CONTINUOUS WINDROW MERGER
20170202146 ยท 2017-07-20
Assignee
Inventors
Cpc classification
A01D84/00
HUMAN NECESSITIES
A01D85/001
HUMAN NECESSITIES
A01B73/044
HUMAN NECESSITIES
International classification
A01D84/00
HUMAN NECESSITIES
Abstract
A continuous windrow merger has a frame that supports center, right and left pickup assemblies. The pickup assemblies each include a pickup head and a conveyor assembly. The pickup head has a cylindrical reel and a plurality of tines extending radially outwardly from the reel. The pickup head is arranged to pickup and deliver crop material rearward to the conveyor assembly. The conveyor assembly has a draper belt with an upper surface arranged to receive crop material from the pickup head and transfer the crop material in a lateral direction. The draper belt is mounted with the upper surface sloping downwardly and rearwardly from the pickup head. The merger has a folded configuration for transport in which the right and left wing frame sections extend generally vertically above the center frame section. The frame can be attached to the front of a self-propelled traction unit or towed behind a tractor.
Claims
1. A convertible windrow merger comprising: a frame; a pickup assembly comprising a pickup head and conveyor assembly supported by said frame; and a means for converting said frame between a first configuration for attaching to a front of a self-propelled traction unit for use as a self-propelled merger, and a second configuration for attaching behind a tractor for use as a pull behind merger.
2. The convertible windrow merger according to claim 1, wherein said second configuration comprises a hitch tongue and support wheels attached to said frame.
3. The convertible windrow merger according to claim 1, wherein said first configuration comprises a quick attach coupling structure for attaching to a corresponding coupling structure on a self-propelled traction unit.
4. A convertible windrow merger comprising: a frame having a center frame section and right and left wing frame sections, said right wing frame section being pivotally attached to a right side of said center frame section for folding movement about a horizontal first longitudinal folding axis, and said left wing frame section being pivotally attached to a left side of said center frame section for folding movement about a horizontal second longitudinal folding axis; a center pickup assembly comprising a pickup head and conveyor assembly supported by said center frame section; a right wing pickup assembly comprising a pickup head and conveyor assembly supported by said right frame section; a left wing pickup assembly comprising a pickup head and conveyor assembly supported by said left frame section; said merger having an unfolded configuration for field operations in which said right and left wing frame sections extend generally horizontally outwardly from outer ends of said center frame section, and a folded configuration in which said right and left wing frame sections extend generally vertically above respective right and left ends of said center frame section; said center frame comprising a modular structure with a first mounting configuration in which a quick-attach coupling structure is mounted to the center frame for attaching the merger to a corresponding coupling structure on a front of a self-propelled traction unit, and a second mounting configuration in which a hitch tongue and support wheels are attached to the center frame for use as a pull-behind merger implement.
5. The convertible windrow merger according to claim 4, wherein pivot points for said first and second longitudinal folding axes are located inward of the outer ends of said center frame section and above said center pickup assembly.
6. The convertible windrow merger according to claim 5, wherein said right wing pickup assembly and said left wing pickup assembly are substantially within a width of said center wing pickup assembly in said folded configuration.
7. The convertible windrow merger according to claim 4, further comprising first and second hydraulic cylinders attached to said right and left wing frame sections, respectively, for moving said wing frame sections about said first and second folding axes.
8. The convertible windrow merger according to claim 4, wherein said right and left wing frame sections have inner ends and outer ends, and wherein the outer ends of the right and left wing frame sections are vertically above the inner ends thereof in said folded configuration.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
[0020] The present invention will become more clearly appreciated as the disclosure of the invention is made with reference to the accompanying drawings. In the drawings:
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DETAILED DESCRIPTION OF THE INVENTION
[0046] A windrow merger 10 according to the present invention will be described with reference to
[0047] The windrow merger 10 shown in
[0048] Each pickup assembly 16, 17, 18 has a pickup head 19 and a conveyor assembly 20. The pickup head 19 is arranged to pickup and deliver crop material rearward to the conveyor assembly 20. The conveyor assembly 20 is arranged to receive crop material from the pickup head 19 and transfer the crop material in a lateral direction to a lateral side of the merger 10. The merger 10 can be operated to transfer crop material to either lateral side by changing a direction of rotation of the conveyor assemblies 20.
[0049] The center frame section 13 has a quick attach coupling structure 21 on its rear side for attaching to a corresponding coupling structure 22 on the self-propelled traction unit 11. The merger 10 can be uncoupled from the traction unit 11 to allow the traction unit 11 to be used with other implements, such as a swather attachment.
[0050] As shown in
[0051] As shown in
[0052] The merger 10 has a folded configuration for transport, as shown in
[0053] The merger 10 has an unfolded configuration for field operations, as shown in
[0054] Lateral folding, as provided by the merger 10, is important to fit on the front of a windrower traction unit 11 and to reduce the structure of the merger frame 12. The lateral folding structure, including the pivot points 28, 29 and the hydraulic cylinders 32, 33, allows the merger 10 to be folded to a width under 10 feet for transport and storage. Conventional mergers have large frames at the rear to fold back and around. However, this adds weight, which increases cost and soil compaction.
[0055] Tensioner mechanisms 34 are used to maintain an appropriate amount of tension on the belts in the conveyor assemblies 20. The tensioner mechanisms 34 are provided on one of the pivot arms 35. The arm 35 pivots about the main frame 13, 14, 15 about pivot pins 36. The tensioner mechanism 34 is integrated in the pivot arm 35, and a pinned joint 36A is provided on the end to allow the tensioner mechanism 34 and pivot arm 35 to flex and allow the merger 10 to follow the contour of the ground better.
[0056] The pickup head 19 used in the merger 10 is a cam-less pickup assembly. The tines 37 of the pickup head 19 are not mounted to a bar with a cam follower that causes the tines to turn to different positions throughout the rotation of the reel, as in conventional pickup heads. Instead, the tines 37 are mounted rigid to a cylindrical tube or reel 38 and extend radially outwardly from the reel 38. The tines 37 remain perpendicular to the reel 38 throughout the rotation of the reel 38.
[0057] The tines 37 include a base portion 39 mounted rigidly to the reel 38 and a working portion 40 that extends radially outwardly from the base portion 39. The base portion 39 can be a casting adapted to fasten to the outer surface of the reel 38, or part of the tine itself. Attaching the tines 37 directly to the reel 38 in this manner reduces the number of parts in the assembly of the pickup head 19 and makes for the ability to have a pattern of tines 37 across the reel 38.
[0058] The pickup assemblies 16, 17, 18 can be cam-less in the present invention due to the unique arrangement of the conveyor assembly 20 relative to the pickup head 19. The conveyor assembly 20 is arranged with the upper surface of a draper belt 41 sloping downwardly and rearwardly from the pickup head 19. For example, the upper surface of the belt 41 can be arranged to slope downwardly and rearwardly at an angle of approximately 1 to 10 degrees relative to horizontal. In a preferred embodiment, the angle of the upper surface of the belt 41 is sloped downwardly and rearwardly approximately 3 to 7 degrees relative to horizontal.
[0059] By tipping the belt 41 down and away from the pickup head 19, the crop flow is improved from the tines 37 of the pickup head 19 to the belt 41. In contrast, having the belt flat or tipped forward has been found to impede crop flow from the pickup head to the conveyor belt. Also, having the conveyor belt 41 tipped back allows the crop to stack laterally instead of expecting the pickup head 19 to keep stacking crop vertically on top of other crop, as most conventional mergers do. The arrangement of the conveyor belt 41 relative to the pickup head 19 in the present invention results in more efficient crop flow and a smoother ending windrow.
[0060] The pickup assemblies 16, 17, 18 each have a stripper guard assembly 42 in which stationary guards 43 are spaced along a length of the reel 38 with the guards 43 positioned between adjacent paths of movement of the tines 37.
[0061] The tines 37 are arranged in a pattern across the cylindrical reel 38 so that less than one entire row of tines 37 is at bottom dead center at a time during operation. For example, the tine pattern can be such that only one tine 37 is at bottom dead center at a time. Such a pattern of tines 37 will provide a more even load on the hydraulic drive motor used to power the pickup head 19, and will also provide a more even crop flow. In contrast, a conventional pickup head typically has all the tines in a row at bottom-dead-center (highest load) at the same moment, causing uneven loading.
[0062] The cam-less pickup head 19 used in the merger 10 also reduces the number of bearings, components and weight of each pickup assembly 16, 17, 18. For example, while a conventional pickup head may have 72 bearings in just one ten foot section, the pickup head 19 of the present invention will have only 4 bearings. A drive motor 44 for rotatably driving the pickup head 19 is mounted inside the cylindrical reel 38 for conserving space.
[0063] Other embodiments of the present invention are also contemplated. For example, a merger having secondary wings attached to the right and left wing sections 14, 15 can be made using the lateral folding structure of the present invention. This would allow the merger to have up to five sections that can reach out to 50 feet total width. The present invention also has the potential to allow dealers to reconfigure mergers to change operating widths using bundles to make machines wider to fit various customer needs. The lateral folding of the present invention will also allow the merger 10 to be adapted to reverse station tractors or other power units.
[0064] While the invention has been specifically described in connection with specific embodiments thereof, it is to be understood that this is by way of illustration and not of limitation, and the scope of the appended claims should be construed as broadly as the prior art will permit.