Zeroing adjustment for depth control system
09974223 ยท 2018-05-22
Assignee
Inventors
Cpc classification
A01B49/04
HUMAN NECESSITIES
International classification
A01B63/00
HUMAN NECESSITIES
A01C5/06
HUMAN NECESSITIES
Abstract
A zeroing adjustment for a depth control system of an agricultural seed planting implement has an adjustable link to compensate for the variable effects of tolerance stack-up and wear, so that all planting units of the implement can be adjusted to a common zero ground penetration setting from which depth settings can be made.
Claims
1. An agricultural seed planting implement, comprising: a toolbar; a plurality of individual seed planting units connected to said toolbar; each seed planting unit of said plurality of seed planting units including a ground penetrating assembly including an opening disc, and a depth control assembly for changing a depth to which the ground penetrating assembly can operate, each said depth control assembly being individually adjustable to a common zero ground penetration setting from which depth settings are made for said ground penetrating assemblies, the depth control assembly including at least one gauge wheel and one gauge wheel arm and a depth control linkage assembly including a depth control linkage arm associated with the ground penetrating assembly, and having adjustable positions for changing a depth to which the ground penetrating assembly can operate; and a movably adjustable control assembly which provides depth adjustment settings for the depth control linkage arm, wherein the control assembly is configured to lock the depth control linkage arm into a selected position which prevents axial movement of the arm, wherein said depth control linkage arm is selectively variable in length, and the depth control linkage arm comprises one end including a first end portion which overlaps at least a portion of a second end portion for axial adjustment of the arm, such that the arm is adjustably positioned in a selected length and the first end portion and the second end portion are locked together into the selected length via a lock mechanism which adjustably couples the first end portion to the second end portion, wherein the lock mechanism substantially prevents axial movement of the one end of the arm.
2. The agricultural seed planting implement of claim 1, wherein said axially adjustable connection includes a bolt connecting said first end portion and said second end portion.
3. The agricultural seed planting implement of claim 2, wherein said bolt includes a head, and said lock mechanism engages said head in an adjusted position of said head.
4. The agricultural seed planting implement of claim 1, wherein said depth control assembly includes a frame stop which interacts with said control segment in the zero ground penetration setting.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
(1) The above-mentioned and other features and advantages of this invention, and the manner of attaining them, will become more apparent and the invention will be better understood by reference to the following description of an embodiment of the invention taken in conjunction with the accompanying drawings, wherein:
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(12) Corresponding reference characters indicate corresponding parts throughout the several views. The exemplification set out herein illustrates one embodiment of the invention and such exemplification is not to be construed as limiting the scope of the invention in any manner.
DETAILED DESCRIPTION OF THE INVENTION
(13) Referring now to the drawings more specifically and to
(14) Referring now primarily to
(15) Each seed planting unit 20 includes a ground penetrating or seed trench opening assembly 30 (
(16) A seed trench closing mechanism 50 (
(17) The depth to which opening discs 32 are allowed to penetrate the ground is controlled by a depth control assembly 60 (
(18) A pivoted position to which each gauge wheel arm 64 is placed is controlled by depth setting and linkage assembly 80 having a depth setting control assembly 82, a depth control linkage arm 84 and a wobble bracket 86 connected to linkage arm 84 by a pivotal connection 88. Control assembly 82 adjusts an axial position for linkage arm 84 and thereby the position of wobble bracket 86, with wobble bracket 86 engaging control segments 70 of gauge wheel arms 64. Raising gauge wheels 62 allows opening discs 32 to penetrate deeper into the ground, and lowering gauge wheels 62 limits the depth to which discs 32 can penetrate into the ground.
(19) Referring now primarily to
(20) A handle 108 is provided on the distal end of outer arm 98 and includes laterally projecting position holding pegs 110, 112 for engaging notches 104, 106 of register 100. The pairs of notches including one of the notches 104 and one of the notches 106 secure the position of pivot arm 90 by receiving and engaging pegs 110, 112. Handle 108 is mounted on a spring 114, and can be depressed relative to outer arm 98 such that pegs 110, 112 disengage notches 104, 106 by sliding inwardly through the notches so that handle 108 can be moved fore and aft in slot 102 to align pegs 110, 112 with different pairs of notches 104, 106. As handle 108 rebounds outwardly, pegs 110, 112 slide into the pair of notches 104, 106 with which the pegs are aligned. Movement of handle 108 fore and aft pivots pivot arm 90 about its pivotal connection 92, and thereby extends or withdraws depth control linkage arm 84, to alter the position of wobble bracket 86, which in turn controls the positions of control segments 70 and thereby the allowable height of gauge wheels 62.
(21) Depth control linkage arm 84 includes a rearward portion 130 that is connected to pivot arm 90 by pivotal connection 96, and a forward portion 132 that is connected to wobble bracket 86 by pivotal connection 88. An intra-link connection 134 between rearward portion 130 and forward portion 132 is axially adjustably so that the overall length of linkage arm 84 is selectively variable. Rearward portion 130 and forward portion 132 are telescopically engaged with one another to accommodate the overall axial adjustability of connection 134 to change the overall length of linkage arm 84.
(22) Referring now more particularly to
(23) Referring now particularly to
(24) Zero adjustment or calibration of depth control assembly 60 is performed upon initial assembly and can be performed again from time to time as a maintenance procedure. For example, it may be desirable to zero adjust the system after significant wear and/or when replacement parts have been installed. Zero adjustment is performed with wobble bracket 86, pivotal connection 88 and cage 160 not yet installed (during initial assembly) or removed (when performed as a maintenance step). Seed planting implement 10 is adjusted so that toolbar 18 is elevated, lifting all seed planting units 20 off the ground. As illustrated in
(25) With seed planting implement 10 thus prepared, toolbar 18 is lowered until opening discs 32 barely contact a flat level surface upon which implement 10 is positioned. Opening discs 32 thereby rest at a zero penetration setting, and depth control assembly 60 can be adjusted for proper registration of handle 108 at the zero penetration setting. Control assembly 82 is adjusted such that handle 108 is engaged with the appropriate notches 104, 106 for a zero penetration setting. Bolt 136 is then adjusted relative to threaded block 146 to advance further into or to withdraw further from threaded block 146, while at all times remaining threadedly engaged there with. In this way, the overall length of depth control linkage arm 84 is adjusted so that when wobble bracket 86 is re-attached thereto it will properly engage control segments 70 of gauge wheel arms 64 and without unacceptable looseness. It should be understood that the appropriate length for control linkage arm 84 can be determined in numerous ways, including measurement between the end thereof and a fixed point such as, for example, depth setting register 100 or another fixed point of reference. A convenient way for determining the proper overall length of linkage arm 84 is by the use of a gauge 180. As illustrated in
(26) When all row units 20 of seed planting implement 10 are adjusted in this manner to a common zero penetration setting, each will have a common elevation relative to the zero setting to which it was adjusted. Each can then be set so that the opening discs 32 thereof will penetrate a same depth into the ground if the control assemblies 82 thereof are adjusted to similar settings in registers 100. In that way, all row units that are set to the same settings will deposit seeds at the same depths below the surface of the ground.
(27) While this invention has been described with respect to at least one embodiment, the present invention can be further modified within the spirit and scope of this disclosure. This application is therefore intended to cover any variations, uses, or adaptations of the invention using its general principles. Further, this application is intended to cover such departures from the present disclosure as come within known or customary practice in the art to which this invention pertains and which fall within the limits of the appended claims.