WEIGHING UNIT USED FOR DETERMINING HAZELNUT PRODUCTIVITY IN HAZELNUT PROCESSING PLANTS
20240255342 ยท 2024-08-01
Assignee
Inventors
Cpc classification
International classification
Abstract
A weighing unit can be used to determine the ratio between the weights of shelled hazelnuts and hazelnut kernels to determine productivity in hazelnut processing plants. The weighing unit includes at least one second chamber in which the hazelnut to be weighed is accumulated in the weighing unit, at least one load cell to which the second chamber is connected to determine the weight of the hazelnut, and at least one first chamber in which hazelnuts can be accumulated so that the hazelnuts needed by the second chamber are fed quickly.
Claims
1. A weighing unit, configured to determine a ratio between weights of shelled hazelnuts and hazelnut kernels to determine productivity in a hazelnut processing plant, and comprising: at least one second chamber in which a hazelnut to be weighed is accumulated in the weighing unit, at least one load cell to which the second chamber is connected to determine a weight of the hazelnut, and at least one first chamber in which hazelnuts are accumulated so that the hazelnuts needed by the second chamber are fed quickly.
2. The weighing unit according to claim 1, wherein the weighing unit is provided separately for shelled hazelnuts and hazelnut kernels in the hazelnut processing plant.
3. The weighing unit according to claim 1, wherein the first chamber contains at least one first opening configured to allow the hazelnut to be dropped, and at least one first cover configured to at least partially restrict a passage of hazelnuts from the first opening.
4. The weighing unit according to claim 1, wherein the second chamber contains at least one second opening configured to allow the hazelnut to be dropped, and at least one second cover configured to at least partially restrict a passage of hazelnuts from the second opening.
5. The weighing unit according to claim 3, wherein at least one of the first cover and a second cover is configured to rotate.
6. The weighing unit according to claim 3, wherein the weighing unit contains at least one drive element to which the weighing unit is connected to move at least one of the first cover and a second cover.
7. The weighing unit according to claim 6, wherein the drive element contains at least one first piston to activate the first cover and at least one second piston to activate the second cover.
8. The weighing unit according to claim 4, wherein at least one of a first cover and the second cover is configured to rotate.
9. The weighing unit according to claim 4, wherein the weighing unit contains at least one drive element to which the weighing unit is connected to move at least one of a first cover and the second cover.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
[0018]
[0019]
[0020]
[0021]
REFERENCE NUMBERS GIVEN IN THE FIGS
[0022] 10 Weighing Unit [0023] 11 Chassis [0024] 12 Ledge [0025] 20 First Chamber [0026] 21 First Opening [0027] 22 First Cover [0028] 30 Second Chamber [0029] 31 Second Opening [0030] 32 Second Cover [0031] 40 Drive Element [0032] 41 First Piston [0033] 42 Second Piston [0034] 50 Load Cell [0035] (I) First Position [0036] (II) Second Position [0037] (III) Third Position
Detailed Description of the Embodiments
[0038] In this detailed description, subject matter of the invention is explained with examples that will not have any limiting effect, for better understanding the subject matter.
[0039]
[0040] The weighing unit (10) essentially works on the working principle of the extraction scale known in the art. In order to do this, there is at least one chassis (11) on the weighing unit (10). Said chassis (11) is essentially the body of the weighing unit (10). There is at least one first chamber (20) and at least one second chamber (30) on the weighing unit (10). In a possible embodiment of the invention, said first chamber (20) and second chamber (30) are positioned on top of each other on the chassis (11). It allows the positioning of shelled hazelnuts or kernels in the first chamber (20) and the second chamber (30). In order to do this, the first chamber (20) and the second chamber (30) are formed with an internal cavity, with at least partially open top and conical lower parts.
[0041] There is at least one first opening (21) on the side of the first chamber (20) facing the second chamber (30). On the other hand, there is at least one second opening (31) on the side of the second chamber (30) facing the floor. While the said first opening (21) allows the hazelnuts in the first chamber (20) to be dropped into the second chamber (30), the said second opening (31) allows the hazelnuts in the second chamber (30) to be transferred to the next processing stage. There are unweighed hazelnuts in the first chamber (20). The purpose of use of the first chamber (20) is that the second chamber (30) can be filled quickly if it needs hazelnuts. The hazelnuts are dropped from the first chamber (20) to the second chamber (30). Passing the hazelnut into the second chamber (30) is provided depending on the force of gravity. In this way, the need for extra energy or equipment is eliminated during the relocation of the hazelnut between the first chamber (20) and the second chamber (30).
[0042] There is at least one first cover (22) on the first chamber (20). Said first cover (22) is positioned around the first opening (21) in order to allow the flow of hazelnuts from the first chamber (20) to the second chamber (30) to be managed. In a possible embodiment of the invention, the first cover (22) is configured to open and close the first opening (21) by at least partially rotating. This rotational movement prevents the hazelnuts from being damaged when the first chamber (20) is opened and closed.
[0043] There is at least one second cover (32) on the second chamber (30). Said second cover (32) is positioned around the second opening (31) such that it allows to control the hazelnut flow from the second chamber (30) to the next process step. In a possible embodiment of the invention, the second cover (32) is configured to open and close the second opening (31) by at least partially rotating. This rotational movement prevents the hazelnuts from being damaged when the second chamber (30) is opened and closed.
[0044] The first cover (22) and the second cover (32) are connected to at least one drive element (40). Said drive element (40) is configured to open and close at least one of the first cover (22) and the second cover (32) with a rotational movement. In a possible embodiment of the invention, the drive element (40) has at least one first piston (41) and at least one second piston (42). Said first piston (41) is associated with the first cover (22), and said second piston (42) is associated with the second cover (32). The first piston (41) and the second piston (42) cause the first cover (22) and the second cover (32) to open and close by stretching out at least partially. The positions of the first cover (22) and the second cover (32) can be determined by the sensors that can be positioned on the first piston (41) and the second piston (42). Thus, the system can be automated.
[0045] In the weighing unit (10), the first chamber (20) is positioned directly on the chassis (11). On the other hand, the second chamber (30) is connected to the chassis (11) such that there is at least one load cell (50) between them. Said load cell (50) is a type of converter used to convert the applied force into an electrical signal. With a mechanical arrangement in this conversion, the perceived force changes the shape of a strain gauge and measures the shape change of the strain gauge as an electrical signal. Thus, it is allowed to determine the weight of the hazelnut in the second chamber (30). The load cell (50) is positioned on at least one ledge (12) provided on the chassis (11). With the said ledge (12), it is ensured that the load cell (50) can be placed according to the form of the second chamber (30). There are essentially two load cells (50) on opposite sides of the second chamber (30). In this way, the sensitivity of determining the weight of the second chamber (30) is improved.
[0046] In a possible use of the invention, the structure will be explained below by being supported by figures.
[0047]
[0048]
[0049]
[0050] As mentioned, there are at least two of these weighing units (10) provided at the hazelnut processing plant for shelled hazelnuts and hazelnut kernels. Depending on the results of measurement made between these two weighing units (10), the yield is determined by taking the difference in weight of the entering shelled hazelnuts and the exiting shelled hazelnuts. This determination can be made for a specific hazelnut cluster, it also allows determination at certain time intervals. Thus, it is ensured that yield determination in hazelnut processing plants can be best done with a mechanical weighing unit (10).
[0051] The scope of protection of the invention is specified in the attached claims and it cannot be limited to what is explained in this detailed description for the sake of example. It is clear that a person skilled in the art can provide similar embodiments in the light of the above, without departing from the main theme of the invention.