Wear resistant granular direction altering device
11485588 · 2022-11-01
Assignee
Inventors
Cpc classification
A01C7/081
HUMAN NECESSITIES
B23K9/044
PERFORMING OPERATIONS; TRANSPORTING
B65G53/04
PERFORMING OPERATIONS; TRANSPORTING
B23K35/24
PERFORMING OPERATIONS; TRANSPORTING
B65G2207/48
PERFORMING OPERATIONS; TRANSPORTING
B23K9/0284
PERFORMING OPERATIONS; TRANSPORTING
B05B7/1486
PERFORMING OPERATIONS; TRANSPORTING
A01M9/003
HUMAN NECESSITIES
B23K31/027
PERFORMING OPERATIONS; TRANSPORTING
International classification
A01C7/08
HUMAN NECESSITIES
B05B7/14
PERFORMING OPERATIONS; TRANSPORTING
A01M9/00
HUMAN NECESSITIES
B23K9/04
PERFORMING OPERATIONS; TRANSPORTING
B23K35/24
PERFORMING OPERATIONS; TRANSPORTING
B23K31/02
PERFORMING OPERATIONS; TRANSPORTING
B65G53/04
PERFORMING OPERATIONS; TRANSPORTING
Abstract
The invention provides a pneumatic conveying system having a series of supply lines with at least portions of the lines being wear resistant to extend the useful lifespan of an agricultural product delivery applicator. The wear resistant supply line(s) may be made from a hard material and have a curve(s) defined by angled or mitered segments that are welded or otherwise joined to collectively provide the curve(s) The wear resistant supply lines may be at least partially reinforced by way of, for example, welded or other build up wear resistant material(s) at high wear zones of the supply lines.
Claims
1. An agricultural application implement comprising: a plurality of wheels supporting a frame; a pneumatic conveying system supported by the frame for applying particulate matter, the pneumatic conveying system comprising: at least one fan directing air flow through at least one plenum, the air flow being further directed through the at least one plenum into at least one primary supply line; the at least one primary supply line including at least one straight segment and at least one curved segment; an inner surface of at least a portion of the at least one curved segment having a greater wear resistance than the at least one straight segment as a wear-resistant portion of the at least one curved segment, wherein the inner surface of the at least a portion of the at least curved segment includes a series of filler metal lines defined by a series of weld beads comprising a wear-resistant steel weld electrode, and wherein the weld beads are applied in multiple layers to define a multi-layer wear-resistant portion of the at least one curved segment.
2. The agricultural application implement of claim 1, wherein the multi-layer wear-resistant portion of the at least one curved segment includes at least three layers of weld beads.
3. The agricultural application implement of claim 1, wherein the series of filler metal lines extend across only an inner surface of an outer radius of the curved segment.
4. The agricultural application implement of claim 3, wherein the curved segment curves to define an angle of direction change of at least 75-degrees.
5. The agricultural application implement of claim 4, wherein the curved segment curves to define an angle of direction change of at least 90-degrees.
6. The agricultural application implement of claim 5, wherein the curved segment curves to define an angle of direction change of at least 100-degrees.
7. An agricultural application implement for applying particulate matter comprising: a plurality of wheels supporting a frame; a pneumatic conveying system supported by the frame with the pneumatic conveying system comprising: at least one fan directing air flow through at least one plenum, the air flow being further directed through at least one plenum into at least one primary supply line, wherein the at least one primary supply line including a straight segment and a curved segment defined by a segmented elbow, the segmented elbow comprising: at least two miter sections, each miter section including an inner miter side extending from a first miter section end to the second miter section end, each miter section further including an outer miter side located and positioned opposite from the inner miter side, the outer miter side being of greater length than the inner miter side; each miter section being joined to at least one additional miter section, the outer miter side of a first miter section being adjacent to and abutting the outer miter side of a second miter section when joined; at least one of the miter sections is made from a material with a greater wear resistance value than the straight segment of the primary supply line; and wherein the segmented elbow curves to define an angle of direction change of at least 75-degrees and wherein adjacent miter sections are externally welded to each other about their respective outer circumferential surfaces.
8. The agricultural application implement of claim 7, wherein each of the miter sections is made from a material with a greater wear resistance value than the straight segment of the primary supply line.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
(1) For the purpose of illustration, there are shown in the drawings certain embodiments of the present invention. It should be understood, however, that the invention is not limited to the precise arrangements, dimensions, and instruments shown. Like numerals indicate like elements throughout the drawings. In the drawings:
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(8) While the invention is described herein in connection with certain preferred embodiments, there is no intent to limit it to those embodiments. On the contrary, the intent is to cover all alternatives, modifications and equivalents within the spirit and scope of the invention as defined by the appended claims.
DETAILED DESCRIPTION OF THE INVENTION
(9) Referring now to the drawings, and more particularly to
(10) Turning to
(11) To collect and drive the particulate material along the lines 102, one or more fans 110 can be operably connected to the plenum 104 opposite the inlet ends of lines 102. The air flow from the fans 110 is directed from through the plenum 104 and into the respective lines 102 as a result of the structure of the plenum 104. After the air flow passes through the plenum 104 and collects/entrains the particulate material from at least one supply compartment (not shown) via the metering array 80, the air flow continues to flow along each large diameter supply line 102, including at least one straight segment and at least one curved segment. The at least one curved segment may include have 90° and/or 180° turns A, to connect to the various boom sections 17. The fans 110 could be centrifugal fans that are 8 inches or less in diameter, and in some aspects, 6 inches or less.
(12) The large diameter supply line 102 with at least one turn or curved segment A is further illustrated in
(13) Once at least one region of the large diameter supply line 102 has been reinforced, a straight supply line segment of large diameter supply line 102 has a first wear resistance characteristic and a first hardness value corresponding to an amount of abrasion resistance of the straight supply line segment, while a curved supply line segment has a second wear resistance characteristic and a second hardness value corresponding to an amount of abrasion resistance of the curved supply line segment. The second hardness value and second wear resistance characteristic of the curved supply line segment provides a greater amount of abrasion resistance of the curved supply line segment than the amount of abrasion resistance provided by first hardness value and first wear resistance characteristic to the straight supply line segment. The curved supply line segment is formed from a harder material than the straight supply line segment thereby providing a greater amount of abrasion resistance to the curved supply line segment than the amount of abrasion resistance of the straight supply line segment.
(14) In one embodiment, the large diameter supply lines 102 or secondary supply lines 106 may be reinforced by using at least one different material or at least one additional material. For example, in a first embodiment, a wear-resistant ferrous material such as an abrasion-resistant steel may be used to form at least part of the large diameter supply line 102 and/or secondary supply line 106. The abrasion-resistant steel material may have a hardness value of at least about 300 HBW (Brinell Hardness), typically a hardness value of at least about 400 HBW, with a hardness value of at least 450 being the most typical. Other or additional materials are envisioned and foreseeable in alternative embodiments. Although wear-resistant steel tubes or pipes can extend the useful lifespan of the agricultural application implement 10, wear-resistant steel pipes may be the wrong shape or size to be used as part of the supply line 102. Thus, the wear-resistant steel pipes may have to be customized for the supply line 102 which is problematic because wear-resistant steel is too hard to bend and shape to form the desired angles.
(15) In order to create the required shape for the supply line 102 (and/or secondary supply line 106), a wear-resistant steel pipe or tube (not shown) with the desired radius may be mitered to create a segmented elbow or miter pipe elbow 150, shown in
(16) Each miter section 155 is cut so that the joined miter sections 155 form a miter pipe elbow 150 with the desired angle. The miter section 155 are joined so that the first miter section end 160 of a first miter section 155a is adjacent to and abuts the second miter section end 165 of a second miter section 155b so that the outer miter sides 170, as well as the inner miter sides 175, of the first miter section 155a and second miter section 155b are also adjacent to and abut each other. In one embodiment, the miter sections 155 may be joined to form the miter pipe elbow 150 through welding, which may include externally welding the miter sections 155 to each other about or through their respective outer circumferential surfaces after end-to-end fit-up of the pieces. Although the miter sections 155 can be externally welded to each other with a hard surfacing electrode or filler metal, it is understood that a softer electrode or filler metal may be used for the welding joinder of the respective miter sections 155 and the segmented elbow can still provide a substantially wear resistant or hardened inner surface. Other methods of joining the miter sections 155 may be used in additional embodiments.
(17) The miter pipe elbow 150 can then be joined to the desired supply line 102, 106, replacing a curved supply line segment, so that only a region of the supply line 102, 106 is formed from the wear-resistant steel pipe/tube. In one embodiment, only the regions of supply line 102, 106 that are typically forcefully impacted by particulate matter are reinforced by creating that region of the supply line 102, 106 out of wear-resistant steel pipe. Alternatively, a greater region or the entire supply line 102, 106 may be created from the wear-resistant steel pipe.
(18) In a second embodiment, the supply lines 102, 106 may be made from a relatively less hard material that is reinforced through hard surface welding. As illustrated in
(19) In one embodiment, the curved segment curves A, defined by an angle of direction change of at least 75°, of at least 90°, and of at least 100°, are preferably reinforced by miter pipe elbows 150 or filler metal lines 180. Thus, miter pipe elbows 150 or filler metal lines 180, or a combination of such, may be used within supply lines 102, 106 to increase the length of time and usage required for the supply lines 102, 106 to wear out therefore extending the useful lifespan of equipment (e.g., agricultural application implement).
(20) Although the best mode contemplated by the inventors of carrying out the present invention is disclosed above, practice of the above invention is not limited thereto. It will be manifest that various additions, modifications and rearrangements of the features of the present invention may be made without deviating from the spirit and the scope of the underlying inventive concept.