Patent · US10448562B2 · B2 · US
Agricultural air cart apparatus
- (11) Publication number
- US10448562B2
- (21) Application number
- 15/701,875
- (22) Filing date
- 2017-09-12
- (30) Priority date
- 2015-01-07
- (43) Publication date
- 2019-10-22
- (45) Date of grant
- 2019-10-22
- (51) IPC
- A01C 7/08; A01C 7/10; B65G 53/66
- (52) CPC
- (73) Assignee
- CNH Industrial Canada Ltd
- (72) Inventors
- James W. Henry
- (54) Title
- Agricultural air cart apparatus
- (57) Abstract
An agricultural air cart assembly includes individually controlled product distribution lines which allows for balanced pressures and even dispersal of air through different distribution lines of different lengths running to different sections or row units of a seeder or drill. Rotatable fans are operatively connected to corresponding first and second distribution lines and are configured to generate optimized air flows in the first and second distribution lines which entrain and carry the product downstream toward corresponding row units at balances pressures. A controller is operable to adjust the pressures of the air flows outputted by the first and second fans by adjusting the position of corresponding fan shrouds over the intakes of the first and second fans.
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Claims (12)
- An agricultural air cart apparatus, comprising: a storage container holding a product; first and second distribution lines adapted for receiving product from the storage container and transporting the product to corresponding first and second row units; first and second product metering systems communicating with the storage container, the first and second product metering systems regulating flows of product from the product hopper into the first and second distribution lines, respectively; a rotatable first fan being operatively connected to the first distribution line, the first fan having an intake and being configured such that rotation of the first fan draws a volume of air into the fan through the intake and outputs an air flow having a pressure into the first distribution line which entrains and carries the first supply of the product downstream toward a first row unit; and a rotatable second fan being operatively connected to the second distribution line, the second fan having an intake and being configured such that rotation of the second fan draws a volume of air into the second fan through the intake of the second fan and outputs an air flow having a pressure into the second distribution line which entrains and carries the second supply of the product downstream toward a second row unit; and a controller operable to adjust the pressures of the air flows outputted by the first and second fans.
- The apparatus of claim 1 wherein the first and second product metering systems operatively connected to the storage container and being configured to regulate the flows of product from the storage container into the first and second distribution lines.
- The apparatus of claim 1 wherein each of the first and second product metering systems includes a meter wheel configured to rotate to regulate a rate at which the product flows from the storage container into a corresponding one of the first and second distribution lines to a desired rate.
- The apparatus of claim 3 further comprising: a first distribution manifold having an input coupled to the first distribution line and an output coupled to the first row unit; and a second distribution manifold having an input coupled to the second distribution line and an output coupled to the second row unit.
- The apparatus of claim 4 further comprising: a first pressure sensor operatively connected to the controller and being positioned within the first distribution manifold to measure a pressure of the air flow therein, the first pressure sensor providing a signal representative of the pressure of the air flow in the first distribution manifold to the controller; and a second pressure sensor operatively connected to the controller and being positioned with the second distribution manifold to measure a pressure of the air flow in the second distribution manifold, the second pressure sensor providing a signal representative of the pressure of the air flow in the second distribution manifold to the controller; wherein the controller adjusts the pressure of the air flow outputted by the first fan in response to the signal received from the first pressure sensor; and the controller adjusts the pressure of the air flow outputted by the second fan in response to the signal received from the second pressure sensor.
- The apparatus of claim 5 further comprising: a first fan shroud operatively connected to the controller and movable between a fully opened position spaced from intake of the first fan and a closed position wherein first fan shroud overlaps the intake of the first fan and prevents the output of the air flow from the first fan; and a second fan shroud operatively connected to the controller and movable between a fully opened position spaced from intake of the second fan and a closed position wherein second fan shroud overlaps the intake of the second fan and prevents the output of the air flow from the second fan.
- The assembly of claim 5 wherein the controller is configured: to position the first fan shroud at a location between the fully opened position the closed position to optimize the pressure of the air flow in the first distribution line; and to position the second fan shroud at a location between the fully opened position the closed position to optimize the pressure of the air flow in the second distribution line.
- An agricultural air cart apparatus including a product hopper for holding a product and first and second product metering systems communicating with the product hopper to regulate a flow of product from the product hopper, characterized in that: first and second distribution lines are adapted for receiving product from the product hopper and transporting the product to corresponding first and second row units; the first and second product metering systems regulate flows of product from the product hopper into the first and second distribution lines, respectively; a rotatable first fan having an intake and output in communication with the first distribution line, the first fan being configured to draw a volume of air into the first fan through the intake and output an air flow having a pressure into the first distribution line which entrains and carries the first supply of the product downstream toward a first row unit; and a rotatable second fan having an intake and output in communication with the second distribution line, the second fan being configured to draw a volume of air into the second fan through the intake and output an air flow having a pressure into the second distribution line which entrains and carries the second supply of the product downstream toward a second row unit; wherein the pressures of the air flowing in the first and second distribution lines are independently controlled.
- The apparatus of claim 8 characterized in that: a first fan shroud is operatively connected to the first fan and is movable between a fully opened position spaced from intake of the first fan and a closed position wherein first fan shroud overlaps the intake of the first fan and prevents the output of the air flow from the first fan; and a second fan shroud is operatively connected to the second fan and is movable between a fully opened position spaced from intake of the second fan and a closed position wherein second fan shroud overlaps the intake of the second fan and prevents the output of the air flow from the second fan.
- The apparatus of claim 9 characterized in that a controller is operatively connected to the first and second fan shrouds for positioning the first and second fan shrouds at locations between the fully opened positions and the closed positions, the locations of the first and second fan shrouds setting the pressures of the air flowing in the first and second distribution lines.
- The apparatus of claim 10 characterized in that: a first pressure sensor is operatively connected to the controller and is positioned to measure a pressure of the air flow in the first distribution line, the first pressure sensor providing a signal representative of the pressure of the air flow in the first distribution line to the controller; and a second pressure sensor is operatively connected to the controller and is positioned to measure a pressure of the air flow in the second distribution line, the second pressure sensor providing a signal representative of the pressure of the air flow in the second distribution line to the controller.
- The apparatus of claim 8 characterized in that each of the first and second product metering systems includes a meter wheel configured to rotate to dispense the product at a desired rate.
Description
The invention relates generally to agricultural product application equipment, and in particular, to an agricultural air cart assembly with individually controllable air flow in the product distribution lines
Conventional agricultural seeders are often employed to deposit planting material into soil. Many seeders include a material dispensing implement that is towed behind a tractor or similar vehicle for distributing planting material, such as seed, fertilizer, pesticide, and other chemicals and materials, onto a furrowed farmland or similar planting surface. The implement may consist of multiple dispensing units or opener units that are supported by a common or shared frame that is towed by the tractor.
Agricultural seeders may include one or more ground engaging tools or openers that form a seeding path for planting material deposition into the soil. The openers are used to break the soil to enable seed deposition. After the planting material is deposited, each opener is followed by a packer wheel that packs the soil on top of the deposited material. Seeders commonly use pneumatic systems to transport planting material from a storage hopper to the soil to be deposited. Typically, air flow is provided through tubes or distribution lines to transport product therethrough.
In certain configurations, an air cart is used to meter and transport the planting material (e.g., seeds, fertilizer, etc.) to ground engaging tools within the seeding implement. The air cart may include a hopper having one or more compartments configured for holding various planting material.
Citations (18)
- DE575416C
- US2012017A
- US4296695A
- US5996516A
- US5979343A
- US6192813B1
- US6308646B1
- US6644225B2
- US6851377B2
- US7140311B2
- US7373890B2
- WO2008155234A2
- US7665409B2
- US20100017073A1
- US20120103238A1
- US20120174843A1
- US20130085598A1
- US9814175B2
Record as JSON
{
"publication_number": "US10448562B2",
"country": "US",
"kind": "B2",
"title": "Agricultural air cart apparatus",
"abstract": "An agricultural air cart assembly includes individually controlled product distribution lines which allows for balanced pressures and even dispersal of air through different distribution lines of different lengths running to different sections or row units of a seeder or drill. Rotatable fans are operatively connected to corresponding first and second distribution lines and are configured to generate optimized air flows in the first and second distribution lines which entrain and carry the product downstream toward corresponding row units at balances pressures. A controller is operable to adjust the pressures of the air flows outputted by the first and second fans by adjusting the position of corresponding fan shrouds over the intakes of the first and second fans.",
"claims": [
"1. An agricultural air cart apparatus, comprising: a storage container holding a product; first and second distribution lines adapted for receiving product from the storage container and transporting the product to corresponding first and second row units; first and second product metering systems communicating with the storage container, the first and second product metering systems regulating flows of product from the product hopper into the first and second distribution lines, respectively; a rotatable first fan being operatively connected to the first distribution line, the first fan having an intake and being configured such that rotation of the first fan draws a volume of air into the fan through the intake and outputs an air flow having a pressure into the first distribution line which entrains and carries the first supply of the product downstream toward a first row unit; and a rotatable second fan being operatively connected to the second distribution line, the second fan having an intake and being configured such that rotation of the second fan draws a volume of air into the second fan through the intake of the second fan and outputs an air flow having a pressure into the second distribution line which entrains and carries the second supply of the product downstream toward a second row unit; and a controller operable to adjust the pressures of the air flows outputted by the first and second fans.",
"2. The apparatus of claim 1 wherein the first and second product metering systems operatively connected to the storage container and being configured to regulate the flows of product from the storage container into the first and second distribution lines.",
"3. The apparatus of claim 1 wherein each of the first and second product metering systems includes a meter wheel configured to rotate to regulate a rate at which the product flows from the storage container into a corresponding one of the first and second distribution lines to a desired rate.",
"4. The apparatus of claim 3 further comprising: a first distribution manifold having an input coupled to the first distribution line and an output coupled to the first row unit; and a second distribution manifold having an input coupled to the second distribution line and an output coupled to the second row unit.",
"5. The apparatus of claim 4 further comprising: a first pressure sensor operatively connected to the controller and being positioned within the first distribution manifold to measure a pressure of the air flow therein, the first pressure sensor providing a signal representative of the pressure of the air flow in the first distribution manifold to the controller; and a second pressure sensor operatively connected to the controller and being positioned with the second distribution manifold to measure a pressure of the air flow in the second distribution manifold, the second pressure sensor providing a signal representative of the pressure of the air flow in the second distribution manifold to the controller; wherein the controller adjusts the pressure of the air flow outputted by the first fan in response to the signal received from the first pressure sensor; and the controller adjusts the pressure of the air flow outputted by the second fan in response to the signal received from the second pressure sensor.",
"6. The apparatus of claim 5 further comprising: a first fan shroud operatively connected to the controller and movable between a fully opened position spaced from intake of the first fan and a closed position wherein first fan shroud overlaps the intake of the first fan and prevents the output of the air flow from the first fan; and a second fan shroud operatively connected to the controller and movable between a fully opened position spaced from intake of the second fan and a closed position wherein second fan shroud overlaps the intake of the second fan and prevents the output of the air flow from the second fan.",
"7. The assembly of claim 5 wherein the controller is configured: to position the first fan shroud at a location between the fully opened position the closed position to optimize the pressure of the air flow in the first distribution line; and to position the second fan shroud at a location between the fully opened position the closed position to optimize the pressure of the air flow in the second distribution line.",
"8. An agricultural air cart apparatus including a product hopper for holding a product and first and second product metering systems communicating with the product hopper to regulate a flow of product from the product hopper, characterized in that: first and second distribution lines are adapted for receiving product from the product hopper and transporting the product to corresponding first and second row units; the first and second product metering systems regulate flows of product from the product hopper into the first and second distribution lines, respectively; a rotatable first fan having an intake and output in communication with the first distribution line, the first fan being configured to draw a volume of air into the first fan through the intake and output an air flow having a pressure into the first distribution line which entrains and carries the first supply of the product downstream toward a first row unit; and a rotatable second fan having an intake and output in communication with the second distribution line, the second fan being configured to draw a volume of air into the second fan through the intake and output an air flow having a pressure into the second distribution line which entrains and carries the second supply of the product downstream toward a second row unit; wherein the pressures of the air flowing in the first and second distribution lines are independently controlled.",
"9. The apparatus of claim 8 characterized in that: a first fan shroud is operatively connected to the first fan and is movable between a fully opened position spaced from intake of the first fan and a closed position wherein first fan shroud overlaps the intake of the first fan and prevents the output of the air flow from the first fan; and a second fan shroud is operatively connected to the second fan and is movable between a fully opened position spaced from intake of the second fan and a closed position wherein second fan shroud overlaps the intake of the second fan and prevents the output of the air flow from the second fan.",
"10. The apparatus of claim 9 characterized in that a controller is operatively connected to the first and second fan shrouds for positioning the first and second fan shrouds at locations between the fully opened positions and the closed positions, the locations of the first and second fan shrouds setting the pressures of the air flowing in the first and second distribution lines.",
"11. The apparatus of claim 10 characterized in that: a first pressure sensor is operatively connected to the controller and is positioned to measure a pressure of the air flow in the first distribution line, the first pressure sensor providing a signal representative of the pressure of the air flow in the first distribution line to the controller; and a second pressure sensor is operatively connected to the controller and is positioned to measure a pressure of the air flow in the second distribution line, the second pressure sensor providing a signal representative of the pressure of the air flow in the second distribution line to the controller.",
"12. The apparatus of claim 8 characterized in that each of the first and second product metering systems includes a meter wheel configured to rotate to dispense the product at a desired rate."
],
"description_excerpt": "The invention relates generally to agricultural product application equipment, and in particular, to an agricultural air cart assembly with individually controllable air flow in the product distribution lines\n\nConventional agricultural seeders are often employed to deposit planting material into soil. Many seeders include a material dispensing implement that is towed behind a tractor or similar vehicle for distributing planting material, such as seed, fertilizer, pesticide, and other chemicals and materials, onto a furrowed farmland or similar planting surface. The implement may consist of multiple dispensing units or opener units that are supported by a common or shared frame that is towed by the tractor.\n\nAgricultural seeders may include one or more ground engaging tools or openers that form a seeding path for planting material deposition into the soil. The openers are used to break the soil to enable seed deposition. After the planting material is deposited, each opener is followed by a packer wheel that packs the soil on top of the deposited material. Seeders commonly use pneumatic systems to transport planting material from a storage hopper to the soil to be deposited. Typically, air flow is provided through tubes or distribution lines to transport product therethrough.\n\nIn certain configurations, an air cart is used to meter and transport the planting material (e.g., seeds, fertilizer, etc.) to ground engaging tools within the seeding implement. The air cart may include a hopper having one or more compartments configured for holding various planting material.",
"cpc": [
"A01C 7/102",
"A01C 7/081",
"B65G 53/66"
],
"ipc": [
"A01C 7/08",
"A01C 7/10",
"B65G 53/66"
],
"assignees": [
"CNH Industrial Canada Ltd"
],
"inventors": [
"James W. Henry"
],
"filing_date": "2017-09-12",
"publication_date": "2019-10-22",
"grant_date": "2019-10-22",
"priority_date": "2015-01-07",
"application_number": "US-201715701875-A",
"family_id": "56285741",
"cited_by_count": 5,
"citations": [
"DE575416C",
"US2012017A",
"US4296695A",
"US5996516A",
"US5979343A",
"US6192813B1",
"US6308646B1",
"US6644225B2",
"US6851377B2",
"US7140311B2",
"US7373890B2",
"WO2008155234A2",
"US7665409B2",
"US20100017073A1",
"US20120103238A1",
"US20120174843A1",
"US20130085598A1",
"US9814175B2"
]
}
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