IP Library › Granted Patent US 7,582,021
Granted Patent B2
US 7,582,021 · App. 10/524,391 · Granted Sep 1, 2009

Longitudinal shaft

Assignee: Shaft-Form-Engineering GmbH
View Patent ↗
Loading inventors, assignments & file history…
Monitor This Case
Get email alerts when status or documents change.
Order Certified Copies
Most orders are placed with the USPTO same day — all within 24 business hours.
Order via The Patent Place →
Pre-filled with this patent's details
Quick Facts
Patent No.
US 7,582,021
App. No.
10/524,391
Granted
Sep 1, 2009
Kind
B2
Abstract

A longitudinal shaft for use in particular in four-wheel drive or rear-wheel drive motor vehicles includes a gearbox-side articulation, a differential-side articulation, as well as a central articulation through which a gearbox-side section is integrally linked in rotation to a differential-side section of the longitudinal shaft. To reduce the centrifugal forces occurring at the longitudinal shaft 1 in operation, the gearbox-side articulation and the differential-side articulation have each an inner hub designed to connect the longitudinal shaft integrally in rotation respectively to a gearbox output shaft and to a differential input shaft, the longitudinal shaft being centered on the gearbox output shaft and the differential input shaft by interlocking through the inner hubs.

Claims (19)

1. A drive shaft assembly having a longitudinal shaft for use in an automobile having all-wheel drive or rear-wheel drive comprising:

(a) a gearbox-side articulation comprising a first homokinetic ball joint, said gearbox-side articulation having a first inner hub, a first outer hub at least partly surrounding the first inner hub and a first cage for guiding a first plurality of balls, the first inner hub and the first outer hub having respective first ball raceways wherein the first plurality of balls is guided in the respective first ball raceways for transmitting a first torque between the first inner hub and the first outer hub;

(b) a differential-side articulation comprising a second homokinetic ball joint, said differential-side articulation having a second inner hub, a second outer hub at least partly surrounding the second inner hub and a second cage for guiding a second plurality of balls, the second inner hub and the second outer hub having respective second ball raceways wherein the second plurality of balls is guided in the respective second ball raceways for transmitting a second torque between the second inner hub and the second outer hub;

(c) a central articulation having a third inner hub, a third outer hub at least partly surrounding the third inner hub at least in some regions and a third cage for guiding a third plurality of balls, the third inner hub and the third outer hub having respective third ball raceways wherein the third plurality of balls is guided in the respective third ball raceways for transmitting a third torque between the third inner hub and the third outer hub; and

(d) first and second shaft segments connected with one another so as to rotate together by way of said central articulation;

wherein a journal of a gearbox output shaft having a plug-in tooth system is directly connected to the first inner hub and a journal of a differential input shaft having a plug-in tooth system is directly connected to the second inner hub, and

wherein each of said first and second inner hubs has a respective central bore provided with a plug-in connection to connect the longitudinal shaft for integral rotation and to center the longitudinal shaft on the journals of the gearbox output shaft and the differential input shaft, respectively.

2. The drive shaft assembly as recited in claim 1 , wherein the third inner hub has a central bore that is provided with a plug-in tooth system, which accommodates a journal of the first shaft segment for plug-in centering for integral rotation.

3. The drive shaft assembly as recited in claim 1 , wherein the first and second shaft segments of the longitudinal shaft are configured as shaft tubes, and the first, second, and third outer hubs are shaped sheet-metal parts directly connected with the shaft tubes.

4. The longitudinal shaft as recited in claim 1 , wherein the gearbox-side articulation and/or the central articulation are sliding articulations.

5. The drive shaft assembly as recited in claim 1 , wherein the differential-side articulation is a synchronous articulation.

6. The drive shaft assembly as recited in claim 1 , wherein the first shaft segment is a gearbox-side shaft segment and the second shaft segment is a differential-side shaft segment, said first shaft segment having a diameter that deviates from a diameter of the second shaft segment, in such a manner that the two shaft segments of the longitudinal shaft can be pushed onto one another in the manner of a telescope.

7. A drive shaft assembly having a longitudinal shaft for use in an automobile having all-wheel drive or rear-wheel drive comprising:

(a) a gearbox-side articulation comprising a first homokinetic ball joint, said gearbox-side articulation having a first inner hub, a first outer hub at least partly surrounding the first inner hub and a first cage for guiding a first plurality of balls, the first inner hub and the first outer hub having respective first ball raceways wherein the first plurality of balls is guided in the respective first ball raceways for transmitting a first torque between the first inner hub and the first outer hub;

(b) a differential-side articulation comprising a second homokinetic ball joint, said differential-side articulation having a second inner hub, a second outer hub at least partly surrounding the second inner hub and a second cage for guiding a second plurality of balls, the second inner hub and the second outer hub having respective second ball raceways wherein the second plurality of balls is guided in the respective second ball raceways for transmitting a second torque between the second inner hub and the second outer hub;

(c) a central articulation having a third inner hub, a third outer hub at least partly surrounding the third inner hub at least in some regions and a third cage for guiding a third plurality of balls, the third inner hub and the third outer hub having respective third ball raceways wherein the third plurality of balls is guided in the respective third ball raceways for transmitting a third torque between the third inner hub and the third outer hub; and

(d) first and second shaft segments connected with one another so as to rotate together by way of said central articulation;

wherein a journal of a gearbox output shaft having a plug-in tooth system is directly connected to the first inner hub and a journal of a differential input shaft having a plug-in tooth system is directly connected to the second inner hub, and

wherein each of said first and second inner hubs has a respective central bore provided with a plug-in connection to connect the longitudinal shaft for integral rotation and to center the longitudinal shaft on the journals of the gearbox output shaft and the differential input shaft, respectively and wherein the gearbox-side articulation and/or the central articulation are sliding articulations and wherein the sliding articulations together have an assembly displacement path, which corresponds to at least a length, with which the gearbox output shaft or the differential input shaft projects into the first or second inner hub in operation.

Assignments (2)
CHANGE OF ADDRESS OF THE ASSIGNEE Recorded Sep 23, 2010
From: SHAFT-FORM-ENGINEERING GMBH
To: SHAFT-FORM-ENGINEERING GMBH
Reel/Frame 025026/0605 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jul 19, 2005
From: JACOB, WERNER
To: SHAFT-FORM ENGINEERING GMBH
Reel/Frame 016781/0782 →
Priority Claims (1)
DE 102 37 172 · Aug 14, 2002 · national
Continuity (1)
Related Publication 20060014587A1 · Jan 19, 2006