Agricultural machine with machine segments that can be pivoted relative to each other.
The pivotably mounted transmission element with a limiting device addresses space constraints in agricultural machines, enabling reliable and extensive pivoting with reduced space requirements and improved design freedom.
Patent Information
- Authority / Receiving Office
- DE · DE
- Patent Type
- Applications
- Current Assignee / Owner
- Filing Date
- 2024-10-09
- Publication Date
- 2026-04-09
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Figure 00000000_0000_ABST
Abstract
Description
[0001] The invention relates to an agricultural machine. The agricultural machine comprises a first machine segment and a second machine segment. The second machine segment is pivotally mounted relative to the first machine segment about a segment pivot axis. The agricultural machine includes a transfer device. The transfer device is configured to pivot the second machine segment about the segment pivot axis from a segment working position to a segment transport position. The transfer device has at least one actuator, which is pivotally mounted relative to the first machine segment about an actuator segment pivot axis. The transfer device has at least one transmission element. The transmission element is pivotally mounted on the actuator about an actuator transmission pivot axis. The actuator transmission pivot axis is spaced apart from the segment pivot axis.The actuator transmission pivot axis is arranged in the same actuator pivot plane as the actuator segment pivot axis. The transmission element is located on the second machine segment.
[0002] Such agricultural machines are known. The machine segments are typically used for processing agricultural crops or cultivating the soil of agricultural fields. A first known machine of this type has exactly one transmission element, which is fixedly arranged on the second machine segment. It projects upwards from the second machine segment in such a way that the actuator, in the segment's working position, can engage the transmission element above the second machine segment. A second known machine of this type has, in addition to the transmission element described above, a further transmission element between the actuator and the first machine segment.The known machines are disadvantageous due to the space required by the transfer device, particularly the transmission element in the segment transport position of the second machine segment. This space requirement impairs the design of the machine segments, especially the first machine segment. The impairment is particularly significant when the second machine segment can pivot through a large angle relative to the first machine segment from the segment working position to the segment transport position. In the first machine, the transmission element in the segment transport position projects directly from the second machine segment in the direction of the first machine segment and requires a recess in the first machine segment.
[0003] The object of the present invention is to provide a generic agricultural machine that avoids the aforementioned disadvantage and enables reliable and extensive pivoting of the second machine segment while maintaining maximum design freedom with respect to the first machine segment.
[0004] For this purpose, an agricultural machine is created, comprising a first machine segment, a second machine segment which is pivotally mounted relative to the first machine segment about a segment pivot axis, and a transfer device. - which is designed to pivot the second machine segment around the segment pivot axis from a segment working position to a segment transport position, - which has at least one actuator arranged to pivot about an actuator segment pivot axis relative to the first machine segment and - which has at least one transmission element which is pivotably mounted on the actuator and is arranged on the second machine segment about an actuator transmission pivot axis spaced apart from the segment pivot axis and arranged in an actuator pivot plane with the actuator segment pivot axis.
[0005] According to the invention, the problem is solved by the fact that the transmission element is pivotably mounted on the second machine segment about a transmission segment pivot axis, and the transfer device has a pivot limiting device which is designed to limit the pivot mobility of the transmission element about the transmission segment pivot axis in such a way that the transmission segment pivot axis is spaced away from the actuator pivot plane.
[0006] The pivoting mounting of the transmission element allows for a variation in the orientation of the transmission element relative to the second machine segment during the pivoting of the second machine segment relative to the first machine segment from the segment working position to the segment transport position. The pivot limiting device is designed to limit, i.e., at least to block, the pivoting movement during the pivoting of the second machine segment. The pivot limiting device limits the pivoting movement, in particular, insofar as a force acts on the transmission element that exceeds the forces transmitted to the transmission element by the actuator and the second machine segment. The pivot limiting device limits the pivoting movement of the transmission element during operation of the transfer device, at least in phases.at least for part of the time required to pivot the second machine segment from the segment working position to the segment transport position, and / or at least part of the angular range through which the second machine segment pivots from the segment working position to the segment transport position. The pivoting mobility of the transmission element, controlled by the pivot limiting device, reduces its disadvantageous installation space requirement without restricting the angular range or the reliability of the transfer device.
[0007] The agricultural machine in question is, in particular, a harvesting machine, such as a header for a forage harvester designed for harvesting maize, or the combination of the forage harvester and the header. If the machine at least includes the header, each machine segment has, in particular, at least one cutting element for cutting the plants to be harvested and at least one conveying element, preferably a conveyor chain that circulates around deflection elements of the machine segment during operation, for conveying the cut plants. However, the invention offers the same advantages for other agricultural machines, such as cultivators or seed drills.The agricultural machine according to the invention is characterized in particular by the possibility of folding its machine segments such that the working width of the machine in operation is greater than the transport width that the machine is permitted to have and has during road transport. In particular, the second machine segment can be pivoted from the segment working position to the segment transport position to reduce the width of the machine relative to the first machine segment. In the segment transport position, the second machine segment is, in particular, at least partially, further away from the ground than in the segment working position and / or than the first machine segment. During operation, the agricultural machine or the forage harvester rests on the ground, in particular on its wheels.
[0008] The segment working position and the segment transport position of the second machine segment are characterized by its positioning relative to the first machine segment. The first machine segment is preferably stationary or pivotally movable relative to a machine frame. Preferably, in the segment working position of the second machine segment, the first machine segment is arranged at least partially between a longitudinal center plane of the machine and the second machine segment. The configuration of the machine according to the invention described above and below is also possible if the first and second machine segments are exchanged. Preferably, the agricultural machine has a third machine segment that is arranged symmetrically to the second machine segment and / or at least two machine segment units, each comprising at least one first and at least one second machine segment.
[0009] The axes described above and / or below are to be understood primarily as axes in the geometric sense. The described pivot axes are specifically aligned parallel to each other. The planes described below are to be understood primarily as such in the geometric sense.
[0010] In the segment working position of the second machine segment, the machine segments are arranged such that they connect to each other in a transverse direction perpendicular to the direction of travel. The axes preferably run at least substantially in one direction of travel. At least in the segment working position of the second machine segment, the machine segments preferably have a smaller distance to the ground plane than the transfer device.
[0011] The actuator is, in particular, a hydraulic cylinder. The actuator is, in particular, pivotally mounted about the actuator segment pivot axis on the first machine segment. Alternatively to the mounting described above, the agricultural machine can have a hydraulic cylinder that is itself not pivotally mounted relative to the first machine segment, but which is pivotally connected to an element that, in turn, is pivotally connected to the transmission element and is thus to be regarded as an actuator within the meaning of claim 1.
[0012] The swivel limiting device creates selective swivel mobility of the transmission element around the transmission segment swivel axis, that is, relative to the second machine segment. By limiting the swivel mobility, a force generated by the actuator and transmitted between the actuator segment swivel axis and the transmission segment swivel axis is redirected via the actuator transmission swivel axis. Depending on the geometric design of the transmission element, it creates, at least during part of the swiveling of the second machine segment from the segment working position to the segment transport position, a significant lever arm between the actuator transmission swivel axis and the segment swivel axis, which allows a reduction in the force to be generated by the actuator.A pivoting movement of the transmission element relative to the actuator changes at least the extent of the deflection of the force via the actuator transmission pivot axis and, in particular, allows for selective avoidance of the deflection.
[0013] Preferably, the swivel limiting device is configured to limit the swivel movement of the transmission element about the transmission segment's swivel axis, with the limit depending on the swivel position of the second machine segment relative to the first machine segment and / or the actuator. Conversely, the swivel freedom of the transmission element about the transmission segment's swivel axis, i.e., relative to the second machine segment, when the second machine segment is swiveled, preferably depends on its orientation / swivel angle relative to the first machine segment and / or the actuator. The limit of the swivel movement, i.e., in particular a maximum swivel angle permitted by the swivel limiting device, preferably varies automatically, in particular in steps or continuously, during the swiveling of the second machine segment from the segment working position to the segment transport position.Alternatively, the limit can be varied manually. Varying the limit, particularly during the pivoting of the second machine segment, brings the transmission segment pivot axis closer to the actuator pivot plane. This variation is preferably purely mechanical. Preferably, no additional actuator is required to vary the limit, and especially preferably, to completely transition the second machine segment from the segment working position to the segment transport position. The preferably automatic dependence of the limit on the pivoting movement of the transmission element on the pivot position of the second machine segment allows for reliable exploitation of the advantages of the machine design according to the invention. The actuator pivot plane moves, in particular, with the pivoting of the second machine segment relative to the first machine segment.
[0014] The swivel limiting device is preferably designed to limit the swivel movement of the transmission element about the transmission segment swivel axis such that a first angle by which the second machine segment is to be swivelled from the segment working position to the segment transport position relative to the first machine segment exceeds a second angle by which the transmission element is to be swivelled to swivel the second machine segment from the segment working position to the segment transport position relative to the first machine segment. Particularly preferably, the first angle is at least twice as large, and especially at least three times as large, as the second angle.This design of the transfer device allows for particularly favorable conditions of the forces acting on and by the transmission element, enabling a particularly wide range of pivoting mobility of the second machine segment relative to the first machine segment. Furthermore, this design minimizes the space required for the transmission element.
[0015] Preferably, the transfer device is designed such that the transmission segment pivot axis is moved through an auxiliary plane during the pivoting of the second machine segment from the segment working position to the segment transport position. This auxiliary plane contains the actuator segment pivot axis and the segment pivot axis. In contrast, the actuator transmission pivot axis is preferably not moved through the auxiliary plane during the aforementioned pivoting of the second machine segment. Preferably, the transfer device is designed such that the second machine segment can be pivoted from the segment working position to the segment transport position by more than 90°, particularly preferably by more than 135°, and especially by 180°.The transfer device is designed in such a way that, with the machine appropriately arranged on the ground plane, a weight force of the second machine segment during its pivoting from the segment working position to the segment transport position causes a torque in a first direction of rotation about the segment pivot axis and a torque in a second direction of rotation opposite to the first direction of rotation about the segment pivot axis.
[0016] Preferably, the swivel limiting device is designed to limit the swivel movement of the transmission element about the transmission segment swivel axis such that the transmission segment swivel axis is kept at a distance from the actuator swivel plane, at least in the segment working position. Furthermore, the swivel limiting device is particularly designed such that the transmission segment swivel axis is kept continuously at a distance from the actuator swivel plane during the first phase of the swivel movement of the second machine segment, which begins in the segment working position when the second machine segment is swiveled from the segment working position to the segment transport position. This first phase continues, in particular, until the second machine segment has reached a neutral position relative to the first machine segment.Until then, the transmission element remains stationary relative to the second machine segment and / or the transmission segment pivot axis preferably approaches the actuator pivot plane continuously. In particular, the transmission segment pivot axis is moved through the auxiliary plane during this first phase. In the neutral position, the transmission segment pivot axis preferably has its minimum distance from the actuator pivot plane or is located within the actuator pivot plane. Alternatively, the foregoing applies in reverse, such that the transmission segment pivot axis is kept at a distance from the actuator pivot plane, at least in the segment transport position, and the latter limits the first phase, etc.
[0017] The transfer device of the machine according to the invention is, in particular, free of a linkage articulated between the actuator and / or the transmission element and the first machine segment. This saves considerable installation space and weight.
[0018] The swivel limiting device preferably has a first stop. The first stop has a first stop partner and a second stop partner and is designed such that the stop partners are in contact in the segment working position of the second machine segment to limit the swivel movement of the transmission element about the actuator transmission swivel axis and / or separate from each other when the second machine segment swivels from the segment working position to the segment transport position. During the aforementioned first phases, the stop partners of the first stop preferably remain in contact and swivel relative to each other. For this purpose, the two stop partners preferably form a friction bearing. The separation of the aforementioned stop partners preferably occurs in the central position.The first stop thus releases the pivoting movement of the transmission element about the transmission segment pivot axis before the second machine segment reaches the segment transport position. The described function of the first stop is independent of the specific geometric position of the stop partners. The first stop enables the selective limitation of the pivoting movement of the transmission element described above in a technically simple manner. The first stop represents a structurally simple solution for achieving the essential purpose of the invention.
[0019] In particular, the first stop partner is immobile relative to the actuator, to at least a part of the transmission element, and / or to the first or second machine segment. Preferably, the first stop partner of the first stop is formed by the transmission element. Alternatively or additionally, the second stop partner of the first stop is formed by the second machine segment. The transmission element and / or the second machine segment can have a recess, a pin, or a similar feature to form the respective stop partner. The stop partners of the first stop are located closer to the segment pivot axis than the actuator transmission pivot axis and / or the transmission segment pivot axis.In a further preferred embodiment of the invention, the second stop partner of the first stop is formed by a bolt element which extends through both machine segments along the segment pivot axis to achieve pivot mobility of the second machine segment relative to the first machine segment. In this way, the construction of the machine according to the invention is further simplified.
[0020] Preferably, the pivot limiting device is designed to limit the pivot mobility of the transmission element about the actuator transmission pivot axis in such a way that the position of the transmission segment pivot axis relative to the actuator pivot plane is at least partially constant when the second machine segment pivots about the segment pivot axis. This applies at least to a portion of the pivoting of the second machine segment from the segment working position to the segment transport position, in particular to a second phase that follows the first phase from the central position and extends to the segment transport position. During this second phase, the transmission element is arranged in a fixed position relative to an end of the actuator facing the transmission element.The constant position of the transmission segment pivot axis relative to the actuator pivot plane preferably refers to a constant distance, where the transmission segment pivot axis is located on the same side of the actuator pivot plane as in the first phase. Particularly preferably, the position of the transmission segment pivot axis relative to the actuator pivot plane is constant insofar as the transmission segment pivot axis is arranged within the actuator pivot plane. This described constant positioning of the transmission element with the transmission segment pivot axis avoids overhang and thus a larger space requirement for the transmission element, especially in the second phase.
[0021] Preferably, the swivel limiting device has a second stop. The second stop has a first stop partner and a second stop partner and is designed such that, when the second machine segment swivels from the segment working position to the segment transport position, the stop partners come into contact to limit the swivel movement of the transmission element about the actuator transmission swivel axis in a first swivel direction. Preferably, the stop partners of the second stop come into contact in the center position. The second stop, particularly after the first stop no longer limits the swivel movement of the transmission element, achieves a fixation of the actuator segment swivel axis, the actuator transmission swivel axis, and the transmission segment swivel axis relative to each other.Preferably, the first stop partner of the second stop is formed by a stop element that is fixed in position relative to the part of the actuator facing the transmission element. Alternatively or additionally, the second stop partner of the second stop is formed by the transmission element. The second stop partner of the second stop and / or the second stop partner of the first stop are preferably formed by a pin or stud projecting in a direction parallel to the axes. This further simplifies the design of the transfer device.
[0022] The swivel limiting device preferably has a third stop. The third stop has a first stop partner and a second stop partner. The third stop is designed such that, when the second machine segment swivels from the segment working position to the segment transport position, the stop partners come into contact to limit the swivel movement of the transmission element about the actuator transmission swivel axis in a second swivel direction, which is opposite to the first swivel direction. The swivel limiting device is particularly designed such that the stop partners of the third stop come into contact while the second machine segment is arranged between the center position and the segment transport position, i.e., while in the second phase.The third stop, particularly in combination with the second stop, selectively prevents any pivoting of the transmission element relative to the actuator after the first stop ceases to be effective. This ensures complete stabilization of the transmission element in its space-saving position, especially in the event of a compressive force between the actuator segment pivot axis and the transmission segment pivot axis.
[0023] The first stop partner of the third stop is preferably formed by a stop element that is fixedly arranged relative to a part of the actuator facing the transmission element. Alternatively or additionally, the second stop partner of the third stop is preferably formed by a latching element. The latching element is movable from a release position to a stop position and is mounted on the transmission element, in particular at least partially between the actuator transmission pivot axis and the transmission segment pivot axis. The latching element is preferably pivotally mounted relative to the transmission element about a latch pivot axis. The movableness of the latching element also allows, in a structurally simple manner, both the attainment and the fixing of the position of the transmission element relative to the actuator, which it assumes particularly when the stop partners of the first stop are released from one another.
[0024] The pivot limiting device preferably has at least one first latch actuating element designed to move the latch element from the release position to the stop position. Alternatively or additionally, the pivot limiting device has at least one second latch actuating element designed to move the latch element from the stop position to the release position. The at least one latch actuating element reliably ensures the at least one intended function of the latch element.
[0025] Preferably, the first latching element and / or the second latching element are fixed in position relative to the second machine segment. In particular, the first latching element and / or the second latching element are rigidly mounted on the second machine segment. In this case, the movement of the latching element is achieved solely by pivoting the second machine segment relative to the transmission element about the transmission segment pivot axis.
[0026] The second latching element is designed, in particular, as a further pin or bolt. The first latching element preferably forms a locking surface facing away from the transmission segment pivot axis, which has at least a substantially constant distance from the transmission segment pivot axis. The locking surface is, in particular, a surface along which the latching element slides, at least in phases, at least during the pivoting of the second machine segment from the segment working position to the segment transport position. This ensures that the latching element is reliably held in the stop position, at least in part of the second phase, in which it fixes the transmission element relative to the part of the actuator facing the transmission element. During the first phase, the second latching element positions the latching element in the release position.
[0027] Further details and advantages of the invention can be seen in the schematically illustrated figures described below; they show: Fig. 1 a partial sectional view of a first machine according to the invention in a segment transport position, Fig. 2 a side view of the machine according to Fig. 1, Fig. 3 a partial sectional view of the machine according to Fig. 1 in a middle position, Fig. 4 a partial sectional view of the machine according to Fig. 1 in a first position between the middle position and a segment transport position, Fig. 5 a partial sectional view of the machine according to Fig. 1 in a second position between the middle position and the segment transport position, Fig. 6 a partial sectional view of the machine according to Fig. 1 in a third position between the middle position and the segment transport position, Fig. 7 a partial sectional view of the machine according to Fig. 1 in the segment transport position, Fig. 8 a side view of a forage harvester with a second machine according to the invention in the segment working position, Fig. 9 a top view of the forage harvester and the second machine according to Fig. 8, Fig. 10 a front view of the forage harvester and the second machine according to Fig. 8, Fig. 11 a side view of the forage harvester and the second machine according to the invention in the segment transport position, Fig. 12 a top view of the forage harvester and the second machine according to Fig. 11, Fig. 13 a front view of the forage harvester and the second machine according to Fig. 11.
[0028] Identical or similarly functioning components of the machine according to the invention are selectively provided with the same reference numerals in the figures. Further developments of the invention also result from other combinations of the described features than those shown.
[0029] The Fig. Figures 1 to 7 show a first agricultural machine 2. The agricultural machine 2 has a first machine segment 4 and a second machine segment 6. Machine segments 4 and 6 are shown in a highly simplified manner. Fig. Figures 1 and 3 to 7 illustrate a transfer of machine 2 with the second machine segment 6 from a segment working position I via a middle position II to a segment transport position III.
[0030] The second machine segment 6 is pivotally mounted relative to the first machine segment 4 about a segment pivot axis SA. A transfer device 10 serves to pivot the second machine segment 6 about the segment pivot axis SA. The transfer device 10 comprises an actuator 12, which is pivotally mounted relative to the first machine segment 4 about an actuator segment pivot axis ASA. Furthermore, the transfer device 10 comprises a transmission element 14, which is pivotally mounted on the actuator about an actuator transmission pivot axis AÜA spaced apart from the segment pivot axis SA. The transmission element 14 is also pivotally mounted on the second machine segment 6 about a transmission segment pivot axis ÜSA. The actuator segment pivot axis ASA and the actuator transmission pivot axis AÜA lie in an actuator pivot plane AE. The actuator segment pivot axis ASA and the segment pivot axis SA lie in an auxiliary plane HE.A cutting plane SE, along which machine 2 moves into the . Fig. 1 and 3 to 7 is partially cut, is in Fig. 2 illustrated.
[0031] The transfer device 10 has a pivot limiting device 20. The pivot limiting device 20 comprises a stop element 22, which is fixedly arranged relative to the part 16 of the actuator 12 facing the transmission element 14. Furthermore, the pivot limiting device 20 comprises a latch element 24, which is pivotably arranged about a latch pivot axis KA on the transmission element 14. For moving the latch element 24, the pivot limiting device 20 comprises a first latch actuating element 26, which is fixedly arranged relative to the second machine segment 6 and forms a locking surface 26 facing away from the transmission segment pivot axis ÜSA, the distance A of which (see figure) Fig. 5) is uniform from the transmission segment pivot axis ÜSA. Furthermore, the pivot limiting device 20 for pivoting the latching element 24 comprises a second latching actuating element 30, which, like the first latching actuating element 26, is fixedly arranged relative to the second machine segment 6. Among other things, the aforementioned components of the pivot limiting device 20 form a first stop 50, a second stop 60, and a third stop 70, each comprising two stop partners 52 and 54, 62 and 64, and 72 and 74, respectively, and whose function is described in detail below.
[0032] In segment working position I of the second machine segment 6, the transmission segment pivot axis ÜSA is arranged below the auxiliary plane HE. In order to utilize a force acting from the actuator segment pivot axis ASA and generated by the actuator 12 for pivoting the second machine segment 6 upwards from segment working position I, it is redirected in a first phase via the actuator transmission pivot axis AÜA. To enable this redirection, the first stop partner 52 and the second stop partner 54 of the first stop 50 are in contact with each other in the area between the segment pivot axis SA and the transmission segment pivot axis ÜSA. Fig. 1).
[0033] After an initial upward pivoting of the second machine segment 6 from the segment working position I, i.e., the first phase, the machine segment 6 reaches a central position II. The central position II is characterized by the fact that the transmission segment pivot axis ÜSA is moved into the actuator pivot plane AE, whereby the actuator segment pivot axis ASA, the actuator transmission pivot axis AÜA, and the transmission segment pivot axis ÜSA are shown in the diagram. Fig. 3 lie on a line (actuator pivot plane AE). Up to the intermediate position II, the stop partners 52, 54 of the first stop 50 are continuously in contact with each other. The separation of the stop partners 52, 54 releases the pivoting movement of the transmission element 14 relative to the second machine segment 6. In intermediate position II, the stop partners 62, 64 of the second stop 60 contact each other. This results in a further pivoting of the transmission element 14 relative to the actuator 12 from intermediate position II onwards, and thus during a second phase beginning in intermediate position II, according to Fig. 3 counterclockwise rotation is prevented.
[0034] The Fig. Figures 4 to 6 illustrate further positions of the second machine segment 6 relative to the first machine segment 4, which follow the intermediate position II during the second phase of pivoting from segment working position I to segment transport position III. It becomes clear that the stop partners 52, 54 of the first stop 50 move further apart as the second machine segment pivots beyond intermediate position II. It is also clear that the stop partners 62, 64 of the second stop 60 remain in contact with each other and maintain their described purpose.
[0035] The Fig. Figures 3 to 6 also illustrate a pivoting of the latch element 24 by the first latch actuating element 26 from a release position i (see Figure 3). Fig. 3) into a stop position ii (see Fig. 6) In stop position ii, the latch element 24 rests against the locking surface 28 of the first latch actuating element 26. In stop position ii, the first stop partner 72 of the third stop 70 formed by the latch element is in contact with the second stop partner 74 of the third stop 70 formed by the stop element 22, after the stop element 22 and the latch element 24 have previously moved along each other in the release position i (see figure). Fig. 1 and Fig. 3) Thus, a relative movement between the part 16 of the actuator 12 and the transmission element 14 is reliably prevented even if the center of gravity of the second machine segment 6 is on the same side of the segment pivot axis SA as the center of gravity of the first machine segment 4 ( Fig. 6) The second latching element 30 serves to pivot the latching element 24 back from the stop position ii to the release position i when pivoting back the second machine segment 6 from the segment transport position III to the segment working position I, as it Fig. 5 can be seen in detail.
[0036] Fig. Figure 7 shows machine 2 with the second machine segment 6 in segment transport position III. The transmission segment pivot axis ÜSA remains in the actuator pivot plane AE. Thus, as Fig. Figure 7 clearly illustrates that a particularly compact form of the transfer device 10 is achieved. Of great importance for this is the fact that a first angle α, by which the second machine segment 6 was pivoted from segment working position I to segment transport position II relative to the first machine segment 4, significantly exceeds a second angle β, by which the transmission element 14 was pivoted for pivoting the second machine segment 6 from segment working position I to segment transport position III relative to the first machine segment 4. This eliminates, in particular, the space below the transmission segment pivot axis ÜSA, into which the transmission element 14 had to be inserted in segment transport position III, which was still required according to the prior art.
[0037] The Fig. Figures 8 to 13 each show a forage harvester 80 to which a second agricultural machine 2 according to the invention is coupled. This machine 2 comprises two first machine segments 4 and two second machine segments 6 (see Figure 8). Fig. 9, Fig. 10, Fig. 12, Fig. 13). In segment work position I according to the Fig. 8 to 10, the second machine segments 6 extend laterally alongside the first machine segments 4. In segment transport position III, the second machine segments 6 are pivoted 180° relative to their adjacent first machine segments 4 from segment working position I to segment transport position III. Simultaneously, the two first machine segments 4 are pivoted 180° relative to each other. Reference symbol list 2 Agricultural Machine 4 first machine segment 6 second machine segment 10 Transfer device 12 Actuator 14 Transmission element 16 Part of the actuator 20 Swivel limiting device 22 Stop element 24 Jack element 26 first latching element 28 Restricted area 30 second latching element 50 first attack 52 first attack partner of the first attack 54 second attack partner of the first attack 60 second attack 62 first attack partner of the second attack 64 second attack partner of the second attack 70 third attack 72 first attack partner of the third attack 74 second partner in the third attack 80 forage harvesters I Segment working position II Segment central position III Segment transport position i Release position ii Stop position A distance ASA actuator segment swivel axis AE actuator swivel plane AÜA actuator transmission swivel axis HE Auxiliary level KA latch pivot axis SA Segment swivel axis SE section plane ÜSA transmission segment swivel axis α Swivel angle of the second machine segment β Swivel angle of the transmission element