SEED METER
A seed meter for an agricultural planter in which the seed disc is rotatably mounted within a seed meter housing. As the seed disc rotates, the apertures in the disc rotate along a seed aperture path through a horizontally adjacent seed pool area. The seed disc includes cavities disposed along the seed aperture path to agitate the seeds in the seed pool area. A singulator having multiple co-planar singulator surfaces is biased against the seed side surface of the seed disc.
This application is a continuation of U.S. application Ser. No. 16/694,471, filed Nov. 25, 2019, which is a continuation of U.S. application Ser. No. 15/653,496, filed Jul. 18, 2017 which is a continuation of U.S. application Ser. No. 14/793,360, filed Jul. 7, 2015, which is a continuation of U.S. application Ser. No. 14/006,569 filed Sep. 20, 2013, which is the National Stage of International Application No. PCT/US2012/030192 filed Mar. 22, 2012, which claims the benefit of U.S. Provisional Application No. 61/466,047, filed Mar. 22, 2011.
BACKGROUNDIn recent years, growers of corn and other crops have come to recognize the importance of planting individual seeds at the appropriate spacing due to increased seed and crop input prices, but also because they have the ability to monitor the economic impact of skips, doubles or misplaced seeds using modern planter monitors. For these reasons modern seed meters have been developed that include features which improve the singulation of seeds. However, each added feature increases the amount of time that the grower must spend replacing wear parts or making other adjustments prior to or during planting operations. Due to weather and other factors, the available time to plant corn and other crops is often extremely limited, with each planter required to cover hundreds of acres while limited in speed due to reduced seed meter performance at higher planting speeds.
Thus, there is a need for a seed meter having improved singulation and seed spacing capability at higher speeds and which is also easily repairable and modifiable.
Referring now to the drawings, wherein like reference numerals designate identical or corresponding parts throughout the several views,
The furrow opening assembly 20 comprises a pair of furrow opening discs 22 which are rotatably mounted on shafts 26 secured to a shank 30 comprising a part of the row unit frame 16. The furrow opening assembly 20 further comprises a pair of gauge wheels 32 rotatably supported by gauge wheel arms 35 also secured to the frame 16. As the planter is drawn through the field, the rotating furrow opening discs 22 cut a V-shaped furrow 40 through the soil surface 36. The egress end of the seed tube 46 is disposed between the rearwardly diverging furrow opening discs 22.
In operation, as the planter is drawn through the field along the direction of travel as indicated by the arrow 38, the seed hopper 18 communicates a constant supply of seeds 42 to the seed meter 100. The seed meter 100 meters or dispenses individual or “singulated” seeds 42 at regularly spaced intervals into the seed tube 46. The seed tube 46 directs the seeds downwardly and rearwardly between the diverging furrow opening discs 22 before depositing the seeds into the V-shaped furrow 40. The seeds are then covered with soil by the furrow closing assembly 50. A seed sensor 60 detects the passage of seeds through the seed tube 46 as is known in the art.
Novel Seed Meter EmbodimentsEmbodiments of a novel seed meter 100 are illustrated in
The seed housing 105 includes pivots 113 (
Referring to
Turning to
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The height of baffle 160 may be adjusted along guides 164 and 166. The baffle 160 is mounted to the seed housing 105 by rivet 162, which extends outside the seed housing 105 (as best seen in
Referring to
Radial spring 111 is mounted to the seed housing 105 such that in operation, the radial spring biases the singulator radially against the seed disc 120 when the seed disc is in its normal position.
Referring to
It should be appreciated that the singulator 130 is easily replaceable with another singulator with a different lobe configuration for different seeds or if it is necessary to replace the singular due to wear on the singulator lobes. The singulator 130 is removable by pulling it away from the axial spring 137 with sufficient force that the attachment ears 139 deflect away from each other sufficiently to release the base 133. The attachment ears 139 may also be deflected away from each other with one hand while pulling the singulator 130 away from the axial spring 137 with the other. Likewise, the singulator 130 may be replaced by pressing the base 133 of the singulator between the attachment ears 139 with sufficient force to cause the attachment ears to deflect away from each other to allow the base of the singulator to pass between them. To replace the singulator, the base 133 may be pushed between the ears causing them to deflect away from one another before returning to the normal position in which the base of the singulator is again secured between the ears. In this way the singulator 130 may be easily removed and replaced by hand without the use of tools and without removing or changing the location of axial spring 137, which remains in the correct location to bias the singulator 130 against the seed disc 120 while allowing the singulator 130 to “float” with deflections or deformations of the seed disc.
Referring to
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It has been found that seeds or partial seeds may become lodged in the seed apertures 122 and remain there even after the apertures 122 pass outside of the vacuum seal 190 where no vacuum is imposed. This is undesirable because when the apertures re-enter the seed reservoir an additional seed may not be entrained in an aperture holding a seed or partial seed. Thus, referring again to
As best illustrated in
It should be appreciated that the user may wish to remove the seed ejector assembly 170 or replace it due to wear on the ejector wheel 176, to install a differently configured seed ejector assembly, or for other reasons. As illustrated in
Turning to
The seed ejector assembly 270 includes a lever arm 275. The lever arm 275 is preferably pivotally biased toward the seed disc 220 as described herein with respect to the lever arm 175. As best illustrated in
In some embodiments of the ejector wheel 276, the plungers 278 include tips 277. In some embodiments of the seed disc 220, the apertures 222 are tapered to small openings 223 (
In operation, as the disc rotates, the guide teeth 288 sequentially engage the guide cavities 232. The plungers 278 sequentially engage the seed apertures 222. Referring to
Referring to
Each cavity 128 preferably comprises an agitation cavity sized to agitate the seeds in the seed pool area 150. Thus the cavities 128 are preferably sized to allow significant movement of seeds 42 into and out of the cavities as each cavity moves adjacent to the seed pool 150. The outer perimeter of the cavity 128 is preferably larger than the outer perimeter of the adjacent seed aperture 122. The area of an intersection between the surface 140 of the seed disc 120 and each cavity 128 is preferably greater than the area of an intersection between the surface 140 and each seed aperture 122. It should be appreciated that each seed aperture is sized to allow limited movement of seeds 42 into the seed aperture. Moreover, the cavities 128 are preferably wider than the average size of seeds 42 to be planted using the seed disc 120. Moreover, the depth D (
Referring to
In operation, as the seed disc 120 rotates through the seed pool area 150 located to the side of the seed disc (as best illustrated in
Each cavity 128 preferably includes a sidewall 124 oriented to face the seed pool area 150 as the cavity rotates into the seed pool area. The sidewall 124 is preferably substantially vertical (
The cavities 128 preferably include a bevel 126 oriented to face away from the seed pool as the disc 120 rotates into the seed pool area 150. An angle A (
Although a seed disc 120 is disclosed herein including series of seed apertures 122 and cavities 128 having the same radial distance from the center of the seed disc, other embodiments include rows of seed cavities
Referring to
Although the various improvements described herein are illustrated with respect to a vacuum-type seed meter, they would be equally applicable to other seed singulating meters, including positive-air meters such as that disclosed in U.S. Pat. No. 4,450,979 to Deckler, incorporated herein in its entirety by reference.
The foregoing description is presented to enable one of ordinary skill in the art to make and use the invention and is provided in the context of a patent application and its requirements. Various modifications to the preferred embodiment of the apparatus, and the general principles and features of the system and methods described herein will be readily apparent to those of skill in the art. Thus, the present invention is not to be limited to the embodiments of the apparatus, system and methods described above and illustrated in the drawing figures, but is to be accorded the widest scope consistent with the spirit and scope of the appended claims.
Claims
1. A seed meter for an agricultural planter, said seed meter comprising:
- a meter housing including a seed housing portion and a cover portion, the cover portion movable relative to the seed housing portion, the cover portion closeable against the seed housing portion;
- a seed pool area being defined in the seed housing portion;
- a vacuum area defined in the cover portion by a seal arranged on the cover portion;
- a seed disc interposed between the seed housing portion and the cover portion, the seed disc rotatably driven in a direction of rotation, the seed disc delimiting the seed pool area from the vacuum area, a seed side surface of the seed disc is oriented toward the seed pool area and a vacuum side surface of the seed disc is oriented toward the vacuum area, the vacuum side of the seed disc in sliding contact with the seal when the seed housing portion and the cover portion are closed against one another;
- the seed disc having at least one ring of seed apertures extending between the seed side surface and the vacuum side surface;
- wherein the seed disc is supported rotatably in the cover portion of the meter housing by a shaft rotatably coupled to bearings supported by the cover portion;
- wherein a pressure differential is provided between the seed side surface and the vacuum side surface of the seed disc in the region of a circular segment of the at least one ring of seed apertures defined by the seal;
- a seed singulator disposed in the seed housing portion along the region of the circular segment of the at least one ring of seed apertures defined by the seal;
- an axial spring mounted to the seed housing portion, the axial spring biasing the seed singulator axially toward the seed side surface of the seed disc;
- a radial spring mounted to the seed housing portion, the radial spring biasing the seed singulator radially with respect to the seed disc.
2. The seed meter according to claim 1, wherein the shaft rotates with the seed disc when the seed housing portion and the cover portion of the meter housing are closed against one another.
3. The seed meter according to claim 1, further including a drive plate coupled to and rotatable with the shaft, the drive plate releasably coupled to the seed disc on the vacuum side surface, in a zone radially inside of the at least one ring of seed apertures.
4. The seed meter according to claim 3, wherein the seed disc is rotated by a driven shaft operably coupled to the shaft when the seed housing portion and the cover portion are closed against one another.
5. The seed meter according to claim 3, wherein the seed disc is rotated by a driven gear engaging with drive teeth on the seed disc when the seed housing portion and the cover portion are closed against one another.
6. The seed meter according to claim 1, wherein the cover portion of the meter housing is mechanically coupled to the seed housing portion of the meter housing.
7. An agricultural planter comprising a frame on which a seed meter according to claim 1 is mounted.
8. An agricultural planter including a supporting structure on which a plurality of seed meters according to claim 1 are mounted.
9. The seed meter of claim 1, wherein the seed singulator includes a plurality of lobes.
10. The seed meter of claim 9, wherein the seed singulator includes three radially spaced upper lobes extending radially outward of the at least one ring of seed apertures and two radially spaced lower lobes extending radially inward of the at least one ring of seed apertures.
11. The seed meter of claim 10, wherein the three radially spaced upper lobes extend from an upper lobe plate and the two radially spaced lower lobes extend from a lower lobe plate, and wherein the upper lobe plate and lower lobe plate are connected to a base, the base releasably attached to the axial spring.
12. The seed meter of claim 11, wherein the radial spring is releasably attached to the base.
13. The seed meter of claim 9, wherein the seed disc rotates in a direction of rotation and wherein each of the plurality of lobes includes an arcuate seed contacting edge which contacts seeds entrained on the at least one ring of seed apertures by the pressure differential as the seed disc rotates in the direction of rotation.
14. The seed meter of claim 13, wherein each of the plurality of lobes includes an arcuate seed contacting edge which contacts seeds entrained on the at least one ring of seed apertures as the seed disc rotates in the direction of rotation.
15. An assembly for a seed meter of an agricultural planter wherein the seed meter comprises:
- a meter housing including a seed housing portion and a cover portion, the cover portion movable relative to the seed housing portion, the cover portion closeable against the seed housing portion;
- a seed pool area being defined in the seed housing portion;
- a vacuum area defined in the cover portion by a seal arranged on the cover portion;
- a seed disc interposed between the seed housing portion and the cover portion, the seed disc rotatably driven in a direction of rotation, the seed disc delimiting the seed pool area from the vacuum area, a seed side surface of the seed disc is oriented toward the seed pool area and a vacuum side surface of the seed disc is oriented toward the vacuum area, the vacuum side of the seed disc in sliding contact with the seal when the seed housing portion and the cover portion are closed against one another;
- the seed disc having at least one ring of seed apertures extending between the seed side surface and the vacuum side surface;
- wherein the seed disc is supported rotatably in the cover portion of the meter housing by a shaft rotatably coupled to bearings supported by the cover portion;
- wherein a pressure differential is provided between the seed side surface and the vacuum side surface of the seed disc in the region of a circular segment of the at least one ring of seed apertures defined by the seal;
- a seed singulator disposed in the seed housing portion along the region of the circular segment of the at least one ring of seed apertures defined by the seal;
- an axial spring mounted to the seed housing portion, the axial spring biasing the seed singulator axially toward the seed side surface of the seed disc;
- a radial spring mounted to the seed housing portion, the radial spring biasing the seed singulator radially with respect to the seed disc.
16. The assembly of claim 15, wherein the shaft rotates with the seed disc when the seed housing portion and the cover portion of the meter housing are closed against one another.
17. The assembly of claim 15, further including a drive plate coupled to and rotatable with the shaft, the drive plate releasably coupled to the seed disc on the vacuum side surface, in a zone radially inside of the at least one ring of seed apertures.
18. The assembly of claim 15, wherein the seed disc is rotated by a driven shaft operably coupled to the shaft when the seed housing portion and the cover portion are closed against one another.
19. The assembly according to claim 15, wherein the seed disc is rotated by a driven gear engaging with drive teeth on the seed disc when the seed housing portion and the cover portion are closed against one another.
20. The assembly of claim 18, wherein the driven shaft is coupled to an adapter mounted to the shaft.
21. The assembly of claim 15, wherein the cover portion of the meter housing is mechanically coupled to the seed housing portion of the meter housing.
Type: Application
Filed: Nov 15, 2022
Publication Date: Mar 16, 2023
Inventor: Derek A. Sauder (Tremont, IL)
Application Number: 18/055,571