A cutting device for food processing

With the cooperation of guide section one and guide section two with the guide rail, the cutter remains horizontal under the guidance and moves downward at an angle, which solves the problems of long cutter stroke and equipment instability, and realizes efficient cutting and stable cutting of sheet.

CN120937883BActive Publication Date: 2025-12-23QINGDAO ZHENGYA MACHINERY TECH
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Patent Information

Application Number
CN202511494631.8
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2025-10-20
Publication Date
2025-12-23
Estimated Expiration
2045-10-20

AI Technical Summary

Technical Problem

The existing cutter has a long stroke, resulting in low cutting efficiency. Furthermore, the frequent movement of the cutter at the turning point of the guide rail causes unstable equipment operation and roller deformation.

Method used

The guide rail is equipped with guide section one and guide section two. The cutter is kept horizontal and tilted downward under the guidance of guide section one. It is quickly reset by the elastic part. Combined with the circular guide groove design of the drive component, the cutter and the sheet are cut at the same speed. The guide rail angle can be adjusted by the adjustment component to adapt to different thicknesses.

Benefits of technology

It improves cutting efficiency, avoids warping and deformation of the noodle ends, enhances the operational stability of the equipment and the smoothness of the cutter, and is suitable for cutting noodle sheets of different thicknesses.

✦ Generated by Eureka AI based on patent content.

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Abstract

The application relates to the technical field of food processing, and particularly discloses a cutting device for food processing, which comprises a connecting plate, a shielding cover, a pressure roller, a cutting piece and a driving piece, the cutting piece comprises a guide rail, a cutter, a guide part one, a guide part two and an elastic part, the guide part two is movably connected to the shielding cover, the guide part one is connected to the guide part two, the cutter is limitingly and slidably connected to the guide part one, the cutter is slidably connected to the guide rail, the elastic part is connected between the guide part one and the shielding cover, the driving piece comprises a sliding part, a rotating part, a pushing part and a positioning part, the connecting plate is provided with a guide groove, a sliding groove and a mounting groove, the guide groove is in a circular shape, the pushing part is inserted into the rotating part, and the positioning part is connected with the pushing part and inserted into the guide groove; after the pushing part is separated from the cutter, the cutter is quickly reset through the elastic part, and the pushing part continuously moves along the guide groove, so that the cutting device is suitable for efficiently cutting strip-shaped noodles.
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Description

TECHNICAL FIELD

[0001] The present application relates to the technical field of food processing, in particular to a cutting device for food processing. BACKGROUND

[0002] Dough sheet is a basic intermediate product in the processing of flour food, which is formed by pressing and extending the dough after mixing to a flat structure with a specific thickness and shape. The core of the production process is to accurately control the rolling gap to achieve uniform thinness while maintaining the continuity and extensibility of the dough organization. According to different product requirements, dough sheet can be further cut into noodles, die-cut into biscuit blanks, or directly used for baking bread. In modern industrial production, a multi-group continuous rolling system is often used to ensure the stability of the dough sheet in a constant temperature and humidity environment. When the dough sheet is processed into a long strip, a cutting device is often used to cut the dough sheet into equal lengths.

[0003] A river vermicelli packaging machine cutting mechanism and device assembly is disclosed in Chinese patent document CN217573085U, which includes a cutter configured to cut the river vermicelli through lifting motion; an electric telescopic rod configured to be connected with the cutter for driving the cutter to move forward and backward; a guide rail provided at both ends of the cutter and slidingly connected with the cutter; and a first stroke of the electric telescopic rod, the cutter has a forward displacement process when cutting the river vermicelli.

[0004] In use, the extension end of the electric telescopic rod drives the horizontal section to move, and the two ends of the horizontal section slide in the slide rail, making the horizontal section more stable when moving. The horizontal section drives the vertical section fixedly connected thereto to move synchronously, and the vertical section drives the cutter to move. In the first stroke of the electric telescopic rod, the roller rolls in the side rail groove corresponding to the first waist edge, and the sliding block descends in the vertical section, so that the cutter has a forward displacement process when cutting the river vermicelli under the action of gravity. In the second stroke of the electric telescopic rod, the roller rolls in the side rail groove corresponding to the second waist edge, and the roller rises in the displacement process along the rail groove, so that the cutter has a forward displacement process when rising to the initial height. When the roller shaft contacts the inclined surface of the limiting block, the limiting block is pushed to move, so that the limiting block compresses the spring and leaves the connection between the second waist edge and the bottom edge. When the roller enters the bottom edge rail groove, the roller shaft passes over the inclined surface to the plane of the limiting block, and the limiting block returns to the initial position under the action of the spring, resealing between the waist edge and the bottom edge of the second stroke, so that the cutter moves in the rail groove of the bottom edge in the retraction stroke of the electric telescopic rod. Finally, the cutter returns to the initial position for the next cutting process.

[0005] However, the above patent documents still have the following shortcomings: when the cutter is cutting, the cutter is driven to move under the guidance of the guide rail by the electric telescopic rod, the extension end of the electric telescopic rod extends outward, the cutter moves, the cutter moves downward when passing through the first waist side corresponding side rail groove, the cutter moves upward when moving to the second waist side corresponding side rail groove, in this process, the extension end of the electric telescopic rod is always in a state of continuously extending outward until the cutter moves to the bottom rail groove, when the cutter resets, the extension end of the electric telescopic rod retracts, so that the cutter resets along the bottom rail groove, the whole movement stroke of the cutter is long, the required time is more, and it is difficult to adapt to the production rhythm of high efficiency cutting, and the cutter needs to frequently and suddenly change the movement direction at each turning point of the guide rail, such "hard turning" will bring greater impact and vibration, which not only affects the stability of the equipment operation, but also limits the limit running speed of the whole machine, and the roller collides with the guide rail when passing through each turning point of the guide rail, and the multiple collisions between the roller and the guide rail can easily deform the roller, so that the roller shakes in the rotating process, and then affects the cutting operation of the cutter. SUMMARY

[0006] The application provides a cutting device for food processing, which aims to solve the problem of long movement stroke of the cutter, long required time and difficulty in adapting to the production rhythm of high efficiency cutting in the related art.

[0007] The cutting device for food processing comprises a feeding mechanism, a transfer mechanism and a striping mechanism, the transfer mechanism and the striping mechanism are connected to the feeding mechanism, and further comprises a cutting mechanism, the cutting mechanism comprises a connecting plate, a shielding cover, a pressure roller, a cutting part and a driving part, the connecting plate is provided in two, the two connecting plates are connected to the feeding mechanism, the shielding cover and the pressure roller are connected between the two connecting plates, the cutting part comprises a guide rail, a cutter, a guide part one, a guide part two and an elastic part, the guide rail is installed on the connecting plate, the guide part two is movably connected to the shielding cover, the guide part one is connected to the guide part two, the cutter is limitingly and slidably connected to the guide part one, the cutter is slidably connected to the guide rail, the elastic part is connected between the guide part one and the shielding cover, the driving part is connected in the shielding cover, the driving part can drive the cutter to move towards the direction close to the strip-shaped sheet, and the guide part one and the guide rail can make the cutter keep a horizontal state and tilt downwardly.

[0008] The driving part comprises a sliding part, a rotating part, a pushing part and a positioning part, the connecting plate is provided with a guide groove, a sliding groove and a mounting groove, the guide groove is in a circular shape, the sliding part is slidably connected in the sliding groove, the guide rail is installed in the mounting groove, the rotating part is rotatably connected to the sliding part, the pushing part is inserted in the rotating part, and the positioning part is connected to the pushing part and inserted in the guide groove.

[0009] Beneficial effects: when cutting the face sheet, first place the face sheet on the feeding mechanism, and the face sheet is transported by the feeding mechanism. The transported face sheet can pass through the slitting mechanism and the cutting mechanism in turn. When the face sheet passes through the slitting mechanism, the slitting mechanism is started to cut the face sheet. The cut face sheet enters between the shielding cover and the pressure roller in the cutting mechanism. After the cut face sheet passes through the cutting mechanism for a certain length, the driving member is started to move the push part along the circular guide groove and push the cutter to move. When the cutter moves, the guide part one and the guide part two are pulled down, and the elastic part is stretched. The cutter maintains a horizontal state under the action of the guide part one during the movement, and is inclined and moves down under the action of the guide rail, so that the cutter is synchronized with the moving down strip-shaped face sheet. Until the cutter cuts the strip-shaped face sheet and contacts the pressure roller, the cutter maintains a horizontal state and is inclined and moves down, so that the cutter moves at the same speed as the strip-shaped face sheet, to avoid the end of the cut face sheet from being warped and deformed. After the push part is separated from the cutter, the cutter is quickly reset under the action of the elastic part, and the push part continues to move along the circular guide groove. The circular guide groove makes the movement of the push part stable and continuous, so as to be suitable for high-efficiency cutting of the strip-shaped face sheet, and improve the production efficiency of the strip-shaped face sheet.

[0010] Preferably, the driving member further comprises a driving source, and the driving source is installed on the connecting plate and connected with the rotating part.

[0011] Its effect is that when the cutter cuts the strip-shaped face sheet, the driving source is started to drive the rotating part to rotate. When the rotating part rotates, it drives the push part to move along the circular track, and drives the positioning part to slide in the guide groove. The push part is limited by the cooperation of the guide groove and the positioning part. When the push part moves along the circular track, it pushes the cutter to cut the strip-shaped face sheet.

[0012] Preferably, the installation groove is in communication with the guide groove, and the depth of the installation groove is greater than the depth of the guide groove.

[0013] Its effect is that the depth of the installation groove is greater than the depth of the guide groove, to avoid the positioning part from being blocked by the guide rail when it slides in the guide groove.

[0014] Preferably, one end of the positioning part extending into the guide groove is connected with a connecting part, and the connecting part is slidingly connected in the guide groove.

[0015] Its effect is that when the positioning part moves into the installation groove, the connecting part is still slidingly connected with the guide groove, and the connecting part can prevent the positioning part from separating from the guide groove.

[0016] Preferably, neither the guide part one nor the guide part two is located on the moving track of the push part.

[0017] The effect is that the pushing part is not blocked by the guiding part one and the guiding part two when the pushing part is driven by the rotating part.

[0018] Preferably, the guide rail is inclined, and the two ends of the guide rail are divided into a low end and a high end according to the height.

[0019] Preferably, the adjusting member further comprises a moving part and a screw rod, the moving part is slidingly connected in the conveying mechanism, the driving source and the sliding part are connected to the moving part, the screw rod is threadedly connected to the conveying mechanism, one end of the screw rod is rotatably connected to the moving part, and the shielding cover is connected to the moving part.

[0020] The effect is that the screw rod can drive the moving part to move, and the driving source, the sliding part and the rotating part can be driven to move when the moving part moves, and the pushing part remains stationary under the limiting of the positioning part, and the shielding cover can be moved when the moving part moves, so that the distance between the shielding cover and the pressure roller is adjusted to adapt to different thicknesses of the strip-shaped face piece, the cutting knife, the guiding part one, the guiding part two and the elastic part can be moved when the shielding cover moves, and the guide rail is rotated by the cutting knife to adjust the angle of the guide rail, and the position of the pushing part pushed by the cutting knife to contact the pressure roller remains unchanged when the position of the pushing part remains stationary, so that the strip-shaped face piece of different thicknesses can be cut.

[0021] Preferably, the shielding cover is provided with a notch, and the cutting knife can extend out of the notch.

[0022] Preferably, the conveying mechanism comprises a discharge hopper, and the discharge hopper is located below the cutting mechanism and is used for collecting and guiding the cut strip-shaped face piece.

[0023] The effect is that the cut strip-shaped face piece can be collected and guided by the discharge hopper, so that the cut strip-shaped face piece can be conveyed into the transfer mechanism.

[0024] Preferably, the transfer mechanism comprises a conveying member and a plurality of containing boxes, and the plurality of containing boxes are mounted on the conveying member.

[0025] The effect is that a plurality of containing boxes can be used to collect a plurality of batches of cut strip-shaped face pieces, and the containing boxes can be driven to move by the conveying member, so that the cut strip-shaped face pieces can be transferred for subsequent stacking operation.

[0026] The beneficial effects of the present application are:

[0027] 1、 through the drive piece drive cutter moves, the cutter moves and pulls down guide part one and guide part two, and stretches the elastic part, and the cutter moves under the action of guide part one and keeps horizontal state, under the action of guide rail, it is inclined and moves down, and synchronizes with the downward moving strip-shaped sheet, until the cutter cuts off the strip-shaped sheet and contacts with the compression roller, through the cutter keeps horizontal state and is inclined and moves down, so that the cutter is synchronous with the strip-shaped sheet, to avoid the end of the cut sheet appears buckling deformation, and after the pushing part separates from the cutter, the cutter resets quickly under the action of the elastic part, the pushing part continues to move along the circular guide groove, the circular guide groove makes the movement of the pushing part smooth and coherent, to be suitable for high efficiency cutting of strip-shaped sheet, improve the production efficiency of strip-shaped sheet.

[0028] 2、 twist two screw rods, so that two moving parts move synchronously, two moving parts can drive the shielding cover to move synchronously when moving synchronously, to adjust the distance between the shielding cover and the compression roller, suitable for different thickness of strip-shaped sheet, two moving parts can also drive the driving source, sliding part and rotating part to move when moving synchronously, while the pushing part keeps still under the action of positioning part and connecting part, the shielding cover drives guide part one, guide part two, elastic part and cutter to move synchronously when moving, at the same time, the guide rail is pushed to rotate through the cutter, to adjust the angle of guide rail, in the case that the position of pushing part keeps still, the position of pushing part pushing cutter to move and contacting with the compression roller keeps unchanged. BRIEF DESCRIPTION OF DRAWINGS

[0029] Figure 1 It is the side view structure schematic diagram of the application.

[0030] Figure 2 It is the perspective structure schematic diagram of the application.

[0031] Figure 3 It is the perspective structure schematic diagram of the feeding mechanism and cutting mechanism of the application.

[0032] Figure 4 It is the top view structure schematic diagram of the cutting mechanism of the application.

[0033] Figure 5 It is the front view cross-sectional structure schematic diagram of the cutting mechanism of the application.

[0034] Figure 6 It is another front view cross-sectional structure schematic diagram of the cutting mechanism of the application.

[0035] Reference signs:

[0036] 1. Material conveying mechanism; 11. Frame 1; 12. Material conveying component; 13. Discharge hopper; 2. Slitting mechanism; 3. Cutting mechanism; 31. Connecting plate; 311. Guide groove; 312. Through groove; 313. Sliding groove; 314. Mounting groove; 32. Cover; 33. Pressure roller; 34. Cutting component; 341. Guide rail; 342. Cutter; 343. Guide part 1; 344. Guide part 2; 345. Elastic part; 35. Driving component; 351. Driving source; 352. Sliding part; 353. Rotating part; 354. Pushing part; 355. Positioning part; 356. Connecting part; 36. Adjusting component; 361. Moving part; 362. Screw; 4. Transfer mechanism; 41. Conveying component; 42. Container. Detailed Implementation

[0037] Embodiments of the present invention are described in detail below, examples of which are illustrated in the accompanying drawings. The embodiments described below with reference to the accompanying drawings are exemplary and intended to explain the present invention, and should not be construed as limiting the present invention.

[0038] like Figures 1 to 6 As shown, the food processing cutting device of the present invention includes a feeding mechanism 1, a slitting mechanism 2, a cutting mechanism 3, and a transfer mechanism 4. The feeding mechanism 1 is used to feed the dough sheet. The slitting mechanism 2 and the cutting mechanism 3 are both connected to the feeding mechanism 1. The slitting mechanism 2 is located above the cutting mechanism 3. The dough sheet fed by the feeding mechanism 1 can pass through the slitting mechanism 2 and the cutting mechanism 3 in sequence. When the dough sheet passes through the slitting mechanism 2, it can be divided into strips. The cutting mechanism 3 includes a cutter 342. When the dough sheet divided into strips passes through the cutting mechanism 3, it can be cut by the cutter 342 in the cutting mechanism 3. When the cutter 342 moves toward the strip of dough, it can also tilt and move downward synchronously with the strip of dough to avoid warping and deformation at the end of the cut dough sheet. The transfer mechanism 4 is connected to the feeding mechanism 1. The cut strip of dough can be transferred through the transfer mechanism 4 to facilitate subsequent stacking of the cut strip of dough.

[0039] When cutting the dough sheet into strips and then cutting it, the dough sheet is first conveyed by the feeding mechanism 1 so that it passes through the slitting mechanism 2 and the cutting mechanism 3 in sequence. When the dough sheet passes through the slitting mechanism 2, it is divided into strips. Then the strips pass through the cutting mechanism 3. The cutter 342 in the cutting mechanism 3 moves towards the strip and moves downward in sync with the strip, thereby cutting the strip. The cut strip enters the transfer mechanism 4, which then transfers the strip.

[0040] like Figure 1 and Figure 2As shown, the feeding mechanism 1 comprises a frame body 11, a feeding member 12 and a discharge hopper 13, the feeding member 12 is connected to the frame body 11, the feeding member 12 can be used to convey the dough pieces, and the dough pieces pass through the slitting mechanism 2 and the cutting mechanism 3 in sequence, the discharge hopper 13 is connected to the frame body 11, the discharge hopper 13 is located below the cutting mechanism 3, the discharge hopper 13 can be used to guide and convey the strip-shaped dough pieces cut by the cutting mechanism 3, so as to convey the cut strip-shaped dough pieces into the transfer mechanism 4.

[0041] When the dough pieces are cut into strip-shaped dough pieces and cut, the dough pieces are first placed on the feeding member 12, the feeding member 12 is used to convey the dough pieces, so that the dough pieces pass through the slitting mechanism 2 and the cutting mechanism 3 in sequence, when the dough pieces pass through the slitting mechanism 2, the slitting mechanism 2 is used to slit the dough pieces, so that the dough pieces are in strip-shaped, when the strip-shaped dough pieces pass through the cutting mechanism 3, the cutting mechanism 3 is used to cut the strip-shaped dough pieces to a certain length, the cut strip-shaped dough pieces first fall into the discharge hopper 13, the discharge hopper 13 is used to collect and guide the strip-shaped dough pieces, and the discharge hopper 13 is used to convey the strip-shaped dough pieces into the transfer mechanism 4 for transfer.

[0042] As shown in Figures 1 to 6 The cutting mechanism 3 comprises a connecting plate 31, a shielding cover 32, a pressure roller 33, a cutting member 34, a driving member 35 and an adjusting member 36, the connecting plate 31 is provided in two, both of the connecting plates 31 are connected to the frame body 11, the shielding cover 32 is arranged between the two connecting plates 31, the pressure roller 33 is connected between the two connecting plates 31, the shielding cover 32 and the pressure roller 33 can be used to limit the strip-shaped dough pieces, the shielding cover 32 is provided with a notch, the cutting member 34 is installed in the notch on the shielding cover 32, the shielding cover 32 can be used to block the cutting member 34, the cutting member 34 comprises a cutter 342, the pressure roller 33 can provide support for the strip-shaped dough pieces when the cutter 342 cuts the strip-shaped dough pieces, the cutter 342 can move towards the direction close to the strip-shaped dough pieces, and simultaneously incline downward synchronously with the strip-shaped dough pieces, so that the cutter 342 extends out of the notch of the shielding cover 32, until the cutter 342 contacts with the pressure roller 33, thereby cutting the strip-shaped dough pieces to a certain length, the driving member 35 is connected to the connecting plate 31, the driving member 35 can provide power for the cutting operation of the cutter 342 on the strip-shaped dough pieces, the adjusting member 36 is connected to the frame body 11, the adjusting member 36 can drive the shielding cover 32 and the cutting member 34 to move, so as to adjust the distance between the shielding cover 32 and the pressure roller 33, so as to adapt to strip-shaped dough pieces of different thicknesses.

[0043] Continuing to refer to Figures 1 to 6As shown, the cutting member 34 includes a guide rail 341, a guide portion one 343, a guide portion two 344 and an elastic portion 345, the connecting plate 31 is provided with a mounting groove 314, the guide rail 341 is inclined, the two ends of the guide rail 341 can be divided into a low end and a high end according to the height, the low end of the guide rail 341 is rotationally connected in the mounting groove 314, the cutter 342 is slidingly connected on the guide rail 341, the cutter 342 can be inclined and guided by the guide rail 341 to incline and move downward on the guide rail 341, the guide portion one 343 is arranged at the gap of the shielding cover 32, the cutter 342 is limitingly and slidingly connected on the guide portion one 343, the cutter 342 can be kept in a horizontal state by the guide portion one 343, so as to cut the strip-shaped face piece, the guide portion two 344 is connected on the guide portion one 343, the guide portion two 344 penetrates through the shielding cover 32, the guide portion one 343 is guided by the guide portion two 344, so that the guide portion one 343 can only move up and down, the guide portion two 344 is T-shaped to prevent the guide portion two 344 from completely separating from the shielding cover 32, the elastic portion 345 is connected between the guide portion one 343 and the shielding cover 32, the elastic portion 345 is a tension spring for driving the guide portion one 343 to move upward and reset.

[0044] The driving member 35 is started, the cutter 342 is pushed by the driving member 35, so that the cutter 342 is kept in a horizontal state under the guidance of the guide portion one 343 and is pulled to move downward, at the same time, the cutter 342 approaches the strip-shaped face piece, and the strip-shaped face piece is inclined and moved downward under the guidance of the guide rail 341, until the cutter 342 cuts the strip-shaped face piece and contacts the compression roller 33, after the driving member 35 is separated from the cutter 342, the cutter 342 is driven by the elastic portion 345 under the action of the elastic force, so that the cutter 342 moves along the guide rail 341 and the guide portion one 343 and resets, at the same time, the guide portion one 343 and the guide portion two 344 are driven to move upward and reset, in the process of cutting the strip-shaped face piece, the strip-shaped face piece is vertically arranged by its own gravity, the cut strip-shaped face piece can be automatically separated from the cutter 342 and the compression roller 33 under the action of its own gravity, so as to avoid the strip-shaped face piece from adhering to the cutter 342 or the compression roller 33.

[0045] Continuing to refer to Figures 1 to 6As shown, the driving member 35 comprises a driving source 351, two sliding parts 352, a rotating part 353, a pushing part 354, a positioning part 355 and a connecting part 356. The driving source 351 is arranged on the connecting plate 31, and two sliding grooves 313 are arranged on each of the two connecting plates 31. The two sliding parts 352 are arranged in a limiting and sliding mode in the two sliding grooves 313 respectively. A guide groove 311 is arranged on the connecting plate 31, which is in a circular shape and communicates with the mounting groove 314. The rotating part 353 is arranged in a rotating mode between the two sliding parts 352. The driving source 351 is a motor, and the rotating part 353 is connected with the output end of the driving source 351. The rotating part 353 can be driven to rotate by the driving source 351. The rotating part 353 is provided with a slot, and the pushing part 354 is inserted into the slot. One end of the pushing part 354 extends out of the slot, and the positioning part 355 is connected with the end of the pushing part 354 extending out of the slot. One end of the positioning part 355 is arranged in a sliding mode in the guide groove 311. The depth of the guide groove 311 is smaller than that of the mounting groove 314, so that the guide rail 341 in the mounting groove 314 will not block the circular movement of the positioning part 355 along the guide groove 311. The connecting part 356 is connected with the end of the positioning part 355 extending into the guide groove 311. The connecting part 356 is in an arc shape and is arranged in a limiting and sliding mode in the guide groove 311. When the positioning part 355 moves along a circular track in the guide groove 311, the connecting part 356 can also move along a circular track in the guide groove 311. When the positioning part 355 moves to the mounting groove 314, the connecting part 356 still moves in the guide groove 311. The connecting part 356 can limit the positioning part 355 to prevent the positioning part 355 from separating from the guide groove 311. The positioning part 355 can position the pushing part 354. When the rotating part 353 rotates, the pushing part 354 can move along a circular track. The pushing part 354 can push the cutter 342 during the movement along the circular track. The guide part one 343 and the guide part two 344 are not on the movement track of the pushing part 354, so that the guide part one 343 and the guide part two 344 will not affect the movement of the pushing part 354 along the circular track.

[0046] When the cutting knife 342 in the driving cutting member 34 cuts the strip-shaped face piece, the driving source 351 is started, the rotating part 353 is driven to rotate by the driving source 351, the pushing part 354 is moved along a circular track when the rotating part 353 rotates, and the pushing part 354 is positioned by the positioning part 355. After the pushing part 354 contacts the cutting knife 342, the cutting knife 342 is pushed by the pushing part 354 to move towards the strip-shaped face piece. At this time, the cutting knife 342 keeps a horizontal state under the action of the guide part one 343 and the guide part two 344, and the cutting knife 342 is inclined and moves downward under the guidance of the guide rail 341, so that the cutting knife 342 can move downward at the same speed as the strip-shaped face piece. The cutting knife 342 moves downward at the same speed as the guide part one 343 and the guide part two 344, and the elastic part 345 is stretched. After the cutting knife 342 cuts the strip-shaped face piece, the cutting knife 342 contacts the pressure roller 33.

[0047] After the pushing part 354 passes the cutting knife 342, the pushing part 354 continues to move along the circular track. When the pushing part 354 moves the positioning part 355 to the mounting groove 314, the connecting part 356 is still slidably connected in the guide groove 311. After the positioning part 355 reenters the guide groove 311, the end of the connecting part 356 away from the positioning part 355 is separated from the guide groove 311. The connecting part 356 prevents the positioning part 355 from separating from the guide groove 311. As the pushing part 354 continues to move along the circular track, the connecting part 356 reenters the guide groove 311 completely.

[0048] After the pushing part 354 separates from the cutting knife 342, the guide part one 343 and the guide part two 344 are pulled upward and reset by the elastic force of the elastic part 345. The cutting knife 342 is pulled upward and reset by the guide part one 343. At this time, the cutting knife 342 is inclined and moves upward under the guidance of the guide rail 341 until the cutting knife 342 is reset. The pushing part 354 continues to move along the circular guide groove 311. The circular guide groove 311 makes the movement of the pushing part 354 smooth and continuous, so as to be suitable for cutting the strip-shaped face piece with high efficiency and improve the production efficiency of the strip-shaped face piece.

[0049] Continuing to refer to Figures 1 to 6As shown, the adjusting piece 36 comprises two moving parts 361 and two screw rods 362. The two moving parts 361 are slidingly connected in the frame body one 11. The two connecting plates 31 are provided with through grooves 312. The two moving parts 361 are provided with protrusions which penetrate through the through grooves 312 and are connected with the two ends of the shielding cover 32, so that the two moving parts 361 can drive the shielding cover 32 to move, thereby adjusting the distance between the shielding cover 32 and the pressure roller 33, facilitating the application of different thickness of the face piece. The sliding part 352 is connected with the moving part 361, and the driving source 351 is connected with the moving part 361. When the moving part 361 moves, the driving source 351, the sliding part 352 and the rotating part 353 can be driven to move, while the pushing part 354 remains stationary under the action of the positioning part 355 and the connecting part 356. When the shielding cover 32 moves, the guide part one 343, the guide part two 344, the elastic part 345 and the cutter 342 can be synchronously moved, and the guide rail 341 is driven to rotate by the cutter 342, so as to adjust the angle of the guide rail 341. In the case that the position of the pushing part 354 remains stationary, the position of the pushing part 354 pushing the cutter 342 to move and contact with the pressure roller 33 remains unchanged, so as to cut the strip-shaped face piece of different thickness. The screw rods 362 are threadedly connected with the frame body one 11. The two screw rods 362 are connected with the two moving parts 361. By simultaneously twisting the two screw rods 362, the two moving parts 361 can be synchronously moved, thereby providing power for the distance adjustment between the shielding cover 32 and the pressure roller 33. After the screw rods 362 stop rotating, the moving parts 361 remain stationary under the limitation of the screw rods 362. At this time, the positions of the driving source 351, the sliding part 352, the rotating part 353 and the shielding cover 32 can be locked by the moving parts 361, so that the driving source 351, the sliding part 352, the rotating part 353 and the shielding cover 32 cannot continue to move.

[0050] The two screw rods 362 are simultaneously twisted to synchronously move the two moving parts 361. When the two moving parts 361 move, the shielding cover 32 can be synchronously moved, so as to adjust the distance between the shielding cover 32 and the pressure roller 33. When the two moving parts 361 move, the driving source 351, the sliding part 352 and the rotating part 353 can also be moved. The pushing part 354 remains stationary under the action of the positioning part 355 and the connecting part 356. When the shielding cover 32 moves, the guide part one 343, the guide part two 344, the elastic part 345 and the cutter 342 can be synchronously moved. The guide rail 341 is driven to rotate by the cutter 342, so as to adjust the angle of the guide rail 341. In the case that the position of the pushing part 354 remains stationary, the position of the pushing part 354 pushing the cutter 342 to move and contact with the pressure roller 33 remains unchanged.

[0051] AsFigure 1 and Figure 2 As shown in the figure, the conveying mechanism 4 includes a conveying member 41 and a plurality of containing boxes 42, the plurality of containing boxes 42 are installed on the conveying member 41, and the conveying member 41 can drive the plurality of containing boxes 42 to move, the cut strip-shaped biscuits can fall into the containing boxes 42 after passing through the discharge hopper 13, and the containing boxes 42 are driven by the conveying member 41 to move, so that the containing boxes 42 drive the cut strip-shaped biscuits to move.

[0052] The conveying member 41 drives the plurality of containing boxes 42 to move, at this time, the cut strip-shaped biscuits fall into the containing boxes 42 after passing through the discharge hopper 13, and the containing boxes 42 drive the cut strip-shaped biscuits to move.

[0053] Working principle:

[0054] When the biscuits are cut into strip-shaped biscuits and cut off, the biscuits are first placed on the conveying member 12, and the conveying member 12 conveys the biscuits, so that the biscuits pass through the strip dividing mechanism 2 and the cutting mechanism 3 in turn. When the biscuits pass through the strip dividing mechanism 2, the strip dividing mechanism 2 divides the biscuits to make the biscuits in strip shape.

[0055] Start the driving source 351, drive the rotating part 353 to rotate through the driving source 351, the rotating part 353 rotates to drive the pushing part 354 to move along a circular track, and the positioning part 355 positions the pushing part 354, after the pushing part 354 contacts the cutter 342, the pushing part 354 pushes the cutter 342 to move towards the direction close to the strip-shaped biscuits, at this time, the cutter 342 keeps horizontal state under the action of the guide part one 343 and the guide part two 344, and the cutter 342 inclines and moves downward under the guidance of the guide rail 341, so that the cutter 342 can move downward at the same speed as the strip-shaped biscuits, the cutter 342 moves downward to drive the guide part one 343 and the guide part two 344 at the same speed, and stretches the elastic part 345, until the cutter 342 contacts the pressure roller 33 after cutting off the strip-shaped biscuits.

[0056] After the pushing part 354 passes through the cutter 342, the pushing part 354 continues to move along the circular track, when the pushing part 354 drives the positioning part 355 to move to the installation groove 314, the connecting part 356 is still slidingly connected in the guide groove 311, after the positioning part 355 reenters the guide groove 311, the end of the connecting part 356 away from the positioning part 355 is separated from the guide groove 311, the connecting part 356 prevents the positioning part 355 from separating from the guide groove 311, and as the pushing part 354 continues to move along the circular track, the connecting part 356 reenters the guide groove 311 completely.

[0057] After the pushing part 354 is separated from the cutter 342, the guiding part one 343 and the guiding part two 344 are pulled to move upward and reset under the elastic force of the elastic part 345. When the guiding part one 343 moves upward and resets, the cutter 342 is pulled. At this time, the cutter 342 moves upward and resets under the guidance of the guide rail 341 until the cutter 342 resets.

[0058] When the distance between the shielding cover 32 and the pressure roller 33 is adjusted for different thickness of the face sheet, the pushing part 354 and the slot on the rotating part 353 are in a horizontal state, and the pushing part 354 is parallel to the moving track of the moving part 361. At the same time, the two screw rods 362 are twisted to move the two moving parts 361 synchronously. When the two moving parts 361 move, the shielding cover 32 can be moved synchronously to adjust the distance between the shielding cover 32 and the pressure roller 33. When the two moving parts 361 move, the driving source 351, the sliding part 352 and the rotating part 353 can also be moved. However, the pushing part 354 remains stationary under the action of the positioning part 355 and the connecting part 356. When the shielding cover 32 moves, the guiding part one 343, the guiding part two 344, the elastic part 345 and the cutter 342 move synchronously. At the same time, the guide rail 341 is pushed to rotate by the cutter 342 to adjust the angle of the guide rail 341. In the case that the position of the pushing part 354 remains stationary, the position where the pushing part 354 pushes the cutter 342 to move and contact the pressure roller 33 remains unchanged.

[0059] The driving part 41 drives the plurality of containing boxes 42 to move. At this time, the cut-off strip-shaped face sheet falls into the containing box 42 after passing through the discharge hopper 13 and is moved by the containing box 42.

[0060] Although the embodiments of the present application have been shown and described above, it should be understood by those skilled in the art that the above embodiments are exemplary and cannot be understood as limiting the present application. Those skilled in the art can make changes, modifications, replacements and variations to the above embodiments within the scope of the present application.

Claims

1. A cutting device for food processing, comprising a feeding mechanism, a transfer mechanism, and a slitting mechanism, wherein the transfer mechanism and the slitting mechanism are both connected to the feeding mechanism, characterized in that, It also includes a cutting mechanism, which includes a connecting plate, a shield, a pressure roller, a cutting component, and a driving component. There are two connecting plates, both of which are connected to the feeding mechanism. The shield and the pressure roller are connected between the two connecting plates. The cutting component includes a guide rail, a cutter, a first guide part, a second guide part, and an elastic part. The guide rail is mounted on the connecting plate. The second guide part is movably connected to the shield. The first guide part is connected to the second guide part. The cutter is limited and slidably connected to the first guide part, and the cutter is slidably connected to the guide rail. The elastic part is connected between the first guide part and the shield. The driving component is connected inside the shield. The driving component can drive the cutter to move towards the direction close to the strip-shaped sheet. At the same time, the first guide part and the guide rail keep the cutter in a horizontal state and tilt it downward. The driving component includes a sliding part, a rotating part, a pushing part, and a positioning part. The connecting plate is provided with a guide groove, a slide groove, and a mounting groove. The guide groove is circular. The sliding part is slidably connected in the slide groove. The guide rail is installed in the mounting groove. The rotating part is rotatably connected to the sliding part. The pushing part is inserted into the rotating part. The positioning part is connected to the pushing part and is inserted into the guide groove. The driving component also includes a driving source, which is mounted on the connecting plate and whose output end is connected to the rotating part; The guide rail is inclined, and its two ends are divided into a low end and a high end according to their height. The low end of the guide rail is rotatably connected in the mounting groove.

2. The cutting device for food processing according to claim 1, characterized in that, The mounting groove is connected to the guide groove, and the depth of the mounting groove is greater than the depth of the guide groove.

3. The cutting device for food processing according to claim 2, characterized in that, One end of the positioning part that extends into the guide groove is connected to a connecting part, which is slidably connected within the guide groove.

4. The cutting device for food processing according to claim 1, characterized in that, Neither guide section one nor guide section two is located on the movement trajectory of the propulsion section.

5. The cutting device for food processing according to claim 1, characterized in that, It also includes an adjusting component, which includes a moving part and a screw. The moving part is slidably connected in the feeding mechanism. Both the drive source and the sliding part are connected to the moving part. The screw is threadedly connected to the feeding mechanism. One end of the screw is rotatably connected to the moving part. The shield is connected to the moving part.

6. The cutting device for food processing according to claim 1, characterized in that, The shield has a notch, through which the cutter can extend.

7. The cutting device for food processing according to claim 1, characterized in that, The material conveying mechanism includes a discharge hopper, which is located below the cutting mechanism and is used to collect and guide the cut strip-shaped sheets.

8. The cutting device for food processing according to claim 1, characterized in that, The transfer mechanism includes a conveyor and multiple containers, all of which are mounted on the conveyor.

Citation Information

Patent Citations

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