Implement for adjustably metering an agricultural field input according to different frame sections
10568257 ยท 2020-02-25
Assignee
Inventors
Cpc classification
A01C7/081
HUMAN NECESSITIES
B05B1/1681
PERFORMING OPERATIONS; TRANSPORTING
B05B1/169
PERFORMING OPERATIONS; TRANSPORTING
B05B9/0423
PERFORMING OPERATIONS; TRANSPORTING
A01C7/082
HUMAN NECESSITIES
A01C7/04
HUMAN NECESSITIES
G05D7/0664
PHYSICS
G05D7/0652
PHYSICS
International classification
A01C7/08
HUMAN NECESSITIES
A01C7/20
HUMAN NECESSITIES
A01C23/00
HUMAN NECESSITIES
B05B9/04
PERFORMING OPERATIONS; TRANSPORTING
A01C23/04
HUMAN NECESSITIES
B05B1/16
PERFORMING OPERATIONS; TRANSPORTING
A01C7/04
HUMAN NECESSITIES
Abstract
Metering device for an agricultural implement are present for applying a field input, for example, pneumatically delivered granular product including seed or fertilizer or sprayed liquid product including fertilizer and the like, to an agricultural field. In the applying of the field input, the rate of application of the dispensers of one section of the implement can be collectively varied in relation to the rate of application of the dispensers of a different section of the implement frame.
Claims
1. An implement for applying at least one agricultural product fluid to an agricultural field comprising: an implement frame including a plurality of designated frame sections including at least two frame sections; wherein each designated frame section includes: a plurality of product dispensers, at least one fluid delivery line in communication with the plurality of product dispensers, the fluid delivery line configured to convey the at least one agricultural product fluid to the plurality of product dispensers, a flow rate sensor along the fluid delivery line and in communication with the flow rate sensor, the flow rate sensor configured to measure the flow rate of the at least one agricultural product fluid to the plurality of product dispensers, and a metering device along the fluid delivery line, the metering device configured to control the flow rate of the at least one agricultural product fluid to the plurality of product dispensers; and an agricultural product supply configured for storing the at least one agricultural product fluid, the agricultural product supply in communication with the plurality of product dispensers of each of the designated frame sections with the respective fluid delivery line of each designated frame section.
2. The implement of claim 1, wherein the agricultural product fluid includes a product fluid mixed with a carrier fluid, and the agricultural product supply includes: a carrier supply configured to store the carrier fluid, the carrier supply in communication with the plurality of product dispensers with the at least one fluid delivery line, and a product supply configured to store the product fluid, the product supply in communication with the plurality of product dispensers with the at least one fluid delivery line.
3. The implement of claim 2, wherein one or more metering devices of respective designated frame sections are configured to independently control the flow rate of the product fluid relative to the metering devices of the other designated frame sections.
4. The implement of claim 2, wherein one or more metering devices of respective designated frame sections are configured to independently control the concentration of the product fluid in the carrier fluid relative to the metering devices of the other designated frame sections.
5. The implement of claim 1, wherein each metering device of each designated frame section is configured to independently control the flow rate of the agricultural product fluid relative to the metering devices of the other designated frame sections.
6. The implement of claim 1, wherein the plurality of designated frame sections includes at least two or more designated frame sections.
7. The implement of claim 1, wherein the plurality of designated frame sections includes at least center, one or more left and one or more right designated frame sections.
8. The implement of claim 1 comprising a metering pump interposed between the agricultural product supply and the plurality of product dispensers of each of the designated frame sections, the metering pump configured to pump the at least one agricultural product fluid through the at least one fluid delivery lines of each of the designated frame sections.
9. The implement of claim 1, wherein one or more metering devices of respective designated frame sections are configured for operation independent to other metering devices of the other designated frame sections of the plurality of designated frame sections.
10. The implement of claim 1, wherein one or more metering devices of respective designated frame sections are configured for independently metering the flow of the agricultural product fluid relative to other metering devices of the other designated frame sections of the plurality of designated frame sections based on variations in speed of each of the designated frame sections.
11. The implement of claim 10 comprising at least one speed sensor in communication with the one or more metering devices, the at least one speed sensor configured to determine the speed of the respective designated frame sections associated with the one or more metering devices.
12. The implement of claim 1, wherein the metering device includes a throttling valve.
13. The implement of claim 1, wherein the metering device includes a pressure reducing valve, a three way valve or a restricted orifice.
14. An implement for applying at least one agricultural product fluid to an agricultural field comprising: an agricultural product supply configured for storing the at least one agricultural product fluid; a plurality of designated frame sections including at least two frame sections, wherein each designated frame section includes: at least one product dispenser configured to apply the at least one agricultural product fluid, a fluid delivery line extending between the agricultural product supply and the at least one product dispenser, the fluid delivery line configured to convey the at least one agricultural product fluid to the at least one product dispenser, a flow rate sensor along the fluid delivery line, the flow rate sensor configured to measure the flow rate of the at least one agricultural product fluid to the at least one product dispenser, and a metering device along the fluid delivery line and in communication with the flow rate sensor, the metering device configured to control the flow rate of the at least one agricultural product fluid to the at least one product dispenser; and wherein one or more metering devices of respective designated frame sections are configured for independent control of respective flow rates relative to other metering devices of other designated frame sections of the plurality of designated frame sections.
15. The implement of claim 14, wherein the one or more metering devices of the respective designated frame sections are configured for independent control of the respective flow rates of the agricultural product fluid relative to the other metering devices of the other designated frame sections based on variations in speed of each of the respective designated frame sections.
16. The implement of claim 15 comprising at least one speed sensor in communication with the one or more metering devices, the at least one speed sensor configured to determine the speed of the respective designated frame sections associated with the one or more metering devices.
17. The implement of claim 14, wherein the at least one product dispenser includes a plurality of product dispensers.
18. The implement of claim 14, wherein the metering device includes a throttling valve.
19. The implement of claim 14, wherein the metering device includes a pressure reducing valve, a three way valve or a restricted orifice.
20. The implement of claim 19, wherein the agricultural product fluid includes a product fluid mixed with a carrier fluid, and the agricultural product supply includes: a carrier supply configured to store the carrier fluid, the carrier supply in communication with the at least one product dispenser with the fluid delivery line, and a product supply configured to store the product fluid, the product supply in communication with the at least one product dispenser with the fluid delivery line.
21. The implement of claim 20, wherein the one or more metering devices of the respective designated frame sections are configured to independently control the flow rate of the product fluid relative to the other metering devices of the other designated frame sections.
22. The implement of claim 20, wherein the one or more metering devices of the respective designated frame sections are configured to independently control the concentration of the product fluid in the carrier fluid relative to the other metering devices of the other designated frame sections.
23. The implement of claim 14 comprising a metering pump interposed between the agricultural product supply and the at least one product dispenser of each of the designated frame sections, the metering pump configured to pump the at least one agricultural product fluid through the fluid delivery line of the designated frame section.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
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(6) In the drawings like characters of reference indicate corresponding parts in the different figures.
DETAILED DESCRIPTION
(7) Referring to the accompanying figures there is illustrated an agricultural implement for applying an input product, for example seed, granular fertilizer, liquid fertilizer and the like to an agricultural field. Although various embodiments are described and illustrated herein, the common features of the various embodiments will first be described,
(8) In each instance, the agricultural implement 10 generally includes an implement frame 12 which is supported for movement across the ground in a forward working direction either by being supported on driven wheels or being towed by a tractor for example. The implement frame typically stands in a lateral direction perpendicular to the forward working direction and is separated into a plurality of designated frame sections 14. The frame sections may include one or more centre sections 16, one or more left wing sections 18 and one or more right wing sections 20.
(9) In some instances, the center sections may be grouped with the winged sections such that the designated frame sections overall only comprise a left section and a right section. In each instance each frame sections extends laterally across a respective portion of the width of the frame so as not to overlap adjacent sections in the lateral direction and such that each designated frame section is positioned in series with the other frame sections in the lateral direction across the width.
(10) A plurality of product dispensers 22 are supported on each frame section 14 such that the dispensers within each section are laterally spaced apart from one another and from the dispensers of adjacent sections. Each dispenser 22 is arranged to dispense respective product therethrough in a respective longitudinal row in the forward working direction. All of the dispensers of one designated frame section comprise a respective group of dispensers in which all of the dispensers of one group corresponding to one frame section are arranged to be commonly metered in rate relative to the rate of all dispensers of other groups in other frame sections.
(11) The implement further includes an input product supply 24 typically in the form of a tank supporting the input product therein such that it is supported for movement across the field together with the implement frame 12 in the forward working direction. The tank may be supported on its own respective frame towed together with implement frame 12 or may be supported directly on the implement frame.
(12) The input product is typically delivered from the product supply by a plurality of main lines 26 in communication with the supply which convey the product from the supply towards the designated frame sections. One or more main lines may be associated with each frame section for directing the product from the supply to one or more manifolds associated with the respective frame sections. The manifolds in turn redirect the supplied input product into a plurality of individual conveying lines 30 in which each conveying line is associated with only one respective product dispenser.
(13) A plurality of metering devices 32 are supported with the input product supply 24 to meter the product from the supply into the main lines and the corresponding individual conveying lines to the product dispensers. One metering device 32 is associated with each designated frame section of the implement frame such that all of the product dispensers 22 of one respective frame section are commonly metered together by the respective metering device typically in communication between the product supply 24 and the main lines 26 upstream of the manifolds 28 and the individual conveying lines 30.
(14) Each metering device 32 is operable at a rate independently of the other metering devices in response to a respective speed input corresponding to the ground speed of the respective frame section with which the metering device is associated. The speed input is determined for each metering device either by providing a speed sensor 34 on each frame section for directly measuring the speed input for each metering device, or alternatively the speed input for each metering device can be calculated based on various measured inputs. For example, as shown in
(15) Speed calculation may be performed mechanically using a ground engaging wheel with a wheel rotation counter, by radar, or by OPS for example with the measured data being input into a computer controller which then calculates the appropriate speed input for each metering device representing an average forward ground speed of the respective designated frame section with which the metering device is associated and a corresponding metering rate.
(16) Turning now to the embodiments of
(17) Turning now more particularly to the embodiment of
(18) In the embodiment of
(19) A primary manifold 42 downstream from the primary pump 36 splits the flow into a plurality of main lines associated with the plurality of side sections respectively. The metering device 32 of each side section in this instance comprises a suitable valve 44 connected in series with the mainline. The valve may comprise a throttling valve or a pressure reducing valve for example which is operable in response to a measured downstream flow rate sensor so that the flow in one side section can be adjusted relative to another side section while maintaining the overall flow rate consistent and while maintaining the flow rate in center section isolated from the adjusted flow rate of the side sections. Each valve 44 could also comprise a three way valve which allows some flow to be diverted from one side section to another side section.
(20) In the embodiment of
(21) The embodiment of
(22) The embodiment of
(23) According to the embodiment of
(24) Each metering device comprises a metered injector which is operable at a specified injection rate so as to be arranged to inject a metered amount of the primary product into the carrier fluid conveyed through the respective main line of a respective designated frame section independently of the other metering devices relating to other primary product or other main lines. The amount of carrier fluid remains constant in this instance but the concentration of primary products is varied so as to remain substantially constant within each center section, but can be increased or decreased in the side sections corresponding to inner or outer portions of a curved path, or all maintained at a constant concentration during normal longitudinal movement of the sprayer.
(25) Turning now to embodiments of
(26) The product supplies typically include respective hopper bottoms 58 which direct the particulate material therein downwardly to respective metering wheels which define the metering devices. The metering wheels typically comprise wheels with axially oriented channels about the outer surface at circumferentially spaced positions for metering an amount of particulate material received in the channels from the tank thereabove to the pneumatic main lines below at an adjustable rate depending upon the rate of rotation of the metering devices.
(27) Turning now particularly to the embodiment of
(28) Turning now to the embodiment of
(29) Turning now to the embodiment of
(30) Since various modifications can be made in my invention as herein above described, and many apparently widely different embodiments of same made within the spirit and scope of the claims without department from such spirit and scope, it is intended that all matter contained in the accompanying specification shall be interpreted as illustrative only and not in a limiting sense.