PNEUMATIC SUPPLY DEVICE FOR AN AGRICULTURAL TRACTOR
20250075715 ยท 2025-03-06
Inventors
Cpc classification
F15B21/048
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F15B2211/62
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F15B11/16
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F15B2211/565
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F15B2211/50554
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F15B2211/7142
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F15B2211/781
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
A01B76/00
HUMAN NECESSITIES
F15B11/06
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F15B21/041
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F15B2211/8855
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F15B21/0423
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F15B2211/5158
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
International classification
F15B21/048
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
Abstract
A pneumatic supply device for an agricultural tractor includes a compressed air source for producing a compressed air flow, a cooler for cooling the air flow produced, and a first air dryer, which is fed with the cooled air flow and via the outlet of which a first pneumatic consumer group can be supplied with dehumidified compressed air in accordance with a first dehumidification and flow capacity, and a second air dryer, which is fed with the cooled air flow and via the outlet of which a second pneumatic consumer group can be supplied with dehumidified compressed air in accordance with a second dehumidification and flow capacity.
Claims
1. A pneumatic supply device for an agricultural tractor, comprising a compressed air source for producing a compressed air flow, a cooler for cooling the air flow produced, and a first air dryer, which is fed with the cooled air flow and via the outlet of which a first pneumatic consumer group can be supplied with dehumidified compressed air in accordance with a first dehumidification and flow capacity, and a second air dryer, which is fed with the cooled air flow and via the outlet of which a second pneumatic consumer group can be supplied with dehumidified compressed air in accordance with a second dehumidification and another flow capacity.
2. The pneumatic supply device of claim 1, wherein the cooled air flow is divided and fed in parallel to the first and the second air dryer.
3. The pneumatic supply device of claim 1, wherein the cooled air flow is first of all passed through the second air dryer and then divided in order to supply the second pneumatic consumer group and the first air dryer.
4. The pneumatic supply device of claim 1, wherein the second pneumatic consumer group is supplied with compressed air via an upstream pressure switching valve, wherein, when a predetermined supply pressure is undershot, the pressure switching valve adopts a closed position, with the result that the cooled air flow is available exclusively to the first pneumatic consumer group.
5. An agricultural tractor, comprising: a compressed air source for producing a compressed air flow, a cooler for cooling the air flow produced, and a first air dryer, which is fed with the cooled air flow and via the outlet of which a first pneumatic consumer group can be supplied with dehumidified compressed air in accordance with a first dehumidification and flow capacity, and a second air dryer, which is fed with the cooled air flow and via the outlet of which a second pneumatic consumer group can be supplied with dehumidified compressed air in accordance with a second dehumidification and another flow capacity.
6. The agricultural tractor of claim 5, wherein the cooled air flow is divided and fed in parallel to the first and the second air dryer.
7. The agricultural tractor of claim 5, wherein the cooled air flow is first of all passed through the second air dryer and then divided in order to supply the second pneumatic consumer group and the first air dryer.
8. The agricultural tractor of claim 5, wherein the second pneumatic consumer group is supplied with compressed air via an upstream pressure switching valve, wherein, when a predetermined supply pressure is undershot, the pressure switching valve adopts a closed position, with the result that the cooled air flow is available exclusively to the first pneumatic consumer group.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
[0016] The pneumatic supply device according to the disclosure for an agricultural tractor is explained in more detail below with reference to the appended drawings.
[0017] Component parts of equivalent or comparable function are identified by the same reference signs. In the drawings:
[0018]
[0019]
[0020] Like reference numerals are used to indicate like elements throughout the several figures.
DETAILED DESCRIPTION
[0021]
[0022] The pneumatic supply device 12, which is accommodated in an agricultural tractor 10 that is not shown specifically, comprises a compressed air source 16, designed as a compressor 14, for producing a compressed air flow Q_komp, a cooler 20, connected to a liquid cooling circuit 18, for cooling the air flow Q_komp produced, and a first air dryer 22, which is fed with the cooled air flow Q_komp and via the outlet 24 of which a first pneumatic consumer group 26 is supplied with dehumidified compressed air in accordance with a first dehumidification and flow capacity, and a second air dryer 28, which is fed with the cooled air flow Q_komp and via the outlet 30 of which a second pneumatic consumer group 32 is supplied with dehumidified compressed air in accordance with a second dehumidification and flow capacity. In this case, the air dryers 22, 28 connected downstream of the cooler 20 serve in each case to remove the condensate that forms during the cooling of the air flow Q_komp, which has heated up due to compression, said condensate being discharged via a respectively associated drainage connection 34, 36. It should be noted here that the cooler 20 does not necessarily have to be designed as an active liquid-air cooler but can also be designed as a passive cooler (based on convection) or an active air-air cooler.
[0023] According to the example, the first pneumatic consumer group 26 is a pneumatic wheel brake device 38 of a trailer that can be attached to the agricultural tractor 10; the second pneumatic consumer group 32, in contrast, can be any other pneumatically operated unit 40 with a higher compressed air consumption but lower requirements on freedom from moisture of the compressed air supplied. By way of example, a blow-off gun that can be connected externally via a compressed air coupling, a tire pressure control system or else pneumatically operated working units of mounted or ancillary implements that can be attached to the agricultural tractor 10 may be mentioned here.
[0024] According to the embodiment of the pneumatic supply device 12 which is illustrated in
[0025] In order to prioritize a supply of compressed air to the first pneumatic consumer group 26, the second pneumatic consumer group 32 is supplied with compressed air via a pressure switching valve 46 connected upstream of the second air dryer 28 in the second supply line 44. As a departure from this, the pressure switching valve 46 may also be located in the second supply line 44 between the second air dryer 28 and the second pneumatic consumer group 32. When a predetermined supply pressure p_min is undershot, the pressure switching valve 46 adopts a closed position, with the result that the cooled air flow Q_komp is available exclusively to the first pneumatic consumer group 26. When the first pneumatic consumer group 26 is a brake system, which is formed by the pneumatic wheel brake device, 38 the correct operation of which always has priority.
[0026]
[0027] As can be seen, the cooled air flow Q_komp coming from the cooler 20 in this further embodiment of the pneumatic supply device 12 first of all passes through the second air dryer 28 and is then divided in order to supply the second pneumatic consumer group 32 and the first air dryer 22. The second air dryer 28 thus serves as a pre-dryer for the first air dryer 22, which is located in the first supply line 42. The flow capacity of the second air dryer 28 or pre-dryer formed thereby is chosen so that it can reliably cover the total compressed air consumption of the two pneumatic consumer groups 26, 32. In this case, the pressure switching valve 46 is arranged in the second supply line 44 between the second air dryer 28 and the second pneumatic consumer group 32.
[0028] While the above describes example embodiments of the present disclosure, these descriptions should not be viewed in a limiting sense. Rather, other variations and modifications may be made without departing from the scope and spirit of the present disclosure as defined in the appended claims.