Tool set for agricultural machine and machine comprising at least one such tool set
By offsetting the longitudinal axis of the elastically compressible element relative to the rod's axis in agricultural tool assemblies, the tool assembly addresses buckling-related wear and stress issues, enhancing service life and efficiency.
Patent Information
- Application Number
- FR2023005734
- Authority / Receiving Office
- FR · FR
- Patent Type
- Patents
- Current Assignee / Owner
- Filing Date
- 2023-06-07
- Publication Date
- 2025-06-20
- Estimated Expiration
- 2043-06-07
AI Technical Summary
Existing agricultural tool assemblies for soil working or sowing machines experience wear and unpredictable stresses due to buckling of elastically compressible elements, leading to reduced service life and inefficiency.
The tool assembly features an elastically compressible element with a longitudinal axis parallel and radially offset relative to the rod's longitudinal axis, controlling buckling conditions and friction generation, thereby enhancing the mechanical safety device's service life.
This configuration ensures predictable friction patterns and reduced wear, extending the service life of the mechanical safety device and maintaining tool assembly efficiency.
Smart Images

Figure 00000011_0000 
Figure 00000012_0000 
Figure 00000013_0000
Abstract
Description
Title of the invention: Tool set for agricultural machine and machine comprising at least one such tool set
[0001] The present invention relates to the field of agricultural machinery, more particularly to machines equipped with tools for working the soil or sowing which can move under constraint between a current working position and a safety position, and relates to a tool assembly or device for such a machine and a machine comprising at least one such tool assembly or device.
[0002] The sets of tools for working the soil or sowing referred to herein generally comprise tools such as teeth, discs, rollers or the like, generally fixed to the chassis of the machine concerned, in series or alignments, at the level of crosspieces, by means of articulated connections. These tools are associated with mechanical safety devices allowing the tool to be retracted in the event of encountering an obstacle to its advancement.
[0003] Document EP 3 097 753 already discloses a tool assembly for an agricultural soil working or sowing machine comprising a chassis and moving during work in a forward direction. This tool assembly comprises a tool connected to the chassis by means of a main pivot connection and by a mechanical safety device. The tool has an elongated element which is elastically compressible along its longitudinal axis. It is mounted with guidance on or around a rod and is positioned between a front articulated connection of this rod with the chassis and a rear articulated connection of this rod with the tool. This tool can be moved by pivoting around the main pivot connection between a maximum deployed working position in which the elastically compressible element is at most slightly compressed and an extreme retracted position in which the elastically compressible element is highly compressed.The elastically compressible element is kept constantly in support under pressure between a front seat associated with the front articulated connection of the rod and a rear seat associated with its rear articulated connection.
[0004] During work, when the axial load exerted by the tool (here a tooth) on the elastically compressible element (here a coil spring) is greater than its holding force, the tool pivots around the main joint to retract thanks to the safety device. Under the effect of this axial load (in the opposite direction to the direction of advance), the elastically compressible element will compress. Sometimes, instead of continuing to decrease in length in a rectilinear manner, this element will flex laterally on one side or the other of its longitudinal axis. This phenomenon is called buckling. Buckling induces forces not parallel to the axis of the rod and generates friction and wear of the safety device. Wear may be observed on the various bearing surfaces of the spring, the rod and the joints, in addition to unpredictable stresses in the tool assembly.
[0005] The main aim of the present invention is to overcome these drawbacks of the aforementioned state of the art and to propose a tool assembly with a safety device with an increased service life, by limiting wear phenomena, in particular by controlling the buckling conditions of the elastically compressible element and by controlling the location and nature of the friction generated when the device is stressed. In addition, the improvement provided by the invention should be simple in terms of structural and / or constructive modification to be made to the existing tool assembly.
[0006] For this purpose, the invention relates to a tool assembly for an agricultural soil working or sowing machine comprising a chassis and moving during work in a forward direction, the assembly comprising a tool connected to the chassis by means of a main pivot connection and by a mechanical safety device, the latter having an elongated element which is elastically compressible along its longitudinal axis, mounted with guidance on or around a rod and positioned between a front articulated connection of this rod (8) with the chassis and a rear articulated connection of this rod with the tool, this tool being able to be moved by pivoting around the main pivot connection between a maximum deployed working position in which the elastically compressible element is at most slightly compressed and an extreme retracted position in which the elastically compressible element is highly compressed,and the elastically compressible element being constantly held in support under pressure between a front seat associated with the front articulated connection of the rod and a rear seat associated with its rear articulated connection,
[0007] tool assembly characterized in that the longitudinal axis of the elastically compressible element is parallel and radially offset relative to the longitudinal axis of the rod.
[0008] The invention will be better understood from the following description, which relates to preferred embodiments, given as non-limiting examples, and explained with reference to the appended schematic drawings, in which:
[0009] [Fig. 1] is a perspective view of an agricultural soil working machine comprising sets of tools according to the invention, the tools being in the form of teeth;
[0010] [Fig.2A] and
[0011] [Fig.2B] are side elevation views showing a tool assembly (here a tooth-shaped tool) forming part of the machine of [Fig.l], respectively in the deployed working position (downwards) and in the retracted safety position (towards the high) ;
[0012] [Fig.3A] and
[0013] [Fig.3B] are partially sectioned detail views schematically representing the two random buckling tendencies of the elastically compressible element (downwards or upwards) of the mechanical safety device of a tool assembly as shown in FIGS. 2, in the absence of implementation of the invention;
[0014] [Fig.4A] is a partially sectioned detail view, along a plane similar to the section plane of Figures 3, of a tool assembly as shown in Figures 2, illustrating a first embodiment of the invention and
[0015] [Fig.4B] is a partial perspective view of the object shown in [Fig.4A];
[0016] [Fig.5A] and
[0017] [Fig.5B] are perspective views of the rod and the part forming the rear seat forming part of the mechanical safety device of the tool assembly shown in Figures 4;
[0018] [Fig.6A] and
[0019] [Fig.6B] are partial views, in side elevation and in section along a plane parallel to that of the views of figures 3 and 4, of a tool assembly according to another embodiment of the invention, respectively in the deployed working position (downwards) and in the retracted safety position (upwards);
[0020] [Fig.6C] is a perspective view of the object shown in [Fig.6B].
[0021] Figures 2 and partially figures 3, 4 and 6 illustrate a tool assembly (1) for an agricultural machine (2) for working the soil or sowing comprising a chassis (3) and moving to work in a field in a direction of advance (A).
[0022] The tool assembly (1) comprises a tool (4) connected to the frame (3) via a main pivot connection (5) and by a mechanical safety device (6). The mechanical safety device (6) has an elongate element (7) which is elastically compressible along its longitudinal axis (ALR). It is mounted with guidance on or around a rod (8) and is positioned between a front articulated connection (9) of this rod (8) with the frame (3) and a rear articulated connection (10) of this rod (8) with the tool (4). As shown in Figures 2, the tool (4) can be pivotally moved around the main pivot connection (5) between a maximum deployed working position in which the elastically compressible element (7) is at most slightly compressed and an extreme retracted position in which the elastically compressible element (7) is highly compressed.The elastically compressible element (7) is kept constantly in support under pressure between a front seat (11) associated with the front articulated connection (9) of the rod (8) and a rear seat (12) associated with its rear articulated connection (10). [Fig.l] illustrates an exemplary embodiment. of an agricultural soil working machine. This is a cultivator equipped with discs and tines suitable for soil preparation work, such as stubble cultivation or seedbed preparation. The machine illustrated is equipped with two rows of discs to cut up the residue, then four rows of tines that will allow the soil to be mixed with the residue. The tines are distributed in four rows to facilitate the passage of residue and avoid blockages. The machine is also equipped with a row of leveling discs behind the tines and a roller to firm down the soil.
[0023] According to the invention, and as shown more precisely in Figures 4A and 6A, the tool assembly (1) is characterized in that the longitudinal axis (ALR) of the elastically compressible element (7) is parallel and radially offset relative to the longitudinal axis (ALT) of the rod (8).
[0024] Thanks to this arrangement of the invention, it is possible to guarantee, by a simple preventive measure to implement, the direction of buckling of the elastically compressible element (7), and therefore to know in advance the friction generated, systematically for each compression action. By taking advantage of this measurement, the invention can aim in a second stage, to improve in a targeted and limited manner, by suitable constructive measures, the mechanical safety device (6), by limiting wear, by prior knowledge of the location and nature of the friction generated by buckling when the mechanical safety device (6) is stressed.
[0025] In accordance with a simple and safe method of obtaining the offset between the longitudinal axes (ALT) and (ALR), and as shown for example in Figures 4 to 6, it can advantageously be provided that the front and rear seats (11, 12) are both asymmetrical and / or arranged in an offset manner relative to the longitudinal axis (ALT) of the rod (8). Thus, the offset of the two longitudinal axes (ALT) and (ALR) between them is constructively fixed from the initial manufacture of the parts.
[0026] In practice, a small offset between the longitudinal axes, of the order of a few millimeters (for example approximately 5 mm), is sufficient to obtain the desired result.
[0027] Furthermore, the offset between the longitudinal axes (ALT) and (ALR) is such that the longitudinal axis (ALR) is located above the longitudinal axis (ALT) to result in an upward buckling of the elastically compressible element (7) (convex domed shape, seen from above), favorable to the generation of a resisting torque opposed to a greater retraction of the tool (4).
[0028] Preferably, the front articulated connection (9) of the rod (8) with the chassis (3) is a pivot connection, the axis of which is parallel to the axis of the main pivot connection (5). The rear articulated connection (10) with the tool (4) is a sliding pivot connection, the two extreme sliding positions correspond respectively to the deployed working position and to the extreme retracted position of the tool (4).
[0029] Of course, many practical constructive variants of the mechanical safety device (6) are possible.
[0030] According to a preferred variant, however, the front seat (11) is formed in one piece with the rod (8) and the rear seat (12) is a separate part, slidably mounted on the rod (8) and bearing under elastic pressure, under the effect of the elastically compressible element (7), against the tool (4) at the level of the rear articulated connection (10).
[0031] As shown in Figures 4, the rear articulated connection (10) can be configured to allow relative sliding of the rod (8) relative to the tool (4) along the longitudinal axis (ALT) of the rod (8), during its pivoting around the main pivot connection (5). In addition, at least one assistance stop (13) which guides this sliding, if necessary in combination with relative positioning provided by cooperation of the rear seat (12) or of the rod (8) with the tool (4), is provided at the tool (4). This assistance stop (13) is a roller, for example of cylindrical shape, which receives the rod (8) in rolling support and makes it possible to transform into rolling friction the friction generated during the movement of the rod (8) subjected to the forces resulting from the buckling of the elastically compressible element (7). Advantageously, the roller (13) is made of plastic material.
[0032] When the longitudinal axis (ALR) of the elastically compressible element (7) is offset upwards relative to the longitudinal axis (ALT) of the rod (8), in a plane which is perpendicular to the axis of the main pivot connection (5) and which contains these two axes, the assistance stop (13) is advantageously at least partially located above the rear articulated connection (10). Furthermore, at least a portion of the rod (8) extends between this assistance stop (13) and the rear articulated connection (10). This is particularly the case in the embodiment variants shown in FIGS. 4 and 6. Advantageously, the assistance stop (13) extends between the two flanks (18, 18').
[0033] In order to limit the friction between the rod (8) and the elastically compressible element (7), and also to limit the deformation of the latter during its compression, the rod (8) may comprise, over part of its length, a sheath (15) for guiding the elastically compressible element (7), ensuring, if necessary, also the sliding guidance of the rear seat (12) along the longitudinal axis (ALT) of the rod (8). The rod (8) or the sheath (15) advantageously comprises a stop (16) limiting the movement of the rear seat (12) towards the front articulated connection (9). The stop (16) defines the extreme retraction position of the tool (4). This guide sheath (15), preferably made of plastic material, may be an added part, of the hollow cylinder or partially cylindrical shell type, threaded onto the rod (8) and movable in the axial direction of the latter, or else be formed in one piece with the rod (8).
[0034] According to an advantageous characteristic of the invention facilitating the assembly of the mechanical safety device (6) and making it possible to guarantee the desired offset between the axes, it may be provided that the front and rear seats (11 and 12) are both provided with foolproof devices (17, 17'). The foolproof device is a device, for example a notch, a lug or a relief used to indicate the correct position of the front and rear seats when mounting the mechanical safety device (6). According to an alternative not shown, the correct mounting of the mechanical safety device (6) is guaranteed by the use of an external means such as a mounting template.
[0035] In relation to an advantageous practical constructive variant also emerging from figures 2 to 4 and 6, the tool (4) comprises a Y-shaped support arm (4'), the two upper front (14) and rear (14') branches of which are connected respectively, on the one hand to the chassis (3) via the main pivot connection (5) and, on the other hand to the rod (8) and to the rear seat (12) by the rear articulated connection (10). The lower branch (14”) forms a prop and carries the functional part (4”) of the tool (4) which in the attached figures is a tooth, but can also consist of another type of functional part, such as a wheel, a disc, a roller, a sowing tool or the like. The prop can be an arm or a connecting device. Furthermore, at least the rear upper branch (14') optionally has a structure with two spaced flanks (18, 18'), between which the rod (8) is inserted and guided.In an alternative not shown, the rear upper branch (14') consists of a single side and the rod (8), in particular its rear end, is made in two parts. The two rod parts (8) are then mounted on either side of the side of the rear upper branch (14').
[0036] The present invention also relates, as shown by way of example in [Fig.l], to an agricultural machine (2) for working the soil or sowing, which comprises a chassis (3) and moves during work in a direction of advance (A).
[0037] According to the invention, this machine (2) is characterized in that it comprises at least one, preferably several, set(s) of tool(s) (1) as described above, for example mounted on one or more crosspieces (3') forming part of the chassis (3), where appropriate in an interchangeable manner and / or adjustable in position on the crosspiece concerned.
[0038] In Figures 2 to 4 and 6, the tool assembly (1) comprises a clamping element (19) for its attachment to the crosspiece (3') of the chassis (3), with a housing and a flange rigidly secured to the crosspiece by clamping by means of screws. With this type of mounting of the tools, their respective spacings on the crosspiece (3') are adjustable.
[0039] Of course, the clamping element can also be welded onto the crosspiece. different tools (4) are then fixed, without the possibility of adjustment, on the crosspieces.
[0040] Depending on the nature of the sets of tools (1) that it carries, the machine (2) can carry out stubble cultivation, decompaction, subsoiling, scarification, compaction, or similar soil preparation work, or even sowing work, or even several types of work if at least two different types of tools are present.
[0041] Of course, the invention is not limited to the embodiments described and shown in the attached drawings. Modifications remain possible, in particular from the point of view of the constitution of the various elements or by substitution of technical equivalents, without departing from the scope of protection of the invention.
Claims
Claims
1. Tool assembly (1) for an agricultural machine (2) for working the soil or sowing comprising a chassis (3) and moving during work in a direction of advance (A), the assembly (1) comprising a tool (4) connected to the chassis (3) by means of a main pivot connection (5) and by a mechanical safety device (6), the latter having an elongated element (7) which is elastically compressible along its longitudinal axis (ALR), mounted with guidance on or around a rod (8) and positioned between a front articulated connection (9) of this rod (8) with the chassis (3) and a rear articulated connection (10) of this rod (8) with the tool (4),this tool (4) being able to be moved by pivoting around the main pivot connection (5) between a maximum deployed working position in which the elastically compressible element (7) is at most slightly compressed and an extreme retracted position in which the elastically compressible element (7) is highly compressed, and the elastically compressible element (7) being kept constantly in pressure between a front seat (11) associated with the front articulated connection (9) of the rod (8) and a rear seat (12) associated with its rear articulated connection (10), tool assembly (1) characterized in that the longitudinal axis (ALR) of the elastically compressible element (7) is parallel and radially offset relative to the longitudinal axis (ALT) of the rod (8).,
2. Tool assembly according to claim 1, characterized in that the front and rear seats (11, 12) are both asymmetrical and / or arranged offset from the axis (ALT) of the rod (8).
3. Tool assembly according to claim 1 or 2, characterized in that the front articulated connection (9) of the rod (8) with the chassis (3) is a pivot connection, the axis of which is parallel to the axis of the main pivot connection (5), and in that the rear articulated connection (10) with the tool (4) is a sliding pivot connection, the two extreme sliding positions of which correspond respectively to the deployed working position and to the extreme retracted position of the tool (4).
4. Tool assembly according to any one of claims 1 to 3, characterized in that the front seat (11) is formed in one piece with the rod (8) and in that the rear seat (12) is a separate part, slidably mounted on the rod (8) and bearing under elastic pressure, under the effect of the elastically compressible element (7), against the tool (4) at the level of the rear articulated link (10).
5. Tool assembly according to any one of claims 1 to 4, characterized in that the rear articulated connection (10) is configured to allow relative sliding of the rod (8) relative to the tool (4) along the axis (ALT) of the rod (8), during its pivoting around the main pivot connection (5), and that at least one assistance stop (13) guiding this sliding, where appropriate in combination with relative positioning provided by cooperation of the rear seat (12) or the rod (8) with the tool (4), is provided at the tool (4).
6. Tool assembly according to claim 5, characterized in that the longitudinal axis (ALR) of the elastically compressible element (7) is offset upwards relative to the longitudinal axis (ALT) of the rod (8), this in a plane perpendicular to the axis of the main pivot connection (5) which contains them both, the assistance stop (13) being advantageously at least partially located above the rear connection (10) and at least part of the rod (8) extending between this assistance stop (13) and the rear connection (10).
7. Tool assembly according to any one of claims 1 to 6, characterized in that the rod (8) comprises, over part of its length, a sheath (15) for guiding the elastically compressible element (7) ensuring, if necessary, also the sliding guidance of the rear seat (12) along the axis (ALT) of the rod (8), the rod (8) or the sheath (15) advantageously comprising a stop (16) limiting the movement of the rear seat (12) towards the front articulated connection (9) and defining the extreme retracted position of the tool (4).
8. Tool assembly according to any one of claims 1 to 7, characterized in that the front and rear seats (11 and 12) are both provided with keyways (17, 17').
9. Tool assembly according to any one of claims 1 to 8, characterized in that the tool (4) comprises a Y-shaped support arm (4'), the two upper front (14) and rear (14') branches of which are connected respectively, on the one hand, to the chassis (3) via the main pivot connection (5) and, on the other hand, to the rod (8) and to the rear seat (12) by the rear articulated connection (10), and the lower branch (14”) of which forms a prop and carries the functional part (4”) of the tool (4), at least the upper rear branch (14') possibly having a structure with two spaced flanks (18, 18'), between which the rod (8) is received and guided.
10. Agricultural machine (2) for working the soil or sowing comprising a chassis (3) and moving during work in a direction of advance (A), characterized in that it comprises at least one, preferably several, set(s) of tool(s) (1) according to one of claims 1 to 9, for example mounted on one or more crosspieces (3') forming part of the chassis (3), where appropriate in an interchangeable manner and / or adjustable in position on the crosspiece concerned.