independent rotation coaxially with respect to a first portion of a bearing shaft inside the housing on a member intermediate the bearing shaft and the wheel. The bearing shaft is supported in the housing on both sides of the worm wheel and extends transversely of the motor shaft. The worm wheel meshes with and is driven by the worm gear. A drive member is mounted coaxially with respect to a second portion of the bearing shaft, and means are provided intermediate the worm gear and the drive member for transferring rotary motion of the worm gear to the drive member.