Neutral setting device of an adjustable hydraulic unit

US11933283B2 · US · B2

Patent metadata
FieldValue
Publication numberUS-11933283-B2
Application numberUS-202217739470-A
CountryUS
Kind codeB2
Filing dateMay 9, 2022
Priority dateMay 26, 2021
Publication dateMar 19, 2024
Grant dateMar 19, 2024

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  1. Title

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  2. Abstract

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  3. Assignees and inventors

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  4. Key dates

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  5. First independent claim

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  6. CPC / IPC classifications

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  7. Citations and related patents

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Abstract

Official abstract text for this publication.

Manual displacement control device (MDC) for hydraulic units has an input shaft mounted rotatably about an input shaft axis in an input shaft block. The input shaft protrudes from the input shaft block with a first end, onto which a rotating torque can be applied. The MDC further includes a control spool housed in a control housing, which is moveable by means of rotating the input shaft for controlling a servo pressure. The control device has positioning means for adjusting and fixing the lateral position of the input shaft with respect to the control housing in a direction perpendicular to the input shaft axis and perpendicular to the direction of a restoring force exerted on the input shaft. The hydraulic unit is adjustable to its neutral position by means of a servo spring bracket providing an end stop surface for a servo spring seat towards the displacement element. The servo spring bracket is variably fixable to the hydraulic unit housing in a manner so that the orientation of the end stop surface can be adjusted parallel to the neutral position of the displacement element.

First claim

Opening claim text (preview).

The invention claimed is: 1. A manual displacement control device for variable displacement hydraulic units equipped with a servo unit capable of operating a displacement element in order to set a displacement volume, the control device comprising: an input shaft mounted rotatable about an input shaft axis in an input shaft block and protruding from the input shaft block with a first end on which a rotating torque is configured to be applied; a control spool housed in a control housing and moveable by means of rotation of the input shaft for controlling a servo pressure which is configured to be guided to and from a servo unit; a feedback transmitting element pivotable about a feedback pivot axis parallel to the input shaft axis, having a first end portion for interacting with the control spool, and a second end portion for receiving a mechanical feedback signal of a feedback element connected to a displacement element of a hydraulic unit; positioning means for adjusting and fixing a lateral position of the input shaft with respect to the control housing in a direction perpendicular to the input shaft axis and perpendicular to the direction of a centering force exerted on the input shaft by a centering mechanism in order to restore the input shaft to a zero position when no rotating torque is applied to the first end of the input shaft; wherein inclined surfaces are formed on opposite sides of the input shaft block such that wedge surfaces of parts of the positioning means having through holes are pressed by means of fixation bolts on the inclined surfaces to fix the input shaft block on the control housing. 2. The control device according to claim 1 , wherein the control housing comprises guiding means disposed adjacent to screw holes for screwing in the fixation bolts, wherein the guiding means maintain a distance between the parts constant in a direction of the lateral moveability of the input shaft block when the fixation bolts are loosened or tightened. 3. The control device according to claim 1 , wherein the parts have a circular base surface and the guiding means are annular grooves formed in the control housing. 4. The control device according to claim 1 , wherein the direction and/or the magnitude of the centering force of the centering mechanism is adjustable by adjustment means. 5. The control device according to claim 1 , wherein the feedback pivot axis is defined by an eccentric pin located eccentrically at the second end of the input shaft. 6. The control device according to claim 1 , wherein the feedback transmitting element comprises an elongated hole for receiving the feedback element of the hydraulic unit indicating a position of the displacement element. 7. The control device according to claim 1 , wherein the centering mechanism is housed in the input shaft block. 8. A hydraulic unit comprising: a displacement element; a servo unit configured to operate the displacement element to set a displacement volume; and a manual displacement control device comprising: an input shaft mounted rotatable about an input shaft axis in an input shaft block and protruding from the input shaft block with a first end on which a rotating torque is configured to be applied; a control spool housed in a control housing and moveable by means of rotation of the input shaft for controlling a servo pressure which is configured to be guided to and from the servo unit; a feedback transmitting element pivotable about a feedback pivot axis parallel to the input shaft axis, having a first end portion for interacting with the control spool, and a second end portion for receiving a mechanical feedback signal of a feedback element connected to the displacement element of the hydraulic unit; positioning means for adjusting and fixing a lateral position of the input shaft with respect to the control housing in a direction perpendicular to the input shaft axis and perpendicular to the direction of a centering force exerted on the input shaft by a centering mechanism in order to restore the input shaft to a zero position when no rotating torque is applied to the first end of the input shaft; wherein inclined surfaces are formed on opposite sides of the input shaft block such that wedge surfaces of parts of the positioning means having through holes are pressed by means of fixation bolts on the inclined surfaces to fix the input shaft block on the control housing. 9. The hydraulic unit according to claim 8 , wherein the control housing of the manual displacement control device is part of a hydraulic unit housing, wherein the positioning means is located at the first end of the input shaft in order to be able to adjust the lateral position of the input shaft relative to the hydraulic unit housing. 10. The hydraulic unit according to claim 8 , wherein the wedge surfaces of the parts of the positioning means are configured to be guided by guiding means on a hydraulic unit housing in a direction perpendicular to the centering force. 11. The hydraulic unit according to claim 8 , wherein the displacement element of the hydraulic unit is tiltable and comprises the feedback element attached thereto, wherein one end of the feedback element is received by the second end portion of the feedback transmitting element. 12. The hydraulic unit according to claim 11 , wherein the servo unit comprises a servo piston and a servo spring, which are located on opposite sides of the displacement element, and wherein a servo spring bracket providing an end stop surface for a servo spring seat is variably fixable to the hydraulic unit housing in such a manner that the orientation of the end stop surface is adjustable parallel to the displacement element in a neutral position, wherein a first end of a servo spring rod is arranged contacting the servo spring seat and a second end of the servo spring rod is arranged contacting the displacement element such that the servo spring rod is capable of compressing the servo spring via the servo spring seat when the displacement element is tilted out of the neutral position. 13. The hydraulic unit according to claim 12 , wherein the second end of the servo spring rod abuts against the displacement element in a rotatable manner with respect to an axis parallel to a tilt axis of the displacement element. 14. The hydraulic unit according to claim 12 , wherein the second end of the servo spring rod is annular shaped. 15. The hydraulic unit according to claim 12 , wherein a relative position of the servo spring bracket in the hydraulic unit housing is adjusted by means of threaded sleeves having an internal or an external thread, and wherein the relative position of the servo spring bracket is fixed to the hydraulic unit housing by means of fixation bolts. 16. The hydraulic unit according to claim 12 , wherein, with respect to a displacement element tilt axis, at either side of the displacement element the servo unit is arranged. 17. The hydraulic unit according to claim 8 , wherein the hydraulic unit is of the axial or radial piston type. 18. The hydraulic unit according to claim 17 , wherein the hydraulic unit is of the swashplate or bent axis type. 19. A hydraulic unit comprising: a displacement element; a servo unit configured to operate the displacement element to set a displacement volume; a manual displacement control device comprising: an input shaft mounted rotatable about an input shaft axis in an input shaft block and protruding from the input shaft block with a first end on which a rotating torque is configured to be applied; a

Assignees

Inventors

Classifications

  • F04B1/324Primary

    by changing the inclination of the swash plate · CPC title

  • Hydraulic systems to change the pump delivery · CPC title

  • Regulating by delivery pressure · CPC title

  • F04B1/32Primary

    by varying the relative positions of a swash plate and a cylinder block · CPC title

  • Control · CPC title

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What does patent US11933283B2 cover?
Manual displacement control device (MDC) for hydraulic units has an input shaft mounted rotatably about an input shaft axis in an input shaft block. The input shaft protrudes from the input shaft block with a first end, onto which a rotating torque can be applied. The MDC further includes a control spool housed in a control housing, which is moveable by means of rotating the input shaft for con…
Who is the assignee on this patent?
Danfoss Power Solutions Gmbh & Co Ohg
What technology area does this patent fall under?
Primary CPC classification F04B1/324. Mapped technology areas include Mechanical Engineering.
When was this patent published?
Publication date Tue Mar 19 2024 00:00:00 GMT+0000 (Coordinated Universal Time) (B2). Legal status and post-grant events are not shown on this page.
What related patents are in patentsdb?
We list 2 related publications on this page (citations in our corpus or others sharing the same primary CPC).