IP Library Granted Patent US 10,183,366
Granted Patent B2
US 10,183,366 · App. 15/536,175 · Granted Jan 22, 2019

Feeder mechanism for feeding mechanical fasteners

Inventors: Pierre Sarramoune (Merignac, FR); Alain Py (Merignac, FR)
Assignee: KUKA Systems Aerospace
B23P19/005B21J15/32B23P19/002B65G51/02B21J15/142
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Quick Facts
Patent No.
US 10,183,366
App. No.
15/536,175
Granted
Jan 22, 2019
Kind
B2
Abstract

A feeder mechanism for feeding mechanical fasteners, such as rivets, screws, bolts and similar fasteners, as well as to a robot end effector comprising such a mechanism and a robot being equipped with such an end effector. The feeder mechanism includes a transport means for transporting mechanical fasteners and a stopping and aligning unit with a stopping plate to decelerate transported fasteners.

Claims (32)

1. A feeder mechanism for feeding mechanical fasteners, the feeder mechanism comprising:

a transport means for transporting mechanical fasteners; and

a stopping and aligning unit for mechanical fasteners, the stopping and aligning unit arranged downstream from the transport means and comprising:

a stopping plate configured to have at least a first position and second position, wherein:

in the first position a fastener supplied by the transport means is decelerated, and

in the second position a fastener supplied by the transport means passes the stopping plate and,

at least one aligning jaw arranged downstream from the stopping plate and configured to have at least a first position and a second position, wherein:

in the first position the aligning jaw aligns a fastener supplied by the transport means such that the fastener may be picked by a gripping device, and

in the second position the aligning jaw releases a fastener supplied by the transport means.

2. The feeder mechanism of claim 1 , wherein the aligning jaw is configured to have a third position wherein, in the third position, an aperture formed by the aligning jaw has an inner diameter that is larger than an outer diameter of a shaft of a supplied fastener, but smaller than an outer diameter of a head of the supplied fastener.

3. The feeder mechanism of claim 2 , wherein the third position of the aligning jaw is adjustable.

4. The feeder mechanism of claim 1 , wherein the stopping plate comprises at least one opening through which a supplied fastener may pass when the stopping plate is in the second position.

5. The feeder mechanism of claim 1 , wherein the stopping plate comprises at least one plastic or rubber element onto which a supplied fastener impinges in the first position of the stopping plate.

6. The feeder of claim 2 , wherein the stopping plate is configured to transition from the second position into the first position when the aligning jaw is in the third position.

7. The feeder mechanism of claim 2 , wherein the aligning jaw is configured to transition from the third position into the first position when the stopping plate is in the first position.

8. The feeder mechanism of claim 1 , wherein the aligning jaw is configured to transition from the first position into the second position when the stopping plate is in the first position.

9. The feeder mechanism of claim 1 , wherein:

the aligning jaw comprises a first portion and a separate second portion; and

the stopping and aligning unit further comprises at least one rail on which at least the first portion of the aligning jaw may glide.

10. The feeder mechanism of claim 9 , wherein:

the first portion of the aligning jaw comprises a cam track; and

the stopping and aligning unit further comprises a cam plate with at least one pin engaging the cam track such that a movement of the cam plate causes a movement of the first portion of the aligning jaw.

11. The feeder mechanism of claim 1 , wherein:

the stopping and aligning unit comprises a plurality of aligning jaws; and

each jaw is adapted to align fasteners having at least one of a specific diameter or a specific length.

12. The feeder mechanism of claim 1 , wherein the transport means uses pressurized air to transport the fasteners.

13. The feeder mechanism of claim 1 , wherein at least one of the stopping plate or the at least one aligning jaw is actuated pneumatically or by an electrical motor.

14. A robot end effector for installing mechanical fasteners, such as rivets, screws, bolts, and similar fasteners, the robot end effector comprising a frame supporting a feeder mechanism in accordance with claim 1 .

15. The robot end effector of claim 14 , wherein:

the end effector further comprises a gripping device and the feeder mechanism is configured to feed mechanical fasteners to the gripping device; and

the gripping device is rotatably supported on the frame for movement between a first position, wherein the gripping device grips a mechanical fastener from the feeder mechanism, and a second position, wherein the gripping device provides a gripped mechanical fastener to an installation mechanism.

16. A robot, comprising a robot end effector in accordance with claim 14 .

Assignments (2)
CHANGE OF NAME Recorded Apr 27, 2018
From: ALEMA AUTOMATION
To: KUKA SYSTEMS AEROSPACE
Reel/Frame 046034/0635 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Aug 18, 2017
From: SARRAMOUNE, PIERRE; PY, ALAIN
To: ALEMA AUTOMATION
Reel/Frame 043333/0447 →
Priority Claims (1)
EP 14307141 · Dec 22, 2014 · regional
Continuity (1)
Related Publication 20180009074A1 · Jan 11, 2018
Cited By (1)
US 12,415,241