Abstract:
A method is provided for performing driving route optimization in field cultivation having a plurality of cultivation steps. In each cultivation step a predefined cultivation area is driven through by an agricultural machine in accordance with a driving route (F1-F5) containing a plurality of parallel lanes (S1-S5). The driving route (F1-F5) is able to be characterized by an orientation (A1, A2) of the lanes (S1-S5), a positioning (P1-P4) that defines positions of all of the lanes (S1-S5), and an order (R1-R5) in which the lanes (S1-S5) are driven through.
Abstract:
A seed drill having a frame, to which at least one seeding coulter and a fertiliser coulter arranged upstream of the seeding coulter in a working direction are connected. The seeding coulter and the fertiliser coulter are each assigned depth control.
Abstract:
A method for planning the cultivation of an at least quadrangular area of an agricultural field is presented. The area has edge sections between its corners, including a first edge section and a second edge section. The second edge section is arranged opposite of and oblique to the first edge section. A plurality of first working paths and a plurality of second working paths are determined. A lane that runs at least partially along the first working paths and the second working paths and along which an agricultural machine is to be moved over the area is determined. A plurality of turning points along the lane at which the machine is steered is determined, such that the lane runs less along the first working paths and further along the second working paths as the distance from the first edge section increases.
Abstract:
A towed soil cultivation implement (1) is proposed in which the soil tillage tools (5) are guided by a contact pressure controlled depth guide device (9), which enables a constant weight load on a downstream, adjustable reconsolidation implement (6) on uneven ground as well. In the process, the pull line between tractor (3) and soil cultivation implement (1) are maintained in an optimum position.
Abstract:
A pneumatic precision seed drill has a multiplicity of seeding hearts 1 for holding pivoting separating devices 3 exposed to a pressure difference between their inner space 21 and their exterior space 22. A multiplicity of holes 17-20 intended for the accumulation of seeds is arranged in the device 3. The separating device 3 is formed by a pair of separating plates 4, 5 connected to one another at their outer edge 38, 39 that are arranged offset in a tangential direction to one another to produce a spread seed row and are assigned to separate outlets 23, 24 for the discharge of the seed from the seeding heart 1 in the direction of the sowing coulter.
Abstract:
A swivelling support wheel for a reversible plough is proposed that is adjusted with a toothed segment and a catch and gives the working depth of the ploughing tools.
Abstract:
A pneumatic precision seed drill has a multiplicity of seeding hearts 1 for holding pivoting separating devices 3 exposed to a pressure difference between their inner space 21 and their exterior space 22. A multiplicity of holes 17-20 intended for the accumulation of seeds is arranged in the device 3. The separating device 3 is formed by a pair of separating plates 4, 5 connected to one another at their outer edge 38, 39 that are arranged offset in a tangential direction to one another to produce a spread seed row and are assigned to separate outlets 23, 24 for the discharge of the seed from the seeding heart 1 in the direction of the sowing coulter.
Abstract:
A towed soil cultivation implement (1) is proposed in which the soil tillage tools (5) are guided by a contact pressure controlled depth guide device (9), which enables a constant weight load on a downstream, adjustable reconsolidation implement (6) on uneven ground as well. In the process, the pull line between tractor (3) and soil cultivation implement (1) is maintained in an optimum position.
Abstract:
A roller ring (8) for a roller (3,4) of a soil-tillage apparatus (1) comprises two rotationally symmetrical body halves (9) arranged opposite one another. Each body half (9) has a flange-shaped profile portion (10) extending in the radial direction (R), against which the body halves (9) abut over the entire surface. At least one profile portion (10) is divided into an inner contact portion (12) as well as an adjoining outer edge portion (13). The body halves (9) are at least partially connected by means of a substance-to-substance bond (15) radially on the inner side of the contact portion (12).
Abstract:
A roller for agricultural soil cultivation has at least one support body rotatably mounted about an axis of rotation and multiple compaction rings arranged spaced apart from one another next to one another on the support body and intermediate rings arranged between adjacent compaction rings. At least two intermediate rings have a different diameter and/or a different width.