Cheese divider and method for measuring a length of a cheese product
Patent Information
- Authority / Receiving Office
- PL · PL
- Patent Type
- Patents
- Current Assignee / Owner
- WEBER FOOD TECHNOLOGY SE & CO KG
- Filing Date
- 2020-07-22
- Publication Date
- 2026-07-20
AI Technical Summary
Industrial cheese processing faces inefficiencies in cutting Euroblocks into uniform portions, leading to uneven slicing and potential empty packaging due to mismatched product bar lengths and slicer tracks, requiring separate length measurement tools and processes.
Integration of a measuring device within the cheese divider to determine the length of cheese products, accompanied by lateral guides and sensors for accurate alignment and measurement, allowing for even distribution of product bars across slicer lanes and reducing the need for additional measurement modules.
Ensures even processing across all slicer lanes, avoids empty packaging, and streamlines the processing line by eliminating the need for separate scanners, saving time and reducing overall length of the food processing plant.
Abstract
Description
[0001] The present invention relates to a cheese divider comprising at least one drive unit and at least one cutting tool. Furthermore, the present invention relates to a method for measuring the length of a cheese product, preferably using the described cheese divider.
[0002] Industrially processed cheese is typically produced in so-called Euroblocks. Euroblocks are cuboid cheese blocks measuring approximately 300 mm x 500 mm x 100 mm and weighing around 15 kg, depending on the type of cheese. To cut these Euroblocks into commercially available portions, they first pass through a cheese divider in a food processing line. This divider cuts the Euroblocks into smaller bars along at least one longitudinal axis. The cheese divider usually has vertical cutting tools, such as blades or wires, through which the Euroblocks are conveyed on a horizontal surface, such as a roller conveyor or a belt conveyor. The resulting bars are then fed to the main cutting plane of the slicing machine, i.e., the slicer, where a rotating cutting blade, preferably on several parallel tracks, slices them.to cut several slices from the product bar.
[0003] One objective of the invention is to provide a cheese divider with extended functionality.
[0004] The problem is solved by a cheese divider having the features of claim 1 and in particular by the fact that the cheese divider has a measuring device for measuring the length of the cheese product.
[0005] Measuring the length of the cheese product is particularly useful when the number of product bars produced per cheese product does not correspond to the number of lanes on the downstream slicer. In such a case, the determined length of the cheese product can be used to distribute the product bars across the different lanes of the slicer so that multiple bars arranged consecutively on each lane have a similar total length or weight. This prevents slicing from continuing on one lane while the cheese product on another is already completely sliced. The overall goal is to load all lanes of the slicer evenly, ensuring that a similar amount of cheese product is processed on each lane and thus avoiding empty packages.Furthermore, measuring the length using the cheese divider allows a robot arm to place the product bars relative to each other in such a way that any offset is as small as possible, without having to measure the bars separately again.
[0006] By integrating length measurement into the cheese slicer, the overall length of a food processing line can be reduced. For example, a separate scanner module is no longer needed to determine the length of the cheese products. In particular, time is saved because the product bars no longer need to be slowly moved past a measuring station.
[0007] Advantageous embodiments of the invention can be found in the dependent claims, the description and the drawings.
[0008] According to one embodiment, at least one lateral guide for the cheese product is provided along the product conveying direction and / or the cutting direction. This ensures that the cheese product is aligned in the product conveying direction or cutting direction, and thus that the measured length corresponds to the actual length of the cheese product. Preferably, the lateral guide is provided in front of and behind a cutting plane of the cheese divider.
[0009] The lateral guide can be fixed to a frame of the cheese divider. However, it is advantageous if the lateral guide is adjustable transversely, and especially vertically, to the product conveying or cutting direction, for example, to accommodate cheese products of different sizes. For this purpose, the lateral guide can be linearly adjustable in an adjustment direction transversely or vertically to the product conveying or cutting direction. Alternatively or additionally, the guide can be pivotally mounted about an axis extending essentially in the product conveying or cutting direction.
[0010] Preferably, a lateral guide for the cheese product is provided on both sides along the product conveying direction and / or separation direction. In this case, at least one of the lateral guides can be adjustable transversely, and in particular vertically, to the product conveying direction or separation direction. Preferably, both lateral guides are adjustable transversely, and in particular vertically, to the product conveying direction or separation direction. Each of the lateral guides can be linearly movable and / or pivotable in the adjustment direction.
[0011] According to one embodiment, at least one lateral guide is actively adjustable. For this purpose, an actuator, for example an electric motor, can be provided to adjust the lateral guide. Preferably, the lateral guide is actively adjustable on both sides.
[0012] To additionally measure the width of the cheese product, the position or movement of at least one lateral guide can be measured. For this purpose, a position detection device, such as a sensor, can be provided that measures the position and / or movement of at least one lateral guide.
[0013] According to one embodiment, the position detection device is integrated into the actuator. For example, the actuator can include a servo motor by means of which the position of the lateral guide driven by the servo motor can be determined. Alternatively, the position of the lateral guide can also be determined by evaluating the motor current. For this purpose, at least one lateral guide can first be moved relatively firmly laterally against the cheese product and then retracted by a predefinable amount.
[0014] Preferably, a stop sensor can be provided which detects when at least one lateral guide reaches a stop against the cheese product during a delivery movement. The stop sensor can then send a signal to the actuator to stop the delivery movement.
[0015] According to one embodiment, the drive unit comprises a slide. The measuring device can also include a position detection device, in particular a position sensor, for the slide. This allows for the simple determination of data on the position of one end of the cheese product. Alternatively or additionally, the length of a given cheese product can be determined by measuring the motor current of the drive unit. For example, the motor current for driving the slide increases when the cheese product first comes into contact with the cutting tools and decreases when the cheese product is completely cut. The length of the cheese product can be calculated particularly easily by using the time difference between the changes in motor current and the travel speed of the drive unit during this period.
[0016] According to a further embodiment, the measuring device comprises a detection element for detecting the beginning and / or end of the cheese product. The detection element is preferably designed as an optical sensor. For example, the detection element can be designed as a laser or as a camera.
[0017] Preferably, the detection field of the detection element is oriented transversely to the product conveying direction and / or separation direction. In particular, the detection field of the detection element can be oriented perpendicular to the product conveying direction and / or separation direction. This allows for easy determination of the beginning and / or end of the cheese product.
[0018] To determine the beginning and / or end of the cheese product using at least one cutting tool, the measuring device can include a load sensor assigned to the cutting tool to measure the load acting on it. As soon as a load exceeding the static load acts on the cutting tool, corresponding to the load when cutting the cheese product, the beginning of the cheese product can be detected. When the load on the cutting tool decreases back to the static load, the end of the cheese product can be detected.
[0019] According to another aspect, a method for measuring the length of a cheese product, in particular a cuboid cheese product, is provided. The method comprises the following steps: Positioning the cheese product on a product conveying line of a cheese divider; conveying the cheese product towards one or more separating tools of the cheese divider, which are designed and configured to separate the cheese product along its longitudinal direction into several product bars; the length of the cheese product is measured during the conveying of the cheese product and / or the movement of a drive unit of the cheese divider.
[0020] The basic idea of this aspect is therefore to carry out a length measurement of the cheese product, at least partially, while the cheese product is in a "waiting position" on the product conveying line, moving towards, through, and / or away from the at least one separating tool on the product conveying line.
[0021] To make the best possible use of the processing time, the length measurement can be performed during the return movement of a slide. For this purpose, a measuring device can be provided on the slide, which measures the cheese product as it moves back along it.
[0022] To ensure the most accurate measurement possible, it is advantageous to guide the cheese product laterally during conveying. Preferably, the cheese product is guided laterally along the entire product conveying path, i.e., before and after a separation plane. For this purpose, a guide can be moved laterally against the cheese product on the conveying path until a guide surface of the guide abuts the cheese product. When the lateral guide is in contact with the cheese product on both sides, the width of the cheese product can be determined by measuring the distance between the lateral guide surfaces of the guide.
[0023] According to one embodiment, at least one functional element of the cheese divider is used for length measurement. This could be, for example, a slider or a cutting tool of the cheese divider. It could also be a sensor that is attached to a section of the cheese divider and / or connected to a control unit of the cheese divider.
[0024] Advantageously, during length measurement, the position of a slider on the cheese divider is used to determine the position of the end of the cheese product. The slider is usually already part of the cheese divider and pushes the cheese product through at least one of the cutting tools. Since the slider is located at the end of the cheese product during conveying, measuring its position allows for a simple determination of the cheese product's location at any given time.
[0025] Alternatively or additionally, in addition to length measurement, a detection element, particularly an optical sensor, can be used to determine whether the cheese product to be cut is at a specific position along the conveyor line at a specific time. Specifically, the detection element can determine whether the beginning and / or end of the cheese product passes through its detection field at any given time. The detection field preferably lies in a plane whose normal vector is aligned in the product conveying direction or cutting direction.
[0026] According to one embodiment, the position of the beginning and end of the cheese product can be determined at a specific time, and the length can be determined based on the distance between these positions in the product conveying direction and / or the separation direction. For example, the position of the beginning of the cheese product can be determined using the load sensor or the detection element, and the corresponding position of the end of the cheese product can be determined simultaneously based on the position of the slide.
[0027] Alternatively, a first time point at which the beginning of the cheese product occupies a specific position along the product conveying line can be determined, and a second time point at which the end of the cheese product occupies the same position can be determined. The time difference between these two points can then be used to calculate the length of the cheese product. For easier calculation, it is advantageous if the cheese product is conveyed at a known, constant speed between the first and second points. Alternatively, the cheese product can be conveyed at a variable speed.In this case, it is advisable to record the speed of the slider over time, to form the integral under the speed curve between the first and second time points, and to calculate a distance corresponding to the length of the cheese product using the integral.
[0028] In addition to or as an alternative to length measurement, a load on the cutting tool can be measured. For example, an increase in load on the cutting tool can be detected to determine that the beginning of a cheese product is at the level of at least one cutting tool, i.e., at the level of the cutting plane. Alternatively or additionally, a decrease in load on the cutting tool can be detected to determine that the end of a cheese product has passed the cutting plane of the cheese divider.
[0029] According to a further embodiment, the motor current of at least one drive of a slide can be measured. Changes in the measured motor current can detect when the slide comes into contact with the cheese product, when the cheese product comes into contact with the cutting tool, or when the cutting tool has completely cut through the cheese product. Preferably, the motor current of the slide drive is used to measure the length of the cheese product. Alternatively or additionally, the motor current of at least one drive of a lateral guide can be measured. This allows detection when the lateral guide comes into contact with the cheese product. Preferably, the motor current of the lateral guide drive is used to determine the width of a cheese product.
[0030] Any combination of the aforementioned process steps is conceivable for measuring the length of the cheese product. For example, it would be possible to detect the beginning of the cheese product with the detection element and to calculate the length of the cheese product using the position of the slider at that point.
[0031] In principle, it is also conceivable to perform two separate length measurements using different functional elements and to compare the two measurements in order to detect measurement errors.
[0032] The invention is described below with reference to purely exemplary embodiments and the accompanying drawings. These show: Fig. 1 a schematic perspective view of a cheese divider according to the invention; Fig. 2 a schematic top view of the cheese divider of Fig. 1 Fig. 3A a schematic representation of a first step of a length measurement according to a first embodiment; Fig. 3B a schematic representation of a second step of a length measurement according to a first embodiment; Fig. 4A a schematic representation of a first step of a length measurement according to a second embodiment; and Fig. 4B a schematic representation of a second step of a length measurement according to a second embodiment.
[0033] Fig. 1 Figure 1 shows a cheese divider 10 with a horizontal support surface 12 for a cheese product 14, which in this example is formed by several rollers 16. The cheese divider 10 also includes a drive unit designed as a slide 18 to push the cheese product through a cutting frame 20 in the product conveying direction 19. The cutting frame 20 contains several cutting tools 22, four in this example (see Figure 1). Fig. 2 ), clamped to separate the cheese product 14 longitudinally into several product bars 24.
[0034] The cheese divider 10 also has a measuring device 26 for measuring a length 28 of the cheese product 14. The measuring device 26 includes a detection element 30, which is designed as a laser. This detection element 30 can be arranged laterally next to a product conveying chamber 32, as shown, and a detection field 34 (see Fig. 2 The detection element 30 defines a detection field 34 that extends perpendicular to the product conveying direction 19 to the other side of the product conveying space 32. The detection element 30 can also be arranged above or below the product conveying space 32 and define a detection field 34 that traverses the product conveying space 32 upwards or downwards. The detection element 30 is designed and configured to detect the movement of a beginning 36 and an end 38 of the cheese product 14 through the detection field 34. The detection element 30 is connected to a central length calculation device 40, so that as soon as the detection element 30 detects a movement of the beginning 36 or the end 38 of the cheese product 14 through the detection field 34, it can transmit this information to the length calculation device 40.
[0035] Furthermore, the measuring device 26 includes a position sensor 42, which measures the actual position of the slide 18 in the product conveying direction 19 and transmits this actual position to the length calculation device 40. In this way, the length calculation device 40 can query the current position of the slide 18 and thus also of the end 38 of the cheese product 14. The measuring device 26 also includes one or more load sensors 44 to measure the load on the cutting tools 22. For example, as in Fig. 1 shown that each of the cutting tools 22 is assigned a load sensor 44 which measures a tensile force acting on the respective cutting tool 22.
[0036] To obtain a precise length measurement, lateral guides 46, 48 are located in front of the cutting frame 20 on both sides of the product conveying area 32 (see Fig. 2 ) arranged. The lateral guides 46, 48 are, as in Fig. 2 As indicated by small arrows, the components are arranged to be linearly movable on a frame 50 of the cheese divider 10. This allows the distance between the lateral guides 46, 48, and thus the width of the product conveying area 32, to be adjusted. As shown in Fig. 2 As can be seen, an actuator 52 is provided to adjust the lateral guide 46 perpendicular to the product conveying direction 19 in the direction of the lateral guide 48. Similarly, an actuator 53 is provided to adjust the lateral guide 48 perpendicular to the product conveying direction 19 in the direction of the lateral guide 46. Furthermore, a position detection device 54 is provided to determine the position of the lateral guide 46 and thus the distance between the guide surfaces 46a and 48a of the lateral guides 46 and 48. This allows the width 56 of the cheese product 14 to be determined.
[0037] In addition, lateral guides 58, 60 are arranged behind the cutting frame 20 on both sides of the product conveying area 32, which also, as in Fig. 2 Indicated by small arrows, these lateral guides 58 and 60 are arranged linearly movable on the frame 50 of the cheese divider 10. Like the lateral guides 46 and 48, these lateral guides 58 and 60 can be moved towards and away from each other by actuators. Alternatively, the lateral guides 46, 48, 58, and 60 can be pivotally arranged on the frame 50, as shown schematically in [Figure 1]. Fig. 4A und 4B shown.
[0038] The Figuren 3A und 3B We show a first embodiment of a method for measuring the length 28 of the cheese product 14 using the cheese divider 10 described above. First, in a first step (see Fig. 3A The cheese product 14 is positioned on the support level 12 at the beginning of a product conveying line 62 of the cheese divider 10. The cheese product 14 is then moved by the pusher 18 along the product conveying line 62 until the cheese product 14, as shown in Fig. 3B The cutting tools 22 are shown to be in contact with the cutting tools 22. This causes the cutting tools 22 to experience increased stress, which is detected by the stress sensor 44. At the time of detection of the increased stress, a signal 65 is sent to the length calculation device 40. At the same time, the length calculation device 40 also reads a position signal 67 of the slide 18, which is determined by the position sensor 42. Using the position of the slide 18 at the time of detection of the increased stress on the cutting tools 22, the length calculation device 40 calculates a distance between the slide 18 and the cutting tools 22, or a cutting plane 64. This distance corresponds to the length 28 of the cheese product 14.
[0039] Similarly, the length 28 of the cheese product 14 can also be determined by measuring when the beginning 36 of the cheese product 14 enters the detection field 34 of the detection element 30 (see Fig. 4A ) the position of the slider 18 is determined and accordingly the length 28 of the cheese product is determined by a distance between the slider 18 and the detection field 34.
[0040] The Figuren 4A und 4B We show a second embodiment of a method for measuring the length 28 of the cheese product 14 using the cheese divider 10 described above. The cheese product 14 is pushed at a known speed along the product conveying path 62 towards the cutting plane 64. When the beginning 36 of the cheese product 14 enters the detection field 34 of the detection element 30, a first signal 66 is generated (see Fig. 4A ) is sent to the length calculation device 40. Meanwhile, the cheese product 14 is pushed along the product conveyor line 62 until the end 38 of the cheese product 14 enters or leaves the detection field 34 of the detection element 30. At this point, a second signal 68 is sent (see Fig. 4B ) is sent to the length calculation device 40. The length calculation device 40 calculates, from a time difference Δt between the signals and the known speed v of the slide 18, using the formula s=v ∗< Δt, a distance s traveled by the cheese product 14 between the first and second signals 66, 68. The distance s traveled corresponds to the length 28 of the cheese product 14.
[0041] To better rule out measurement errors, both of the previously described length measurement methods can be performed simultaneously, thus obtaining redundant measurement results. Bezugszeichenliste
[0042] 10 Cheese divider 12 Support level 14 Cheese product 16 Roller 18 Pusher 19 Product conveying direction 20 Cutting frame 22 Cutting tools 24 Product bar 26 Measuring device 28 Length (cheese product) 30 Detection element 32 Product conveying area 34 Detection field 36 Start (cheese product) 38 End (cheese product) 40 Length calculation device 42 Position sensor 44 Load sensor 46 Lateral guide 46a Guide surface 48 Lateral guide 48a Guide surface 50 Frame 52 Actuator 53 Actuator 54 Position determination device 56 Width (cheese product) 58 Lateral guide 60 Lateral guide 62 Product conveying path 64 Cutting level 65 Signal 66 First signal 67 Position signal 68 second signal
Claims
1. Cheese divider (10) with at least one drive unit (18) and at least one cutting tool (22), wherein the drive unit (18) is designed and configured to convey a cheese product (14) in a product conveying direction (19) through the at least one cutting tool (22) and / or wherein the drive unit is designed and configured to move the at least one cutting tool through the cheese product in a cutting direction, and wherein the cheese divider (10) has a measuring device (26) for measuring the length of the cheese product (14).
2. Cheese divider (10) according to claim 1, wherein a lateral guide (46, 48, 58, 60), in particular on both sides, is provided for the cheese product (14) along the product conveying direction (19) and / or separation direction.
3. Cheese divider (10) according to claim 1 or 2, wherein the drive unit comprises a slide (18) and wherein the measuring device (26) comprises a position sensor (42) for the slide (18).
4. Cheese divider (10) according to at least one of the preceding claims, wherein the measuring device (26) comprises a detection element (30), in particular designed as an optical sensor, for detecting a beginning (36) and / or end (38) of the cheese product (14).
5. Cheese divider (10) according to claim 4, wherein a detection field (34) of the detection element (30) is oriented transversely to the product conveying direction (19) and / or separation direction.
6. Cheese divider (10) according to one of the preceding claims, wherein the measuring device (26) has a load sensor (44) which is assigned to the at least one cutting tool (22) for measuring a load acting on the cutting tool (22).
7. Method for measuring the length (28) of a cheese product (14), in particular a cuboid cheese product (14), comprising the steps of: - positioning the cheese product (14) on a product conveying section (62) of a cheese divider (10); - conveying the cheese product (14) towards one or more cutting tools (44) of the cheese divider (10), which are designed and configured to cut the cheese product (14) along its longitudinal direction into several product bars (24); wherein the length (28) of the cheese product (14) is measured during the conveying of the cheese product (14) and / or a movement of a drive unit (18) of the cheese divider (10).
8. Method according to claim 7, wherein the cheese product (14) is guided laterally during conveying.
9. Method according to claim 7 or 8, wherein at least one functional element (18, 22, 30) of the cheese divider (10) is used for length measurement.
10. Method according to at least one of the preceding method claims, wherein during the length measurement a position of a slider (18) of the cheese divider (10) is used to determine the position of the end (38) of the cheese product (14).
11. Method according to at least one of the preceding method claims, wherein for length measurement by means of a detection element (30), in particular designed as an optical sensor, it is determined whether the cheese product (14) is present at at least one certain position along the product conveying path (62).
12. Method according to at least one of the preceding method claims, wherein at a certain time a position of the beginning (36) of the cheese product (14) and a position of the end (38) of the cheese product (14) is determined and the length (28) is determined based on a distance of the positions in the product conveying direction (19) and / or separation direction, or wherein a first time at which the beginning (36) of the cheese product (14) occupies a certain position along the product conveying path (62) is determined and a second time at which the end (38) of the cheese product (14) occupies the certain position along the product conveying path (62) is determined and a time difference between the first time and the second time is used to calculate the length (28) of the cheese product (14).
13. Method according to at least one of the preceding method claims, wherein a load is measured on the cutting tool (22) for length measurement.
14. Method according to at least one of the preceding method claims, wherein a motor current of at least one drive of a slide (18) and / or a lateral guide (46, 48, 58, 60) is measured.