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A device for converting a rotational movement into an axial movement includes driven planetary rollers (10) and a sliding body (5) that can be axially displaced by means of the planetary rollers (10). The planetary rollers (10) are fixed axially in a driven carrier (9), are rotationally mounted and are provided with grooves (11). The grooves (11) of these planetary rollers (10) engage in a thread-type groove of the sliding body (5). In the center of the carrier (9) a bearing body (7) is provided...
The invention relates to a device for transforming rotational movement into linear movement or the reverse. The device comprises a cylindrical shaft and at least one support displaceable along the shaft for supporting at least one bearing with a ring which surrounds the shaft and is rotatable relative to the support. The bore diameter of the ring is larger than the shaft diameter and the ring has an inclined position in relation to the shaft and is pressed into contacting the shaft. In order to ...
Apparatus for translating rotary to linear motion using cylindrical means in the form of a shaft or cylinder with helical grooves, usually having a thread profile. For obtaining good efficiency and large gear ratio, i.e. small linear movement per revolution, the apparatus has been made up from an outer cylinder (1) with a rear transverse portion (5) and a forward outer opening (3) through which an inner cylinder (11) is unrotatably displaceable. The inner cylinder (11) has on its inside a helix ...
The invention relates to a device for converting a rotational displacement into a displacement back and forth. Said device comprises at least one control cam region, provided with a driven cam element, having an eccentric control surface, and a cam follower element that can be displaced or pivoted by the cam element. The cam element is rotatably mounted in a flexible encircling element which is displaceably connected to the cam follower element on a plane that is perpendicular to the rotational ...
A device for converting rotational movement into axial movement includes planetary rollers driven by a drive shaft projecting from a drive device and maintained peripherally at a same distance, in addition to a push body axially displaced by the planetary rollers. These planetary rollers are peripherally fixed on a support which is driven around the axis thereof, the rollers being rotationally mounted and provided with peripheral grooves or threaded grooves; the support is connected in a fixed m...
A device for transforming a rotational movement into a reciprocating to-and-fro movement has a cam element on a driven carrier shaft. The cam element has an eccentric control area, or lobe. A cam follower can be displaced or pivoted by the cam element. The cam element is rotationally mounted in a flexible encompassing element which is movably connected to the cam follower perpendicular to the axis of rotation of the cam element. The flexible encompassing element surrounds the eccentric control s...
An apparatus for converting rotational movement into reciprocating lifting movement or vice versa, compriss a bearing body that incorporates a first, cylindrical wall section with first guide grooves, a rotary element that is supported on the bearing body so as to be able to rotate and that incorporates a second cylindrical wall section with second guide grooves that are arranged at an angle to the first guide grooves, a lifting element that is supported on the bearing body so as to move back an...
An apparatus for converting a rotational movement into a rectilinear movement includes a threaded spindle, a nut (8) which surrounds the latter concentrically at a spacing, and a number of rolling bodies which are disposed in the spacing and roll on the track-forming outer thread of the threaded spindle as well as on the corresponding track (4) forming inner thread of the nut (8). The rolling bodies are guided by a cage (9) which includes slot-shaped pockets (11) disposed sequentially at spacing...
Apparatus for converting a rotational motion into an axial motion, includes a threaded spindle (9), a sleeve (10) in concentric surrounding relationship to the spindle at a spacing thereto, and a plurality of axis parallel rollers (1, 5) arranged in the spacing, with each of the rollers being provided with a circumferential profile and meshing with the threaded spindle (9). According to the invention, each roller (1, 5) is axially supported with both its end faces via rolling bodies (19) on hous...
A movement detector includes a transmitter (1) and a receiver (2) of electromagnetic, acoustic or light waves, and a frequency variation demodulator (3) connected to the receiver (2) and adapted to supply a signal which is progressively variable as a function of the movement detected. The movement detector further includes an analog-digital converter (5) which transforms the demodulated signal into a digital signal, a memory (6) connected to the converter (5), and an arrangement for controlling ...
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