IP Library Granted Patent US 9,376,227
Granted Patent B2
US 9,376,227 · App. 13/800,578 · Granted Jun 28, 2016

Baler brake drum locking mechanism

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Quick Facts
Patent No.
US 9,376,227
App. No.
13/800,578
Granted
Jun 28, 2016
Kind
B2
Abstract

A net dispensing assembly in a baler includes a net roll support tube configured to hold the net roll and a brake drum assembly coupled to the net roll support tube and configured to rotate about the net roll support tube and apply tension to the net wrapping dispensed from the net roll. The net dispensing assembly also includes a pivoting element configured to move the net roll support tube between an operating position and a load-unload position. The net dispensing assembly further includes a locking mechanism coupled to the brake drum assembly and configured to prevent the brake drum assembly from rotating in a direction opposite the operating direction when the net roll support tube is in at least one of (i) the load-unload position and (ii) the operating position.

Claims (32)

1. A baler comprising:

a net feeding assembly; and

a net dispensing assembly configured to dispense net wrapping from a net roll to the net feeding assembly, the net dispensing assembly comprising:

a net roll support tube configured to hold the net roll;

a brake drum assembly coupled to the net roll support tube and configured to rotate about the net roll support tube and apply tension to the net wrapping dispensed from the net roll;

a pivoting element configured to move the net roll support tube between an operating position and a load-unload position; and

a locking mechanism coupled to the brake drum assembly and configured to prevent the brake drum assembly from rotating in a direction opposite an operating direction when the net roll support tube is in at least one of (i) the load-unload position and (ii) the operating position;

wherein the locking mechanism comprises a latch coupled to a brake drum on the brake drum assembly and the latch is configured to prevent the brake drum assembly from rotating in the direction opposite the operating direction by engaging a stationary portion of the net dispensing assembly when the net roll support tube is in the load-unload position.

2. The baler of claim 1 , wherein the locking mechanism is further configured to provide for rotation of the brake drum assembly in the operating direction when the net roll support tube is in the load-unload position.

3. The baler of claim 1 , wherein the latch is configured to automatically engage a portion of the net dispensing assembly frame when the net roll support tube is in the load-unload position.

4. The baler of claim 1 , wherein the latch further comprises a protrusion extending from a latch base and the protrusion is configured to engage the stationary portion of the net dispensing assembly to prevent the brake drum assembly from rotating in the direction opposite the operating direction when the net roll support tube is in the load-unload position.

5. The baler of claim 1 , wherein the locking mechanism further comprises a spring element configured to apply a spring force to cause the latch to move in a first latch direction and prevent the brake drum assembly from rotating in the direction opposite the operating direction when the net roll support tube is in the load-unload position, and

the stationary portion of the net dispensing assembly is configured to cause the latch to move in a second latch direction and provide for rotation of the brake drum assembly in the operating direction when the net roll support tube is in the load-unload position.

6. The baler of claim 1 , wherein the latch is rigid and is configured to engage the stationary portion and prevent the brake drum assembly from rotating when the net roll support tube is in the load-unload position, and

the latch is configured to disengage from the stationary portion and allow the brake drum assembly to rotate when the net roll support tube is moved a distance away from the load-unload position.

7. The baler of claim 1 , wherein the latch is coupled to the brake drum assembly.

8. The baler of claim 1 , wherein the latch is integral with the brake drum assembly.

9. A net dispensing assembly comprising,

a net roll support tube configured to hold a net roll;

a brake drum assembly coupled to the net roll support tube and configured to rotate about the net roll support tube and apply tension to the net wrapping dispensed from the net roll;

a pivoting element configured to move the net roll support tube between an operating position and a load-unload position; and

a locking mechanism coupled to the brake drum assembly and configured to prevent the brake drum assembly from rotating in a direction opposite the operating direction when the net roll support tube is in at least one of (i) the load-unload position and (ii) the operating position;

wherein the locking mechanism comprises a latch coupled to a brake drum on the brake drum assembly and the latch is configured to prevent the brake drum assembly from rotating in the direction opposite the operating direction by engaging a stationary portion of the net dispensing assembly when the net roll support tube is in the load-unload position.

10. The net dispensing assembly of claim 9 , wherein the locking mechanism is further configured to provide for rotation of the brake drum assembly in the operating direction when the net roll support tube is in the load-unload position.

11. The net dispensing assembly of claim 9 , wherein the latch is configured to automatically engage the portion of the net dispensing assembly frame when the net roll support tube is in the load-unload position.

12. The net dispensing assembly of claim 9 , wherein the latch further comprises a protrusion extending from a latch base and the protrusion is configured to engage the stationary portion of the net dispensing assembly to prevent the brake drum assembly from rotating in the direction opposite the operating direction when the net roll support tube is in the load-unload position.

13. The net dispensing assembly of claim 9 , wherein the locking mechanism further comprises a spring element configured to apply a spring force to cause the latch to move in a first latch direction and prevent the brake drum assembly from rotating in the direction opposite the operating direction when the net roll support tube is in the load-unload position, and

the stationary portion of the net dispensing assembly is configured to cause the latch to move in a second latch direction and allow the brake drum assembly to rotate in the operating direction when the net roll support tube is in the load-unload position.

14. The net dispensing assembly of claim 9 , wherein the latch is rigid and is configured to engage the stationary portion and prevent the brake drum assembly from rotating when the net roll support tube is in the load-unload position, and

the latch is configured to disengage from the stationary portion and allow the brake drum assembly to rotate when the net roll support tube is moved a distance away from the load-unload position.

15. The net dispensing assembly of claim 9 , wherein the latch is fixedly coupled to the brake drum assembly.

16. The net dispensing assembly of claim 9 , wherein the latch is integral with the brake drum assembly.

Assignments (3)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded May 31, 2017
From: CNH INDUSTRIAL AMERICA LLC
To: BLUE LEAF I.P., INC
Reel/Frame 042630/0305 →
CHANGE OF NAME Recorded Mar 24, 2014
From: CNH AMERICA LLC
To: CNH INDUSTRIAL AMERICA LLC
Reel/Frame 032510/0909 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Mar 13, 2013
From: SMITH, KEVIN M.; SIMMONS, SCOTT C.; WOLF, BRIAN T.
To: CNH AMERICA LLC
Reel/Frame 029987/0861 →