IP Library Granted Patent US 7,290,635
Granted Patent B2
US 7,290,635 · App. 10/884,767 · Granted Nov 6, 2007

Work machine operator control station with moveably attached controller

Assignee: Caterpillar Inc.
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 7,290,635
App. No.
10/884,767
Granted
Nov 6, 2007
Kind
B2
Abstract

Engineers have been seeking strategies to improve a work machine operator's comfort and to ensure the operator's safety. The present disclosure includes an operator control station that includes a seat assembly supported, in part, on a suspension system. At least one work machine operation controller is pivotably attached to the seat assembly between an egress position and a work machine operation position. A locking mechanism is operable to fix the work machine operation controller in the work machine operation position.

Claims (69)

1. A work machine comprising:

a work machine body;

an operator control station including a seat assembly, which includes first and second arm rests adjacent opposite sides of a seat and back, being attached to the work machine body via a suspension system;

at least one work machine operation controller being pivotably attached to the seat assembly to move with a portion of the first arm rest between a work machine operation position and an egress position about a pivot;

a locking mechanism being operable to fix the at least one work machine operation controller in the work machine position;

a spring assembly operably coupled between a stationary portion of the seat assembly and a pivoting portion of the first arm rest, and the spring assembly being compressed when the first arm rest is in the work machine operation position; and

the egress position being separated from the work machine operation position by an angle greater than 90°.

2. The work machine of claim 1 wherein the portion of the first arm rest being adjustable along a line among a plurality of arm length positions via a shaft that slides along its length into a bore.

3. A work machine comprising:

a work machine body;

an operator control station including a seat assembly, which includes first and second arm rests adjacent opposite sides of a seat and back, being attached to the work machine body via a suspension system;

at least one work machine operation controller being pivotably attached to the seat assembly to move with a portion of the first arm rest between a work machine operation position and an egress position about a pivot;

a locking mechanism being operable to fix the at least one work machine operation controller in the work machine position;

wherein the at least one work machine operation controller being inoperable when in the egress position; and

wherein a switch disconnects communication between the work machine operation controller and an electronic control module when the locking mechanism is moved to an unlocked position.

4. The work machine of claim 3 including a spring assembly operably coupled between a stationary portion of the seat assembly and a pivoting portion of the first arm rest, and the spring assembly being compressed when the first arm rest is in the work machine operation position.

5. The work machine of claim 3 wherein the moveable portion of the first arm rest is constrained to pivot up and down only about the pin.

6. The work machine of claim 5 wherein the locking mechanism includes a spring-loaded rod biased to a first position, and an operator lock release being operable to move the spring loaded rod to a second position; and

when the work machine operation controller is in the work machine operation position, the spring-loaded rod is aligned with a rod bore and is in the first position, and when the work machine operation controller is in the egress position, the spring loaded rod is out of alignment with the rod bore and is in the second position.

7. The work machine of claim 6 wherein a stationary portion of the seat assembly and the moveable portion being castings including heat-treated aluminum.

8. A work machine comprising:

a work machine body;

an operator control station including a seat assembly being attached to the work machine body via a suspension system;

at least one work machine operation controller being pivotably attached to the seat assembly between a work machine operation position and an egress position;

a locking mechanism being operable to fix the at least one work machine operation controller in the work machine position;

the seat assembly includes at least one arm rest;

the at least one work machine operation controller being attached to move with at least a portion of the arm rest;

the seat assembly includes a seat;

the arm rest includes a moveable portion attached via a pin to a stationary portion with regard to the seat;

the moveable portion constrained to pivot only about the pin;

wherein the locking mechanism includes a spring-loaded rod biased to a first position, and an operator lock release being operable to move the spring loaded rod to a second position;

when the work machine operation controller is in the work machine operation position, the spring-loaded rod is aligned with a rod bore and is in the first position, and when the work machine operation controller is in the egress position, the spring loaded rod is out of alignment with the rod bore and is in the second position;

wherein the stationary portion and the moveable portion being castings including heat-treated aluminum;

wherein the egress position being separated from the work machine operation position by an angle greater than 90°;

at least a section of the moveable portion of the arm rest being adjustable along a line among a plurality of arm length positions;

the at least one work machine operation controller being inoperable when in the egress position; and

the work machine being a wheel loader.

9. An operator control station comprising:

a seat assembly, which includes first and second arm rests adjacent opposite sides of a seat and back, supported, in part, on a suspension system;

at least one work machine operation controller being pivotably attached to seat assembly to move with a portion of the first arm rest between an egress position and a work machine operation position about a pivot;

a locking mechanism being operable to fix the at least one work machine operation controller in the work machine operation position;

a spring assembly operably coupled between a stationary portion of the seat assembly and the pivoting portion of the first arm rest, and the spring assembly being compressed when the first arm rest is in the work machine operation position;

a switch that disconnects communication with the work machine operation controller when the locking mechanism is moved to an unlocked position.

10. The operator control station of claim 9 wherein the locking mechanism includes a spring-loaded rod biased to a first position, and an operator lock release being operable to move the spring loaded rod to a second position, which is the unlocked position; and

when the work machine operation controller is in the work machine operation position, the spring-loaded rod is aligned with a rod bore and is in the first position, and when the work machine operation controller is in the egress position, the spring loaded rod is out of alignment with the rod bore and is in the second position.

11. An operator control station comprising:

a seat assembly supported, in part, on a suspension system;

at least one work machine operation controller being pivotably attached to seat assembly between an egress position and a work machine operation position;

a locking mechanism being operable to fix the at least one work machine

operation controller in the work machine operation position;

the seat assembly includes at least one arm rest; and

the at least one work machine operation controller being attached to move with at least a portion of the arm rest;

the seat assembly includes a seat;

the arm rest includes a moveable portion attached via a pin to a stationary portion with regard to the seat;

the moveable portion constrained to pivot only about the pin;

wherein the locking mechanism includes a spring-loaded rod biased to a first position, and an operator lock release being operable to move the spring loaded rod to a second position;

when the work machine operation controller is in the work machine operation position, the spring-loaded rod is aligned with a rod bore and is in the first position, and when the work machine operation controller is in the egress position, the spring loaded rod is out of alignment with the rod bore and is in the second position; and

at least a section of the moveable portion being adjustable along a line among a plurality of arm length positions.

12. The operator control station of claim 11 including a spring assembly operably coupled between a stationary portion of the seat assembly and the moveable portion of the at least one arm rest, and the spring assembly being compressed when the at least one work machine controller is in the work machine operation position.

13. The operator control station of claim 11 wherein the egress position being separated from the work machine operation position by an angle greater than 90°; and

the at least one work machine operation controller being inoperable when in the egress position.

14. The operator control station of claim 13 wherein the stationary portion and the moveable portion being castings including heat-treated aluminum.

15. A method of preparing a work machine for operation, comprising the steps of:

pivoting an arm rest including at least one work machine operation controller downward against the action of a spring assembly from an egress position to a work machine operation position;

locking the arm rest in the work machine operation position by moving a locking mechanism to a locked position; and

the locking step includes enabling communication between the work machine operation controller and an electronic control module of the work machine.

16. The method of claim 15 wherein the step of locking the at least one work machine operation controller into the work machine operation position includes a step of extending a spring-loaded rod between a stationary portion and a moveable portion of an arm rest.

17. The method of claim 15 wherein the step of preparing includes a step of adjusting the work position of the work machine operation controller, at least in part, by moving at least a portion of the arm rest relative to a seat of the seat assembly for a predetermined arm length.

18. The method of claim 15 wherein the step of pivoting includes a step of constraining the pivoting about a pin attaching a moveable portion of the arm rest to a stationary portion of the arm rest.

Assignments (2)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Mar 28, 2005
From: BISICK, ERIC J.; MACKOWAY, JOHN P.
To: CATERPILLAR INC.
Reel/Frame 016400/0644 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jul 2, 2004
From: BISICK, ERIC J.; MACKOWAY, JOHN P.
To: CATERPILLAR, INC.
Reel/Frame 015556/0887 →
Continuity (1)
Related Publication 20060000656A1 · Jan 5, 2006