Oblique slicing machine
Through the design of the first cutter and the second cutter and the automatic conveyor belt, the existing bevel cutting machine has been solved, and efficient, stable and safe cutting of ingredients is achieved.
Patent Information
- Application Number
- CN202410078875.7
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2024-01-19
- Publication Date
- 2025-07-22
- Estimated Expiration
- 2044-01-19
AI Technical Summary
The existing bevel cutting machines have poor cutting effects and low efficiency, insufficient stability and accuracy, and not smooth enough in the cutting surface.
A oblique slicer is designed, using a first cutter and a second cutter arranged in an interlaced manner, and cutting through rotation, combining a conveyor belt to achieve automated cutting, and using a positioning plate and an engagement transmission to ensure cutting accuracy and stability.
It improves the efficiency of cutting ingredients and smoothness of the cut surface, realizes automatic cutting, ensures the stability and safety of cutting, and reduces equipment costs.
Smart Images

Figure CN120347832A_ABST
Abstract
Description
Technical Field
[0001] The present invention relates to the technical field of food cutting, and particularly relates to an inclined slicing machine. Background Art
[0002] In traditional techniques, food slicing is generally divided into two types: straight cutting and inclined cutting. Straight cutting means that the cutting tool cuts vertically with the food, and inclined cutting means that the cutting tool cuts at a certain angle with the food. Since inclined cutting can obtain sliced food with a larger cross-sectional area and make the food thinner, which is beneficial for more flavor during cooking and shortening the cooking time, generally the inclined cutting method of food slicing is more popular when the size of the food itself is small. Usually, the cutting of food is manually processed by chefs. This method not only has low efficiency, but also it is difficult to control the thickness of the food cutting, and it is difficult to ensure the uniformity of the food cutting. With the continuous maturity of food machinery and the rapid development of the market, inclined slicing machines have been widely used in large and medium-sized restaurants, hotels, and food processing and manufacturing factories, improving the efficiency of food processing and saving costs.
[0003] However, existing inclined slicing machines generally set several lower blades arranged at intervals and inclined, and several upper blades inserted opposite to the lower blades and inclined, and the upper blades are set to be liftable. During cutting, the food is placed on the lower blades, then the upper blades are driven to press down towards the lower blades, and then the lower blades are driven to reciprocate horizontally to divide the food into slices. After the food is cut, the upper blades reset. However, such inclined slicing machines have poor stability and accuracy, and the cut surface is not smooth enough. Moreover, the upper blades need to reset and then press down before each cutting, resulting in low cutting efficiency.
[0004] The technical problem to be solved by the present application is: how to solve the problems of poor cutting effect and low efficiency of existing inclined slicing machines. Summary of the Invention
[0005] In order to overcome the deficiencies of the prior art, the purpose of the present invention is to provide an inclined slicing machine, which has the characteristics of good cutting effect and high efficiency.
[0006] The technical solution adopted by the present invention is: an inclined slicing machine, comprising a frame, a conveying mechanism and a cutting mechanism installed on the frame;
[0007] The conveying mechanism includes a feeding conveyor belt and a discharging conveyor belt arranged in sequence;
[0008] The cutting mechanism is arranged between the feeding conveyor belt and the discharging conveyor belt, and the cutting mechanism includes a first cutting component and a second cutting component arranged oppositely;
[0009] The first cutting assembly includes a first cutter shaft rotatably connected to the frame, and a number of first cutters and first partitions sleeved on the first cutter shaft. The first cutter shaft is arranged above the feeding conveyor belt and the discharging conveyor belt. The first cutters are inclined with respect to the first cutter shaft, and the first cutter shaft drives the first cutters to rotate. Each first partition is arranged parallel to and alternately spaced from each first cutter;
[0010] The second cutting assembly includes a second cutter shaft rotatably connected to the frame, and a number of second cutters and second partitions sleeved on the second cutter shaft. The second cutter shaft is arranged below the feeding conveyor belt and the discharging conveyor belt. The second cutters are inclined with respect to the second cutter shaft, and the second cutter shaft drives the second cutters to rotate. Each second partition is arranged parallel to and alternately spaced from each second cutter, and each second cutter is arranged parallel to and alternately spaced from each first cutter.
[0011] For the inclined slicing machine of the present application, by arranging the first cutters and the second cutters to be staggered and opposite to each other, and the first cutters and the second cutters perform cutting by rotation, continuous cutting can be achieved, which is beneficial to improving the efficiency of inclined slicing of food materials. Moreover, during cutting, both the first cutters and the second cutters are in a rotating state, making the cut surface of the food materials smoother and flatter. The first cutters and the second cutters are respectively limited by the first spacer and the second spacer, and the structure is more reliable and stable;
[0012] In addition, in the present application, the food materials are sent into the cutting mechanism by the feeding conveyor belt for cutting, and then the cut food materials are conveyed away by the discharging conveyor belt, which is beneficial to realizing automatic cutting of food materials, avoiding manual feeding and taking of materials in the working range of the cutting mechanism, and being safer and more reliable.
[0013] In some embodiments, along the axial direction of the first cutter, there is a partial overlap between the edges of the first cutter and the second cutter.
[0014] By adopting the above technical solution, it can be ensured that the first cutter and the second cutter cooperate to cut off the food materials.
[0015] In some embodiments, the first cutting assembly further includes two first positioning plates fixed on the frame. The two first positioning plates are arranged oppositely on both sides of the first cutter shaft. The first positioning plates are provided with first card slots and first positioning ribs. The first card slots are arranged parallel to the first partitions. The first partitions are provided with first card blocks cooperating with the first card slots, and the first partitions are provided with first positioning slots cooperating with the first positioning ribs.
[0016] By adopting the above technical solution, by using the cooperation between the first card slots on the first positioning plates and the first card blocks on the first partitions, and the cooperation between the first positioning ribs on the first positioning plates and the first positioning slots on the first partitions, the first partitions can be better fixed, the positioning can be more accurate, and at the same time, it is also convenient to disassemble and assemble the first partitions.
[0017] In some embodiments, the second cutting assembly further includes two second positioning plates fixed to the frame. The two second positioning plates are oppositely arranged on both sides of the second tool shaft. The second positioning plates are provided with second clamping grooves and second positioning ribs. The second clamping grooves are arranged parallel to the second partition plate. The second partition plate is provided with second clamping blocks that cooperate with the second clamping grooves, and the second partition plate is provided with second positioning grooves that cooperate with the second positioning ribs.
[0018] By adopting the above technical solution, the cooperation between the second clamping grooves on the second positioning plates and the second clamping blocks on the second partition plate, and the cooperation between the second positioning ribs on the second positioning plates and the second positioning grooves on the second partition plate can better fix the second partition plate, making the positioning more accurate, and at the same time facilitating the disassembly and assembly of the second partition plate.
[0019] In some embodiments, a first partition plate protrudes from the side of the first cutting knife close to the second cutting knife, and a second partition plate protrudes from the side of the second cutting knife close to the first cutting knife.
[0020] By adopting the above technical solution, it is possible to prevent the first partition plate and the second partition plate from interfering with the cutting of food ingredients.
[0021] In some embodiments, a first driving gear is provided on the surface of the first tool shaft, a first driven gear that meshes and drives with the first driving gear is provided in the inner hole of the first cutting knife, a second driving gear is provided on the surface of the second tool shaft, and a second driven gear that meshes and drives with the second driving gear is provided in the inner hole of the second cutting knife.
[0022] By adopting the above technical solution, the first tool shaft and the first cutting knife are in meshing transmission, the transmission is more precise, and at the same time, the torque can be transmitted better, ensuring that the first cutting knife has sufficient cutting force. Similarly, the second tool shaft and the second cutting knife are in meshing transmission, the transmission is more precise, and at the same time, the torque can be transmitted better, ensuring that the second cutting knife has sufficient cutting force and can better cut food ingredients.
[0023] In some embodiments, a power mechanism is further included. The power mechanism includes a rotary power member, a first transmission assembly, and a second transmission assembly. The rotary power member is installed on the frame. The rotary power member drives the first tool shaft and the second tool shaft to rotate through the first transmission assembly, and the rotary power member drives the driving shafts of the feeding conveyor belt and the discharging conveyor belt to rotate through the second transmission assembly.
[0024] By adopting the above technical solution, by using one rotary power member to drive the cutting mechanism and the conveying mechanism to operate simultaneously, on the one hand, the synchronism of the conveying mechanism and the cutting mechanism can be ensured, and on the other hand, the number of power components can be saved, reducing the manufacturing cost of the equipment.
[0025] In some embodiments, the first transmission assembly includes a first sprocket, a second sprocket, a first gear, and a second gear. The first sprocket is fixedly connected to the output end of the rotary power member, the second sprocket is fixedly connected to one end of the second cutter shaft, the first sprocket and the second sprocket are connected by a chain drive, the first gear is sleeved on one end of the second cutter shaft close to the second sprocket, the second gear is sleeved on one end of the first cutter shaft close to the second sprocket, and the first gear and the second gear are in meshing transmission.
[0026] By adopting the above technical solution, with the cooperation of the sprocket and the chain and through the meshing transmission of the gears, the transmission is more efficient and accurate, and can better transmit the torque.
[0027] In some embodiments, the second transmission assembly includes a third gear, a fourth gear, and a fifth gear. The third gear is sleeved on one end of the second cutter shaft far from the second sprocket, the fourth gear is sleeved on the driving shaft of the feeding conveyor belt, the fifth gear is sleeved on the driving shaft of the discharging conveyor belt, and the third gear, the fourth gear, and the fifth gear are in meshing transmission.
[0028] By adopting the above technical solution, through the meshing transmission of the gears, the transmission is more efficient and accurate, and can better transmit the torque.
[0029] In some embodiments, the second transmission assembly further includes a sixth gear and a seventh gear rotatably arranged on the frame. The sixth gear is arranged between the third gear and the fourth gear, and the sixth gear is in meshing transmission with the third gear and the fourth gear. The seventh gear is arranged between the third gear and the fifth gear, and the seventh gear is in meshing transmission with the third gear and the fifth gear.
[0030] By adopting the above technical solution, through the meshing transmission of the gears, the transmission is more efficient and accurate, and can better transmit the torque. BRIEF DESCRIPTION OF THE DRAWINGS
[0031] Figure 1 is a schematic structural diagram of an inclined slicing machine according to a preferred embodiment of the present invention;
[0032] Figure 2 is Figure 1 another visual structural diagram of the inclined slicing machine shown in FIG., where the protective cover is not shown;
[0033] Figure 3 is Figure 2 another perspective structural diagram of the inclined slicing machine shown in FIG., where the protective cover is not shown;
[0034] Figure 4 is Figure 2 a schematic structural diagram of the cutting mechanism in the inclined slicing machine shown in FIG.;
[0035] Figure 5 is Figure 4Schematic structural diagram of the first cutting component in the cutting mechanism shown;
[0036] Figure 6 is Figure 5 Exploded schematic structural diagram of the first cutting component in the cutting mechanism shown;
[0037] Figure 7 is Figure 4 Schematic structural diagram of the second cutting component in the cutting mechanism shown;
[0038] In the figure: 100, inclined slicing machine; 10, frame; 20, conveying mechanism; 21, feeding conveyor belt; 22, discharging conveyor belt; 30, cutting mechanism; 31, first cutting component; 311, first cutter shaft; 312, first cutter; 313, first partition; 314, first positioning plate; 3141, first card slot; 3142, first positioning rib; 32, second cutting component; 321, second cutter shaft; 322, second cutter; 323, second partition; 324, second positioning plate; 3241, second card slot; 3242, second positioning rib; 40, power mechanism; 41, rotating power member; 42, first transmission component; 421, first sprocket; 422, second sprocket; 423, first gear; 424, second gear; 43, second transmission component; 431, third gear; 432, fourth gear; 433, fifth gear; 434, sixth gear; 435, seventh gear. Detailed implementation manner
[0039] Next, the technical solutions in the embodiments of the present invention will be clearly and completely described in conjunction with the accompanying drawings in the embodiments of the present invention. Obviously, the described embodiments are only a part of the embodiments of the present invention, rather than all the embodiments. Based on the embodiments of the present invention, all other embodiments obtained by those of ordinary skill in the art without making creative efforts shall fall within the protection scope of the present invention.
[0040] It should be noted that when an element is referred to as being "fixed to" another element, it can be directly on the other element or there can also be an intermediate element. When an element is considered to be "connected" to another element, it can be directly connected to the other element or there may be an intermediate element at the same time. When the number of an element is referred to as having "a plurality", it can be any number of two or more. The terms "vertical", "horizontal", "left", "right" and similar expressions used herein are for illustrative purposes only and do not represent the only implementation manner.
[0041] Unless otherwise defined, all technical and scientific terms used herein have the same meaning as commonly understood by one of ordinary skill in the technical field to which this invention belongs. The terms used in the description of the present invention herein are for the purpose of describing specific embodiments only and are not intended to limit the present invention. The term "and / or" used herein includes any and all combinations of one or more of the related listed items.
[0042] Please refer to Figures 1 to 7 , which is an inclined slicer 100 according to a preferred embodiment of the present invention, including a frame 10, a conveying mechanism 20 mounted on the frame 10, a cutting mechanism 30, and a power mechanism 40. The power mechanism 40 is used to drive the conveying mechanism 20 and the cutting mechanism 30.
[0043] As Figure 1 shown, the conveying mechanism 20 includes a feeding conveyor belt 21 and a discharging conveyor belt 22 arranged in sequence; the feeding conveyor belt is arranged at the feeding end of the frame 10, the discharging conveyor belt 22 is arranged at the discharging end of the frame 10, and the feeding conveyor belt 21 and the discharging conveyor belt 22 are arranged horizontally. Optionally, the feeding conveyor belt 21 and the discharging conveyor belt 22 are track conveyor belts.
[0044] Please refer to Figure 2 and Figure 3 , the cutting mechanism 30 is arranged between the feeding conveyor belt 21 and the discharging conveyor belt 22. The cutting mechanism 30 includes a first cutting assembly 31 and a second cutting assembly 32 arranged opposite to each other. Among them, the first cutting assembly 31 is arranged above the feeding conveyor belt 21 and the discharging conveyor belt 22, and the second cutting assembly 32 is arranged below the feeding conveyor belt 21 and the discharging conveyor belt 22.
[0045] Please refer to Figure 4 , the first cutting assembly 31 includes a first knife shaft 311 rotatably connected to the frame 10, and a number of first cutting knives 312 and first partitions 313 sleeved on the first knife shaft 311. The first knife shaft 311 is arranged above the feeding conveyor belt 21 and the discharging conveyor belt 22. The first cutting knives 312 are inclined with respect to the first knife shaft 311, and the first knife shaft 311 drives the first cutting knives 312 to rotate. Each first partition 313 is arranged parallel and alternately spaced from each first cutting knife 312.
[0046] The second cutting assembly includes a second knife shaft 321 rotatably connected to the frame 10, and a number of second cutting knives 322 and second partitions 323 sleeved on the second knife shaft 321. The second knife shaft 321 is arranged below the feeding conveyor belt 21 and the discharging conveyor belt 22. The second cutting knives 322 are inclined with respect to the second knife shaft 321, and the second knife shaft 321 drives the second cutting knives 322 to rotate. Each second partition 323 is arranged parallel and alternately spaced from each second cutting knife 322, and each second cutting knife 322 is arranged parallel and alternately spaced from each first cutting knife 312.
[0047] Further, in order to ensure that the food ingredients can be cut, along the axial direction of the first cutting knife 312, there is partial overlap between the edges of the first cutting knife 312 and the second cutting knife 322, which can ensure that the first cutting knife 312 and the second cutting knife 322 cooperate to cut the food ingredients.
[0048] As Figures 4 to 6 shown, the first cutting assembly 31 further includes two first positioning plates 314 fixed on the frame 10. The two first positioning plates 314 are oppositely arranged on both sides of the first knife shaft 311. The first positioning plate 314 is provided with a first card slot 3141 and a first positioning rib 3142. The first card slot 3141 is arranged in parallel with the first partition plate 313. The first partition plate 313 is provided with a first card block that cooperates with the first card slot 3141, and the first partition plate 313 is provided with a first positioning slot that cooperates with the first positioning rib 3142. By using the cooperation between the first card slot 3141 on the first positioning plate 314 and the first card block on the first partition plate 313, and the cooperation between the first positioning rib 3142 on the first positioning plate 314 and the first positioning slot on the first partition plate 313, the first partition plate 313 can be better fixed, making the positioning more accurate, and at the same time, it is also convenient to disassemble and assemble the first partition plate 313.
[0049] Please refer to Figure 4 With Figure 7 , the second cutting assembly 32 further includes two second positioning plates 324 fixed on the frame 10. The two second positioning plates 324 are oppositely arranged on both sides of the second knife shaft 321. The second positioning plate 324 is provided with a second card slot 3241 and a second positioning rib 3242. The second card slot 3241 is arranged in parallel with the second partition plate 323. The second partition plate 323 is provided with a second card block that cooperates with the second card slot 3241, and the second partition plate 323 is provided with a second positioning slot that cooperates with the second positioning rib 3242. By using the cooperation between the second card slot 3241 on the second positioning plate 324 and the second card block on the second partition plate 323, and the cooperation between the second positioning rib 3242 on the second positioning plate 324 and the second positioning slot on the second partition plate 323, the second partition plate 323 can be better fixed, making the positioning more accurate, and at the same time, it is also convenient to disassemble and assemble the second partition plate 323.
[0050] Preferably, in order to prevent the food ingredients from slipping during cutting when cutting relatively slippery food ingredients, a plurality of convex teeth are arranged at intervals on the edge of the second cutting knife 322. When cutting the food ingredients, the convex teeth will insert into the food ingredients to prevent the food ingredients from slipping.
[0051] To prevent interference in food ingredient cutting between the first partition plate 313 and the second partition plate 323, a first partition plate 313 protrudes on the side of the first cutting knife 312 close to the second cutting knife 322, and a second partition plate 323 protrudes on the side of the second cutting knife 322 close to the first cutting knife 312. Further, to prevent the first cutting knife 312 and the second cutting knife 322 from harming the operator during equipment cleaning, the first cutting knife 312 has a first partition plate 313 protruding on the part close to the second cutting knife 322, and the edges of other parts should not protrude beyond the edges of the first partition plate 313. Similarly, the second cutting knife 322 has a second partition plate 323 protruding on the part close to the first cutting knife 312, and the edges of other parts should not protrude beyond the edges of the second partition plate 323.
[0052] As Figure 5 shown in Figure 7 this embodiment, on the surface of the first cutter shaft 311, a first driving gear is provided, and in the inner hole of the first cutting knife 312, a first driven gear meshing with the first driving gear is provided. On the surface of the second cutter shaft 321, a second driving gear is provided, and in the inner hole of the second cutting knife 322, a second driven gear meshing with the second driving gear is provided. The first cutter shaft 311 and the first cutting knife 312 are in meshing transmission, with more precise transmission. At the same time, the torque can be better transmitted to ensure that the first cutting knife 312 has sufficient cutting force. Similarly, the second cutter shaft 321 and the second cutting knife 322 are in meshing transmission, with more precise transmission. At the same time, the torque can be better transmitted to ensure that the second cutting knife 322 has sufficient cutting force, enabling better cutting of food ingredients.
[0053] Please also refer to Figure 2 shown in Figure 3 and
[0054] As Figure 2As shown in the figure, the first transmission assembly 42 includes a first sprocket 421, a second sprocket 422, a first gear 423 and a second gear 424. The first sprocket 421 is fixedly connected to the output end of the rotary power member 41. The second sprocket 422 is fixedly connected to one end of the second cutter shaft 321. The first sprocket 421 and the second sprocket 422 are connected by chain drive. The first gear 423 is sleeved on one end of the second cutter shaft 321 close to the second sprocket 422. The second gear 424 is sleeved on one end of the first cutter shaft 311 close to the second sprocket 422. The first gear 423 and the second gear 424 are in meshing transmission. By using the cooperation of the sprocket and the chain and the meshing transmission through the gears, the transmission is more efficient and accurate, and can better transmit torque.
[0055] As Figure 3 shown in the figure, the second transmission assembly 43 includes a third gear 431, a fourth gear 432 and a fifth gear 433. The third gear 431 is sleeved on one end of the second cutter shaft 321 far from the second sprocket 422. The fourth gear 432 is sleeved on the driving shaft of the feeding conveyor belt 21. The fifth gear 433 is sleeved on the driving shaft of the discharging conveyor belt 22. The third gear 431, the fourth gear 432 and the fifth gear 433 are in meshing transmission.
[0056] In this embodiment, since the distances between the second cutter shaft 321, the driving shaft of the feeding conveyor belt 21 and the driving shaft of the discharging conveyor belt 22 are relatively far, the transmission assembly further includes a sixth gear 434 and a seventh gear 435 rotatably arranged on the frame 10. The sixth gear 434 is arranged between the third gear 431 and the fourth gear 432, and the sixth gear 434 is in meshing transmission with the third gear 431 and the fourth gear 432. The seventh gear 435 is arranged between the third gear 431 and the fifth gear 433, and the seventh gear 435 is in meshing transmission with the third gear 431 and the fifth gear 433.
[0057] In this embodiment, for safety assurance, a cutting protective cover (not labeled in the figure) is covered on the cutting mechanism 30, a feeding protective cover (not labeled in the figure) is covered on one end of the feeding conveyor belt 21 close to the cutting mechanism 30, and a discharging protective cover (not labeled in the figure) is covered on one end of the discharging conveyor belt 22 close to the cutting mechanism 30.
[0058] When using the oblique slicing machine 100 of the present application to cut food materials, the food materials are placed on the feeding conveyor belt 21. The feeding conveyor belt 21 conveys the food materials into the cutting mechanism 30. The first cutter shaft 311 drives the first cutter 312 to rotate, and the second cutter shaft 321 drives the second cutter 322 to rotate. Under the cooperation of the first cutter 312 and the second cutter 322, the food materials are obliquely sliced into thin slices. The sliced food materials are then conveyed away by the discharging conveyor belt 22.
[0059] The diagonal slicing machine 100 of the present application is provided with a first cutting knife 312 and a second cutting knife 322 which are arranged staggeredly opposite to each other, and the first cutting knife 312 and the second cutting knife 322 perform cutting by rotation, so that continuous cutting can be achieved, which is beneficial to improving the efficiency of diagonal slicing of food materials. Moreover, during cutting, both the first cutting knife 312 and the second cutting knife 322 are in a rotating state, making the cut surface of the food material smoother and flatter. And the first cutting knife 312 and the second cutting knife 322 are limited by a first spacer and a second spacer respectively, and the structure is more reliable and stable. In addition, in the present application, the food material is sent into the cutting mechanism 30 by the feeding conveyor belt 21 for cutting, and then the cut food material is conveyed away by the discharging conveyor belt 22, which is beneficial to realizing automatic cutting of the food material, avoiding manual feeding and taking in the working range of the cutting mechanism 30, and is safer and more reliable.
[0060] Finally, it should be noted that the above are only preferred examples of the present invention and are not used to limit the present invention. Although the present invention has been described in detail with reference to the foregoing embodiments, for those skilled in the art, they can still modify the technical solutions described in the foregoing embodiments, or perform equivalent replacements for some of the technical features. Any modifications, equivalent replacements, improvements, etc. made within the spirit and principle of the present invention shall be included within the protection scope of the present invention.
Claims
1. An inclined slicing machine (100), comprising a frame (10), a conveying mechanism (20) and a cutting mechanism (30) mounted on the frame (10), characterized in that: The conveying mechanism (20) includes a feeding conveyor belt (21) and a discharging conveyor belt (22) arranged in sequence; The cutting mechanism (30) is arranged between the feeding conveyor belt (21) and the discharging conveyor belt (22), and the cutting mechanism (30) includes a first cutting assembly (31) and a second cutting assembly (32) arranged oppositely; The first cutting assembly (31) includes a first cutter shaft (311) rotatably connected to the frame (10), and a plurality of first cutters (312) and first partition plates (313) sleeved on the first cutter shaft (311). The first cutter shaft (311) is arranged above the feeding conveyor belt (21) and the discharging conveyor belt (22). The first cutters (312) are inclined with respect to the first cutter shaft (311), and the first cutter shaft (311) drives the first cutters (312) to rotate. Each of the first partition plates (313) is arranged parallel and alternately spaced from each of the first cutters (312); The second cutting assembly includes a second cutter shaft (321) rotatably connected to the frame (10), and a plurality of second cutters (322) and second partition plates (323) sleeved on the second cutter shaft (321). The second cutter shaft (321) is arranged below the feeding conveyor belt (21) and the discharging conveyor belt (22). The second cutters (322) are inclined with respect to the second cutter shaft (321), and the second cutter shaft (321) drives the second cutters (322) to rotate. Each of the second partition plates (323) is arranged parallel and alternately spaced from each of the second cutters (322), and each of the second cutters (322) is arranged parallel and alternately spaced from each of the first cutters (312).
2. The inclined slicer (100) according to claim 1, wherein, Along the axial direction of the first cutter (312), there is partial overlap between the edges of the first cutter (312) and the second cutter (322).
3. The inclined slicing machine (100) according to claim 1, wherein The first cutting assembly (31) further includes two first positioning plates (314) fixed to the frame (10). The two first positioning plates (314) are arranged oppositely on both sides of the first cutter shaft (311). The first positioning plates (314) are provided with a first card slot (3141) and a first positioning rib (3142). The first card slot (3141) is arranged parallel to the first partition plate (313). The first partition plate (313) is provided with a first card block cooperating with the first card slot (3141), and the first partition plate (313) is provided with a first positioning slot cooperating with the first positioning rib (3142).
4. The inclined slicing machine (100) according to claim 1, characterized in that, The second cutting assembly (32) further includes two second positioning plates (324) fixed to the frame (10). The two second positioning plates (324) are oppositely arranged on both sides of the second cutter shaft (321). The second positioning plates (324) are provided with a second card slot (3241) and a second positioning rib (3242). The second card slot (3241) is arranged parallel to the second partition plate (323). The second partition plate (323) is provided with a second card block that cooperates with the second card slot (3241), and the second partition plate (323) is provided with a second positioning slot that cooperates with the second positioning rib (3242).
5. The inclined slicer (100) according to claim 1, characterized in that, One side of the first cutter (312) close to the second cutter (322) protrudes with a first partition plate (313), and one side of the second cutter (322) close to the first cutter (312) protrudes with a second partition plate (323).
6. The oblique slicing machine (100) according to claim 1, characterized in that, The surface of the first cutter shaft (311) is provided with a first driving gear, and the inner hole of the first cutter (312) is provided with a first driven gear that meshes and drives with the first driving gear. The surface of the second cutter shaft (321) is provided with a second driving gear, and the inner hole of the second cutter (322) is provided with a second driven gear that meshes and drives with the second driving gear.
7. The inclined slicing machine (100) according to claim 1, characterized in that, It further includes a power mechanism (40). The power mechanism (40) includes a rotary power member (41), a first transmission assembly (42) and a second transmission assembly (43). The rotary power member (41) is installed on the frame (10). The rotary power member (41) drives the first cutter shaft (311) and the second cutter shaft (321) to rotate through the first transmission assembly (42), and the rotary power member (41) drives the driving shafts of the feeding conveyor belt (21) and the discharging conveyor belt (22) to rotate through the second transmission assembly (43).
8. The inclined slicing machine (100) according to claim 7, characterized in that, The first transmission assembly (42) includes a first sprocket (421), a second sprocket (422), a first gear (423) and a second gear (424). The first sprocket (421) is fixedly connected to the output end of the rotary power member (41). The second sprocket (422) is fixedly connected to one end of the second cutter shaft (321). The first sprocket (421) and the second sprocket (422) are connected by a chain drive. The first gear (423) is sleeved on one end of the second cutter shaft (321) close to the second sprocket (422). The second gear (424) is sleeved on one end of the first cutter shaft (311) close to the second sprocket (422). The first gear (423) and the second gear (424) are in meshing transmission.
9. The inclined slicing machine (100) according to claim 8, characterized in that, The second transmission assembly (43) includes a third gear (431), a fourth gear (432) and a fifth gear (433). The third gear (431) is sleeved on one end of the second cutter shaft (321) far from the second sprocket (422). The fourth gear (432) is sleeved on the driving shaft of the feeding conveyor belt (21). The fifth gear (433) is sleeved on the driving shaft of the discharging conveyor belt (22). The third gear (431), the fourth gear (432) and the fifth gear (433) are in meshing transmission.
10. The inclined slicing machine (100) according to claim 9, characterized in that, The second transmission component (43) further includes a sixth gear (434) and a seventh gear (435) rotatably arranged on the frame (10). The sixth gear (434) is arranged between the third gear (431) and the fourth gear (432), and the sixth gear (434) meshes and drives with the third gear (431) and the fourth gear (432). The seventh gear (435) is arranged between the third gear (431) and the fifth gear (433), and the seventh gear (435) meshes and drives with the third gear (431) and the fifth gear (433).
Citation Information
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