Bearing, unit for converting a flat substrate, and methods for mounting and removing a rotary tool
US-2017268566-A1 · Sep 21, 2017 · US
US11221041B2 · US · B2
| Field | Value |
|---|---|
| Publication number | US-11221041-B2 |
| Application number | US-201816648156-A |
| Country | US |
| Kind code | B2 |
| Filing date | Sep 21, 2018 |
| Priority date | Sep 22, 2017 |
| Publication date | Jan 11, 2022 |
| Grant date | Jan 11, 2022 |
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A very compact play-free bearing unit includes a bearing that runs without play while having a reasonably large play when assembling and during disassembly of the bearing unit from its axle. The bearing unit uses three bearings, one of which is mobile, and thanks to a preloading mechanism the play is removed when loaded. Thanks to an amplification lever, the preloading unit is able to function either with a pneumatic actuator or with a hydraulic actuator.
Opening claim text (preview).
The invention claimed is: 1. A bearing unit for a rotary processing tool, the bearing unit comprising: two outer bearings; an intermediate bearing; and a preloading unit adapted for displacing the intermediate bearing with respect to the two outer bearings, wherein the intermediate bearing is accommodated in a slider which is received within a recess in a main body of the bearing unit, the slider extending from the recess to an exterior of the main body, wherein the preloading unit comprises an amplification lever configured to amplify an actuation force created by an actuator into a greater preloading force acting on the slider and the intermediate bearing, and wherein a movement of the amplification lever in a first direction provides a movement of the intermediate bearing in a second direction substantially the same as the first direction. 2. The bearing unit of claim 1 , wherein the amplification lever is a one-armed lever. 3. The bearing unit of claim 1 , wherein the amplification lever extends substantially parallel to an axis of rotation of the two outer bearings. 4. The bearing unit of claim 1 , wherein an end of the amplification lever engages behind a support provided at the bearing unit. 5. The bearing unit of claim 4 , wherein the support is a separate element fastened to the bearing unit. 6. The bearing unit of claim 4 , wherein the end of the amplification lever engaging behind the support is forked. 7. The bearing unit of claim 1 , wherein the preloading unit comprises a pneumatic actuator adapted for pivoting the amplification lever with respect to the bearing unit. 8. The bearing unit of claim 7 , wherein the actuator comprises a piston/cylinder arrangement in which the piston is held stationary with respect to the bearing unit. 9. The bearing unit of claim 8 , wherein the cylinder is formed by a through-hole in the amplification lever. 10. The bearing unit of claim 9 , wherein a cover is associated with the through-hole. 11. The bearing unit of claim 8 , wherein two pistons are provided which are arranged in two cylinder openings arranged along a centerline of the amplification lever. 12. The bearing unit of claim 11 , wherein a connection opening is formed in the lever for establishing a pressure connection between the cylinder openings. 13. The bearing unit of claim 8 , wherein a sealing element is provided for sealing between an inner wall of the cylinder and the piston arranged therein and for centering the piston within the cylinder. 14. The bearing unit of claim 8 , wherein the piston rests on an abutment plate. 15. A method for changing the mechanical characteristics of a drum engaged into a bearing unit as claimed in claim 1 , comprising varying the amplitude of the actuation force applied to the amplification lever of the preloading unit. 16. A bearing unit for a rotary processing tool, the bearing unit comprising: two outer bearings; an intermediate bearing accommodated in a slider which is received within a recess in a main body of the bearing unit; and a preloading unit adapted for displacing the intermediate bearing with respect to the two outer bearings, wherein the preloading unit comprises an amplification lever configured to amplify an actuation force created by an actuator into a greater preloading force acting on the slider and the intermediate bearing, and wherein the actuator comprises a piston/cylinder arrangement in which the piston is held stationary with respect to the bearing unit. 17. A bearing unit for a rotary processing tool, the bearing unit comprising: a main body including a recess; a first bearing provided in the main body; a slider movably provided in the recess; a second bearing accommodated in the slider; and a preloading unit adapted to displace the slider, and therefore the second bearing, with respect to the first bearing, wherein the preloading unit includes an amplification lever, a cylinder provided in the amplification lever, and a piston provided in the cylinder to provide an actuation force to the amplification lever to displace the slider. 18. The bearing unit of claim 17 , wherein a pivot axis of the amplification lever is offset from the second bearing in a direction substantially parallel to an axis of rotation of the second bearing. 19. The bearing unit of claim 17 , wherein the actuation force provided to the amplification lever to displace the slider and a preloading force provided by the amplification lever to the slider to displace the slider are provided on a same side of the amplification lever relative to a pivot axis of the amplification lever.
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