IP Library Granted Patent US 7,549,355
Granted Patent B2
US 7,549,355 · App. 10/580,153 · Granted Jun 23, 2009

Rotary leadthrough of a robot arm

Assignee: Robert Bosch 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 7,549,355
App. No.
10/580,153
Granted
Jun 23, 2009
Kind
B2
Abstract

A rotary leadthrough of a robot arm, in particular of a fourth axle of a Delta robot, has a housing and a shaft, located in an axial leadthrough of the housing and supported rotatably in this housing, for connection to the robot arm. The housing has at least two openings for cleaning the axial leadthrough. The shaft at least in a portion of its length, has a diameter which is less than the diameter of the axial leadthrough in that region, so that there is a void between the shaft and the axial leadthrough.

Claims (31)

1. A rotary leadthrough of a fourth axle of a Delta robot arm, the rotary leadthrough comprising

a housing,

a shaft located in an axial leadthrough of the housing and is rotatably supported in the housing, for connection to the robot arm, and

at least two openings in the housing which provide direct access into the axial leadthrough from outside the housing for cleaning the axial leadthrough, one of the at least two openings being a flushing opening and one of the at least two openings being a suction opening,

the shaft having a reduced diameter extending over a portion of its length, which diameter is less than the diameter of the axial leadthrough in a corresponding region of the axial leadthrough, thereby providing a void between the shaft and the axial leadthrough.

2. The rotary leadthrough in accordance with claim 1 , wherein the at least two openings are located in a radial direction to the axial leadthrough.

3. The rotary leadthrough in accordance with claim 2 , wherein the shaft further comprises a connection journal on one end, for securing to a joint, and a securing element, on a diametrically opposite end, for securing a grasping element.

4. The rotary leadthrough in accordance with claim 3 , wherein the securing element comprises a star-shaped body portion.

5. The rotary leadthrough in accordance with claim 2 , wherein a first of the at least two openings is a suction opening, and at least a second of the least two openings is a flushing opening, and wherein the suction opening has a larger diameter than the flushing opening.

6. The rotary leadthrough in accordance with claim 5 , wherein the suction opening and the flushing opening are located at an angle of at least approximately 90° to one another.

7. The rotary leadthrough in accordance with claim 1 , wherein the void is an annular gap.

8. The rotary leadthrough in accordance with claim 1 , wherein the shaft further comprises a connection journal on one end, for securing to a joint, and a securing element, on a diametrically opposite end, for securing a grasping element.

9. The rotary leadthrough in accordance with claim 8 , wherein the securing element comprises a star-shaped body portion.

10. The rotary leadthrough in accordance claim 1 , wherein the housing is made of plastic and/or the shaft is made from an aluminum alloy.

11. A rotary leadthrough of a fourth axle of a Delta robot arm, the rotary leadthrough comprising

a housing,

a shaft located in an axial leadthrough of the housing and is rotatably supported in that housing, for connection to the robot arm, and

at least one opening in the housing for cleaning the axial leadthrough, the shaft having a reduced diameter extending over a portion of its length, which diameter is less than the diameter of the axial leadthrough in a corresponding region of the axial leadthrough, thereby providing a void between the shaft and the axial leadthrough,

wherein the housing comprises a cylindrical securing ring, which on at least one side has a radial groove; wherein the shaft comprises an annular groove, which is aligned with the at least one radial groove in the same plane; and wherein the rotary leadthrough comprises at least one disk, which can be brought into engagement with one each of the at least one radial groove and the annular groove for rotatably supporting the shaft in the housing.

12. The rotary leadthrough in accordance with claim 11 , wherein the annular groove is located in a cylindrical head portion of the shaft, and wherein the cylindrical head has an outer diameter which corresponds to an inner diameter of the securing ring.

13. The rotary leadthrough in accordance with claim 12 , wherein the shaft further comprises a connection journal on one end, for securing to a joint, and a securing element, on a diametrically opposite end, for securing a grasping element.

14. The rotary leadthrough in accordance claim 12 , wherein the housing is made of plastic and/or the shaft is made from an aluminum alloy.

15. The rotary leadthrough in accordance with claim 11 , wherein the shaft further comprises a connection journal on one end, for securing to a joint, and a securing element, on a diametrically opposite end, for securing a grasping element.

16. The rotary leadthrough in accordance claim 11 , wherein the housing is made of plastic and/or the shaft is made from an aluminum alloy.

17. The rotary leadthrough in accordance with claim 11 , wherein a first of the at least two openings is a suction extraction opening, and at least a second of the least two openings is an inflation opening, and wherein the suction extraction opening has a larger diameter than the inflation opening.

18. The rotary leadthrough in accordance with claim 17 , wherein the suction extraction opening and the inflation opening are located at an angle of at least approximately 90° to one another.

19. A rotary leadthrough of a fourth axle of a Delta robot arm, the rotary leadthrough comprising

a housing,

a shaft located in an axial leadthrough of the housing and is rotatably supported in that housing, for connection to the robot arm, and

at least one opening in the housing for cleaning the axial leadthrough, the shaft having a reduced diameter extending over a portion of its length, which diameter is less than the diameter of the axial leadthrough in a corresponding region of the axial leadthrough, thereby providing a void between the shaft and the axial leadthrough, wherein at least two openings are located in a radial direction to the axial leadthrough; wherein the housing comprises a cylindrical securing ring, which on at least one side has a radial groove; wherein the shaft comprises an annular groove, which is aligned with the at least one radial groove in the same plane; and wherein the rotary leadthrough comprises at least one disk, which can be brought into engagement with one each of the at least one radial groove and the annular groove for rotatably supporting the shaft in the housing.

20. The rotary leadthrough in accordance with claim 19 , wherein the annular groove is located in a cylindrical head portion of the shaft, and wherein the cylindrical head has an outer diameter which corresponds to an inner diameter of the securing ring.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jun 7, 2007
From: SCHULER, SAMUEL; FILIPPI, MARTINO
To: ROBERT BOSCH GMBH
Reel/Frame 019395/0040 →
Priority Claims (1)
CH 2050/03 · Dec 2, 2003 · national
Continuity (1)
Related Publication 20070137374A1 · Jun 21, 2007