DEVICE FOR REMOVING LEAVES FROM ROOT CROPS
20200323128 ยท 2020-10-15
Assignee
Inventors
Cpc classification
International classification
Abstract
The invention relates to a device for removing leaves from root crops, such as carrots, comprising sets of bars and sets of bearing blocks, each of the bars having ends rotatably mounted to their respective bearing blocks, thereby enabling simultaneous rotation, and each bar being substantially rotationally symmetrical with respect to rotation over 180 around a symmetry axis. Each bar is further releasably fixable in the device, such that when fixed in the device in a first position, each bar is releasable, is turnable over 180 around the symmetry axis for placing it in a second position, and is fixable in the second position in the device. The invention also relates to a bar for such a device, to a harvesting machine comprising such a device, and to a method for maintenance of such a device.
Claims
1. A device for removing leaves from root crops, the device comprising: sets of bars; and sets of bearing blocks, wherein each bar in each set of bars comprises ends rotatably mounted to its respective bearing blocks in each set of bearing blocks, thereby enabling simultaneous rotation, and wherein each bar in each set of bars is substantially rotationally symmetrical with respect to rotation over 180 around a symmetry axis and is releasably fixable in the device such that, when fixed in the device in a first position, each bar in each set of bars is releasable, is turnable over 180 around the symmetry axis for placing each bar in each set of bars in a second position, and is fixable in the second position in the device.
2. The device of claim 1, wherein each bearing block in each set of bearing blocks is releasably fixable in the device and is able to releasably fix each bar in each set of bars.
3. The device of claim 2, wherein each bearing block in each set of bearing blocks is interchangeable.
4. The device of claim 1, wherein each bar in each set of bars is interchangeable.
5. The device of claim 1, wherein each bar in each set of bars comprises a knife blade, and wherein a cross-section of the knife blade is line symmetrical with respect to the symmetry axis.
6. The device of claim 1, wherein a mutual position of the sets of bars is adjustable, and further comprising one or more adjusters for adjusting the mutual position.
7. The device of claim 6, wherein the one or more adjusters further comprises: distance adjusters for adjusting a position of each bearing block at a first end of the sets of bars towards and away from each other, and/or distance adjusters for adjusting a position of each bearing block at a second end of the sets of bars towards and away from each other.
8. The device of claim 6, wherein the one or more adjusters further comprises one or more angle adjusters for adjusting a position of the sets of bearing blocks such that the sets of bars can be positioned either in phase with each other or out of phase with each other.
9. A bar for a device for removing leaves from root crops, the bar comprising: cranked ends, each cranked end comprising a mounting pin for mounting the bar in the device, wherein the bar is rotationally symmetrical with respect to rotation over 180 around a symmetry axis.
10. The bar of claim 9, wherein the device is a device according to claim 1.
11. A harvesting machine for harvesting root crops, the harvesting machine comprising: a device for removing leaves from root crops, wherein the device is a device according to claim 1.
12. A method for maintaining a device that removes leaves from root crops, the method comprising: mounting at least one bar in a device that removes leaves from root crops in a first position; demounting the at least one bar from the device; turning the at least one bar over by 180 with respect to a symmetry axis; mounting the at least one bar in the device in a second position.
13. The method of claim 12, wherein the device further comprises at least one set of bearing blocks, and wherein the at least one bar is mounted to each bearing block in the at least one set of bearing blocks.
14. The method of claim 13, further comprising: demounting the at least one set of bearing blocks, thereby demounting the at least one bar; and mounting the at least one set of bearing blocks, thereby mounting the at least one bar.
15. The method of claim 14, wherein the at least one bar is demounted and mounted together with its corresponding bearing blocks in the at least one set of bearing blocks.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
[0027] The accompanying drawings, which are incorporated herein and form a part of the specification, illustrate exemplary embodiments and, together with the description, further serve to enable a person skilled in the pertinent art to make and use these embodiments and others that will be apparent to those skilled in the art.
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DETAILED DESCRIPTION
[0040] The present invention is more fully described below with reference to the accompanying figures. The following description is exemplary in that several embodiments are described (e.g., by use of the terms preferably, for example, or in one embodiment); however, such should not be viewed as limiting or as setting forth the only embodiments of the present invention, as the invention encompasses other embodiments not specifically recited in this description, including alternatives, modifications, and equivalents within the spirit and scope of the invention. Further, the use of the terms invention, present invention, embodiment, and similar terms throughout the description are used broadly and not intended to mean that the invention requires, or is limited to, any particular aspect being described or that such description is the only manner in which the invention may be made or used. Additionally, the invention may be described in the context of specific applications; however, the invention may be used in a variety of applications not specifically described.
[0041] In the several figures, like reference numerals may be used for like elements having like functions even in different drawings. The embodiments described, and their detailed construction and elements, are merely provided to assist in a comprehensive understanding of the invention. Thus, it is apparent that the present invention can be carried out in a variety of ways, and does not require any of the specific features described herein. Also, well-known functions or constructions are not described in detail since they would obscure the invention with unnecessary detail. Any signal arrows in the drawings/figures should be considered only as exemplary, and not limiting, unless otherwise specifically noted. Further, the description is not to be taken in a limiting sense, but is made merely for the purpose of illustrating the general principles of the invention, since the scope of the invention is best defined by the appended claims.
[0042] It will be understood that, although the terms first, second, etc. may be used herein to describe various elements, these elements should not be limited by these terms. These terms are only used to distinguish one element from another. Purely as a non-limiting example, a first element could be termed a second element, and, similarly, a second element could be termed a first element, without departing from the scope of example embodiments. As used herein, the term and/or includes any and all combinations of one or more of the associated listed items. As used herein, the singular forms a, an, and the are intended to include the plural forms as well, unless the context clearly indicates otherwise. It should also be noted that, in some alternative implementations, the functions and/or acts noted may occur out of the order as represented in at least one of the several figures. Purely as a non-limiting example, two figures shown in succession may in fact be executed substantially concurrently or may sometimes be executed in the reverse order, depending upon the functionality and/or acts described or depicted.
[0043] Generally, the present invention is directed to a device for removing leaves from root crops, such as carrots, beetroots, sugar beets, radishes, turnips, or the like, and, in particular, a device comprising sets of bars and sets of bearing blocks, the bars of each set of bars having ends being rotatably mounted to their respective bearing blocks, thereby achieving simultaneous rotation. Each bar may be substantially rotationally symmetrical with respect to rotation over 180 around a symmetry axis and being releasably fixable in the device, such that when fixed in the device in a first position, each bar is releasable, is turnable over 180 around the symmetry axis for placing it in a second position, and is fixable in this second position in the device.
[0044] Turning now to
[0045] In the case of the harvesting machine (1), carrots are removed from the soil with plow blades, which are not illustrated. These carrots are then moved upwards between two conveyor belts (18) towards the device (2) for removing the leaves from these carrots. The device (2) shears or tears the leaves from the rest of the carrots, which drop down. The leaves are further moved forward by the same conveyor belts (18).
[0046] The device (2) comprises a first set (3a) of bars (4a) and bearing blocks (5a, 6a) and a second set (3b) of bars (4b) and bearing blocks (5b, 6b).
[0047] In the various figures, the bars (4a, 4b) are provided as knives (4a, 4b). Each knife (4a, 4b) comprises a knife blade (17) and cranked ends (16). Each cranked end (16) is provided with a mounting pin (8) for mounting the knife (4a, 4b) in the respective bearing block (5a, 5b, 6a, 6b).
[0048] As can be seen in
[0049] Further, all knives (4a, 4b) illustrated in the various figures are identical, although one of skill in the art will appreciate that such identity is not mandatory.
[0050] The knives (4a, 4b) of each set (3a, 3b) have ends that are rotatably mounted to their respective bearing blocks (5a, 5b, 6a, 6b) of the corresponding set (3a, 3b), thereby enabling simultaneous rotation.
[0051] The bearing blocks (5a, 5b, 6a, 6b) comprise a central bore (9) and secondary bores (10), which are equally spaced around the central bore (9). The secondary bores (10) extend parallel to the central bore (9).
[0052] The mounting pins (8) of the knives (4a, 4b) are journaled in the secondary bores (10). These mounting pins (8) are rotatably mounted in these secondary bores (10) by means of roller bearings (15).
[0053] The bearing blocks (5a, 5b) at the top of the bars (4a, 4b) are driving bearing blocks (5a, 5b). A driving shaft (13) which can be driven by means of a driver (19), is journaled and secured in the central bore (9) of each driving bearing block (5a, 5b). This driving shaft (13) is rotatably mounted in the device by means of a bearing attachment (21).
[0054] The bearing blocks (6a, 6b) at the bottom of the bars (4a, 4b) are driven bearing blocks (6a, 6b). A rotatable shaft (14) is journaled and secured in the central bore (9) of each driven bearing block (6a, 6b). This rotatable shaft (14) is rotatably mounted in the device by means of a bearing attachment (25).
[0055] It should be appreciated that all of the bearing blocks (5a, 5b, 6a, 6b) illustrated in the various figures are identical, but such identity is not mandatory.
[0056] At both ends, a cover plate (11, 12) is fixed to the respective bearing blocks (5a, 5b, 6a, 6b) by one or more mechanisms, including, as a non-limiting example, bolts (20), in order to protect the roller bearings (15) from dirt. Both cover plates (11, 12) can be fixed to the respective shafts (13,14) by one or more mechanisms, including, as a non-limiting example, by welding. Alternatively, these cover plates (11, 12) could be fixed to the respective bearing blocks (San 5b, 6a, 6b) by means of any other mechanism known in the art, e.g., press fitting.
[0057] In order to remove the leaves from the carrots with the device (2), the carrots enter between the bars (4a, 4b) of the device (2) while these bars (4a, 4b) are rotated. In order to rotate the bars (4a, 4b), the driving bearing blocks (5a, 5b) of both sets (3a, 3b) of bars (4a, 4b) and the driven bearing blocks (6a, 6b) are rotated around their rotation axis (R.sub.m), such that the bars (4a, 4b) travel in an elliptical path. The bars (4a) of the first set (3a) move in one direction, while the bars (4b) of the other set (3b) move in another direction that is in counter-rotation to the one direction. The bars (4a, 4b) rotate in the bearing blocks (5a, 5b, 6a, 6b) around their rotation axis (R.sub.e) to maintain their orientation with respect to the carrots.
[0058] As illustrated in the various figures, the knives (4a) from the first set (3a) can be disassembled from the device (2) as follows. The bolts (23) and nuts with which the driven bearing block (6a) is mounted to a mounting frame (24) (see
[0059] The first set (3a) can then be turned over 180 such that the driving bearing block (5a) is lowered to take the place of the driven bearing block (5b) and vice versa. The first set (3a) is then mounted in the reverse order.
[0060] Alternatively, it is also possible only to demount one single knife (4a) from the first set (3a) individually from the bearing blocks (5a, 6a), turn this knife (4a) over 180, mount this knife (4a) back in the bearing blocks (5a, 6a) and then to mount the whole set (3a) again.
[0061] The knives (4b) of the second set (3b) can be disassembled, turned, and mounted in a similar way.
[0062] In the mounted position, the mutual position of the sets (3a, 3b) is adjustable. The sets are resiliently suspended in the device (2) by means of springs (22) and rotatable around rotation axes T (see
[0063] One of skill in the art will recognize that, during operation of the device (2), the greatest wear of the knives occurs in the zone between arrows A and B, as illustrated in
[0064] The sets (3a, 3b) can furthermore be rotationally positioned relative to each other such that the knives (4a, 4b) can be positioned either out of phase with each other (see