MARKER ARM SPRING RETAINER
20190387656 ยท 2019-12-26
Assignee
Inventors
- Brent Elwing (Roselle, IL, US)
- Brian J. Anderson (Yorkville, IL, US)
- Chad M. Johnson (Arlington Heights, IL, US)
- Travis L. Harnetiaux (Bourbonnais, IL, US)
- Johnathon R. Dienst (DeKalb, IL, US)
- Patrick Dinnon (Plainfield, IL, US)
- Michael J. Connors (Lockport, IL, US)
Cpc classification
A01B73/044
HUMAN NECESSITIES
International classification
Abstract
An implement for an agricultural vehicle including a toolbar and a pair of marking devices pivotally connected to the toolbar. Each marking device includes a first arm, a second arm, and a first attachment bracket pivotally connecting the first arm to the distal end of the second arm. The first and second arms are configured for pivoting between a stored position in which the first and second arms are folded relative to one another and an operational position in which the first and second arms are unfolded relative to one another. Each marking device further includes a second attachment bracket, a kick out link, and a biasing member connected to the kick out link and configured for providing a biasing force acting on the kick out link to retain the first arm relative to the second arm in the stored position.
Claims
1. An implement for an agricultural vehicle, comprising: a toolbar; and a pair of marking devices pivotally connected to the toolbar, each said marking device including: a first arm; a second arm having a proximal end and a distal end; a first attachment bracket pivotally connecting the first arm to the distal end of the second arm, and the first and second arms are configured for pivoting between a stored position in which the first and second arms are folded relative to one another and an operational position in which the first and second arms are unfolded relative to one another; a second attachment bracket supported by the toolbar and positioned adjacent to the proximal end of the second arm; a kick out link pivotally interconnected between the first attachment bracket and the second attachment bracket, the kick out link is configured for controlling a movement of the first arm; and a biasing member connected to the kick out link and configured for providing a biasing force acting on the kick out link to retain the first arm relative to the second arm in the stored position.
2. The implement of claim 1, wherein the biasing member is in the form of a spring and the spring applies a preload onto the kick out link.
3. The implement of claim 1, wherein, in the stored position, the biasing members of the marking devices inhibit the movement of the first arms such that the first arms are prevented from undesirably unfolding upon being at least one of tilted, jostled, subjected to an abrupt force and subjected to an inertial force.
4. The implement of claim 3, further including a pair of actuators supported by the toolbar, respectively associated with each marking device, and configured for unfolding and folding each marking device between the stored and operational positions, wherein a respective kick out link of a respective marking device does not slide, in order to unfold the first arm, until a force acting on the kick out link, applied via a respective actuator, overcomes the biasing force of the biasing member.
5. The implement of claim 1, wherein the second attachment bracket includes a pin which pivotally mounts the kick out link.
6. The implement of claim 5, wherein the kick out link includes an outer link member and an inner link member, and the outer link member is connected to the first attachment bracket and the inner link member is attached to the pin of the second attachment bracket.
7. The implement of claim 6, wherein the biasing member is coupled to the inner link member in between the pin and the outer link member.
8. The implement of claim 7, wherein each marking device further includes a first stopper and a second stopper respectively connected to the inner link member, the first stopper is positioned in between the outer link member and the biasing member and the second stopper is positioned in between the biasing member and the pin.
9. A marking device pivotally connected to an implement for an agricultural vehicle, comprising: a first arm; a second arm having a proximal end and a distal end; a first attachment bracket pivotally connecting the first arm to the distal end of the second arm, and the first and second arms are configured for pivoting between a stored position in which the first and second arms are folded relative to one another and an operational position in which the first and second arms are unfolded relative to one another; a second attachment bracket positioned adjacent to the proximal end of the second arm; a kick out link pivotally interconnected between the first attachment bracket and the second attachment bracket, the kick out link is configured for controlling a movement of the first arm; and a biasing member connected to the kick out link and configured for providing a biasing force acting on the kick out link to retain the first arm relative to the second arm in the stored position.
10. The marking device of claim 9, wherein the biasing member is in the form of a spring and the spring applies a preload onto the kick out link.
11. The marking device of claim 9, wherein, in the stored position, the biasing member of the marking device inhibits the movement of the first arm such that the first arm is prevented from undesirably unfolding upon being at least one of tilted, jostled, subjected to an abrupt force and subjected to an inertial force.
12. The marking device of claim 9, wherein the second attachment bracket includes a pin which pivotally mounts the kick out link.
13. The marking device of claim 12, wherein the kick out link includes an outer link member and an inner link member, and the outer link member is connected to the first attachment bracket and the inner link member is attached to the pin of the second attachment bracket.
14. The marking device of claim 13, wherein the biasing member is coupled to the inner link member in between the pin and the outer link member.
15. The marking device of claim 14, further including a first stopper and a second stopper respectively connected to the inner link member, the first stopper is positioned in between the outer link member and the biasing member and the second stopper is positioned in between the biasing member and the pin.
16. A method, comprising the steps of: providing an implement for an agricultural vehicle including a toolbar and a pair of marking devices pivotally connected to the toolbar, each said marking device including a first arm, a second arm having a proximal end and a distal end, a first attachment bracket pivotally connecting the first arm to the distal end of the second arm, and the first and second arms are configured for pivoting between a stored position in which the first and second arms are folded relative to one another and an operational position in which the first and second arms are unfolded relative to one another, a second attachment bracket supported by the toolbar and positioned adjacent to the proximal end of the second arm, a kick out link pivotally interconnected between the first attachment bracket and the second attachment bracket, the kick out link is configured for controlling a movement of the first arm, and a biasing member connected to the kick out link and configured for providing a biasing force acting on the kick out link; biasing, by the biasing member, the kick out link to not slide in order to retain the first arm relative to the second arm in the stored position; and overcoming, by the kick out link, the biasing force provided by the biasing member upon selecting to unfold a respective marking device to be in the operational position.
17. The method of claim 16, wherein the biasing member is in the form of a spring and the spring applies a preload onto the kick out link.
18. The method of claim 16, wherein, in the stored position, the biasing members of the marking devices inhibit the movement of the first arms such that the first arms are prevented from undesirably unfolding upon being at least one of tilted, jostled, subjected to an abrupt force and subjected to an inertial force.
19. The method of claim 16, wherein the second attachment bracket includes a pin which pivotally mounts the kick out link, and the kick out link includes an outer link member and an inner link member, and the outer link member is connected to the first attachment bracket and the inner link member is attached to the pin of the second attachment bracket.
20. The method of claim 19, wherein the biasing member is coupled to the inner link member in between the pin and the outer link member.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
[0010] For the purpose of illustration, there are shown in the drawings certain embodiments of the present invention. It should be understood, however, that the invention is not limited to the precise arrangements, dimensions, and instruments shown Like numerals indicate like elements throughout the drawings. In the drawings:
[0011]
[0012]
[0013]
[0014]
[0015]
DETAILED DESCRIPTION OF THE INVENTION
[0016] Referring now to the drawings, and more particularly to
[0017] Referring now collectively to
[0018] The marking devices 38 may also additionally include a first, outer attachment bracket 50, a second, inner attachment bracket 52, a kick out link 54 pivotally interconnected between the attachment brackets 50, 52, and a biasing member 56 connected to the kick out link 54. In the folded, stored position, the kick out link 54 acting in conjunction with the biasing member 56 inhibits an unwanted unfolding of the marking devices 38 such that the outer arms 42 do not become unfolded upon being tilted, jostled, subjected to an abrupt force and/or subjected to an inertial force.
[0019] The outer attachment bracket 50 pivotally connects the outer and inner arms 42, 44 to one another. Thereby, the outer attachment bracket 50 connects all three of the outer arm 42, the inner arm 44, and the kick out link 54 relative to one another. The inner attachment bracket 52 is supported by the toolbar 14, fixedly mounted to the extension arm 46, and positioned adjacent to the proximal end of the second arm 44. The inner attachment bracket 52 may include a pin 58 pivotally coupled to the body of the inner attachment bracket 52 that in turn pivotally mounts the kick out link 54 (
[0020] The kick out link 54 is pivotally interconnected between the inner attachment bracket 52, adjacent to the proximal end of the inner arm 44, and the outer attachment bracket 50 at the distal end of the inner arm 44. The kick out link 54 is configured for controlling a movement of the outer arm 42. In other words, as the kick out link 54 slides relative to pin 58 to extend or retract, which correspondingly causes the kick out link 54 to unfold or fold into and out of the stored and operational positions. The kick out link 54 may have a first, outer link member 54A and a second, inner link member 54B. The outer link member 54A is connected to the outer attachment bracket 50, and the inner link member 54B is attached to the inner attachment bracket 52. In more detail, the inner link member 54B extends through a corresponding receiving hole in the pin 58, and a fastener (unnumbered) may keep the inner link member 54B from sliding out of the pin 58. When one or more of the actuator(s) 48 are activated to unfold the marking device(s) 38 into the operational position, the kick out link 54 is correspondingly moved, i.e., the inner link member 54B slides relative to the receiving hole in the pin 58 and the biasing member 56 is compressed. It should be appreciated that in an alternative embodiment, the outer link member 54A may be connected to the inner attachment bracket 52, and the inner link member 54B may be attached to the outer attachment bracket 50.
[0021] The biasing member 56 provides a biasing force acting on the kick out link 54 in order to retain the first arm 42 relative to the second arm 44 when the marking device 38 is in the stored position. The biasing member 56 is connected to the kick out link 54, and more particularly, the biasing member 56 is coupled to, e.g. fitted around, the inner link member 54B in between the pin 58 and an end of the outer link member 54A. For example, the biasing member 56 may be positioned in between a pair of stoppers 60, e.g. washers, connected to the inner link member 54B and positioned at each end of the biasing member 56 between the pin 58 and the outer link member 54A, respectively (
[0022] Referring now to
[0023] These and other advantages of the present invention will be apparent to those skilled in the art from the foregoing specification. Accordingly, it is to be recognized by those skilled in the art that changes or modifications may be made to the above-described embodiments without departing from the broad inventive concepts of the invention. It is to be understood that this invention is not limited to the particular embodiments described herein, but is intended to include all changes and modifications that are within the scope and spirit of the invention.