A dicing machine with conveying function

CN224616511UActive Publication Date: 2026-08-11GUANGDONG ZHIWEI MIAOZHUO INTELLIGENT MASCH MFG CO LTD
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-07-17
Publication Date
2026-08-11

AI Technical Summary

Technical Problem

[0003]目前现有的切丁设备在切片结构部分大多安装固定刀具进行切片,通过滚筒将食品甩到固定刀具上,切成片状,但这种结构在切割时需要极快的甩出速度,这种模式虽然可以使得设备具有较快的切片速度,但过快的甩出速度会导致切片的食品在短时间内容易相互相撞,然后形成不规则堆叠,影响切条乃至后续的切丁工作,使得食品最终切割的形状大小不统一,从而影响加工质量

Benefits of technology

1.进行食品原料切丁加工时,可将食品原料放入甩料组件中进行甩出,切片驱动件驱使切片刀转动,食品原料甩出后被切片刀切成片状,切片刀与甩料组件相互独立,因此甩料速度不需过快,且切片后食品原料掉落到输送组件上,输送状态的输送组件使食品原料有序摊放,因此在甩料组件与输送组件的作用下,可减少食品原料切片后堆叠在切条组件处的情况,提高切割加工质量,同时也减少食品原料切片掉落后被弹飞的情况;

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Abstract

This application relates to the field of food processing equipment technology, and in particular to a dicing machine with a conveying function. The machine includes a body, a material-discharging assembly on one side of the body, a slicing blade mounted on the body and close to the material-discharging assembly, a slicing drive component for rotating the slicing blade, a strip-cutting assembly and a dicing assembly on the body, a conveying assembly between the slicing blade and the strip-cutting assembly, and a protective cover on the side of the machine body near the slicing blade. This application improves the quality of food dicing processing.
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Description

Technical Field

[0001] This application relates to the field of food processing equipment technology, and in particular to a dicing machine with conveying function. Background Technology

[0002] In the catering or food processing industry, food ingredients need to be cut before further processing or cleaning. Dicing food ingredients is a common processing method. Currently, before using dicing equipment to dice food ingredients, at least the steps of slicing and slicing are required in sequence. Therefore, dicing machines are usually equipped with three sets of blades, which are used to slice, slice and dice food ingredients respectively.

[0003] Most existing dicing equipment uses fixed blades in its slicing structure. Food is thrown onto the fixed blades by a roller and cut into slices. However, this structure requires extremely high throwing speed during cutting. Although this mode can make the equipment have a fast slicing speed, the excessively high throwing speed will cause the sliced ​​food to collide with each other in a short time, forming irregular stacks. This affects the cutting of strips and even subsequent dicing, resulting in inconsistent shapes and sizes of the final cut food, thus affecting the processing quality. Summary of the Invention

[0004] In order to improve the quality of food dicing, this application provides a dicing machine with a conveying function.

[0005] This application provides a dicing machine with a conveying function, which adopts the following technical solution: A dicing machine with conveying function includes a machine body, a material throwing assembly on one side of the machine body, a slicing blade on the machine body, the slicing blade being close to the material throwing assembly, a slicing drive component on the machine body for driving the slicing blade to rotate, a strip cutting assembly and a dicing assembly on the machine body, a conveying assembly between the slicing blade and the strip cutting assembly, and a protective cover on the side of the machine body near the slicing blade.

[0006] By adopting the above technical solution, when processing diced food raw materials, the food raw materials can be placed into the slitting assembly for slitting. The slicing drive drives the slicing blade to rotate. After the food raw materials are slitted out, they are cut into slices by the slicing blade. The slicing blade and the slitting assembly are independent of each other, so the slitting speed does not need to be too fast. After slicing, the food raw materials fall onto the conveying assembly. The conveying assembly in the conveying state makes the food raw materials spread out in an orderly manner. Therefore, under the action of the slitting assembly and the conveying assembly, the situation of food raw materials piling up at the slicing assembly after slicing can be reduced, improving the cutting and processing quality. At the same time, it also reduces the situation of food raw material slices being bounced away after falling.

[0007] Optionally, the conveying assembly includes a conveying roller, a conveying drive, and a conveyor belt. The conveying roller is rotatably connected to the machine body, driving the conveying drive to be installed inside the machine body. The drive end of the conveying drive is connected to the conveying roller, and the conveyor belt is wound around the conveying roller.

[0008] By adopting the above technical solution, after the food raw materials are sliced, they can fall onto the conveyor belt, and the conveyor belt can buffer and reduce the shock of the falling food raw materials.

[0009] Optionally, the slicing assembly includes a slicing shaft and a slicing blade, the end of the slicing shaft is rotatably connected to the machine body, and the slicing blade is connected to the slicing shaft; the dicing assembly includes a dicing cylinder and a dicing blade, the dicing cylinder is detachably connected to the machine body, and the dicing blade is connected to the dicing cylinder.

[0010] By adopting the above technical solution, after the food raw materials are sliced, they can be cut into strips and cubes using a strip cutter and a cube cutter respectively, thereby completing the cutting step.

[0011] Optionally, a drive shaft is rotatably connected to the side wall of the machine body, the dicing cylinder is inserted into the drive shaft, and a fixed cylinder is detachably connected to the drive shaft, the fixed cylinder abutting against the dicing cylinder.

[0012] By adopting the above technical solution, when it is necessary to disassemble the dicing cylinder, the fixed cylinder part can be removed, and the dicing cylinder can be pulled out for cleaning or replacement.

[0013] Optionally, the machine body is provided with a power drive component, which is used to drive the cutting shaft and the transmission shaft to rotate.

[0014] By adopting the above technical solution, when it is necessary to cut strips or cubes, the power drive component can be made to drive the strip cutting shaft and the transmission shaft to rotate, thereby driving the strip cutting blade and the cube cutting blade to cut into cubes.

[0015] Optionally, the cutting blades are arranged at intervals on the cutting shaft, and a support cylinder is rotatably connected to the machine body. The support cylinder is close to the bottom of the cutting blades, and a clearance groove is provided on the support cylinder, the position of which corresponds to the cutting blades.

[0016] By adopting the above technical solution, after the food raw materials are sliced, they can be conveyed to the support cylinder through the conveying component. The support cylinder supports the bottom of the food raw materials, so that the food raw materials can be completely cut by the slicing knife.

[0017] Optionally, a limiting comb is rotatably connected to the machine body. The limiting comb is located between the conveying assembly and the cutting blade. A comb groove is provided on the limiting comb, and the cutting blade is inserted into the comb groove.

[0018] By adopting the above technical solution, the limiting comb roller can limit the food raw materials during the cutting process, reduce the vertical movement of the food raw materials during cutting, and improve stability.

[0019] Optionally, the material-slinging assembly includes a material-slinging cylinder, a material-slinging dial, and a material-slinging drive. The material-slinging cylinder is fixedly connected to the machine body, and a material-slinging port is opened on one side of the material-slinging cylinder. The slicing blade is close to the material-slinging port. The material-slinging dial is located inside the material-slinging cylinder and is rotatably connected to the machine body. The material-slinging drive is installed inside the machine body, and the drive end of the material-slinging drive is connected to the material-slinging dial.

[0020] By adopting the above technical solution, food raw materials can be put into the feeding hopper during processing, and then fed into the feeding cylinder through the feeding port for feeding. The food raw materials are cut into slices by the slicing knife while making circular motion.

[0021] Optionally, a thickness adjustment plate is rotatably connected to the material throwing cylinder, the thickness adjustment plate is located at the material throwing port, and the material throwing cylinder is provided with a thickness adjustment component for adjusting the position of the thickness adjustment plate.

[0022] By adopting the above technical solution, the thickness adjustment component can adjust the position of the thickness adjustment bending plate and the distance between the thickness adjustment bending plate and the slicing blade, thereby adjusting the slicing thickness of the food raw materials.

[0023] In summary, this application includes at least one of the following beneficial technical effects: 1. When dicing food ingredients, the food ingredients can be placed into the slitting assembly for slitting. The slicing drive drives the slicing blade to rotate. After the food ingredients are slitted out, they are cut into slices by the slicing blade. The slicing blade and the slitting assembly are independent of each other, so the slitting speed does not need to be too fast. After slicing, the food ingredients fall onto the conveying assembly. The conveying assembly in the conveying state makes the food ingredients spread out in an orderly manner. Therefore, under the action of the slitting assembly and the conveying assembly, the stacking of food ingredients after slicing at the slicing assembly can be reduced, improving the cutting quality. At the same time, it also reduces the situation where food ingredients are bounced away after falling. 2. After the food ingredients are sliced, they may fall onto the conveyor belt, which can cushion and absorb the falling food ingredients. 3. When it is necessary to disassemble the dicing cylinder, the fixed cylinder part can be removed, and the dicing cylinder can be pulled out for cleaning or replacement. Attached Figure Description

[0024] Figure 1 This is a schematic diagram of the overall structure in an embodiment of this application.

[0025] Figure 2 This is a schematic diagram of the structure after the protective cover is flipped in an embodiment of this application.

[0026] Figure 3This is a schematic diagram of the cooperation between the slicing blade and the limiting comb in an embodiment of this application.

[0027] Figure 4 This is a schematic diagram of the slicing blade and the limiting comb from another angle in an embodiment of this application.

[0028] Figure 5 This is a cross-sectional view of the dicing cylinder in an embodiment of this application.

[0029] Explanation of reference numerals in the attached figures: 1. Machine body; 11. Protective cover; 12. Support cylinder; 13. Alternating groove; 14. Rotary motor; 15. Limiting comb; 16. Comb groove; 2. Mounting plate; 21. Slicing blade; 22. Slicing drive component; 31. Conveying roller; 32. Conveying drive component; 33. Conveying belt; 41. Slicing shaft; 42. Slicing blade; 51. Dicing cylinder; 511. Insert plate; 52. Dicing blade; 53. Drive shaft; 531. Insert block; 532. Limiting plate; 54. Fixed cylinder component; 55. Threaded column; 61. Drive motor; 71. Discharge cylinder; 72. Discharge dial; 721. Dial plate; 73. Discharge drive component; 74. Feed hopper; 75. Connecting plate; 76. Rotating rod; 77. Adjusting screw; 81. Thickness adjusting bending plate; 82. Connecting block; 83. Connecting rod. Detailed Implementation

[0030] The following is in conjunction with the appendix Figure 1-5 This application will be described in further detail.

[0031] This application discloses a dicing machine with a conveying function.

[0032] Reference Figure 1 and Figure 2 A dicing machine with conveying function includes a body 1. A material throwing assembly is provided on one side of the body 1. A mounting plate 2 is provided on the side of the body 1 near the material throwing assembly. A slicing blade 21 is rotatably connected to the mounting plate 2. The slicing blade 21 is a circular blade. The slicing blade 21 is close to the material throwing assembly. A slicing drive component 22 for driving the slicing blade 21 to rotate is provided on the mounting plate 2. The slicing drive component 22 is a motor. The drive end of the slicing drive component 22 is connected to the slicing blade 21. A strip cutting assembly and a dicing assembly are provided on the body 1. A conveying assembly is provided between the slicing blade 21 and the strip cutting assembly. A protective cover 11 is provided on the side of the body 1 near the slicing blade 21. The protective cover 11 covers the slicing blade 21, the conveying assembly, the strip cutting assembly and the dicing assembly. A discharge port is opened at the bottom of the protective cover 11. The discharge port is close to the dicing assembly.

[0033] When food ingredients need to be diced, they can be placed into the feeding assembly. After being output from the feeding assembly, the food ingredients pass through the slicing blade 21. Driven by the slicing drive 22, the slicing blade 21 rotates to slice the food ingredients. Since the slicing blade 21 and the feeding assembly are independent of each other, the feeding speed of the feeding assembly does not need to be set too fast, reducing the stacking of food ingredients after slicing at the strip cutting assembly. The rapid rotation of the slicing blade 21 can still complete a good slicing job, making the slicing quality controllable. After slicing, the food ingredients fall onto the conveying assembly. The conveying assembly in the conveying state makes the food ingredients spread out in an orderly manner, further reducing the excessive stacking of food ingredients after slicing. Then, under the conveying of the conveying assembly, they are sent to the strip cutting assembly for cutting into strips. The conveying assembly can act as a receiving and buffering mechanism for the food ingredients, so that the food ingredients are cut into strips and diced in a sequentially spread state, thereby reducing the stacking of food ingredients after slicing at the strip cutting assembly and affecting the cutting of strips, improving the processing quality, and also reducing the situation where food ingredients bounce after falling.

[0034] Reference Figure 2 and Figure 3 The conveying assembly is located below the slicing blade 21. The conveying assembly includes a conveying roller 31, a conveying drive 32, and a conveying belt 33. The conveying roller 31 is rotatably connected to the side wall of the machine body 1. The conveying drive 32 is a motor. The conveying drive 32 is installed on the inner wall of the machine body 1. The drive end of the conveying drive 32 is connected to the conveying roller 31. The conveying belt 33 is wound around the conveying roller 31.

[0035] After the food ingredients are sliced, they can fall onto the conveyor belt 33, and then be transported by the conveyor belt 33 to the slicing and dicing components for slicing. The conveyor belt 33 can buffer and absorb the falling food ingredients, so that the food ingredients are laid out on the conveyor belt 33 as much as possible. This reduces the situation where a large amount of food ingredients are irregularly piled up at the slicing component after slicing, which affects the slicing, improves processing stability, and reduces the situation where food ingredients bounce after falling.

[0036] Reference Figure 3 and Figure 4 The slicing assembly includes a slicing shaft 41 and a slicing blade 42. The end of the slicing shaft 41 is rotatably connected to the machine body 1. The slicing blade 42 is connected to the slicing shaft 41 and is in the shape of a circular blade. The dicing assembly includes a dicing cylinder 51 and a dicing blade 52. The dicing cylinder 51 is detachably connected to the machine body 1. The dicing blade 52 is distributed and connected to the dicing cylinder 51 in a circumferential direction. The dicing blade 52 is in the shape of a straight blade and its extension direction is consistent with the extension direction of the dicing cylinder 51.

[0037] After the food ingredients are sliced, they can be cut into strips and cubes using the strip cutter 42 and the cube cutter 52 respectively, thus completing the cutting process. When it is necessary to clean the cube cutter 52, the cube cutter tube 51 can be removed for easy cleaning.

[0038] Reference Figure 4 and Figure 5 A drive shaft 53 is rotatably connected to the side wall of the machine body 1. A dicing cylinder 51 is inserted into the drive shaft 53. A plug-in block 531 is connected to the side wall of the drive shaft 53. The plug-in block 531 is a polygonal block. A plug-in plate 511 is connected to the inner side wall of the dicing cylinder 51. The side wall of the plug-in plate 511 has a plug-in hole through which the drive shaft 53 can pass. The wall of the plug-in hole abuts against the side wall of the plug-in block 531. A fixed cylinder 54 is detachably connected to the drive shaft 53. The fixed cylinder 54 is a cover-shaped component. The drive shaft 53 is located away from the drive shaft 53. One end of the body 1 is provided with a threaded hole, and the inner wall of the fixed cylinder 54 is provided with a threaded post 55. The threaded post 55 is threadedly connected to the threaded hole of the transmission shaft 53. The fixed cylinder 54 abuts against the side wall of the plug plate 511. The side wall of the plug block 531 is provided with a limiting plate 532. The limiting plate 532 abuts against the side of the plug plate 511 away from the fixed cylinder 54. The transmission shaft 53 is provided with a hexagonal fixing block. When disassembling the fixed cylinder 54, the hexagonal fixing block can be clamped, thereby reducing the rotation of the transmission shaft 53 during disassembly.

[0039] When it is necessary to disassemble the cutting cylinder 51, the fixed cylinder part 54 can be removed, and the cutting cylinder 51 can be pulled out from the insertion block 531 for cleaning or replacement.

[0040] The machine body 1 is equipped with a power drive component, which is used to drive the cutting shaft 41 and the transmission shaft 53 to rotate. The power drive component is a motor and is installed inside the machine body 1. The driving end of the power drive component is connected to the transmission shaft 53. The driving end of the power drive component is also connected to the cutting shaft 41 through a sprocket and chain structure.

[0041] When slicing into strips or cubes is required, the drive motor 61 can drive the transmission shaft 53 to rotate, which in turn drives the dicing cylinder 51 to rotate and cut into cubes. Simultaneously, the slicing shaft 41 and the slicing blade 42 rotate to cut into strips, thereby performing the cutting.

[0042] There are two or more slicing blades 42, which are arranged at intervals on the slicing shaft 41. A support cylinder 12 is rotatably connected to the machine body 1. The extension direction of the rotation axis of the support cylinder 12 is consistent with the extension direction of the slicing shaft 41. The support cylinder 12 is close to the bottom of the slicing blade 42. A clearance groove 13 is provided on the support cylinder 12. The position of the clearance groove 13 corresponds to that of the slicing blade 42. The bottom of the slicing blade 42 is inserted into the clearance groove 13. A rotary motor 14 is provided inside the machine body 1. The drive end of the rotary motor 14 is connected to the support cylinder 12.

[0043] After the food ingredients are sliced, they can be conveyed to the support cylinder 12 through the conveying component. Since the slitting groove 13 allows the cutting blade 42 to be inserted, and with the support of the support cylinder 12, the food ingredients can be completely cut by the cutting blade 42, ensuring the cutting quality. When the rotary motor 14 drives the support cylinder 12 to rotate, it can further transport the food ingredients to the cutting blade 42 and the dicing blade 52 for cutting into strips or cubes.

[0044] A limiting comb 15 is rotatably connected to the machine body 1. The extension direction of the rotation axis of the limiting comb 15 is consistent with the extension direction of the cutting shaft 41. The limiting comb 15 is located between the conveying assembly and the cutting blade 42. The bottom of the limiting comb 15 is close to the top of the support cylinder 12. A comb groove 16 is provided on the limiting comb 15, and the top of the cutting blade 42 is inserted into the comb groove 16.

[0045] When food ingredients are cut into strips on the support cylinder 12, the limiting comb 15 roller can limit the top of the sheet-like food ingredients, reduce irregular vertical movement of the food ingredients during cutting, and improve the stability of the cutting.

[0046] The material-throwing assembly includes a material-throwing cylinder 71, a material-throwing dial 72, and a material-throwing drive 73. The material-throwing cylinder 71 is fixedly connected to the side wall of the machine body 1. A material-throwing port is opened on one side of the material-throwing cylinder 71. The slicing blade 21 is close to the material-throwing port. The material-throwing dial 72 is located inside the material-throwing cylinder 71. The material-throwing dial 72 is rotatably connected to the machine body 1 through a rotating shaft. The rotation axis of the material-throwing dial 72 is perpendicular to the rotation axis of the slicing blade 21. A dial plate 721 is connected to the side wall of the material-throwing dial 72. The material-throwing drive 73 is installed on the inner wall of the machine body 1. The material-throwing drive 73 is a motor. The drive end of the material-throwing drive 73 is connected to the material-throwing dial 72. A material inlet is opened on the side of the material-throwing cylinder 71 away from the machine body 1. A material hopper 74 is rotatably connected to the material inlet. The material hopper 74 is connected to the protective cover 11.

[0047] During processing, food raw materials can be put into the feed hopper 74 and enter the feeding cylinder 71 through the feed port. After the food raw materials enter the feeding cylinder 71, the feeding drive 73 can drive the feeding disk 72 to rotate. The disk 721 moves the food raw materials, causing them to move in a circle inside the feeding cylinder 71. When the food raw materials move to the feeding port, they can be cut into slices by the slicing blade 21 and thrown out from the feeding port for the next cutting operation.

[0048] A thickness-adjusting curved plate 81 is rotatably connected to the material discharge cylinder 71. The thickness-adjusting curved plate 81 is located at the discharge port. The end of the thickness-adjusting curved plate 81 near the discharge port is arc-shaped and concave, thus forming an arc-shaped opening with a similar arc angle to the slicing blade 21 at the discharge port. The material discharge cylinder 71 is provided with a thickness-adjusting assembly for adjusting the position of the thickness-adjusting curved plate 81. The thickness-adjusting assembly includes a connecting plate 75, a rotating rod 76, and an adjusting screw 77. The connecting plate 75 is installed on the top of the material discharge cylinder 71. The rotating rod 76 is rotatably connected to the side wall of the connecting plate 75. The adjusting screw 77 passes through the rotating rod 76 and is threadedly connected to the rotating rod 76. A connecting block 82 is provided on the top of the thickness-adjusting curved plate 81. A connecting rod 83 is rotatably connected to the side wall of the connecting block 82. The end of the adjusting screw 77 is rotatably connected to the connecting rod 83. When it is necessary to adjust the slice thickness, the adjusting screw 77 can be rotated to change the position of the adjusting screw 77 and the rotating rod 76, thereby moving the connecting rod 83 and the thickness adjustment bending plate 81, thus adjusting the distance between the thickness adjustment bending plate 81 and the slicing blade 21 and changing the slice thickness.

[0049] The implementation principle of a dicing machine with conveying function in this application embodiment is as follows: When food raw materials need to be diced, the food raw materials can be placed in the throwing drum 71 and thrown out. They are sliced ​​by the rapidly rotating slicing blade 21 and then fall onto the conveyor belt 33 for conveying. The conveyor belt 33 and the support cylinder 12 transport the raw materials to the slicing blade 42 for slicing, and then dicing them by the dicing blade 52. After dicing, the diced raw materials fall out from the discharge port of the cover 11 and are collected. Since the slicing blade 21 and the throwing disc 72 are independent of each other, the throwing speed does not need to be set too fast, so that the speed at which the food raw material slices are sent out is not too fast, reducing the situation of excessive rapid stacking of food raw material slices. After slicing, the raw materials fall onto the conveyor belt 33, which plays a role in receiving and buffering the food raw materials. The conveyor belt 33 in the conveying state also further reduces the situation of excessive rapid stacking of food raw material slices, so that the food raw materials are arranged in an orderly manner and sent to the slicing in sequence, making the slicing, slicing and even dicing of food raw materials more stable and improving the cutting quality.

[0050] The above are all preferred embodiments of this application. These embodiments are only explanations of this application and are not intended to limit the scope of protection of this application. Therefore, all equivalent changes made in accordance with the structure, shape and principle of this application should be covered within the scope of protection of this application.

Claims

1. A dicing machine with conveying function, characterized in that, The machine includes a body (1), a material throwing assembly is provided on one side of the body (1), a slicing blade (21) is provided on the body (1), the slicing blade (21) is close to the material throwing assembly, a slicing drive (22) for driving the slicing blade (21) to rotate is provided on the body (1), a strip cutting assembly and a dicing assembly are provided on the body (1), a conveying assembly is provided between the slicing blade (21) and the strip cutting assembly, and a protective cover (11) is provided on the side of the body (1) near the slicing blade (21).

2. A dicing machine with conveying function according to claim 1, characterized in that, The conveying assembly includes a conveying roller (31), a conveying drive (32), and a conveying belt (33). The conveying roller (31) is rotatably connected to the machine body (1) and drives the conveying drive (32) to be installed inside the machine body (1). The drive end of the conveying drive (32) is connected to the conveying roller (31), and the conveying belt (33) is wound around the conveying roller (31).

3. A dicing machine with conveying function according to claim 1, characterized in that, The slicing assembly includes a slicing shaft (41) and a slicing blade (42). The end of the slicing shaft (41) is rotatably connected to the machine body (1), and the slicing blade (42) is connected to the slicing shaft (41). The dicing assembly includes a dicing cylinder (51) and a dicing blade (52). The dicing cylinder (51) is detachably connected to the machine body (1), and the dicing blade (52) is connected to the dicing cylinder (51).

4. A dicing machine with conveying function according to claim 3, characterized in that, The side wall of the machine body (1) is rotatably connected to a drive shaft (53), the dicing cylinder (51) is inserted into the drive shaft (53), and a fixed cylinder (54) is detachably connected to the drive shaft (53), the fixed cylinder (54) abutting against the dicing cylinder (51).

5. A dicing machine with conveying function according to claim 4, characterized in that, The machine body (1) is provided with a power drive component, which is used to drive the cutting shaft (41) and the transmission shaft (53) to rotate.

6. A dicing machine with conveying function according to claim 3, characterized in that, The slicing blades (42) are arranged at intervals on the slicing shaft (41). A support cylinder (12) is rotatably connected to the machine body (1). The support cylinder (12) is close to the bottom of the slicing blades (42). A clearance groove (13) is provided on the support cylinder (12). The position of the clearance groove (13) corresponds to that of the slicing blades (42).

7. A dicing machine with conveying function according to claim 6, characterized in that, A limiting comb (15) is rotatably connected to the body (1). The limiting comb (15) is located between the conveying assembly and the cutting blade (42). A comb groove (16) is provided on the limiting comb (15), and the cutting blade (42) is inserted into the comb groove (16).

8. A dicing machine with conveying function according to claim 1, characterized in that, The material throwing assembly includes a material throwing cylinder (71), a material throwing dial (72), and a material throwing drive (73). The material throwing cylinder (71) is fixedly connected to the machine body (1). A material throwing port is opened on one side of the material throwing cylinder (71). The slicing blade (21) is close to the material throwing port. The material throwing dial (72) is located inside the material throwing cylinder (71). The material throwing dial (72) is rotatably connected to the machine body (1). The material throwing drive (73) is installed inside the machine body (1). The driving end of the material throwing drive (73) is connected to the material throwing dial (72).

9. A dicing machine with conveying function according to claim 8, characterized in that, The material throwing cylinder (71) is rotatably connected to a thickness adjustment bending plate (81), which is located at the material throwing port. The material throwing cylinder (71) is provided with a thickness adjustment component for adjusting the position of the thickness adjustment bending plate (81).