SPRAYER OR SPREADER BOOM STRUCTURE AND SPRAYER OR SPREADER WITH SUCH A BOOM
20190281807 ยท 2019-09-19
Assignee
Inventors
Cpc classification
B05B1/20
PERFORMING OPERATIONS; TRANSPORTING
International classification
A01M7/00
HUMAN NECESSITIES
B05B1/20
PERFORMING OPERATIONS; TRANSPORTING
Abstract
A boom structure for spraying or spreading including two side poles each formed of at least one segment, each segment or at least one of the segments of each side pole being composed of an assembly of elongated elements including, firstly, a top longitudinal tube, secondly, at least one bottom longitudinal tube and, lastly, bracing elements, forming tie rods and bridging pieces, extending between the top tube and at least one bottom tube, connecting them. A boom structure wherein each longitudinal tube has at least one radial protuberance, shaped in the longitudinal direction of the relevant tube, and including several openings spaced along the tube, each one constituting a site for securing an end of at least one bracing element.
Claims
1. A boom structure for spraying or spreading comprising two side poles each formed of at least one segment, these two side poles being advantageously arranged on both sides of a central segment, the single segment, each segment or at least one of the segments of each side pole being composed of an assembly of elongated elements comprising, firstly, a top longitudinal tube, secondly, at least one bottom longitudinal tube and, lastly, bracing elements, forming tie rods and bridging pieces, extending between the top tube and said at least one bottom tube, connecting them, wherein each longitudinal tube has at least one radial protuberance, shaped in the longitudinal direction of the relevant tube, and comprising at least one opening, preferably several openings spaced along said tubes, constituting a site for securing an end of at least one bracing element.
2. The boom structure according to claim 1, wherein the protuberance or each shaped protuberance is hollow and has advantageously two portions of opposite flat walls in each of which perforations are made that form openings by cooperation.
3. The boom structure according to claim 1, wherein each shaped protuberance consists of a hollow wing-shaped projection made of a single holder with the tube concerned, extending at least over the entire length thereof and having two side walls facing each other comprising perforations that coincide two by two and form, by cooperation, openings that traverse the protuberance concerned.
4. The boom structure according to claim 1, wherein each opening constitutes a site for securing the bearing type pin connection connecting one end of at least one bracing element to the shaped protuberance concerned.
5. The boom structure according to claim 1, wherein each bracing element connecting the top tube with one of the bottom tube(s) is joined, by one of its ends, with a preceding element and, by its other end, with a following element, in that wherein these adjoining bracing elements all are located in the same plane and arranged with opposite successive inclines, two successive bracing elements being secured to each other and secured with the tube concerned by the same pin connection integrating, as a bearing, an opening made in the protuberance concerned of the relevant tube.
6. The boom structure according to claim 1, wherein each tube has a circular basic section, on which each protuberance is formed, the tube concerned being preferably compartmentalized in section.
7. The boom structure according to claim 1, wherein each bracing element has an H-shaped cross section, whose core is shorter longitudinally, and preferably less thick than its side wings, the core being absent at the two opposite ends of the relevant bracing element, which are bored for receiving a pin connection axle that cooperates with an opening that forms a securing site.
8. The boom structure according to claim 1, wherein each segment comprises only a single bottom tube, in that the top and bottom tubes (5, 6) each comprise only one shaped protuberance and wherein said segment has a flat overall structure, and the space between the two tubes decreases from one end to the other of said segment.
9. The boom structure according to claim 1, wherein each segment comprises two bottom tubes arranged with the top tube according to a triangular configuration, in that each top and bottom tube has two shaped protuberances, shifted angularly around the longitudinal axis of the tube concerned, and wherein the triangular prism composed by said segment has a cross section that decreases from one end to the other of said segment.
10. The boom structure according to claim 9, wherein the cross section of the segment has an isosceles triangular shape, the width of the base and the height of the section varying similarly from one end to the other of [[the]] said segment.
11. A machine for spraying or spreading, of the type that is pulled, carried or motorized, comprising specifically at least one tank, means of circulating the product, one or more distribution circuit(s) and a boom on which the means of ejecting the product are mounted, wherein the boom has a boom structure according to claim 1.
Description
[0029]
[0030] The single segment 4, each segment 4 or at least one of the segments 4 of each side pole 3, 3 consists of an assembly of elongated elements 5, 6, 7 comprising, firstly, a top longitudinal tube 5, secondly, at least one bottom longitudinal tube 6 and, lastly, bracing elements 7, forming tie rods and bridging pieces, extending between the top tube 5 and the said at least one bottom tube 6, connecting them.
[0031] The concepts top and bottom are to be considered when the boom 2 is deployed, in a situation of normal use.
[0032] Pursuant to the invention, each longitudinal tube 5, 6 has at least one radial protuberance 8, shaped in the longitudinal direction of the relevant tube 5, 6, and comprising at least one opening 9, preferably several openings 9 spaced along the said tube 5, 6, (possibly each) composing a site for securing an end 7 of at least one bracing element 7.
[0033] Thanks to the invention, it is possible to arrive at the advantages mentioned in relation to the invention of the applicant's aforesaid prior patent application, even with better performance, in terms of flexural strength, rigidity and reduction in play, all while limiting the number of constituent parts and pieces.
[0034] Indeed, the or each radial protuberance 8, made of only one tie rod with the relevant tube 5, 6, incorporates the securing sites 9 for the bracing elements 7 and simultaneously helps to make the relevant tube 5, 6 more rigid.
[0035] Moreover, the openings 9 that form sites could be made precisely at the time when the tube 5, 6 is manufactured.
[0036] In order to arrive at a light-weight construction that facilitates securing by hooking in the openings 9, the protuberance or each shaped protuberance 8 is advantageously hollow and has advantageously two portions of opposite flat walls 10, 10 in each of which perforations 9 are made that form openings 9 by cooperation.
[0037] Preferably, and as shown in
[0038] Thus the rigidity of the tubes 5, 6 will be increased in the plane of the bracing elements 7.
[0039] Perforations 9, preferably, are made by perforative machining on each side of the relevant protuberance 8, allowing easy setup and a controlled assembly and operation clearance.
[0040] In accordance with one very advantageous characteristic of the invention, each opening 9 constitutes a site for securing the bearing type pin connection 11 connecting one end 7 of at least one bracing element 7 to the relevant shaped protuberance 8.
[0041] Such a type of connection is an ideal solution for the assembly being considered, to wit a good compromise between the total rigidity of a weld (involving a risk of rupture due to fatigue) and the limited rigidity of a ball-and-socket connection (low rigidity in torsion of the segment).
[0042] According to one optimized construction variant, deriving from
[0043] As an example of advantageous practical embodiment, each securing pin connection 11 can consist of an assembly by screw/nut (see
[0044] As an alternate example of embodiment, the securing pin connection 11 can also consist of an assembly with a double-mount spring pin or an analogous means that limits the play or takes up the slack in the aforementioned connection.
[0045] As shown in
[0046] However, according to one preferred embodiment, each of the tubes 5, 6 has a circular basic section, on which the or each protuberance 8 is formed, the tube 5, 6 concerned being preferably compartmentalized in section.
[0047] A circular-shaped tube body provides a particularly good resistance to torsion stresses.
[0048] In order to lighten the boom structure 1 without however compromising its rigidity, it can be planned that each bracing element 7 has an H-shaped cross-section, whose core 12 is shorter longitudinally, and preferably less thick, than its side wings 12, the core 12 being absent at the two opposite ends 7 of the relevant bracing element 7, which are bored for receiving a pin connection 11 axle 11 that cooperates with an opening 9 that forms a securing site.
[0049] In accordance with a first embodiment, deriving from
[0050] A progressive reduction in size of segment 4 along its longitudinal direction makes it possible to arrive at a boom structure that is lighter overall, with its own bending moment that is smaller and decreases rapidly toward the free end of the side poles 3, 3, and with reduced stresses at the hooking interface of the said poles 3, 3 with the central segment 2.
[0051] In accordance with a second embodiment, deriving from
[0052] In this variant, the three faces of the triangular prism, to with the bottom face and the two side faces, are made of bracing elements 7. The sprayers can for example be hooked to the elements 7 of the bottom face of the segment 4.
[0053] In this construction variant, at least the two bottom tubes 6 (isosceles section), or even the three tubes 5 and 6 (equilateral section), can be identical.
[0054] Preferably, the cross section of segment 4 has an isosceles triangular shape, and the width of the base and the height of the section vary similarly from one end to the other of the said segment 4. In this variant, the base of the triangular prism formed by the segment 4 is located near the ground in a deployed state of the boom structure 1.
[0055] In the two aforementioned embodiments, the progressive reduction in the section from one end to the other of a relevant segment 4 also translates, for identical bracing elements 7, into a change in their incline compared to the tubes 5 and 6 (reduction in angle 5/7 and 6/7 at the pin connections 11).
[0056] It is understood that each side pole 3, 3 can comprise one, two or several segments 4, the smallest section of a segment 4 corresponding roughly to the next largest section of segment 4 in the direction of the free end of the relevant pole 3, 3 (end opposite to the central segment 2).
[0057] As shown in
[0058] Another subject of the invention, as shown in
[0059] Of course, the invention is not limited to the embodiments described and shown in the attached drawings. Modifications remain possible, particularly from the standpoint of the composition of the various elements or by substituting technical equivalents, without however departing from the invention's field of protection.