IP Library Granted Patent US 9,050,959
Granted Patent B2
US 9,050,959 · App. 13/325,122 · Granted Jun 9, 2015

Axial coupling with compensated forces

Inventor: Axel Widemann (Neumunster, DE)
Assignee: Danfoss Power Solutions Inc.
B60T13/20B60T8/368
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Quick Facts
Patent No.
US 9,050,959
App. No.
13/325,122
Granted
Jun 9, 2015
Kind
B2
Abstract

The invention relates to a drive train ( 1 ) for a hydraulic drive where a friction coupling ( 3 ) is arranged between a hydraulic machine ( 2 ) and a consumer ( 5 ). The coupling ( 3 ) has two parts ( 20 A, 20 B) which are displaceable towards each other in the axial direction ( 18 ) and are connected to the hydraulic machine ( 2 ) or to the consumer ( 5 ). Hydraulic fluid is introduced by means of a pressure line ( 28 ) into a pressure chamber ( 27 ) formed between the parts ( 20 A, 20 B), as a result of which the complementarily formed friction surfaces ( 9 A, 9 B) become frictionally locked together and a torque is able to be transmitted between the hydraulic machine ( 2 ) and the consumer ( 5 ). The friction surfaces ( 9 A, 9 B) are each fixedly connected at least radially to the shaft of the hydraulic machine ( 2 ) or of the consumer ( 5 ).

Claims (11)

1. Drive train ( 1 ) of a hydraulic drive having a connectable hydraulic machine ( 2 ) which is movable into operative connection with a consumer ( 5 ) by means of a coupling ( 3 ), characterized in that

a coupling housing ( 20 ) of the coupling ( 3 ) is constructed from a first part ( 20 A) which is connected to the hydraulic machine ( 2 ), and from a second part ( 20 B) which is connected to the consumer ( 5 ), wherein the two parts ( 20 A, 20 B) are arranged so as to be displaceable in the axial direction ( 18 ) in relation to each other,

a driving/driven shaft ( 11 ) of the hydraulic machine ( 2 ) pointing to the consumer ( 5 ) is provided with a first friction surface ( 9 A, 13 ),

a driving/driven shaft ( 22 ) of the consumer ( 5 ) pointing to the hydraulic machine ( 2 ) is provided with a second friction surface ( 9 B, 24 ) which is formed complementarily to the first friction surface ( 9 A, 13 ), and

the two parts ( 20 A, 20 B) of the coupling housing ( 20 ) are movable in relation to each other under the influence of a hydraulic fluid in such a manner that, by displacement in the axial direction ( 18 ), the first friction surface ( 9 A, 13 ) or/and the second friction surface ( 9 B, 24 ) move into or out of engagement with each other; and wherein between the first part ( 20 A) and the second part ( 20 B) of the coupling housing ( 20 ) a pressure chamber ( 27 ) is formed, into which the hydraulic fluid is directable by means of a feed ( 28 ), wherein the two friction surfaces ( 13 , 24 ) are moved towards each other when the pressure in the hydraulic chamber ( 27 ) is raised.

2. Drive train according to claim 1 , characterized in that the hydraulic machine ( 2 ) is a hydro-motor.

3. Drive train according to claim 1 , characterized in that the pressure chamber ( 27 ) is exposed to an operating pressure of the hydraulic machine ( 2 ) by means of the feed ( 28 ) for the hydraulic fluid.

4. Drive train according to claim 1 , characterized in that the first part ( 20 A) of the coupling housing ( 20 ) is provided with a coupling piston ( 25 ), which is mounted in a part region of the second part ( 20 B) of the coupling housing so as to be pressure-tight and axially displaceable.

5. Drive train according to claim 1 , characterized in that guide pins ( 30 ) with restoring means ( 32 ) are present between the first part of the coupling housing and the second part ( 20 B) of the coupling housing ( 20 ), said guide pins with restoring means being arranged in the axial direction ( 18 ) and opening the coupling when the pressure in the pressure chamber falls.

6. Drive train according to claim 1 , characterized in that the second part ( 20 B) of the coupling housing ( 20 ) is rigidly connected to a housing ( 21 ) of the consumer ( 5 ).

7. Drive train according to claim 1 , characterized in that the first friction surface ( 9 A, 13 ) and the second friction surface ( 9 B, 24 ) are each realized on a flange ( 12 A, 12 B) that is mounted on the associated shaft ( 11 or 22 ).

Assignments (2)
CHANGE OF NAME Recorded Nov 11, 2014
From: SAUER-DANFOSS INC.
To: DANFOSS POWER SOLUTIONS INC.
Reel/Frame 034205/0839 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Feb 3, 2012
From: WIDEMANN, AXEL
To: SAUER-DANFOSS INC.
Reel/Frame 027646/0851 →
Priority Claims (1)
DE 10 2010 063 084 · Dec 14, 2010 · national
Continuity (1)
Related Publication 20120148385A1 · Jun 14, 2012