The invention relates to a chopping unit of a forage harvester and to a shear bar for a chopping unit.
DE 196 52 656 B4 discloses a chopping unit of a forage harvester, said chopping unit having a chopping drum which bears a plurality of chopping blades. The chopping unit also has a shear bar for the chopping blades, which is mounted on a shear bar holder. The shear bar holder is also referred to as a saddle or anvil. Beneath the chopping drum there extends a base element which is configured as a base plate, wherein the base element is fastened releasably to the shear bar holder with a portion facing the shear bar holder. The shear bar of the chopping unit according to DE 196 52 656 B4 comprises a top side facing away from the shear bar holder and an underside facing the shear bar holder, wherein the top side of the shear bar and the underside of the shear bar extend continuously parallel to one another as seen in the axial direction of the chopping drum and are inclined away from the chopping drum.
DE 196 51 694 A1 discloses a further chopping unit of a forage harvester having a shear bar. According to DE 196 51 694 A1, the shear bar has, on its top side facing the entering harvested material and facing away from the shear bar holder, shaped profiles, the borders of which regionally form longitudinal cutters which extend in the direction of flow of the harvested material, wherein at least one cross cutter is arranged downstream of the longitudinal cutters.
All of the shear bars, known from the prior art, of chopping units are designed to optimize cutting in the region of the chopping drum. As a result, the ease of reception of the chopping drum for the harvested material can drop and a blockage tendency can increase.
There is a need for a chopping unit of a forage harvester which is characterized by high ease of reception of the chopping drum with regard to the harvested material to be chopped up, and in which a so-called blockage tendency is reduced. Furthermore, there is a need for a shear bar for such a chopping unit.
On this basis, the present invention is based on the object of creating a novel chopping unit of a forage harvester and a shear bar for a chopping unit.
This object is achieved by a chopping unit of a forage harvester as claimed in claim 1. According to the invention, the top side, facing away from the shear bar holder, of the shear bar is contoured such that the top side of the shear bar is inclined, at least in a top-side portion facing the chopping drum, continuously in the direction of the chopping drum in the contact region with the chopping blades, as seen in the axial direction of the chopping drum.
On account of the inclination angle, dropping continuously in the direction of the chopping drum as seen in the axial direction of the chopping drum, of the top-side portion, facing the chopping drum, of the shear bar, the ease of reception of the chopping drum is increased and the blockage tendency reduced. The shear bar has no elevations or the like as seen in the axial direction of the chopping drum, and so the harvested material passes into the region of the chopping drum without any obstructions.
According to one development, the top side, facing away from the shear bar holder, of the shear bar is contoured in the top-side portion facing the chopping drum such that a first segment forming the cutting edge extends parallel or approximately parallel to an underside, facing the shear bar holder, of the shear bar, and such that a second segment, adjoining this first segment, is inclined in the direction of the chopping drum. This development not only ensures increased ease of reception of the drum and a reduction in the blockage tendency, but also ensures an optimum cutting angle for the harvested material to be chopped up in the region of the cutting edge configured as a cross cutter.
According to one development, the top side, facing away from the shear bar holder, of the shear bar is inclined continuously away from the chopping drum, as seen in the axial direction of the chopping drum, in a top-side portion facing away from the chopping drum. As a result, it is possible that, when the shear bar has become worn, to turn the shear bar and to reuse the latter.
Preferred developments of the invention can be gathered from the dependent claims and the following description. Exemplary embodiments of the invention are explained in more detail on the basis of the drawing, without being limited thereto. In the drawing:
The invention relates to a chopping unit of a forage harvester.
Furthermore, the invention relates to a shear bar for a chopping unit of a forage harvester.
The chopping drum 11 of the chopping unit 10 bears a plurality of chopping blades 15, wherein two such chopping blades 15 are shown in
In the exemplary embodiment, shown in
A virtual extension of the top side 20 of the shear bar 16 intersects a straight line, representing the direction of the flow of material X at a virtual intersection point, which is positioned upstream of the chopping drum 11 as seen in the direction of the flow of material X.
Accordingly, according to the invention, in the exemplary embodiment in
As a result, the ease of reception of the chopping drum 11 is increased and a blockage tendency in the region of the precompression rolls 12, 13 and of an intake housing is reduced. Harvested material passes into the region of the chopping drum 11 without any obstructions or the like.
The top side 20, facing away from the shear bar holder 17, of the shear bar 16 is in this case contoured such that that segment 24 of the top side 20 of the shear bar 16 that forms the cutting edge 21 serving as a cross cutter extends parallel or approximately parallel to an underside 25, facing the shear bar holder 17, of the shear bar 16, and is accordingly not inclined in the direction of the chopping drum 11, whereas the segment 23, adjoining this segment 24, of the top side 20 of the shear bar 16 is inclined in the direction of the chopping drum 11, specifically, as described with reference to
As a result of the configuration in
The segments 23 and 24 of the top side 20 of the shear bar 16 are each contoured continuously in the same shape as seen in the axial direction of the chopping drum 11—at least in the contact region with the chopping blades—such that no elevations or the like are formed in the region of the two segments 23, 24.
A further exemplary embodiment of a chopping unit 10 according to the invention is shown in
The intersection line 28 of the two top-side portions 26, 27 extends in this case in the axial direction of the chopping drum 11, wherein the two top-side portions 26, 27 are preferably formed symmetrically with respect to this intersection line 28, such that, by simply turning the shear bar 16 after the cutting edge 21 has become worn, the opposite edge 22 can be used as a new cutting edge.
A further exemplary embodiment of the invention is shown in
Thus, in the exemplary embodiment in
As a result of the contouring according to the invention of the shear bar 16 in the region of its top side 20 facing away from the shear bar holder 17, the ease of reception of the chopping drum 11 with respect to the harvested material to be chopped up is increased. A blockage tendency in the region of the precompression rolls 12, 13 or of an intake housing is reduced.
The symmetrical configuration of the exemplary embodiments in
In this case, the embodiment in
A further exemplary embodiment of a chopping unit 10 according to the invention is shown in
In a manner corresponding to the exemplary embodiments according to
A correspondingly designed shear bar 16 can be used in the illustrated installation position with regard to the direction of the flow of material X for problematic harvesting conditions. For more favorable harvesting conditions, a shear bar 16 contoured as per
With the above-described chopping units and shear bars according to the invention, the harvesting result can be improved in particular in the case of problematic harvesting conditions, such as in the case of wet, sticky grass.
Number | Date | Country | Kind |
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102017107025.7 | Mar 2017 | DE | national |
Number | Name | Date | Kind |
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4298170 | Snavely | Nov 1981 | A |
4651936 | Fleming | Mar 1987 | A |
5340042 | Bergkamp | Aug 1994 | A |
5713525 | Morey | Feb 1998 | A |
5829700 | Pianca et al. | Nov 1998 | A |
20170113227 | Smeets | Apr 2017 | A1 |
Number | Date | Country |
---|---|---|
2806311 | Aug 1979 | DE |
3526398 | Jul 1986 | DE |
3526398 | Jul 1986 | DE |
3526398 | Feb 1987 | DE |
8813953 | Jan 1989 | DE |
19650058 | Jun 1998 | DE |
19651694 | Jun 1998 | DE |
19651694 | Jun 1998 | DE |
19652656 | Jun 1998 | DE |
19918553 | Oct 2000 | DE |
102013011088 | Jan 2016 | DE |
2298064 | Mar 2011 | EP |
1183637 | Oct 1957 | FR |
2329181 | May 1977 | FR |
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EP2298064A1 machine translation (Year: 2010). |
EP2298064A1 (Year: 2010). |
FR1183637 machine translation (Year: 1957). |
FR1183637 (Year: 1957). |
DE3526398A1 (Year: 1986). |
DE3526398A1 Mt (Year: 1986). |
DE19651694A1 machine translation (Year: 1998). |
DE19651694A1 (Year: 1998). |
DE3526398A1 (Jul. 24, 1986) MT, Reber, etalia (Year: 1986). |
DE 19 651 694 A1 Complete (Jun. 25, 1998), Foegling (Year: 1998). |
Reber, etalia (DE 3526398) (Year: 1986). |
Number | Date | Country | |
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20180279560 A1 | Oct 2018 | US |