BOOM FOR AN AGRICULTURAL CROP SPRAYER AND METHOD OF MANUFACTURE
20220217965 · 2022-07-14
Inventors
Cpc classification
International classification
Abstract
A boom for an agricultural crop sprayer has an elongate triangular box arrangement that is load bearing and serves to carry liquid dispensing devices for the application of crop protection products. The box arrangement includes three elongate plates each formed preferably from a carbon fiber material. The plates may be secured together by bolts or rivets by three connecting members that each present elongate edges of the box arrangement.
Claims
1. A boom, comprising: a tubular structure defining a rounded triangular section that extends from a first boom end to a second boom end, the tubular structure comprising three plates fastened together by three curved connecting members, wherein the plates comprise a first material and the curved members comprise a second material different from the first material.
2. The boom of claim 1, wherein the first material comprises carbon fiber.
3. The boom of claim 1, wherein the second material comprises a material selected from the group consisting of steel and aluminum.
4. The boom of claim 1, wherein at least one of the three plates defines a plurality of cut-outs formed therein.
5. The boom of claim 1, wherein at least one of the three connecting members is fastened between a respective two of the three plates by fasteners selected from the group consisting of bolts and rivets.
6. The boom of claim 1, wherein at least one of the three connecting members is fastened between a respective two of the three plates by adhesive.
7. The boom of claim 1, further comprising dispensing nozzles mounted to the boom and configured to dispense liquid.
8. The boom of claim 1, further comprising an end element disposed inside the tubular structure at the first boom end, wherein the end element is mated to the three plates by one selected from the group consisting of bolts, rivets, and adhesive.
9. The boom of claim 8, wherein the end element exhibits an external profile that matches a profile of the triangular section.
10. A multi-section boom arrangement, comprising: a boom section comprising a tubular structure defining a rounded triangular section that extends from a first boom end to a second boom end, the tubular structure comprising three plates fastened together by three curved connecting members, and an end element disposed inside the tubular structure at the first boom end, wherein the plates comprise a first material and the curved members comprise a second material different from the first material, and a second boom section hingedly attached to the end element.
11. An agricultural crop sprayer comprising a chassis, a fluid storage tank, and the boom arrangement of claim 10.
12. A method of manufacturing a crop sprayer boom, the method comprising: fastening three plates together with three curved connecting members to form a tubular structure with a rounded triangular section that extends from a first boom end to a second boom end, wherein the flat plates are formed from a first material and the curved members are formed from a second material different from the first material.
13. The method of claim 12, wherein fastening three plates together with three curved connecting members comprises fastening each of the three connecting members to a respective adjacent pair of the three plates with a fastener selected from the group consisting of bolts and rivets.
14. The method of claim 12, wherein fastening three plates together with three curved connecting members comprises gluing each of the three connecting members to respective adjacent pairs of the three plates.
15. The method of claim 12, further comprising fastening an end element inside the tubular structure.
16. The method of claim 15, wherein fastening an end element inside the tubular structure comprises fastening the end element to the three plates by one selected from the group consisting of bolts, rivets, and adhesive
17. The method of claim 15, further comprising hingedly attaching a second tubular structure to the end element.
18. The method of claim 12, further comprising securing a plurality of nozzles to the tubular structure.
19. An agricultural crop sprayer comprising a chassis, a fluid storage tank, and the boom of claim 1.
20. The agricultural crop sprayer of claim 19, wherein the boom comprises a plurality of boom sections configured to pivot relative to one another.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
[0020] Further advantages will become apparent from reading the following description of specific embodiments with reference to the appended drawings in which:
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DETAILED DESCRIPTION
[0028] The following detailed description references the drawings, wherein certain embodiments are described in detail. Although described with reference to these specific preferred embodiments, it will be understood that the disclosure is not limited to these preferred embodiments. But to the contrary, numerous alternatives, modifications, and equivalents will become apparent from consideration of the following detailed description.
[0029] Reference to terms such as longitudinal, transverse, and vertical are made with respect to a longitudinal vehicle axis which is parallel to a normal forward direction of travel.
[0030] With reference to
[0031] A transversely-extending multi-section boom 20 is formed from five separate boom sections 20a to 20e which are connected by hinges and aligned with one another in the operating configuration shown. In this configuration, the boom 20 extends substantially at right angles to the forward direction of travel, represented by arrow F in
[0032] A central boom section 20c is fixed to the rear of the sprayer 10 by a suitable linkage represented at 22. As in known sprayer machines, the linkage 22 may permit raising and lowering of the boom 20 to adapt to different crops and conditions.
[0033] The boom 20 further comprises a left-hand boom assembly and a right-hand boom assembly each hingedly mounted to respective ends of the central boom section 20c for pivoting movement around a substantially vertical axis. Left-hand boom assembly comprises an inner boom section 20b mounted to the central boom section 20c and an outer boom section 20a hindegly connected to the inner boom section 20b. Right-hand boom assembly comprises an inner boom section 20d mounted to the central boom section 20c and an outer boom section 20e hingedly connected to the inner boom section 20d.
[0034] It should be appreciated that a multi-section boom may have more or fewer boom sections than the five boom sections shown in
[0035] Turning back to the illustrated embodiment, liquid dispense devices 23 in the form of nozzles, for example, are mounted to the boom in a spaced relationship across the working width. During a spraying operation, liquid stored in the tank 18 is conveyed to the dispense devices 23 by a liquid delivery network (not shown) and applied to the field by the dispense devices 23 in a generally downward direction. Liquid delivery networks are known in the art and will not be described in any detail here. It should be understood that although only nine dispense devices 23 are shown in the drawings, the number used will depend on the boom length and desired spacing.
[0036] The pivoting connections between the respective boom sections 20a-20e allow the multi-section boom 20 to be folded into a transport configuration represented schematically by dashed lines 20′. It should be recognized that the folding mechanism and construction of the boom 20 is shown in highly schematic form in
[0037] The construction of a boom (or boom section) is described as mounted to an agricultural sprayer such as that shown in
[0038] The following description makes reference to “booms” but it should be understood that the constructions described can be applied to a single boom section of a multi-section boom, and the term “boom” shall encompass “boom section” also.
[0039] With reference to
[0040] The boom 20b has a tubular structure with a rounded triangular section that extends from a first boom end 26 to a second boom end 27. The rounded triangular section can be seen best in
[0041] The plates 31, 32, 33 are fastened together by the connecting members 34, 35, 36 using structural adhesive such as urethane or epoxy adhesive, although bolts, rivets, or welding are alternative means for fastening. In more detail, the upper connecting member 34 extends lengthwise along the apex of the triangular structure and has a continuous curved or arcuate section along the length thereof. The front plate 31 and the rear plate 32 are fastened along respective lengthwise edges 31a, 32a that overlap with front and rear lengthwise edges 34a, 34b of the upper connecting member 34. For the receipt of bolts or rivets, holes 38 may be provided along the edges 31a, 32a, 34a, 34b. The rear connecting member 35 and front connecting member 36 are fastened to adjacent pairs of the flat plates in the same manner. The rear connecting member 35 extends lengthwise along the rearmost vertex of the triangular structure and has a continuous curved or arcuate section along the length thereof. The rear plate 32 and the base plate 33 are fastened along respective lengthwise edges 32b, 33a that overlap with upper and lower lengthwise edges 35a, 35b of the rear connecting member 35. The front connecting member 36 extends lengthwise along the front-most vertex of the triangular structure and has a continuous curved or arcuate section along the length thereof. The base plate 33 and the front plate 31 are fastened along respective lengthwise edges 33b, 31b that overlap with lower and upper lengthwise edges 36a, 36b of the front connecting member 36.
[0042] Fastened together, the plates 31, 32, 33 and connecting members 34, 35, 36 provide a hollow, tubular structure which is load-bearing when in operation. In other words, when in a multi-section boom assembly, the tubular structure carries the weight of any outboard boom sections mounted thereto (for example the outer boom section 20a in
[0043] The flat plates 31, 32, 33 are formed from a first material. The connecting members 34, 35, 36 are formed from a second material that is different from the first material. The first material may be a carbon fiber composite that exhibits strong and stiff characteristics yet is lighter than steel or aluminum, for example. Alternatively, by way of further example, the first material may be an aramid composite, a glass fiber composite, or a hybrid material.
[0044] The second material may be steel or aluminum, which is cheaper than composite materials.
[0045] Use of a stronger yet lighter material for the flat plates 31, 32, 33 in combination with a cheaper material for the connecting members 34, 35, 36 delivers the benefits of composite materials without adding significant cost.
[0046] Cut-outs 40 are provided in the front and rear flat plates 31, 32 to improve accessibility to any plumbing residing within the tubular structure for easier maintenance.
[0047] With reference to
[0048] The end element 42 is preferably a cast or machined component. The end element 42 serves as a mounting plate to which the boom section 20b can be mounted to a center boom frame or to an adjacent boom section. As such, holes 46 may be preformed or drilled in an end face 48 of the end element 42 to facilitate the securing of brackets and the like for hinging to adjacent boom sections or for the attachment of actuators.
[0049] While the present disclosure has been described herein with respect to certain embodiments, those of ordinary skill in the art will recognize and appreciate that it is not so limited. Rather, many additions, deletions, and modifications to the illustrated embodiments may be made without departing from the scope of the disclosure as hereinafter claimed, including legal equivalents thereof. Further, embodiments of the disclosure have utility with different and various machine types and configurations.