Planetary food slicing equipment

Through the rotating cutter and cutting part design of the planetary food slicing equipment, the problem of uneven slice thickness of traditional slicers is solved, high-quality slice cutting is achieved, and slice efficiency and food quality are improved.

CN120245103APending Publication Date: 2025-07-04GUANGDONG ZHIWEI MIAOZHUO INTELLIGENT MASCH MFG CO LTD
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Patent Information

Application Number
CN202510618137.1
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2025-05-14
Publication Date
2025-07-04

AI Technical Summary

Technical Problem

It is difficult for traditional slicers to cut high-quality slices, and the slice thickness is uneven and prone to varying thicknesses. The existing slice method leads to high food water loss rate and the slice quality needs to be improved.

Method used

Using a planetary food slicing equipment, through the coordination design of the rotating cutter and the cutting part, the rotating cutter is used to drive the cutting part to circulate over the transport part for slices. The slice assembly rotates together with the rotating cutter and the slice knife is sliced under the blocking action of the rotating cutter and the slice thickness is controllable.

Benefits of technology

The slice thickness is uniform and controllable, the slice quality and cutting speed are improved, the slice surface is ensured to be flat, and the water loss rate of food raw materials is reduced.

✦ Generated by Eureka AI based on patent content.

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Abstract

The invention relates to the technical field of food processing equipment, in particular to planetary food slicing equipment which comprises a machine table, a conveying part and a fixing frame are arranged on the machine table, the fixing frame is rotationally connected with a rotating cutter head, and the rotating cutter head is located above the conveying part; the fixing frame is provided with a rotating driving piece used for driving the rotating cutter head to rotate, a cutting part is arranged on the fixing frame, the cutting part rotates along with the rotating cutter head when the rotating cutter head rotates, and the cutting part circularly passes through the position above the conveying part when rotating along with the rotating cutter head. The food slicing device has the effect of improving the food slicing quality.
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Description

Technical Field

[0001] This application relates to the technical field of food processing equipment, and particularly to a planetary food slicing equipment. Background Art

[0002] Food processing refers to the processing activities of directly using agricultural, forestry, animal husbandry, and fishery products as raw materials, including cereal milling, feed processing, vegetable oil and sugar processing, slaughtering and meat processing, aquatic product processing, as well as the processing of foods such as vegetables, fruits, and nuts, and the processing of potatoes, dehydrated vegetables, and canned vegetables. It is a type of broad agricultural product processing industry. During the food processing process, a slicing machine is often needed to slice potatoes, meat, or fruits and vegetables to facilitate the next-step processing and production.

[0003] In traditional slicing machines, the blade is directly installed on the rotating shaft and rotates at high speed to directly cut and separate food raw materials, or the blade is installed on a reciprocating mechanism to chop slices. The food cut in this way has a large water loss rate, a short storage time, and the separated slices of the cut food are generally thick. It is difficult to cut high-quality thin slices, and the thickness is prone to be uneven, so the slicing quality needs to be improved. Summary of the Invention

[0004] In order to improve the slicing quality of food, this application provides a planetary food slicing equipment.

[0005] A planetary food slicing equipment provided by this application adopts the following technical solutions: A planetary food slicing equipment includes a machine table, on which a transportation part and a fixing frame are arranged. A rotating cutter disc is rotatably connected to the fixing frame. The rotating cutter disc is located above the transportation part. The fixing frame is provided with a rotating driving part for driving the rotating cutter disc to rotate. A cutting part is arranged on the fixing frame. When the rotating cutter disc rotates, the cutting part rotates with the rotating cutter disc. When the cutting part rotates with the rotating cutter disc, it circulates above the transportation part.

[0006] By adopting the above technical solutions, when slicing food raw materials, the food raw materials can be placed on the transportation part for transportation, and the rotating driving part is used to drive the rotating cutter disc to rotate. The cutting part rotates with the rotating cutter disc. When the food raw materials pass through the rotating cutter disc, the cutting part circulates above the transportation part, so that the food raw materials can be sliced, replacing the existing slicing method by chopping knife, making the slicing thickness uniform and controllable, and improving the slicing quality.

[0007] Optionally, the cutting part includes a slicing component and a transmission component. When the rotating cutter disc rotates, the slicing component rotates with the rotating cutter disc. The transmission component is in transmission cooperation with the fixing frame and is connected to the slicing component. When the slicing component rotates with the rotating cutter disc, the slicing component rotates relative to the rotating cutter disc.

[0008] By adopting the above technical solution, when the food raw materials are transported in the transportation part, the slicing assembly rotates together with the rotating cutter disc. At the same time, driven by the transmission assembly, the slicing assembly rotates relative to the rotating cutter disc, thereby increasing the cutting speed, making the sliced ​​surface of the food raw materials smooth, and improving the slicing quality.

[0009] Optionally, the rotating cutter disc is provided with a plurality of slicing holes equidistantly along the circumferential direction, the slicing assembly comprises a slicing knife and a transmission shaft, the slicing knife and the slicing holes correspond one to one, the transmission shaft is rotatably connected to the rotating cutter disc, a main shaft is rotatably connected to the fixed frame, a driving end of the rotating drive member is connected to the main shaft, the main shaft is connected to the rotating cutter disc, the transmission shaft is rotatably connected to the main shaft, the slicing knife is connected to the transmission shaft, and the slicing knife is located on the side of the rotating cutter disc away from the rotating drive member.

[0010] By adopting the above technical solution, when the food raw materials pass through the rotating cutter disc, they first abut against the side wall of the rotating cutter disc. At the same time, the slicing knife approaches the food raw materials and slices them under the rotation of the rotating cutter disc. Under the abutment and blocking effect of the rotating cutter disc, the slice thickness of the food raw materials can be kept consistent, thereby improving the slice output quality. After being sliced, the food raw materials can pass through the slicing hole and be transported out by the transportation part.

[0011] Optionally, the rotating knife disc is slidably connected to a fixed frame, and the fixed frame is provided with an adjustment component for making the rotating knife disc slide closer to or away from the slicing knife.

[0012] By adopting the above technical solution, when the slice thickness of the food material needs to be changed, the rotating knife disc can be slid by adjusting the component, and the distance between the sliding rotating knife disc and the slicing knife can be changed, thereby adjusting the slice thickness.

[0013] Optionally, an adjustment opening is provided on a side wall of the fixing frame, a side of the rotating cutter disc close to the rotating driving member is close to the adjustment opening, and an adjustment door is provided on the adjustment opening.

[0014] By adopting the above technical solution, when maintenance of the rotating cutter disc or other parts is required, the adjustment door can be opened to facilitate the work of the staff.

[0015] Optionally, a panel is provided on the fixing frame, the panel is arranged around the circumference of the rotating cutter disc, and an opening is formed on a side of the panel close to the transport portion.

[0016] By adopting the above technical solution, when food raw materials stick to the rotating cutter disc, they will be thrown onto the enclosure under the action of centrifugal force, which is convenient for collection and reduces the situation where food raw materials are thrown around in the fixed frame.

[0017] Optionally, one side of the fixing frame is connected with a feeding seat, a feeding port is formed in the feeding seat, the feeding port of the feeding seat is close to the feeding end of the transportation part, a pressing belt group is arranged on the feeding seat, and the pressing belt group is located above the transportation part.

[0018] By adopting the above technical solution, food raw materials can be placed at the feeding end of the transportation part through the feeding port of the feeding seat for transportation, and the top of the food raw materials can be pressed by the pressing belt group, reducing the situation of being thrown off and realizing effective slicing.

[0019] Optionally, the pressing belt group includes a pressing belt driving member, a pressing belt roller and a food pressing belt. The pressing belt driving member is installed on the feeding seat, the pressing belt roller is rotatably connected with the feeding seat, the driving end of the pressing belt driving member is connected with the pressing belt roller, and the food pressing belt is wound around the pressing belt roller.

[0020] By adopting the above technical solution, when the food raw materials are placed on the transportation part for transportation, the food pressing belt can be pressed on the top of the food raw materials. The pressing belt driving member drives the pressing belt roller to rotate, driving the food pressing belt to move, and cooperating with the auxiliary transportation part for transportation, improving the stability of transportation and cutting.

[0021] Optionally, the feeding seat is slidably connected with a sliding seat, the pressing belt group is connected with the sliding seat, and a sliding driving member for driving the sliding seat to move is arranged on the feeding seat.

[0022] By adopting the above technical solution, the sliding driving member can be used to drive the sliding seat to move, and the positions of the pressing belt roller and the food pressing belt can be adjusted according to the height of the food raw materials.

[0023] Optionally, a baffle is arranged on the feeding seat, the baffle abuts against the surrounding plate, the feeding seat is rotatably connected with the fixing frame, a locking member for fixing with the fixing frame is arranged on the feeding seat, and a receiving plate is arranged at the bottom of the feeding seat.

[0024] By adopting the above technical solution, when the food raw materials are thrown onto the surrounding plate, they can slide onto the receiving plate for unified collection.

[0025] In summary, the present application includes at least one of the following beneficial technical effects: 1. When slicing food raw materials, the food raw materials can be placed on the transportation part for transportation, the rotation driving member is used to drive the rotating cutter disc to rotate, and the cutting part rotates along with the rotating cutter disc. When the food raw materials pass through the rotating cutter disc, the cutting part circulates above the transportation part, so that the food raw materials can be sliced, replacing the existing method of slicing with a machete, making the slicing thickness uniform and controllable, and improving the slicing quality; 2. When the food raw material is conveyed by the conveying part, the slicing component rotates together with the rotating cutter disc. At the same time, driven by the transmission component, the slicing component rotates relative to the rotating cutter disc, thereby increasing the cutting speed, making the sliced surface of the food raw material flat and improving the slicing quality. 3. When the food raw material passes through the rotating cutter disc, it first abuts against the side wall of the rotating cutter disc. At the same time, the slicing knife approaches the food raw material and slices it driven by the rotation of the rotating cutter disc. Under the abutting and blocking action of the rotating cutter disc, the sliced thickness of the food raw material can be kept consistent, improving the output quality of the slicing. After the food raw material is sliced, it can pass through the slicing hole and be transported out by the conveying part. Description of the Drawings

[0026] Figure 1 is the schematic diagram of the overall structure in Embodiment 1 of the present application.

[0027] Figure 2 is the schematic diagram of the closed state of the feeding seat in Embodiment 1 of the present application.

[0028] Figure 3 is the schematic diagram of the internal structure of the fixing frame in Embodiment 1 of the present application.

[0029] Figure 4 is the schematic diagram of the structure of the transmission component in Embodiment 2 of the present application.

[0030] Figure 5 is the schematic diagram of the structure of the transmission component in Embodiment 3 of the present application.

[0031] Figure 6 is the schematic diagram of the structure of the transmission component in Embodiment 4 of the present application.

[0032] Figure 7 is the schematic diagram of the structure of the adjusting component in Embodiment 5 of the present application.

[0033] Figure 8 is the partial cross-sectional view of the extension frame in Embodiment 5 of the present application.

[0034] Description of the Reference Numerals: 1. Machine platform; 11. Conveyor belt; 12. Conveyor roller; 13. Driving motor; 2. Fixed frame; 21. Rotary driving member; 22. Adjusting door; 23. Enclosure; 3. Rotary cutter disc; 31. Slicing hole; 32. Slide bar; 321. Slot; 322. Adjusting rack; 4. Slicing knife; 41. Transmission shaft; 5. Mounting seat; 51. Main shaft; 52. Extension bracket; 521. Cavity; 522. Thrust spring; 53. Main gear; 54. First synchronous pulley; 55. First sprocket; 56. First belt pulley; 61. Transmission gear; 62. Second synchronous pulley; 63. Timing belt; 64. Second sprocket; 65. Chain; 66. Second belt pulley; 67. Belt; 7. Adjusting screw; 71. Locking block; 72. Locking nut; 73. L-shaped rod; 731. Slide plate; 74. Hook-shaped insertion rod; 75. Adjusting seat; 76. Displacement driving member; 77. Displacement seat; 771. Push rod; 78. Adjusting driving member; 79. Adjusting gear; 8. Feeding seat; 81. Feeding port; 82. Pressing belt driving member; 83. Pressing belt roller; 84. Food pressing belt; 85. Sliding seat; 86. Sliding driving member; 87. Baffle; 88. Locking member. Detailed implementation mode

[0035] The following will further elaborate on this application in conjunction with the attached Figure 1-8 drawings.

[0036] The embodiment of this application discloses a planetary food slicing device.

[0037] Embodiment 1: Referring to Figure 1 and Figure 2 , a planetary food slicing device includes a machine platform 1. A transportation part and a fixed frame 2 are arranged on the top of the machine platform 1. The transportation part includes a conveyor belt 11, conveyor rollers 12 and a driving motor 13. The conveyor rollers 12 are rotatably connected to the machine platform 1. The driving motor 13 is installed on the machine platform 1. The driving end of the driving motor 13 is connected to the conveyor rollers 12. The conveyor belt 11 is looped around the conveyor rollers 12. The conveyor belt 11, conveyor rollers 12 and driving motor 13 form a transportation structure (not elaborated in the prior art). A rotary cutter disc 3 is rotatably connected to the fixed frame 2. The rotary cutter disc 3 is in a disc shape. The rotation axis of the rotary cutter disc 3 extends horizontally or obliquely. The rotary cutter disc 3 is located above the transportation part. Referring to Figure 1 and Figure 3, a rotating drive member 21 for driving the rotating cutter disc 3 to rotate along its own rotation axis is provided on the fixing frame 2. The rotating drive member 21 is a servo motor, and the drive end of the rotating drive member 21 is connected to the rotating cutter disc 3. A cutting portion is provided on the fixing frame 2. When the rotating cutter disc 3 rotates, the cutting portion rotates following the rotating cutter disc 3. Specifically, the cutting portion can rotate around the rotation axis of the rotating cutter disc 3 following the rotating cutter disc 3. When the cutting portion rotates following the rotating cutter disc 3, it circulates above the conveyor belt 11. The rotating cutter disc 3 is located between the feeding end of the conveying portion and the rotating drive member 21.

[0038] When slicing food raw materials is required, the food raw materials can be placed on the conveyor belt 11. The driving motor 13 is commanded to drive the conveyor roller 12 to rotate, driving the conveyor belt 11 to transport the food raw materials, and the rotating drive member 21 is commanded to drive the rotating cutter disc 3 to rotate. When the food raw materials need to pass through the rotating cutter disc 3, since the cutting portion circulates above the conveyor belt 11 when rotating following the rotating cutter disc 3, the cutting portion can cut the food raw materials when passing above the conveyor belt 11, so that the food raw materials are cut into several slices, replacing the situation of cutting food raw materials by chopping in the prior art. Thus, the slicing thickness of the food raw materials can be controlled and made uniform, improving the slicing processing quality of the food raw materials and enhancing the food quality.

[0039] Refer to Figure 1 And Figure 3 , the cutting portion includes a slicing component and a transmission component. When the rotating cutter disc 3 rotates, the slicing component rotates following the rotating cutter disc 3. The transmission component is in transmission cooperation with the fixing frame 2. Specifically, a support beam is installed on the side wall of the fixing frame 2, and a mounting seat 5 is installed on the support beam. One end of the mounting seat 5 is in the shape of a rectangular shell and the other end is in the shape of a cylinder. The rotating drive member 21 is connected to the mounting seat 5 and is installed in the mounting seat 5. The transmission component is in transmission cooperation with the mounting seat 5 and is connected to the slicing component. When the slicing component rotates following the rotating cutter disc 3, the slicing component rotates relative to the rotating cutter disc 3. Specifically, when the slicing component rotates following the rotating cutter disc 3, a transmission effect is generated between the transmission component and the mounting seat 5, and the transmission component thus drives the slicing component, causing the slicing component to rotate relative to the rotating cutter disc 3.

[0040] During the process of transporting the food raw materials on the conveyor belt 11, while the slicing component rotates following the rotating cutter disc 3, under the action of the transmission component, the slicing component rotates relative to the rotating cutter disc 3, causing the slicing component to rotate around the rotating cutter disc 3 while rotating on its own axis, thereby increasing the cutting speed of the food raw materials, enabling the food raw materials to be quickly cut into several slices, improving the flatness of the cut surface, making the food slice thickness uniform, and enhancing the food quality.

[0041] On one side of the rotary cutter disc 3 facing away from the rotary drive member 21, a plurality of through slicing holes 31 are evenly arranged at equal intervals along the circumferential direction around its own rotation axis. The slicing holes 31 are circular holes. The number of slicing holes 31 can be set to two or more under the condition of satisfying the circumferential distribution. In this actual example, two slicing holes 31 are set as an example. The slicing holes 31 extend to the outer peripheral side of the rotary cutter disc 3 and are provided with openings. The slicing assembly includes a slicing knife 4 and a transmission shaft 41. The slicing knife 4 is in the shape of a circular knife. The number and distribution positions of the slicing knives 4 correspond one by one to the slicing holes 31. A main shaft 51 is rotatably connected to the mounting seat 5. The driving end of the rotary drive member 21 is connected to the main shaft 51. The main shaft 51 is connected to the rotary cutter disc 3. An extension frame 52 is installed on the side wall of the main shaft 51. The transmission shaft 41 is rotatably connected to the extension frame 52. The main shaft 51 and the transmission shaft 41 are parallel to each other. When the main shaft 51 rotates, the transmission shaft 41 rotates following the main shaft 51. The slicing knife 4 is connected to the end of the transmission shaft 41. The slicing knife 4 is located on the side of the rotary cutter disc 3 facing away from the rotary drive member 21. The disc opening side of the rotary cutter disc 3 faces the rotary drive member 21.

[0042] During the transportation of food raw materials, when passing through the rotary cutter disc 3, the rotary cutter disc 3 first blocks the food raw materials. When the slicing knife 4 approaches the food raw materials under the rotation of the rotary cutter disc 3, the food raw materials are sliced. At the same time, the sliced food raw materials pass through the slicing holes 31 and the openings of the slicing holes 31 and are transported to the discharge end of the conveyor belt 11. Under the blocking action of the rotary cutter disc 3, the thickness of each slice of the food raw materials can be kept consistent, reducing the influence of the conveying speed of the conveyor belt 11 on the slice thickness and improving the slicing quality.

[0043] The transmission assembly includes a transmission gear 61. The transmission gear 61 is connected to the end of the transmission shaft 41 away from the slicing knife 4. A main gear 53 is fixedly connected to the mounting seat 5. The transmission gear 61 meshes with the main gear 53. When the rotary drive member 21 drives the main shaft 51 and the transmission shaft 41 to rotate together, the transmission gear 61 drives the transmission shaft 41 to rotate relative to the extension frame 52, so that the slicing knife 4 rotates around its own axis while revolving with the rotary cutter disc 3. To ensure the cutting speed of the slicing knife 4, the radius of the transmission gear 61 is smaller than the radius of the main gear 53.

[0044] The rotary cutter disc 3 is slidably connected to the fixed frame 2. Specifically, the rotary cutter disc 3 is slidably connected to the main shaft 51. The sliding direction of the rotary cutter disc 3 is consistent with the extending direction of the main shaft 51. The fixed frame 2 is provided with an adjusting assembly for sliding the rotary cutter disc 3 closer to or farther away from the slicing knife 4.

[0045] The distance between the slicing knife 4 and the rotary cutter head 3 is the slicing thickness of the food raw material. When there are different thickness requirements for the food raw material, the rotary cutter head 3 can be slid by the adjusting assembly, so that the rotary cutter head 3 approaches or moves away from the slicing knife 4 by sliding, and the distance between the rotary cutter head 3 and the slicing knife 4 is adjusted, thereby changing the slicing thickness of the food raw material to meet different slicing processing requirements.

[0046] A slide bar 32 is provided on the side of the rotary cutter head 3 close to the main shaft 51. The slide bar 32 is inserted into the end of the main shaft 51, and the slide bar 32 is slidably connected to the main shaft 51. The extending direction and the sliding direction of the slide bar 32 are the same as the extending direction of the main shaft 51. The adjusting assembly includes an adjusting screw 7, a locking block 71 and a locking nut 72. The extending direction of the adjusting screw 7 is the same as the extending direction of the slide bar 32. One end of the adjusting screw 7 is rotatably connected to the side of the rotary cutter head 3 close to the main shaft 51. The locking block 71 is installed on the extension bracket 52. The adjusting screw 7 is threadedly connected to the locking block 71. The number of locking nuts 72 is two. The adjusting screw 7 is threadedly connected to the locking nuts 72. The locking block 71 is located between the two locking nuts 72.

[0047] When the slicing thickness needs to be adjusted, the adjusting screw 7 can be rotated to drive the rotary cutter head 3 to slide, thereby changing the distance between the rotary cutter head 3 and the slicing knife 4 and changing the slicing thickness of the food. After adjustment, the locking nut 72 is rotated so that the locking nut 72 abuts against both sides of the locking block 71 to complete the locking.

[0048] An adjustment opening is provided on the outer side wall of the fixed frame 2. The side of the rotary cutter head 3 close to the rotary driving member 21 is close to the adjustment opening. An adjustment door 22 is rotatably provided at the adjustment opening. The staff can open the adjustment door 22 to operate the adjustment assembly, adjust the slicing thickness, or maintain, replace and clean other parts. Sensors are provided on both the adjustment door 22 and the fixed frame 2. When the adjustment door 22 is opened, the rotary driving member 21 is powered off and stops working, which plays a protective role.

[0049] A retaining plate 23 is provided on the inner side wall of the fixed frame 2. The retaining plate 23 is inclined. The retaining plate 23 surrounds the circumference of the rotary cutter head 3. An opening is provided on the side of the retaining plate 23 close to the transport part, and the opening of the retaining plate 23 is inclined towards the middle of the transport part.

[0050] During the slicing process, when the food raw material adheres to the rotary cutter head 3 due to too high or too low rotation speed of the rotary cutter head 3, the food raw material rotates with the rotary cutter head 3. During the rotation process, under the action of centrifugal force, the food raw material will be thrown onto the retaining plate 23, reducing the situation where the food raw material splashes everywhere in the fixed frame 2.

[0051] One side of the fixing frame 2 is connected with a feeding seat 8. The feeding seat 8 and the fixing frame 2 cover the rotary cutter disc 3 inside. A feeding port 81 is formed on the side wall of the feeding seat 8. The feeding port 81 of the feeding seat 8 is close to the feeding end of the conveyor belt 11. A belt pressing group is arranged on the feeding seat 8. The belt pressing group is used to press the top of the food raw material. The belt pressing group is located above the conveyor belt 11.

[0052] When it is necessary to slice the food raw material, the food raw material can be placed on the feeding end of the conveyor belt 11 through the feeding port 81 of the feeding seat 8. The conveyor belt 11 transports the food raw material, and the belt pressing group presses and limits the top of the food raw material, so as to reduce the situation that the food raw material adheres to the rotary cutter disc 3 and rotates with it, reduce the situation that the food raw material is thrown flying, and make the food raw material be effectively sliced as much as possible.

[0053] The belt pressing group includes a belt pressing driving part 82, a belt pressing roller 83 and a food pressing belt 84. The belt pressing driving part 82 is installed on the feeding seat 8. The belt pressing driving part 82 is a servo motor. The belt pressing roller 83 is rotatably connected with the feeding seat 8. The driving end of the belt pressing driving part 82 is connected with the belt pressing roller 83. The number of the belt pressing rollers 83 is three. The food pressing belt 84 is wound around the belt pressing rollers 83, and the food pressing belt 84 is in a taut state.

[0054] When the food raw material is placed on the conveyor belt 11 through the feeding port 81 of the feeding seat 8, the belt pressing roller 83 presses on the top of the food raw material through the food pressing belt 84. The belt pressing driving part 82 can be made to drive the belt pressing roller 83 to rotate, pressing and limiting the top of the food raw material while assisting the conveyor belt 11 in conveying.

[0055] A sliding seat 85 is slidably connected to the inner side wall of the feeding seat 8. The sliding seat 85 is located above the feeding end of the conveyor belt 11. The sliding seat 85 can slide closer to or away from the conveyor belt 11. The belt pressing group is connected with the sliding seat 85. The belt pressing driving part 82 is installed on the side wall of the sliding seat 85. The belt pressing roller 83 is rotatably connected to the side wall of the sliding seat 85. A sliding driving part 86 for driving the sliding seat 85 to move is rotatably connected to the inner side wall of the feeding seat 8. The sliding driving part 86 is a cylinder. The driving end of the sliding driving part 86 is connected with the sliding seat 85.

[0056] The sliding driving part 86 can be made to drive the sliding seat 85 to slide, so as to adjust the distance between the belt pressing group and the conveyor belt 11 according to the height of the food raw material, and reduce the situation that the top of the food raw material is not pressed or over-pressed.

[0057] The inner side wall of the feeding seat 8 is provided with baffles 87. The baffles 87 are inclined. The number of the baffles 87 is two. The feeding port 81 of the feeding seat 8 is located between the two baffles 87. The baffles 87 are abutted against the opening of the surrounding plate 23. The opening of the surrounding plate 23 is provided with a notch for the baffles 87 to be inserted into. The feeding seat 8 is rotatably connected to the fixing frame 2. The side wall of the feeding seat 8 is rotatably connected with a locking member 88 for fixing to the fixing frame 2. The locking member 88 is a buckle, and the buckle is buckled to the fixing frame 2. Sensors are arranged on the feeding seat 8 and the fixing frame 2. The sensors are electrically connected to the rotary driving member 21. When the feeding seat 8 and the fixing frame 2 are in an open state, the rotary driving member 21 is powered off and stops, thus playing a protective role. The bottom of the feeding seat 8 is provided with a receiving plate, and the receiving plate is located below the baffles 87 and the conveyor belt 11.

[0058] When the height at which the food raw materials are thrown is relatively low, they will be thrown onto the baffles 87 and then fall onto the receiving plate. When the height at which the food raw materials are thrown is relatively high, they will be thrown onto the surrounding plate 23 and can slide along the surrounding plate 23 onto the receiving plate for unified collection, thus facilitating subsequent processing.

[0059] The implementation principle of Embodiment 1 of this application is as follows: When slicing food raw materials is required, the food raw materials can be placed on the conveyor belt 11 for transportation. The food raw materials abut against the side wall of the rotary cutter head 3 when passing through the rotary cutter head 3. When the rotary cutter head 3 rotates, it drives the slicing knife 4 to slice the food raw materials. Under the blocking action of the rotary cutter head 3, the distance between the rotary cutter head 3 and the slicing knife 4 is the thickness of each slice, thus keeping the slice thickness uniform and consistent and improving the slicing quality. When the slice thickness needs to be adjusted, the rotary cutter head 3 is slid by adjusting the screw rod 7 to change the distance between the rotary cutter head 3 and the slicing knife 4, thereby changing the slice thickness.

[0060] Embodiment 2: Refer to Figure 1 And Figure 4 , the difference from Embodiment 1 is that a first synchronous pulley 54 is fixed on the mounting seat 5. The first synchronous pulley 54 is sleeved on the mounting seat 5. The transmission assembly includes a second synchronous pulley 62 and a synchronous belt 63. The second synchronous pulley 62 is fixed at one end of the transmission shaft 41 away from the slicing knife 4. The synchronous belt 63 encloses the first synchronous pulley 54 and the second synchronous pulley 62. The synchronous belt 63 is respectively matched with the first synchronous pulley 54 and the second synchronous pulley 62. The synchronous belt 63 is in a taut state. The diameter of the first synchronous pulley 54 is larger than the diameter of the second synchronous pulley 62. When the rotary cutter head 3 rotates, the second synchronous pulley 62 rotates around the first synchronous pulley 54. Under the action of the first synchronous pulley 54 and the synchronous belt 63, the second synchronous pulley 62 rotates around its own axis while revolving, thereby driving the slicing knife 4 to rotate around its own axis, enabling the slicing knife 4 to perform cutting work.

[0061] Embodiment 3: Refer toFigure 1 And Figure 5 , different from the above embodiments in that a first sprocket 55 is fixed on the mounting seat 5. The first sprocket 55 is sleeved on the mounting seat 5. The transmission assembly includes a second sprocket 64 and a chain 65. The second sprocket 64 is fixed at one end of the transmission shaft 41 away from the slicing knife 4. The chain 65 encloses the first sprocket 55 and the second sprocket 64. The chain 65 meshes with the first sprocket 55 and the second sprocket 64 respectively. The diameter of the first sprocket 55 is larger than the diameter of the second sprocket 64. When the rotary cutter head 3 rotates, the second sprocket 64 rotates around the first sprocket 55. Under the action of the first sprocket 55 and the synchronous belt 63, the second sprocket 64 rotates around its own axis while revolving, thereby driving the slicing knife 4 to rotate around its own axis, enabling the slicing knife 4 to perform cutting work.

[0062] Embodiment 4: Referring to Figure 1 And Figure 6 , different from the above embodiments in that a first pulley 56 is fixed on the mounting seat 5. The first pulley 56 is sleeved on the mounting seat 5. The transmission assembly includes a second pulley 66 and a belt 67. The second pulley 66 is fixed at one end of the transmission shaft 41 away from the slicing knife 4. The belt 67 encloses the first pulley 56 and the second pulley 66. The belt 67 cooperates with the first pulley 56 and the second pulley 66 respectively. The belt 67 is in a taut state. The diameter of the first pulley 56 is larger than the diameter of the second pulley 66. When the rotary cutter head 3 rotates, the second pulley 66 rotates around the first pulley 56. Under the action of the first pulley 56 and the belt 67, the second pulley 66 rotates around its own axis while revolving, thereby driving the slicing knife 4 to rotate around its own axis, enabling the slicing knife 4 to perform cutting work.

[0063] Embodiment 5: Referring to Figure 7 And Figure 8, different from the above embodiment, an L-shaped rod 73 is slidably connected to the extension frame 52. The sliding direction of the L-shaped rod 73 is perpendicular to the extension direction of the main shaft 51. A hook-shaped insertion rod 74 is connected to the end of the L-shaped rod 73. A plurality of slots 321 for the hook-shaped insertion rod 74 to insert are provided along the extension direction on the side wall of the sliding rod 32. A cavity 521 is provided inside the extension frame 52. A sliding plate 731 is provided on the side wall of the L-shaped rod 73. A thrust spring 522 for forcing the hook-shaped insertion rod 74 to insert into the slot 321 is provided in the cavity 521. The thrust spring 522 is located between the sliding plate 731 and the hook-shaped insertion rod 74. The two ends of the thrust spring 522 are respectively connected to the inner wall of the cavity 521 and the side wall of the sliding plate 731. An adjustment rack 322 is provided on the side wall of the sliding rod 32. A notch for the adjustment rack 322 to move is provided on the side wall of the main shaft 51. The adjustment assembly includes an adjustment seat 75, a displacement driving member 76, a displacement seat 77, an adjustment driving member 78 and an adjustment gear 79. The adjustment seat 75 is installed on the mounting seat 5. The displacement driving member 76 is installed on the adjustment seat 75. The displacement driving member 76 is a cylinder. The displacement seat 77 is slidably connected to the adjustment seat 75. The sliding direction of the displacement seat 77 is perpendicular to the extension direction of the main shaft 51. The driving end of the displacement driving member 76 is connected to the displacement seat 77. The displacement driving member 76 is used to drive the displacement seat 77 to move closer to or away from the sliding rod 32. The adjustment driving member 78 is installed on the displacement seat 77. The adjustment driving member 78 is a stepping motor. The adjustment gear 79 is installed on the driving end of the adjustment driving member 78. The specification of the adjustment gear 79 is adapted to the adjustment rack 322. The meshing side of the adjustment rack 322 faces the adjustment gear 79. When the displacement driving member 76 drives the displacement seat 77 to slide, the adjustment gear 79 approaches or moves away from the adjustment rack 322. A push rod 771 is provided on the displacement seat 77. When the displacement driving member 76 drives the displacement seat 77 to slide closer to the sliding rod 32, the push rod 771 pushes the hook-shaped insertion rod 74 to slide.

[0064] When it is necessary to adjust the slice thickness, the displacement driving member 76 is made to drive the displacement seat 77 closer to the sliding rod 32. The push rod 771 pushes the hook-shaped insertion rod 74 to slide, so that the hook-shaped insertion rod 74 disengages from the slot 321. At the same time, the adjustment gear 79 approaches the adjustment rack 322 and then meshes with the adjustment rack 322. The adjustment driving member 78 is made to drive the adjustment gear 79 to rotate. The sliding rod 32 and the rotary cutter head 3 are driven to slide through the adjustment rack 322, so as to increase or decrease the distance between the rotary cutter head 3 and the slicing knife 4, change the slice thickness. After the change, the displacement driving member 76 is made to drive the displacement seat 77 away from the sliding rod 32. The thrust spring 522 exerts a thrust on the sliding plate 731, so that the hook-shaped insertion rod 74 is inserted into the slot 321, and the locking of the cutting thickness can be completed.

[0065] The above are all preferred embodiments of the present application. This embodiment is only an explanation of the present application and does not limit the protection scope of the present application in sequence. Therefore, all equivalent changes made according to the structure, shape, and principle of the present application should be covered within the protection scope of the present application.

Claims

1. A planetary food slicing device, characterized in that, The invention comprises a machine platform (1), wherein the machine platform (1) is provided with a transport part and a fixed frame (2), wherein a rotating cutter disc (3) is rotatably connected to the fixed frame (2), wherein the rotating cutter disc (3) is located above the transport part, wherein the fixed frame (2) is provided with a rotating driving member (21) for driving the rotating cutter disc (3) to rotate, wherein a cutting part is provided on the fixed frame (2), wherein when the rotating cutter disc (3) rotates, the cutting part rotates following the rotating cutter disc (3), and when the cutting part rotates following the rotating cutter disc (3), the cutting part circulates above the transport part.

2. The planetary food slicing device according to claim 1, characterized in that, The cutting part comprises a slicing assembly and a transmission assembly. When the rotating cutter disc (3) rotates, the slicing assembly rotates along with the rotating cutter disc (3). The transmission assembly is in transmission cooperation with the fixed frame (2). The transmission assembly is connected to the slicing assembly. When the slicing assembly rotates along with the rotating cutter disc (3), the slicing assembly and the rotating cutter disc (3) rotate relative to each other.

3. A planetary food slicing device according to claim 2, characterized in that, The rotating cutter disc (3) is provided with a plurality of slicing holes (31) equidistantly along the circumferential direction. The slicing assembly comprises a slicing knife (4) and a transmission shaft (41). The slicing knife (4) corresponds to the slicing holes (31) one by one. The transmission shaft (41) is rotatably connected to the rotating cutter disc (3). A main shaft (51) is rotatably connected to the fixed frame (2). The driving end of the rotating drive member (21) is connected to the main shaft (51). The main shaft (51) is connected to the rotating cutter disc (3). The transmission shaft (41) is rotatably connected to the main shaft (51). The slicing knife (4) is connected to the transmission shaft (41). The slicing knife (4) is located on a side of the rotating cutter disc (3) away from the rotating drive member (21).

4. A planetary food slicing device according to claim 3, characterized in that, The rotating blade disc (3) is slidably connected to the fixed frame (2), and the fixed frame (2) is provided with an adjustment component for making the rotating blade disc (3) slide closer to or away from the slicing knife (4).

5. A planetary food slicing device according to claim 4, wherein, The side wall of the fixed frame (2) is provided with an adjustment opening, and the side of the rotating cutter disc (3) close to the rotating driving member (21) is close to the adjustment opening, and the adjustment opening is provided with an adjustment door (22).

6. A planetary food slicing device according to claim 1, wherein, The fixing frame (2) is provided with a surrounding plate (23), the surrounding plate (23) is arranged around the circumference of the rotating cutter disc (3), and an opening is provided on a side of the surrounding plate (23) close to the transport portion.

7. A planetary food slicing device according to claim 6, characterized in that, One side of the fixed frame (2) is connected to a feed seat (8), and a feed port (81) is provided on the feed seat (8). The feed port (81) of the feed seat (8) is close to the feed end of the transport part. A belt pressing group is provided on the feed seat (8), and the belt pressing group is located above the transport part.

8. A planetary food slicing device according to claim 7, characterized in that, The belt pressing group comprises a belt pressing driving member (82), a belt pressing roller (83) and a food belt pressing belt (84); the belt pressing driving member (82) is mounted on a material feeding seat (8); the belt pressing roller (83) is rotatably connected to the material feeding seat (8); the driving end of the belt pressing driving member (82) is connected to the belt pressing roller (83); and the food belt pressing belt (84) is arranged around the belt pressing roller (83).

9. A planetary food slicing device according to claim 7, wherein, The feeding base (8) is slidably connected with a sliding base (85), the pressing belt group is connected with the sliding base (85), and a sliding driving member (86) for driving the sliding base (85) to move is arranged on the feeding base (8).

10. A planetary food slicing device according to claim 7, characterized in that, A baffle plate (87) is arranged on the feeding base (8), the baffle plate (87) abuts against the surrounding plate (23), the feeding base (8) is rotatably connected with the fixing frame (2), a locking member (88) for fixing with the fixing frame (2) is arranged on the feeding base (8), and a material receiving plate is arranged at the bottom of the feeding base (8).