Equalizing air pressure on air seeders
10117376 ยท 2018-11-06
Assignee
Inventors
- Joel Gervais (Saskatoon, CA)
- Kenneth D. Paluck (Saskatoon, CA)
- Ka Po Catherine Hui (Saskatoon, CA)
- James W. Henry (Saskatoon, CA)
Cpc classification
A01C7/082
HUMAN NECESSITIES
Y02P60/00
GENERAL TAGGING OF NEW TECHNOLOGICAL DEVELOPMENTS; GENERAL TAGGING OF CROSS-SECTIONAL TECHNOLOGIES SPANNING OVER SEVERAL SECTIONS OF THE IPC; TECHNICAL SUBJECTS COVERED BY FORMER USPC CROSS-REFERENCE ART COLLECTIONS [XRACs] AND DIGESTS
International classification
Abstract
An agricultural air seeding system, comprising: an agricultural planting implement including at least one section at least one secondary header removably attached to the at least one section, at least one attachment bar attached to the at least one section, and a plurality of application tools removably attached to the at least one attachment bar and fluidly coupled to the at least one secondary header; an agricultural air cart coupled to the agricultural planting implement; and a pneumatic distribution system fluidly coupled to the agricultural planting implement and the agricultural air cart, the pneumatic distribution system including a plurality of conduits capable of transporting agricultural product, at least one of the plurality of conduits including at least one flow obstruction such that a substantially equal air pressure is delivered to the plurality of application tools.
Claims
1. An agricultural air seeding system, comprising: an agricultural planting implement, including: at least one section; at least one secondary header removably attached to the at least one section; at least one attachment bar attached to the at least one section; and a plurality of application tools removably attached to the at least one attachment bar and fluidly coupled to the at least one secondary header; an agricultural air cart coupled to the agricultural planting implement; and a pneumatic distribution system fluidly coupled to the agricultural planting implement and the agricultural air cart, the pneumatic distribution system including a plurality of conduits capable of transporting agricultural product, at least two of the plurality of conduits each having a differing respective length and including at least one flow obstruction, the at least one flow obstruction of said at least two conduits of the plurality of conduits including a curved section with a respective lengthwise radius of curvature that corresponds to the respective length of said at least two conduits such that a substantially equal air pressure is delivered to the plurality of application tools.
2. The agricultural air seeding system of claim 1, wherein each said curved section being located on at least one of the agricultural planting implement and the agricultural air cart.
3. The agricultural air seeding system of claim 1, wherein the agricultural planting implement further includes a midpoint axis parallel to a direction of travel, wherein each said lengthwise radius of curvature is proportional to a proximity to the midpoint axis.
4. The agricultural air seeding system of claim 3, wherein the lengthwise radius of curvature of each curved section is larger than the lengthwise radius of curvature of an adjacent curved section which is closer to the midpoint axis.
5. The agricultural air seeding system of claim 2, wherein the curved sections are comprised of steel or other non-flexible material.
6. The agricultural air seeding system of claim 1, wherein each of the at least one flow obstructions further includes at least one of: b) internal dimples; c) internal dimples and a bifurcation; d) an internal component; e) a restriction on a metering manifold of the pneumatic distribution system; f) an air flap with rectangular cross-section in the pneumatic distribution system; and g) an air bleeder on an inside of a bend of at least one of the plurality of conduits.
7. A pneumatic distribution system fluidly coupled to an agricultural planting implement including a plurality of application tools and an agricultural air cart, the pneumatic distribution system, comprising: a plurality of conduits capable of transporting agricultural product, at least two of the plurality of conduits each having a differing respective length and including at least one flow obstruction, the at least one flow obstruction of said at least two conduits of the plurality of conduits including a curved section with a respective lengthwise radius of curvature that corresponds to the respective length of said at least two conduits such that said plurality of conduits is configured for delivering a substantially equal air pressure to the plurality of application tools.
8. The pneumatic distribution system of claim 7, wherein each said curved section being located on at least one of the agricultural planting implement and the agricultural air cart.
9. The pneumatic distribution system of claim 7, wherein the agricultural planting implement further includes a midpoint axis parallel to a direction of travel, wherein each said lengthwise radius of curvature is configured for being proportional to a proximity to the midpoint axis.
10. The pneumatic distribution system of claim 9, wherein the lengthwise radius of curvature of each curved section is larger than the lengthwise radius of curvature of an adjacent curved section which is closer to the midpoint axis.
11. The pneumatic distribution system of claim 8, wherein the curved sections are comprised of steel or other non-flexible material.
12. The pneumatic distribution system of claim 7, wherein each of the at least one flow obstructions further includes at least one of: b) internal dimples; c) internal dimples and a bifurcation; d) an internal component; e) a restriction on a metering manifold of the pneumatic distribution system; f) an air flap with rectangular cross-section in the pneumatic distribution system; and g) an air bleeder on an inside of a bend of at least one of the plurality of conduits.
13. An agricultural air seeding system, comprising: an agricultural planting implement, including: at least one section; at least one secondary header removably attached to the at least one section; at least one attachment bar attached to the at least one section; and a plurality of application tools removably attached to the at least one attachment bar and fluidly coupled to the at least one secondary header; an agricultural air cart coupled to the agricultural planting implement; and a pneumatic distribution system fluidly coupled to the agricultural planting implement and the agricultural air cart, the pneumatic distribution system including a plurality of conduits capable of transporting agricultural product, and at least two of the plurality of conduits each have a differing respective length and include at least one flow obstruction such that the plurality of conduits delivers substantially equal air pressure to the plurality of application tools, wherein said at least one flow obstruction of each of said at least two conduits of said plurality of conduits includes at least one of: a) a curved section; b) internal dimples; c) internal dimples and a bifurcation; d) an internal component in at least one of the plurality of conduits; e) a restriction on a metering manifold of the pneumatic distribution system; f) an air flap with rectangular cross-section in the pneumatic distribution system; and g) an air bleeder on an inside of a bend of at least one of the plurality of conduits.
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 embodiments 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 exemplifications set out herein illustrate embodiments of the invention, and such exemplifications are not to be construed as limiting the scope of the invention in any manner.
DETAILED DESCRIPTION OF THE INVENTION
(13) Referring now to
(14) Agricultural conveyance vehicle 12 can be any vehicle designed for agricultural use to carry, push, or tow one or more implements. The most common example of agricultural conveyance vehicle 12 is a tractor.
(15) Agricultural planting implement 14 can be any implement designed for agricultural use to prepare soil, and plant seeds or distribute fertilizers. They are commonly known as planters, air drills, floaters, fertilizer applicators, or fertilizer application equipment. Agricultural planting implement 14 is described in detail further in this specification.
(16) Now referring to
(17) Agricultural air cart 16 further includes pneumatic distribution system 32 for delivering the agricultural material to the trenches in the soil formed by agricultural planting implement 14. Pneumatic distribution system 32 includes a metering system 34 (not specifically shown), blower fan 26, and a plurality of air line conduits 36. In the illustrated embodiment, three primary air line conduits 36 are shown, one from each tank compartment 24A, 24B and 24C. However, the number of air lines conduits 36 can vary, depending upon the application.
(18) Air line conduits 36 extend to and terminate at a convenient location for coupling with air lines conduits 38 associated with agricultural planting implement 14. In the embodiment shown, air line conduits 36 are supported at the forward end of agricultural air cart 16 with a support 40. Each air line conduit 36 terminates at a respective fluid (air) line connection 42. In the embodiment shown, each fluid line connection 42 includes a female connector 44 associated with each air line conduit 36 and a male connector 46 associated with an end of each air line conduit 38. However, the orientation of each fluid line connection 42 may be reversed such that each female connector 44 is associated with a corresponding air line conduit 38 of agricultural planting implement 14. Each male connector 46 is received within and fluidly seals with a respective female connector 44.
(19) During use, agricultural conveyance vehicle 12 is backed up to agricultural planting implement 14 and mechanically hitched together; the two then back up to agricultural air cart 16, and are mechanically hitched together. Fluid line connections 42 between mating air line conduits 36, 38 are made by inserting male connectors 46 into respective female connectors 44. Each fluid line connection 42 is then latched together using a suitable latch. Other appropriate connections are also made between agricultural planting implement 14 and agricultural air cart 16, such as hydraulic, electronic and/or electrical connections (not shown). Agricultural seeding system 10 may then be used to deposit material into the trenches formed by agricultural planting implement 14.
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(21) The radius of the curved air line conduits 38 increase in dimension in proportion to the distance of their respective secondary header 48 from the midline axis X-X, which is parallel to the travel direction T. Specifically, the greater the perpendicular distance, the greater the radius. As illustrated for the three sections shown, each with their own secondary header 48, radius 58C is greater than radius 58B, which in turn is greater than radius 58A. As an example, the lengthwise radii of curvature shown in
(22) It is to be understood that curved air line conduits 36 on agricultural air cart 16 may also include differing lengthwise radii of curvature as described above in order to provide flow obstructions to air line conduits 38 of agricultural planting implement 14, thereby equalizing air pressures delivered to the secondary headers 48.
(23) Air line conduits 36 and 38 may be comprised of flexible materials and/or steel (or other non-flexible material). It may be preferential to have the curved sections comprised of steel or other non-flexible material so that wear is reduced and to facilitate fabrication, installation, and maintenance.
(24) Now referring to
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(31) It should be understood that while inventive agricultural seeding apparatuses have been described, the invention can be applied to similar agricultural particulate-conveying equipment such as planters, floaters, fertilizer applicators, or fertilizer application equipment.
(32) While an improved pneumatic distribution system 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.