DISTRIBUTOR FOR GRANULAR MATERIAL
20230109764 ยท 2023-04-13
Inventors
Cpc classification
A01C7/082
HUMAN NECESSITIES
B05B7/1486
PERFORMING OPERATIONS; TRANSPORTING
International classification
A01C7/08
HUMAN NECESSITIES
B05B14/10
PERFORMING OPERATIONS; TRANSPORTING
Abstract
The invention relates to a distributor (10) for granular material, having a distributor head (14), which is designed to divide up an air-material main flow supplied through a main conveying line (12) to the distributor head (14) into a plurality of air-material individual flows, and at least one return device (16), which comprises a movable deflecting element (36), which is designed, in a delivery position, to supply an air-material individual flow flowing into an inflow region (26) of the return device (16) to a delivery region (28), connected to a delivery line (18), of the return device (16) and, in a shut-off position, to direct an air-material individual flow flowing into the inflow region (26) of the return device (16) via a return line (30) of the return device (16) to a return region (32), connected to the main conveying line (12), of the return device (16).
Claims
1. Distributor for granular material, having a distributor head which is designed to divide up an air-material main flow supplied through a main conveying line to the distributor head into a plurality of air-material individual flows; and at least one return device, which comprises a movable deflecting element which is designed, in a delivery position, to supply an air-material individual flow flowing into an inflow region of the return device to a delivery region, connected to a delivery line, of the return device and, in a shut-off position, to direct an air-material individual flow flowing into the inflow region of the return device via a return line of the return device to a return region,connected to the main conveying line, of the return device; characterised in that the deflecting element is designed to shut off a bypass line of the return device connecting the return region of the return device and the delivery region of the return device in the delivery position.
2. The distributor of claim 1, wherein the deflecting element is designed to release the bypass line (34) in the shut-off position.
3. The distributor of claim 1, wherein the deflecting element is designed as a rocker with two rocker legs, the rocker legs each extending radially outwards from a rotational axis of the deflecting element.
4. The distributor of claim 3, wherein: a rocker leg of the deflecting element is designed to shut off the bypass line of the return device in the delivery position of the deflecting element; a rocker leg of the deflecting element is designed to shut off a passage between the inflow region of the return device and the return region of the return device in the delivery position of the deflecting element and/or at least one rocker leg of the deflecting element is designed to shut off a passage between the inflow region of the return device and the delivery region of the return device in the shut-off position of the deflecting element; and/or.
5. The distrubutor of claim 1, wherein the return device includes a separating body which separates the return line and the bypass line from one another at least in sections, the deflecting element preferably being designed to be in contact with the separating body the shut-off position.
6. The distrubutor of claim 1, wherein the return device includes a stop rib in particular a circumferential stop rib, between the delivery region and the bypass line the deflecting element being designed to be in contact with the stop rib in the delivery position.
7. The distributor of claim 1, wherein the deflecting element is made, at least in sections, of an elastic material and is designed to deform elastically when assuming the delivery position and/or the shut-off position.
8. The distributor of claim 1, wherein the return region of the return device is connected via a feed line to a feed region of the main feed line, and wherein the main conveying line includes a riser pipe coss-section between the feed region the distributor head, wherein the main conveying line includes a feed cross-section upstream of the feed region in the direction of flow, the feed cross-section being preferably configured as a nozzle, and the riser pipe cross-section and the feed cross-section are in a ratio of 1:1 to 2:1.
9. The distributor of claim 8, wherein a pressure level exits in a transition region between the feed line and the main conveying line which is higher than the pressure level in the delivery region of the return device, the pressure level in the trtuen line of the return device and/or the pressure level in the bypass line of the return device, when the deflecting element is in the shut-off position.
10. Agricultural distribution machine, comprising: a control device for controlling the operation of the distribution machine, a plurality of delivery devices for delivering granular material onto farmland, and the distributor of claim 1, which is designed to divide up an air-material main flow into a plurality of air-material individual flows and to feed them to delivery devices predetermined by the control device.
11. A method for operating the distributor of claim 1 comprising the steps of supplying an air-material main flow to a distribution head of the distributor through a main conveying line of the distributor; dividing up the air-material main flow supplied to the distribution head into several air-material individual flows; and moving of a deflecting element of at least one return device optionally in a delivery position, in which the deflecting element supplies an air-material individual flow flowing into an inflow region of the return device to a delivery region, connected to a delivery line, of the return device, or, in a shut-off position, the deflecting element directs an air-material individual flow flowing into the inflow region of the return device via a return line of the return device to a return region, connected to the main conveying line, of the return device; wherien in the delivery position, the deflecting element shuts off a bypass line of the return device connecting the return region of the return device and the delivery region of the return device.
12. The method according to claim 11, wherein the deflecting element releases the bypass line in the shut-off position.
13. The method according to claim 11, wherein in the delivery position of the deflecting element, a first rocker leg of the deflecting element shuts off a passage between the inflow region of the return device and the return region of the return device, and a second rocker leg of the deflecting element shuts off the bypass line of the return device.
14. The method of claim 11, wherein in the shut-off position of the deflecting element, a first rocker leg of the deflecting element shuts off a passage between the inflow region of the return device and the delivery region of the return device.
15. The method of claim 11, wherein in the region of the return device is connected to the main conveying line via a feed line, wherein a pressure level exists in a transition region between the feed line and the main conveying line which is higher than the pressure level in the delivery region of the return device, the pressure level in the return line of the return device and/or the pressure level in the bypass line of the return device, when the deflecting element is in the shut-off position; and/or wherein a pressure level exists in the transition region between the feed line and the main conveying line which is lower than the pressure level in the delivery region of the return device, the pressure level in the return line of the return device and/or the pressure level in the bypass line of the return device, when the deflecting element is in the delivery position.
Description
[0025] In the following, preferred embodiments of the invention are explained and described in more detail with reference to the accompanying drawings, in which:
[0026]
[0027]
[0028]
[0029]
[0030]
[0031]
[0032]
[0033]
[0034]
[0035] The generated air-material individual flows are each supplied to a portioning device via a return device 16 and a delivery line 18, the portioning device being designed to generate material portions from the air-material individual flows so that the granular material can be deposited in portions onto farmland.
[0036] The agricultural distribution machine is designed to deliver the granular material onto the farmland in spaced rows.
[0037] The distributor 10 allows the implementation of a single row switching, wherein the delivery along individual rows can be temporarily interrupted. A single row can be switched off by interrupting the supply of granular material to the respective delivery line 18. For this purpose, the return devices 16 can deflect the respective air-material individual inflow so that it is not supplied to the discharge line 18, but to a feed line 20 via which the air-material individual flow is fed back into the main feed line 12.
[0038] The feed lines 20, which are each connected to a return device 16, are connected to a feed region 22 of the main conveying line 12. Below the feed region 22 and thus upstream of the feed region 22 in the direction of flow, a nozzle 24 is integrated into the main conveying line 12, which forms a feed cross-section of the main conveying line, the feed cross-section of the main conveying line 12 in the region of the nozzle 24 being in a ratio to a riser pipe cross-section of the main conveying line 12 between the feed region 22 and the distributor head 14, which is between 1:1 and 1:2, here approximately 1:1.4. The feed cross-section, i.e. the diameter of the nozzle 24, is thus preferably smaller than the riser pipe cross-section in the region of the main conveying line 12 between the nozzle 24 and the distributor head 14.
[0039]
[0040] The return device 16 includes a movable deflecting element 36, which can be moved to a delivery position and to a shut-off position.
[0041]
[0042] The deflecting element 36 is rotatable between the delivery position and the shut-off position. The movement of the deflecting element 36 is initiated by a reversing drive 38. The reversing drive is an electric drive. The reversing drive 38 is connected to the deflecting element 36 via a reversing bar 40.
[0043] In the present case, the deflecting element 36 is configured as a rocker and is designed to shut off a bypass line 34 of the return device 16 connecting the return region 32 of the return device 16 and the delivery region 28 of the return device 16 in the delivery position. When the deflecting element 36 is in the delivery position shown in
[0044] When the deflecting element 36 is in the shut-off position shown in
[0045] The deflecting element 36 configured as a rocker includes two rocker legs 44a, 44b. The rocker legs 44a, 44b extend radially outwards from an rotational axis of the deflecting element 36.
[0046] The rocker legs 44a, 44b of the deflecting element 36 serve to shut off the bypass line 34 from the delivery region 28, when the deflecting element 36 is in the delivery position. Further, in the delivery position of the deflecting element member 36, the rocker legs 44a, 44b serve to shut off a passage between the inflow region 26 and the return region 32 of the return device 16. In the shut-off position of the deflecting element 36, the rocker legs 44a, 44b of the deflecting element serve to shut off a passage between the inflow region 26 and the delivery region 28 of the return device 16.
[0047] The distributor 10 further includes a separating body 42, which separates the return line 30 and the bypass line 34 from each other at least in sections, wherein the deflecting element 36 is designed to be in contact with the separating body 42 in the shut-off position.
[0048] In the embodiment of the return device 16 shown in
[0049] Furthermore, in this embodiment, the return device 16 includes a circumferential stop rib 46 between the delivery region 28 and the bypass line 34, wherein the deflecting element 36 is in contact with the stop rib 46 in the delivery position shown in
[0050] The rocker legs 44a, 44b of the deflecting element 36 may be made of an elastic material, so that they deform elastically when assuming the delivery position and/or the shut-off position.
[0051]
[0052] A pressure level exists in a transition region 48 between the feed line 20 and the main conveying line 12 which is higher than the pressure level in the delivery region 28 of the return device 16, the pressure level in the return line 30 of the return device 16 and/or the pressure level in the bypass line 34 of the return device 16, when the deflecting element 36 is in the shut-off position shown in
Reference Signs List
[0053] 10 Distributor
[0054] 12 Main feed line
[0055] 14 Distributor head
[0056] 16 Return devices
[0057] 18 Delivery lines
[0058] 20 Feed lines
[0059] 22 Feed region
[0060] 24 Nozzle
[0061] 26 Inflow region
[0062] 28 Delivery region
[0063] 30 Return line
[0064] 32 Return region
[0065] 34 Bypass line
[0066] 36 Deflecting element
[0067] 38 Reversing drive
[0068] 40 Reversing bar
[0069] 42 Separating body
[0070] 44a, 44b Rocker leg
[0071] 46 Stop rib
[0072] 48 Transition region