An adjustable strip cutter for food processing
By designing an adjustable strip cutting machine, the continuous automatic cutting of food is achieved by using the transportation components and cutting components driven by servo motors, and the automatic classification and collection of classification components is solved, and the problems of poor continuous processing performance, poor versatility and cumbersome post-segment processing in the prior art are solved, and the processing efficiency and practicality of the equipment are improved.
Patent Information
- Application Number
- CN202510315842.4
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2025-03-18
- Publication Date
- 2025-05-30
- Estimated Expiration
- 2045-03-18
AI Technical Summary
The existing strip cutters and slicers have problems such as poor continuous processing performance, poor versatility and complicated post-segment processing procedures in food processing.
An adjustable strip cutting machine is designed, using servo motor-driven transportation components and cutting components to realize continuous automatic cutting of food, and automatically sorting and collecting the cut food through classification components.
It improves the continuous processing performance and versatility of food cutting, can perform strip cutting and slice processing, and adjusts the cutting size according to needs, simplifies the segmentation post-processing process, and improves the practicality of the equipment.
Smart Images

Figure CN119839916B_ABST
Abstract
Description
Technical Field
[0001] The present invention relates to the technical field of food processing equipment, and specifically to an adjustable strip cutter for food processing. Background Art
[0002] In the process of food processing, after classification and screening of potato crops (such as sweet potatoes, potatoes), those with qualified thickness need to be cut into strips or slices for processing into dehydrated vegetables (such as sweet potato strips, potato strips), French fries, sweet potato strip fruit chips, dried sweet potatoes, etc. For mass production, a strip cutter or slicer is generally used to process them according to processing requirements.
[0003] During the use of existing strip cutters and slicers, deficiencies have gradually emerged, mainly in the following aspects:
[0004] First, the continuous processing performance is poor, resulting in low processing efficiency. Specifically, when existing strip cutters and slicers divide food, first the food is placed in the equipment, then the push plate is manually pushed to make the food pass through the dividing tool to divide the food, and finally the push plate is reset. From the processing process, it can be seen that the equipment can only process single food one by one. Only after the previous food completes the above processing process can the next food be processed. Therefore, the continuous processing performance of the equipment is poor, and the manual processing process is time-consuming and laborious, thus resulting in low processing efficiency.
[0005] Second, the versatility is poor. Specifically, existing strip cutters and slicers have single functions. A strip cutter can only perform strip cutting, and a slicer can only perform slicing, and the dividing size cannot be adjusted. Therefore, the versatility is poor.
[0006] Third, the post-processing procedures after division are cumbersome. Specifically, after food division, classification is required. The middle part of potato crops after division has regular shapes and is generally large, usually used for making high-end foods, while the edge parts have uneven appearances and are smaller, usually used for making ordinary foods. After the potato crops are divided, manual screening and classification are required. Therefore, the post-processing procedures after division are cumbersome.
[0007] In summary, it is obvious that there are inconveniences and defects in the actual use of the existing technology, so it is necessary to improve it. Summary of the Invention
[0008] Aiming at the defects in the existing technology, the technical problem to be solved by the present invention is to provide an adjustable strip cutter for food processing. This equipment has good continuous processing performance and can continuously cut food. The cutting processes of several adjacent foods do not affect each other and proceed step by step, and the cutting process is fully automated, greatly shortening the cutting cycle and improving the cutting efficiency;
[0009] The device has high versatility. It can not only perform strip cutting, but also slicing, and the cutting size can be adjusted according to processing requirements.
[0010] After the device divides food, it can automatically classify and collect it, simplifying the post-separation processing procedures and improving the practicality of the device.
[0011] To solve the above problems, the present invention provides the following technical solutions:
[0012] An adjustable strip cutter for food processing, including a support base. A fixed cylinder and a protective cylinder are detachably arranged on the top of the support base. A transportation component is arranged between the fixed cylinder and the protective cylinder. A pushing component is arranged in the fixed cylinder. A cutting component and a classification component are arranged in the protective cylinder. The transportation component, the pushing component, the cutting component, and the classification component are synchronously rotatably arranged.
[0013] The pushing component includes a driving shaft rotatably connected to the inner wall of the fixed cylinder. Two fixed circular plates are fixedly sleeved on the outer wall of the driving shaft. A plurality of electric control telescopic cylinders are circumferentially distributed at the end of one of the fixed circular plates. The telescopic end of the electric control telescopic cylinder is fixedly connected to a connecting rod. One end of the connecting rod penetrates through the other fixed circular plate and is fixedly connected to a pushing plate. The connecting rod is slidably connected to the fixed circular plate.
[0014] The transportation component includes a protective cover detachably connected to the fixed cylinder and the protective cylinder. A driven shaft is arranged in the protective cover. Both ends of the driven shaft are rotatably connected to the protective cover. One end of the driving shaft extends outside the fixed cylinder and is fixedly sleeved with two driving sprockets. Two driven sprockets are fixedly sleeved on the driven shaft. The driving sprockets are connected to the driven sprockets through an L-shaped accessory roller chain. A detachable V-shaped clamping plate is arranged on the L-shaped accessory of the L-shaped accessory roller chain.
[0015] As an optimized solution, the cutting component includes two rotating circular plates. The rotating circular plate close to the V-shaped clamping plate is fixedly sleeved on the outer wall of the driving shaft. The other rotating circular plate is slidably sleeved on the outer wall of the driving shaft. A plurality of through rectangular grooves are circumferentially distributed at the end of the rotating circular plate. A fixed rectangular frame is fixedly installed on the inner wall of the rectangular groove. A plurality of limiting grooves are arranged side by side at the end of the fixed rectangular frame. A cutting knife is inserted into the limiting groove. A limiting rectangular frame for limiting the cutting knife is arranged at the end of the fixed rectangular frame. The limiting rectangular frame is detachably connected to the fixed rectangular frame. The cutting knives on the two rotating circular plates are perpendicular to each other.
[0016] A detachable positioning rectangular frame is arranged at the end of the pushing plate. A plurality of slots are arranged side by side at the end of the positioning rectangular frame. An insertion plate is inserted into the slot. The insertion plate is parallel and staggered with the cutting knife close to the V-shaped clamping plate.
[0017] As an optimized solution, the classification component includes a connecting pipe slidably sleeved on the outer wall of the driving shaft. Rotating circular plates are fixedly sleeved at both ends of the connecting pipe. A number of through rectangular holes are circumferentially distributed at the end of the rotating circular plate. A number of horizontally through first positioning grooves are arranged in parallel on one group of opposite inner walls of the rectangular hole. A number of horizontally through second positioning grooves are arranged in parallel on the other group of opposite inner walls of the rectangular hole. Two first partition plates and two second partition plates are arranged between the rectangular holes facing each other of the two rotating circular plates. The first partition plate is perpendicular to the cutting knife close to the V-shaped clamping plate. The opposite ends of the first partition plate are inserted into the first positioning grooves. A number of through avoidance grooves are arranged in parallel at the end of the first partition plate. The second partition plate is inserted into and perpendicular to the first partition plate. The opposite ends of the second partition plate are inserted into the second positioning grooves. A pressing strip for limiting the first partition plate is arranged at the end of one of the rotating circular plates. The pressing strip is detachably connected to the rotating circular plate.
[0018] As an optimized solution, a conductive slip ring rotatably connected to it is sleeved at the position of the outer wall of the driving shaft inside the fixed cylinder. The conductive slip ring is fixedly connected to the fixed cylinder. The electric control telescopic cylinder is electrically connected to an external power supply through the conductive slip ring.
[0019] As an optimized solution, a servo motor is fixedly arranged at the end of the fixed cylinder. One end of the driving shaft horizontally penetrates the fixed cylinder and is fixedly connected to the output end of the servo motor.
[0020] As an optimized solution, a stop cylinder abutted against it is arranged at the end of one of the rotating circular plates. The inner diameter of the stop cylinder is larger than the diameter of the driving shaft. A through circular groove is arranged at the end of the stop cylinder. A stop bolt threadedly connected to the driving shaft is inserted into the circular groove.
[0021] As an optimized solution, collection boxes are arranged at both positions on the top of the support base on both sides of one of the rotating circular plates.
[0022] Compared with the prior art, the beneficial effects of the present invention are:
[0023] 1. When cutting food, the servo motor drives the drive shaft to rotate, which in turn drives the drive sprocket, L-shaped accessory roller chain, and driven sprocket to rotate, thereby driving the V-shaped clamping plate to rotate. The staff puts food into the V-shaped clamping plate passing through the protective cover, and the V-shaped clamping plate conveys the food. At the same time, the drive shaft drives the fixed circular plate, rotating circular plate, and rotating circular plate to rotate. When the V-shaped clamping plate rotates upward until its two ends are exactly opposite to the push plate and the fixed rectangular frame, the V-shaped clamping plate and the corresponding push plate and fixed rectangular frame rotate synchronously along the axis of the drive shaft. The electric control telescopic cylinder drives the connecting rod to slide horizontally, and the push plate and the insertion plate move horizontally into the V-shaped clamping plate and push the food towards the cutting knife for cutting. During the downward rotation of the V-shaped clamping plate, the insertion plate pushes the food to completely pass through the cutting knife to complete the cutting. Then the push plate resets and repeats the above process to continuously cut the food. This equipment has good continuous processing performance, can continuously cut food, the cutting processes of adjacent several foods do not affect each other and proceed step by step, and the cutting process is fully automated, greatly shortening the cutting cycle and improving the cutting efficiency;
[0024] 2. When cutting the food into strips, during the horizontal movement of the food in the V-shaped clamping plate pushed by the insertion plate, the food is first divided into slices by the cutting knife on the first rotating circular plate, and the sliced food is divided into strips by the cutting knife on the second rotating circular plate. When the end of the insertion plate passes through the gap between the cutting knives on the first rotating circular plate and contacts the cutting knife on the second rotating circular plate, the cutting of the food into strips is completed. When slicing the food, remove the stop cylinder to release the restriction on the two rotating circular plates and the rotating circular plate in the middle position, remove the rotating circular plate in the middle position, and fix the two rotating circular plates again through the stop cylinder. During the horizontal movement of the food in the V-shaped clamping plate pushed by the insertion plate, the food is divided into slices by the cutting knife on the first rotating circular plate, and the end of the insertion plate enters the gap between the cutting knives on the first rotating circular plate to complete the slicing of the food. When cutting food strips or food slices of different sizes, first remove the limit rectangular frames on the two rotating circular plates and insert the cutting knives into the limit slots corresponding to the processing sizes, and then remove the positioning rectangular frames and insert the insertion plate into the corresponding slots, thereby completing the adjustment of the cutting size. This equipment has high versatility, can not only perform strip cutting processing, but also perform slicing processing, and the cutting size can be adjusted according to processing requirements;
[0025] 3. During the process of cutting the food into strips, the food is divided into strips by the cutting knives on the second rotating circular plate. The strips in the middle part of the food enter the middle area enclosed by the first partition plate and the second partition plate, and the strips at the edge part of the food enter other areas enclosed by the first partition plate and the second partition plate. During the rotation of the rotating circular plate, the strips in the other areas enclosed by the first partition plate and the second partition plate fall into the collection box between the two rotating circular plates. With the continuous cutting of the food, the strips in the middle area enclosed by the first partition plate and the second partition plate are continuously pushed out and collected in another collection box. When cutting strips of different sizes, the positions of the first partition plate and the second partition plate are adjusted correspondingly to prevent interference with the pushed-out strips. During the process of slicing the food, the two first partition plates are respectively inserted into the two outermost first positioning grooves to prevent interference between the pushed-out food slices and the first partition plate. Similarly, the slices at the edge part fall into the collection box between the two rotating circular plates through the other areas enclosed by the first partition plate and the second partition plate, and the slices in the middle part fall into another collection box through the middle area enclosed by the first partition plate and the second partition plate. When cutting slices of different sizes, the position of the second partition plate is adjusted correspondingly to prevent interference between the pushed-out food slices and the second partition plate. This device can automatically classify and collect the divided food, simplifying the post-processing procedures after division and improving the practicability of the device. BRIEF DESCRIPTION OF THE DRAWINGS
[0026] In order to more clearly illustrate the specific embodiments of the present invention or the technical solutions in the prior art, the following will briefly introduce the drawings required for use in the description of the specific embodiments or the prior art. In all the drawings, similar elements or parts are generally identified by similar reference numerals. In the drawings, the elements or parts are not necessarily drawn to scale.
[0027] Figure 1 Structural schematic diagram of the present invention;
[0028] Figure 2 Structural schematic diagram of the interior of the fixed cylinder of the present invention;
[0029] Figure 3 Structural schematic diagram of the interior of the protective cylinder of the present invention;
[0030] Figure 4 Structural schematic diagram of the transportation component of the present invention;
[0031] Figure 5 Structural schematic diagram of the rotating circular plate of the present invention;
[0032] Figure 6 Structural schematic diagram of the fixed rectangular frame and the limiting rectangular frame of the present invention;
[0033] Figure 7Schematic structural diagram of the cutting knife of the present invention;
[0034] Figure 8 Schematic structural diagram of the positioning rectangular frame of the present invention;
[0035] Figure 9 Schematic structural diagram of the classification component of the present invention;
[0036] Figure 10 Schematic structural diagram of the interior of the rectangular hole of the present invention;
[0037] Figure 11 Schematic structural diagram of the first partition plate and the second partition plate of the present invention;
[0038] Figure 12 Schematic structural diagram of the interior of the connecting pipe of the present invention.
[0039] In the figure: 1 - support base; 2 - servo motor; 3 - fixed cylinder; 4 - transportation component; 5 - protective cylinder; 6 - protective cover; 7 - drive shaft; 8 - connecting rod; 9 - push plate; 10 - pushing component; 11 - electric control telescopic cylinder; 12 - fixed circular plate; 13 - conductive slip ring; 14 - positioning rectangular frame; 15 - slot; 16 - plug board; 17 - drive sprocket; 18 - L-shaped accessory roller chain; 19 - V-shaped clamping plate; 20 - driven sprocket; 21 - driven shaft; 22 - collection box; 23 - classification component; 24 - cutting component; 25 - rotating circular plate; 26 - rectangular groove; 27 - cutting knife; 28 - limiting groove; 29 - fixed rectangular frame; 30 - limiting rectangular frame; 31 - rotating circular plate; 32 - pressing strip; 33 - second partition plate; 34 - first partition plate; 35 - rectangular hole; 36 - connecting pipe; 37 - second positioning groove; 38 - first positioning groove; 39 - avoidance groove; 40 - circular groove; 41 - stop bolt; 42 - stop cylinder. Detailed implementation manners
[0040] The embodiments of the technical solution of the present invention will be described in detail below with reference to the accompanying drawings. The following embodiments are only used to illustrate the technical solution of the present invention more clearly, so they are only examples and cannot be used to limit the protection scope of the present invention.
[0041] As Figures 1 to 12 shown, an adjustable strip cutting machine for food processing includes a support base 1. A detachable fixed cylinder 3 and a protective cylinder 5 are provided on the top of the support base 1. A transportation component 4 is provided between the fixed cylinder 3 and the protective cylinder 5. A pushing component 10 is provided inside the fixed cylinder 3. A cutting component 24 and a classification component 23 are provided inside the protective cylinder 5. The transportation component 4, the pushing component 10, the cutting component 24 and the classification component 23 are synchronously rotatably arranged;
[0042] The driving component 10 includes a driving shaft 7 rotatably connected to the inner wall of the fixed cylinder 3. Two fixed circular plates 12 are fixedly sleeved on the outer wall of the driving shaft 7. A plurality of electro-controlled telescopic cylinders 11 are circumferentially distributed at the end of one of the fixed circular plates 12. The telescopic end of the electro-controlled telescopic cylinder 11 is fixedly connected to a connecting rod 8. One end of the connecting rod 8 penetrates through the other fixed circular plate 12 and is fixedly connected to a pushing plate 9. The connecting rod 8 is slidably connected to the fixed circular plate 12;
[0043] The transportation component 4 includes a protective cover 6 detachably connected to the fixed cylinder 3 and the protective cylinder 5. A driven shaft 21 is arranged inside the protective cover 6. Both ends of the driven shaft 21 are rotatably connected to the protective cover 6. One end of the driving shaft 7 extends outside the fixed cylinder 3 and two driving sprockets 17 are fixedly sleeved thereon. Two driven sprockets 20 are fixedly sleeved on the driven shaft 21. The driving sprocket 17 is connected to the driven sprocket 20 through an L-shaped accessory roller chain 18. A detachably arranged V-shaped clamping plate 19 is arranged on the L-shaped accessory of the L-shaped accessory roller chain 18.
[0044] The cutting component 24 includes two rotating circular plates 25. The rotating circular plate 25 close to the V-shaped clamping plate 19 is fixedly sleeved on the outer wall of the driving shaft 7. The other rotating circular plate 25 is slidably sleeved on the outer wall of the driving shaft 7. A plurality of through rectangular slots 26 are circumferentially distributed at the end of the rotating circular plate 25. A fixed rectangular frame 29 is fixedly installed on the inner wall of the rectangular slot 26. A plurality of limiting slots 28 are arranged side by side at the end of the fixed rectangular frame 29. A cutting knife 27 is inserted into the limiting slot 28. A limiting rectangular frame 30 for limiting the cutting knife 27 is arranged at the end of the fixed rectangular frame 29. The limiting rectangular frame 30 is detachably connected to the fixed rectangular frame 29. The cutting knives 27 on the two rotating circular plates 25 are perpendicular to each other;
[0045] A detachably arranged positioning rectangular frame 14 is arranged at the end of the pushing plate 9. A plurality of insertion slots 15 are arranged side by side at the end of the positioning rectangular frame 14. An insertion plate 16 is inserted into the insertion slot 15. The insertion plate 16 is parallel and staggeredly arranged with the cutting knife 27 close to the V-shaped clamping plate 19.
[0046] The classification component 23 includes a connecting pipe 36 sleeved on the outer wall of the driving shaft 7 in a sliding manner. Rotating circular plates 31 are fixedly sleeved at both ends of the connecting pipe 36. A number of rectangular holes 35 penetrating through are circumferentially distributed at the end of the rotating circular plate 31. A number of first positioning grooves 38 horizontally penetrating through are arranged in parallel on one group of opposite inner walls of the rectangular hole 35. A number of second positioning grooves 37 horizontally penetrating through are arranged in parallel on the other group of opposite inner walls of the rectangular hole 35. Two first partition plates 34 and two second partition plates 33 are arranged between the rectangular holes 35 facing each other of the two rotating circular plates 31. The first partition plate 34 is perpendicular to the cutting knife 27 close to the V-shaped clamping plate 19. The opposite ends of the first partition plate 34 are inserted into the first positioning grooves 38. A number of avoiding grooves 39 penetrating through are arranged in parallel at the end of the first partition plate 34. The second partition plate 33 is inserted into and perpendicular to the first partition plate 34. The opposite ends of the second partition plate 33 are inserted into the second positioning grooves 37. A pressing strip 32 for limiting the first partition plate 34 is arranged at the end of one of the rotating circular plates 31. The pressing strip 32 is detachably connected to the rotating circular plate 31.
[0047] A conductive slip ring 13 rotatably connected thereto is sleeved at the position of the outer wall of the driving shaft 7 inside the fixed cylinder 3. The conductive slip ring 13 is fixedly connected to the fixed cylinder 3. The electric control telescopic cylinder 11 is electrically connected to an external power supply through the conductive slip ring 13.
[0048] A servo motor 2 is fixedly arranged at the end of the fixed cylinder 3. One end of the driving shaft 7 horizontally penetrates through the fixed cylinder 3 and is fixedly connected to the output end of the servo motor 2.
[0049] A stop cylinder 42 abutted against it is arranged at the end of one of the rotating circular plates 31. The inner diameter of the stop cylinder 42 is larger than the diameter of the driving shaft 7. A circular groove 40 penetrating through is arranged at the end of the stop cylinder 42. A stop bolt 41 threadedly connected to the driving shaft 7 is inserted into the circular groove 40.
[0050] Collection boxes 22 are arranged at both positions on the top of the support base 1 on both sides of one of the rotating circular plates 31.
[0051] The working principle of this device is as follows:
[0052] When cutting food, the servo motor 2 drives the drive shaft 7 to rotate, which in turn drives the drive sprocket 17, the L-shaped accessory roller chain 18 and the driven sprocket 20 to rotate, thereby driving the V-shaped clamping plate 19 to rotate. The staff puts the food into the V-shaped clamping plate 19 passing through the protective cover 6, and the V-shaped clamping plate 19 conveys the food. At the same time, the drive shaft 7 drives the fixed circular plate 12, the rotating circular plate 25 and the rotating circular plate 31 to rotate. When the V-shaped clamping plate 19 rotates upward until its two ends are exactly opposite to the push plate 9 and the fixed rectangular frame 29, the V-shaped clamping plate 19 and the corresponding push plate 9 and fixed rectangular frame 29 rotate synchronously along the axis of the drive shaft 7. The electric control telescopic cylinder 11 drives the connecting rod 8 to slide horizontally, and the push plate 9 and the plug plate 16 move horizontally into the V-shaped clamping plate 19 and push the food to move in the direction of the cutting knife 27 for cutting. During the downward rotation of the V-shaped clamping plate 19, the plug plate 16 pushes the food to completely pass through the cutting knife 27 to complete the cutting. Then the push plate 9 resets and repeats the above process to continuously cut the food. The continuous processing performance of this equipment is good, which can continuously cut food. The cutting processes of several adjacent foods do not affect each other and proceed step by step. Moreover, the cutting process is fully automated, greatly shortening the cutting cycle and improving the cutting efficiency;
[0053] When cutting the food into strips, during the horizontal movement of the food in the V-shaped clamping plate 19 pushed by the plug plate 16, the food is first divided into slices by the cutting knife 27 on the first rotating circular plate 25, and the sliced food is divided into strips by the cutting knife 27 on the second rotating circular plate 25. When the end of the plug plate 16 passes through the gap between the cutting knives 27 on the first rotating circular plate 25 and contacts the cutting knife 27 on the second rotating circular plate 25, the cutting of the food into strips is completed. When cutting the food into slices, remove the stop cylinder 42 to release the restriction on the two rotating circular plates 31 and the rotating circular plate 25 in the middle position, remove the rotating circular plate 25 in the middle position and fix the two rotating circular plates 31 again through the stop cylinder 42. During the horizontal movement of the food in the V-shaped clamping plate 19 pushed by the plug plate 16, the food is divided into slices by the cutting knife 27 on the first rotating circular plate 25, and the end of the plug plate 16 enters the gap between the cutting knives 27 on the first rotating circular plate 25 to complete the cutting of the food into slices. When cutting food strips or food slices of different sizes, first remove the limit rectangular frames 30 on the two rotating circular plates 25 and insert the cutting knife 27 into the limit slot 28 corresponding to the processing size, and then remove the positioning rectangular frame 14 and insert the plug plate 16 into the corresponding slot 15, thereby completing the adjustment of the cutting size. This equipment has high versatility. It can not only perform strip cutting processing, but also perform slicing processing, and the cutting size can be adjusted according to processing requirements;
[0054] During the process of cutting food into strips, the food is divided into strips by the cutting knife 27 on the second rotating circular plate 25. The strips cut from the middle part of the food enter the middle area enclosed by the first partition plate 34 and the second partition plate 33, and the strips cut from the edge part of the food enter other areas enclosed by the first partition plate 34 and the second partition plate 33. During the rotation of the rotating circular plate 31, the strips in the other areas enclosed by the first partition plate 34 and the second partition plate 33 fall into the collection box 22 between the two rotating circular plates 31. As the food is continuously cut, the strips in the middle area enclosed by the first partition plate 34 and the second partition plate 33 are continuously pushed out and collected in another collection box 22. When cutting strips of different sizes, the positions of the first partition plate 34 and the second partition plate 33 are adjusted correspondingly to prevent interference with the pushed-out strips. During the process of slicing the food, the two first partition plates 34 are respectively inserted into the two outermost first positioning grooves 38 to prevent interference between the pushed-out food slices and the first partition plate 34. Similarly, the slices of the edge part fall into the collection box 22 between the two rotating circular plates 31 through the other areas enclosed by the first partition plate 34 and the second partition plate 33, and the slices of the middle part fall into another collection box 22 through the middle area enclosed by the first partition plate 34 and the second partition plate 33. When cutting slices of different sizes, the position of the second partition plate 33 is adjusted correspondingly to prevent interference between the pushed-out food slices and the second partition plate 33. This device can automatically classify and collect the divided food, simplifies the post-processing procedures after division, and improves the practicability of the device.
[0055] Finally, it should be noted that the above embodiments are only used to illustrate the technical solutions of the present invention, rather than to limit them; although the present invention has been described in detail with reference to the foregoing embodiments, those of ordinary skill in the art should understand that they can still modify the technical solutions described in the foregoing embodiments, or perform equivalent replacements on some or all of the technical features; and these modifications or replacements do not make the essence of the corresponding technical solutions deviate from the scope of the technical solutions of the embodiments of the present invention, and they should all be covered by the scope of the claims and the description of the present invention.
Claims
1. An adjustable strip cutter for food processing, characterized in that: The invention comprises a support base (1), wherein a detachably arranged fixing cylinder (3) and a protective cylinder (5) are provided on the top of the support base (1), a transport component (4) is provided between the fixing cylinder (3) and the protective cylinder (5), a pushing component (10) is provided in the fixing cylinder (3), a cutting component (24) and a classification component (23) are provided in the protective cylinder (5), and the transport component (4), the pushing component (10), the cutting component (24) and the classification component (23) are arranged to rotate synchronously; The pushing assembly (10) comprises a driving shaft (7) rotatably connected to the inner wall of the fixed cylinder (3); two fixed circular plates (12) are fixedly sleeved on the outer wall of the driving shaft (7); a plurality of electrically controlled telescopic cylinders (11) are evenly distributed along the circumferential direction at the end of one of the fixed circular plates (12); the telescopic ends of the electrically controlled telescopic cylinders (11) are fixedly connected to connecting rods (8); one end of the connecting rod (8) passes through another fixed circular plate (12) and is fixedly connected to a pushing plate (9); the connecting rod (8) is slidably connected to the fixed circular plate (12); The transport assembly (4) comprises a protective cover (6) detachably connected to the fixed cylinder (3) and the protective cylinder (5); a driven shaft (21) is arranged inside the protective cover (6); both ends of the driven shaft (21) are rotatably connected to the protective cover (6); one end of the drive shaft (7) extends outside the fixed cylinder (3) and is fixedly sleeved with two drive sprockets (17); two driven sprockets (20) are fixedly sleeved on the driven shaft (21); the drive sprocket (17) is connected to the driven sprocket (20) via an L-shaped attachment roller chain (18); and a detachably arranged V-shaped clamping plate (19) is arranged on the L-shaped attachment of the L-shaped attachment roller chain (18); The classification component (23) comprises a connecting tube (36) slidably mounted on the outer wall of the driving shaft (7), a rotating circular plate (31) being fixedly mounted on both ends of the connecting tube (36), a plurality of rectangular holes (35) being uniformly distributed along the circumferential direction at the end of the rotating circular plate (31), a plurality of first positioning grooves (38) being horizontally mounted and arranged in parallel relative to the inner wall of one group of the rectangular holes (35), a plurality of second positioning grooves (37) being horizontally mounted and arranged in parallel relative to the inner wall of another group of the rectangular holes (35), two first partition plates (34) and two second partition plates (33) being arranged between the rectangular holes (35) facing each other on the two rotating circular plates (31). ), the first partition plate (34) is perpendicular to the cutting knife (27) near the V-shaped clamping plate (19), the opposite end of the first partition plate (34) is inserted into the first positioning groove (38), the end of the first partition plate (34) is provided with a plurality of avoidance grooves (39) extending therethrough in parallel, the second partition plate (33) is inserted into the first partition plate (34) and is perpendicular to each other, the opposite end of the second partition plate (33) is inserted into the second positioning groove (37), one end of the rotating circular plate (31) is provided with a plurality of pressure strips (32) for limiting the first partition plate (34), the pressure strips (32) are detachably connected to the rotating circular plate (31).
2. The adjustable strip cutter for food processing according to claim 1, characterized in that: The cutting assembly (24) comprises two rotating circular plates (25), wherein the rotating circular plate (25) close to the V-shaped clamping plate (19) is fixedly sleeved on the outer wall of the driving shaft (7), and the other rotating circular plate (25) is slidably sleeved on the outer wall of the driving shaft (7), and the end of the rotating circular plate (25) is evenly distributed with a plurality of rectangular grooves (26) penetrating along the circumferential direction, and a fixed rectangular frame (29) is fixedly installed on the inner wall of the rectangular groove (26), and the end of the fixed rectangular frame (29) is provided with a plurality of limiting grooves (28) in parallel, and a cutting knife (27) is inserted in the limiting groove (28), and the end of the fixed rectangular frame (29) is provided with a limiting rectangular frame (30) for limiting the cutting knife (27), and the limiting rectangular frame (30) is detachably connected to the fixed rectangular frame (29), and the cutting knives (27) on the two rotating circular plates (25) are perpendicular to each other; The end of the push plate (9) is provided with a detachable positioning rectangular frame (14), and the end of the positioning rectangular frame (14) is provided with a plurality of slots (15) in parallel, wherein the slots (15) are inserted with inserting plates (16), and the inserting plates (16) and the cutting blades (27) close to the V-shaped clamping plate (19) are parallel to each other and arranged in a staggered manner.
3. The adjustable strip cutter for food processing according to claim 1, characterized in that: A conductive slip ring (13) rotatably connected to the outer wall of the drive shaft (7) is sleeved at a position inside the fixed cylinder (3); the conductive slip ring (13) is fixedly connected to the fixed cylinder (3); and the electrically controlled telescopic cylinder (11) is electrically connected to an external power source via the conductive slip ring (13).
4. The adjustable strip cutter for food processing according to claim 1, characterized in that: A servo motor (2) is fixedly mounted on the end of the fixed cylinder (3), and one end of the drive shaft (7) horizontally penetrates the fixed cylinder (3) and is fixedly connected to the output end of the servo motor (2).
5. The adjustable strip cutter for food processing according to claim 1, characterized in that: A stop cylinder (42) is provided at the end of one of the rotating circular plates (31) to abut against it, the inner diameter of the stop cylinder (42) being larger than the diameter of the drive shaft (7), and a circular groove (40) is provided at the end of the stop cylinder (42) to penetrate therethrough, and a stop bolt (41) threadedly connected to the drive shaft (7) is inserted into the circular groove (40).
6. The adjustable strip cutter for food processing according to claim 1, characterized in that: Collection boxes (22) are provided at positions on both sides of one of the rotating circular plates (31) at the top of the support base (1).
Citation Information
Patent Citations
Household size-adjustable fruit and vegetable shredding and slicing device
CN105500447A
Rapid radish dicing and sorting equipment
CN111546408A
Rod-like traditional Chinese medicine rotating slicing device
CN111645125A