Intelligent cutting and conveying equipment and method for food processing

By designing an adjustable food processing intelligent cutting and transportation equipment, the dough sticking problem is solved, efficient dough cutting and transportation is achieved, and the efficiency and breadth of equipment are improved.

CN119949336AInactive Publication Date: 2025-05-09NAT (QINGDAO) MILITARY CIVILIAN INTEGRATION INNOVATION DEMONSTRATION ZONE GUZHENKOU CORE AREA MANAGEMENT COMMITTEE
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Patent Information

Application Number
CN202510158709.2
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2025-02-13
Publication Date
2025-05-09
Estimated Expiration
Not applicable · inactive patent

AI Technical Summary

Technical Problem

Existing dough cutting and transportation equipment are prone to adhesion problems when processing dough, which affects the efficiency and breadth of the equipment.

Method used

An intelligent cutting and transportation equipment for food processing is designed, and an adjustable conveying mechanism and cutting mechanism is adopted. By combining the drive motor, rotor, rotor and conveyor belt, efficient conveying and cutting of dough is achieved, and through the adjustment rod, connecting wheel and liquid temperature adjustment, preventing adhesion.

Benefits of technology

It effectively avoids adhesion between the dough and the equipment surface, improves the efficiency and breadth of the equipment, and ensures efficient cutting and transportation of the dough.

✦ 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 food processing intelligent cutting and conveying equipment and method.The food processing intelligent cutting and conveying equipment comprises a conveying mechanism, the conveying mechanism comprises two bottom frames, a sliding plate, four rotating wheels, two supporting rollers, two rotating belts, a conveying belt, a collecting component and an adjusting component, and the sliding plate is fixedly connected between the opposite outer surfaces of the two bottom frames; and two mounting shafts are rotationally connected between the opposite inner surface walls of the two sides of the two bottom frames. During use, a plurality of conveying mechanisms can be spliced for use according to the actual use condition, so that the opposite outer surfaces of the limiting plates of the adjacent conveying mechanisms are attached, at the moment, one ends of the adjacent conveying belts can be close to each other in an inclined cutting state under the support of the sliding plate, and the driving motor is controlled to start; the driving motor is matched with the mounting shaft to drive the corresponding rotating wheel to rotate, the rotating rotating wheel is matched with the remaining rotating wheels and the sliding plate to drive the rotating belt to rotate synchronously, and the rotating rotating belt can drive the conveying belt to rotate downwards from one side of the collecting frame.
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Description

Technical Field

[0001] The present invention belongs to the technical field of food processing equipment, and in particular relates to intelligent food processing cutting and conveying equipment and methods. Background Art

[0002] Food processing refers to the grain milling, feed processing, vegetable oil and sugar processing, slaughtering and meat processing, aquatic product processing, as well as processing activities of vegetables, fruits and nuts, as well as potato, dehydrated vegetable processing, and canned vegetable processing that directly use agricultural, forestry, animal husbandry and fishery products as raw materials. It is a type of broad agricultural product processing industry.

[0003] However, in the prior art, since the dough has good adhesion after pretreatment during the processing of dough-based foods, the dough is prone to stick to the cutting and conveying equipment during the cutting and conveying of the pretreated dough, so that the residues adhering to the surface of the existing dough cutting and conveying equipment are likely to affect the subsequent cutting and conveying of the dough, and then easily affect the overall cutting and conveying efficiency of the dough, resulting in poor actual use of the existing dough cutting and conveying equipment. At the same time, in order to reduce the occurrence of adhesion, the existing dough cutting and conveying equipment actually uses fixed structural components, which cannot be applied to different use environments according to actual use requirements, resulting in poor actual use of the existing dough cutting and conveying equipment. Summary of the invention

[0004] The purpose of the present invention is to provide an intelligent food processing cutting and conveying device and method which can conveniently adjust its own structure according to actual use needs, thereby improving the wide range of practical use, while avoiding the adhesion of dough foods and improving the actual use effect of the equipment.

[0005] The technical solution adopted by the present invention is as follows: intelligent food processing cutting and conveying equipment, including: a conveying mechanism, the conveying mechanism includes two base frames, a slide plate, four rotating wheels, two supporting rollers, two rotating belts, a conveyor belt, a collecting component and an adjusting component, the slide plate is fixedly connected between the relative outer surfaces of the two base frames, two mounting shafts are rotatably connected between the relative inner surface walls on both sides of the two base frames, each of the rotating wheels is respectively sleeved on the outer surface of the corresponding mounting shaft, each of the supporting rollers is slidably sleeved on the outer surface of the corresponding mounting shaft, each of the rotating belts is sleeved between the outer surfaces of the corresponding two rotating wheels, the conveyor belt is fixedly connected between the relative outer surfaces of the two rotating belts, and the collecting component and the adjusting component are both arranged on the two base frames; and

[0006] The cutting mechanism is arranged on the conveying mechanism, and the cutting mechanism includes two movable frames, a top frame, a lifting frame, a push plate, two reset frames, a cutting plate, a rotating component and a vibrating component. The top frame is slidably inserted between the two movable frames, the lifting frame is slidably inserted on the bottom surface of the top frame, and the push plate is slidably inserted on the bottom of the lifting frame. The two reset frames are fixedly connected to the bottom of the push plates, and a support spring is slidably arranged inside each of the reset frames. A reset rod is slidably inserted on the bottom surface of each of the reset frames, and a pressing sheet is fixedly connected to the top of each reset rod, and an extension rod is threadedly connected to the bottom of each reset rod. The top of the cutting plate is rotatably connected to two connecting pipes, and each of the connecting pipes and the corresponding extension rod are threadedly connected.

[0007] Wherein, the inner surface wall of each conveyor belt and the top of the slide plate are in contact with each other, and the conveyor belt is slidably sleeved between the slide plate and the outer surfaces of the two supporting rollers.

[0008] Among them, a driving motor is fixedly connected to the outer surface of one side of one of the base frames, and the output end of the driving motor is fixedly connected to one end of the corresponding installation shaft. A pasting plate is fixedly connected between the relative outer surfaces of the two base frames, and the outer surface of one side of the pasting plate is in contact with the conveyor belt and the inner walls of the two rotating belts.

[0009] Wherein, the collecting component includes a collecting frame, two guide strips and a material guide frame, the collecting frame is fixedly connected between the relative outer surfaces of the two base frames, the top of the collecting frame is in contact with the outer surface of the conveyor belt, the two guide strips are fixedly connected to the top of the collecting frame, the top of each guide strip is in contact with the outer surface of the conveyor belt, and the material guide frame is connected and arranged at the bottom of the collecting frame.

[0010] Wherein, the adjusting component includes two adjusting rods, two linkage wheels, a linkage belt, an adjusting frame, an injection pipe, a discharge pipe and two supporting wheels, each of the adjusting rods is rotatably connected to the outer surface of one side of the corresponding base frame, each of the linkage wheels is respectively sleeved on the outer surface of the corresponding adjusting rod, the linkage belt is sleeved between the outer surfaces of the two linkage wheels, the adjusting frame is threadedly connected between the outer surfaces of the two adjusting rods, the injection pipe and the discharge pipe are respectively connected and arranged on the outer surfaces of both sides of the adjusting frame, and the two supporting wheels are respectively slidably sleeved on the outer surfaces of the injection pipe and the discharge pipe.

[0011] Among them, each of the base frames is fixedly connected to a limiting plate on the top, and a limiting groove is provided on the outer surface of one side of each limiting plate. Each of the mobile frames is slidably arranged on the corresponding limiting plate, and a limiting bolt is threadedly connected to the outer surface of one side of each mobile frame. One end of each limiting bolt slides through the corresponding limiting groove, and one end of each limiting bolt is rotatably connected to a limiting plate.

[0012] Among them, the outer surface of one side of each of the movable frames is fixedly connected to a support rod, the inner top surface of the top frame is rotatably connected to two support tubes, each of the support tubes and the corresponding support rods are threadedly connected, the outer surface of each support tube is sleeved with a first worm gear, and a rotating shaft is rotatably connected between the relative outer surfaces on both sides of the top frame, the outer surface of the rotating shaft is sleeved with two first worms, and each of the first worms is meshed with the corresponding first worm gear.

[0013] The transmission mechanism is a plurality of rotations of the transmission mechanism, and the plurality of rotations of the transmission mechanism are connected to the plurality of rotations of the transmission mechanism, and the plurality of rotations of the transmission mechanism are connected to the plurality of rotations of the transmission mechanism.

[0014] The cam is configured to move the two wheels simultaneously and the two wheels are connected with each other, and the two wheels are connected with each other with a different direction.

[0015] The food processing intelligent cutting and transportation method comprises the following steps:

[0016] S1. Conveying adjustment: according to actual usage, multiple conveying mechanisms can be spliced ​​and used, so that the limiting plates of adjacent conveying mechanisms are fitted relative to the outer surfaces. At this time, one end of the adjacent conveyor belts can be in a slanted state and close to each other under the support of the slide plate. By controlling the start of the driving motor, the driving motor cooperates with the installation shaft to drive the corresponding wheel to rotate. The rotating wheel cooperates with the remaining wheels and the slide plate to drive the belt to rotate synchronously. The rotating belt can drive the conveyor belt to rotate downward from one side of the collection frame. Then, when the pre-treated dough on the top of the conveyor belt follows the conveyor belt to move to the side of the adjacent conveying mechanism, the top of the conveyor belt can be quickly separated from the bottom of the pre-treated dough under the inclined support of the side of the slide plate, so as to prevent the conveyor belt from vertically adhering to the pre-treated dough and taking it away from the pre-treated dough. At this time, the fallen part of the pre-treated dough can be quickly supported by the top of the adjacent conveyor belt and conveyed upward, so that the separated pre-treated dough can be quickly moved The conveyor belt is sent to the top of the adjacent conveyor belt, so that the conveying mechanism can effectively prevent the pre-treated dough from sticking to the conveyor belt during the conveying process, thereby ensuring the efficient conveying of the conveying mechanism. At the same time, the adjusting rod is rotated and adjusted, and then the two adjusting rods can be rotated synchronously under the cooperation of the linkage wheel and the linkage belt, so that the rotating adjusting rod can move and adjust the use height of the adjusting frame, so that the bottom of the adjusting frame can fit the outer surface of the conveyor belt. At this time, it is connected with the existing liquid conveying equipment through the injection pipe and the discharge pipe, so that liquids of different temperatures can be circulated to the inside of the adjusting frame according to the actual temperature of the conveyor belt, thereby ensuring that the conveyor belt is not easily affected by temperature changes and undergoing structural changes. At the same time, the temperature of the conveyor belt can be adjusted, thereby preventing the pre-treated dough from sticking to the conveyor belt. Under the support of the sticking plate, when the conveyor belt passes through the guide strip and the collecting frame, the pre-treated dough remaining on the surface of the conveyor belt can be squeezed and separated by the guide strip and the collecting frame and fall into the inside of the material guide frame;

[0017] S2. Cutting adjustment: according to the actual height of the pre-processed dough, the positioning rod is rotated and adjusted so that the rotating positioning rod can adjust the distance between the top block and the rotation center of the rotating plate, and then the limiting nut is tightened so that the limiting nut can cooperate with the clamping rod to make the movable clamping plate and the fixed clamping plate close to each other, so that the movable clamping plate and the fixed clamping plate can squeeze the corresponding clamping strip, and then the position of the positioning block can be firmly fixed and restricted. At this time, the rotating motor is controlled to start, and under the action of the counterweight plate and the counterweight block, the weight of the rotating plate close to the positioning block side and the counterweight plate side can be more balanced, so that the rotating motor can drive the rotating plate to rotate more efficiently. During the rotation of the rotating plate, as the distance between the positioning block and the rotation center of the rotating plate changes, the positioning block can support the linkage bar to reciprocate at different heights. The reciprocating linkage bar can cooperate with the lifting frame and the pushing plate to drive the cutting plate to reciprocate at a certain height synchronously, so that the cutting plate can cut the pre-processed dough. The dough is cut and processed, and at the same time, the moving motor is controlled to start, so that the moving motor cooperates with the second worm and the second worm gear to drive the push plate to rotate, and then the rotating push rod can push the clamping rod to move back and forth in the horizontal direction through the push groove, and then the clamping rod cooperates with the sliding bar and the pushing bar to synchronously drive the push plate to move back and forth in the horizontal direction, and then the push plate can synchronously drive the cutting plate to move back and forth in the horizontal direction through the reset frame, the reset rod, the extension rod and the connecting pipe, and then ensure that the cutting plate is in the process of changing the height, and the horizontal position is also quickly reciprocated and cyclically moved, so that the cutting plate can cut and separate the pre-treated dough more efficiently, and at the same time prevent the pre-treated dough from sticking to the cutting board. As the structure of the pre-treated dough changes, the rotating shaft can be rotated so that the rotating shaft can synchronously drive the support tube to rotate through the first worm gear and the first worm, and then the position limit of the support rod can quickly adjust the use height of the top frame, and then the use height of the cutting board can be conveniently adjusted.

[0018] In summary, due to the adoption of the above technical solution, the beneficial effects of the present invention are:

[0019] (1) In the present invention, when in use, multiple conveying mechanisms can be spliced ​​and used according to actual use conditions, so that the limiting plates of adjacent conveying mechanisms are in contact with each other relative to the outer surfaces. At this time, one end of the adjacent conveyor belts can be in a slanted state and close to each other under the support of the slide plate. By controlling the start of the driving motor, the driving motor cooperates with the installation shaft to drive the corresponding rotating wheel to rotate. The rotating rotating wheel cooperates with the remaining rotating wheels and the slide plate to drive the rotating belt to rotate synchronously. The rotating rotating belt can drive the conveyor belt to rotate downward from one side of the collection frame. Then, when the pre-treated dough on the top of the conveyor belt follows the conveyor belt to move to the side of the adjacent conveying mechanism, the top of the conveyor belt can be quickly separated from the bottom of the pre-treated dough under the inclined support of the side of the slide plate, so as to prevent the conveyor belt from vertically adhering to the pre-treated dough and taking it away from the pre-treated dough. At this time, the fallen part of the pre-treated dough can be quickly supported by the top of the adjacent conveyor belt for upward transportation, so that the separated pre-treated dough can be quickly transferred to the top of the adjacent conveyor belt, so that the conveying mechanism can be in the conveying process. The invention can effectively prevent the pre-treated dough from sticking to the conveyor belt, and ensure the efficient conveying of the conveying mechanism. At the same time, the adjusting rod is rotated and adjusted, and then the two adjusting rods can be rotated synchronously under the cooperation of the linkage wheel and the linkage belt, so that the rotating adjusting rod can move and adjust the use height of the adjusting frame, so that the bottom of the adjusting frame can fit the outer surface of the conveyor belt. At this time, it is connected with the existing liquid conveying equipment through the injection pipe and the discharge pipe, and then liquids of different temperatures can be transported to the inside of the adjusting frame according to the actual temperature of the conveyor belt, so as to ensure that the conveyor belt is not easily affected by temperature changes and structural changes occur. At the same time, the temperature of the conveyor belt can be adjusted, and then the pre-treated dough is prevented from sticking to the conveyor belt. Under the support of the sticking plate, when the conveyor belt passes through the guide strip and the collecting frame, the pre-treated dough remaining on the surface of the conveyor belt can be squeezed and separated by the guide strip and the collecting frame and fall into the inside of the material guide frame, so as to ensure the neatness of the surface of the conveyor belt, so that the conveying mechanism can effectively prevent the pre-treated dough from sticking, and improve the actual use effect of the equipment.

[0020] (2) In the present invention, according to the actual height of the pre-processed dough, the positioning rod is rotated and adjusted so that the rotating positioning rod can adjust the distance between the top block and the rotation center of the rotating plate, and then by tightening the limiting nut, the limiting nut can cooperate with the clamping rod to make the movable clamping plate and the fixed clamping plate close to each other, so that the movable clamping plate and the fixed clamping plate can squeeze the corresponding clamping strip, and then the position of the positioning block can be firmly fixed and restricted. At this time, by controlling to start the rotating motor, under the action of the counterweight plate and the counterweight block, the weight of the rotating plate close to the positioning block side and the counterweight plate side can be more balanced, so that the rotating motor can drive the rotating plate to rotate more efficiently. During the rotation of the rotating plate, as the distance between the positioning block and the rotation center of the rotating plate changes, the positioning block can support the linkage bar to reciprocate at different heights. The reciprocating linkage bar can cooperate with the lifting frame and the pushing plate to drive the cutting plate to reciprocate at a certain height synchronously, so that the cutting plate can cut the pre-processed dough. At the same time, by controlling to start the moving motor The movable motor cooperates with the second worm and the second worm gear to drive the push plate to rotate, and then the rotating push rod can push the clamping rod to reciprocate horizontally through the push groove, and then the clamping rod cooperates with the slide bar and the push bar to synchronously drive the push plate to reciprocate horizontally, and then the push plate can synchronously drive the cutting plate to reciprocate horizontally through the reset frame, the reset rod, the extension rod and the connecting pipe, and then ensure that the cutting plate is in the process of height change, and the horizontal position is also quickly reciprocated and cyclically moved, so that the cutting plate can more efficiently cut and separate the pretreated dough, and at the same time prevent the pretreated dough from sticking to the cutting board. With the change of the structure of the pretreated dough, the rotating shaft can be rotated so that the rotating shaft can synchronously drive the support tube to rotate through the first worm gear and the first worm, and then the position limit of the support rod can quickly adjust the use height of the top frame, and then the use height of the cutting board can be conveniently adjusted, so that the equipment can meet the cutting processing of pretreated dough of different specifications, thereby improving the wide range of practical use of the equipment. BRIEF DESCRIPTION OF THE DRAWINGS

[0021] Figure 1 A stereogram of the present invention when used for splicing;

[0022] Figure 2 It is a first perspective stereogram of the present invention;

[0023] Figure 3 It is a second viewing angle stereogram of the present invention;

[0024] Figure 4 It is a cutaway stereogram of the present invention from a first viewing angle;

[0025] Figure 5 It is a sectional and expanded stereoscopic diagram of the conveying mechanism of the present invention from a first viewing angle;

[0026] Figure 6 For the present invention Figure 5 Enlarged view of part A in the middle;

[0027] Figure 7 For the present invention Figure 5 Enlarged view of part B;

[0028] Figure 8 For the present invention Figure 5 Enlarged view of part C in the middle;

[0029] Fig. 9 For the present invention Figure 5 Enlarged view of part D in the middle;

[0030] Fig.10 A sectional stereoscopic view of the conveying mechanism of the present invention from a second viewing angle;

[0031] Fig.11 For the present invention Fig.10 Enlarged view of part E in the middle;

[0032] Fig.12 It is a cutaway and expanded stereoscopic diagram of the cutting mechanism of the present invention from a first viewing angle;

[0033] Fig.13 For the present invention Fig.12 Enlarged view of part F in the middle;

[0034] Fig.14 For the present invention Fig.12 Enlarged view of part G in the middle;

[0035] Fig.15 For the present invention Fig.12 Enlarged view of the middle H part;

[0036] Fig.16 This is a stereoscopic view of the cutting mechanism of the present invention from a second viewing angle.

[0037] Markings in the figure: 1. conveying mechanism; 101. bottom frame; 102. slide plate; 103. rotating wheel; 104. supporting roller; 105. rotating belt; 106. conveying belt; 107. adjusting rod; 108. interlocking wheel; 109. interlocking belt; 110. adjusting frame; 111. liquid injection pipe; 112. liquid discharge pipe; 113. supporting wheel; 114. pasting plate; 115. collecting frame; 116. guide strip; 117. material guide frame; 118. driving motor; 119. limiting plate; 2. cutting mechanism; 201. moving frame; 202. limiting bolt; 203. limiting sheet; 204. supporting rod; 205. top frame; 206 , support tube; 207, rotating shaft; 208, first worm; 209, rotating motor; 210, rotating plate; 211, positioning rod; 212, positioning block; 213, clamping rod; 214, moving clamping plate; 215, clamping strip; 216, counterweight plate; 217, counterweight block; 218, linkage strip; 219, lifting frame; 220, pushing rod; 221, sliding bar; 222, clamping rod; 223, second worm gear; 224, moving motor; 225, pushing strip; 226, pushing plate; 227, reset frame; 228, supporting spring; 229, reset rod; 230, extension rod; 231, cutting plate; 232, connecting tube. DETAILED DESCRIPTION

[0038] In order to make the purpose, technical solution and advantages of the present invention more clearly understood, the present invention is further described in detail below in conjunction with the accompanying drawings and embodiments. It should be understood that the specific embodiments described herein are only used to explain the present invention and are not used to limit the present invention.

[0039] For example, please refer to Figure 1-Figure 4 The intelligent food processing cutting and conveying equipment is composed of a conveying mechanism 1 and a cutting mechanism 2.

[0040] The details are as follows:

[0041] See also Figure 5-Figure 11The conveying mechanism 1 includes two base frames 101, a slide plate 102, four rotating wheels 103, two supporting rollers 104, two rotating belts 105, a conveying belt 106, a collecting component and an adjusting component. The slide plate 102 is fixedly connected between the relative outer surfaces of the two base frames 101. Two mounting shafts are rotatably connected between the relative inner walls on both sides of the two base frames 101. Each rotating wheel 103 is respectively sleeved on the outer surface of the corresponding mounting shaft. Each supporting roller 104 is slidably sleeved on the outer surface of the corresponding mounting shaft. Each rotating belt 105 is sleeved between the outer surfaces of the corresponding two rotating wheels 103. The conveying belt 106 is fixedly connected between the relative outer surfaces of the two rotating belts 105. The collecting component and the adjusting component are both arranged on the two base frames 101. The inner wall of each rotating belt 105 and the top of the slide plate 102 The conveyor belt 106 is slidably sleeved between the outer surfaces of the slide plate 102 and the two supporting rollers 104: a driving motor 118 is fixedly connected to the outer surface of one side of one of the base frames 101, and the output end of the driving motor 118 is fixedly connected to one end of the corresponding mounting shaft; a pasting plate 114 is fixedly connected between the relative outer surfaces of the two base frames 101; the outer surface of one side of the pasting plate 114 and the conveyor belt 106 and the inner surface walls of the two transfer belts 105 are all in contact; the collecting component includes a collecting frame 115, two guide strips 116 and a material guide frame 117; the collecting frame 115 is fixedly connected between the relative outer surfaces of the two base frames 101; the top of the collecting frame 115 is in contact with the outer surface of the conveyor belt 106; the two guide strips 116 are fixedly connected to the top of the collecting frame 115; each guide strip 116 is fixedly connected to the top of the collecting frame 115; and each guide strip 116 is fixedly connected to the top of the collecting frame 115. The top of the strip 116 fits with the outer surface of the conveyor belt 106, the guide frame 117 is connected and arranged at the bottom of the collecting frame 115, and the adjusting components include two adjusting rods 107, two interlocking wheels 108, an interlocking belt 109, an adjusting frame 110, an injection pipe 111, a discharge pipe 112 and two supporting wheels 113. Each adjusting rod 107 is rotatably connected to the outer surface of one side of the corresponding base frame 101, each interlocking wheel 108 is respectively sleeved on the outer surface of the corresponding adjusting rod 107, the interlocking belt 109 is sleeved between the outer surfaces of the two interlocking wheels 108, the adjusting frame 110 is threadedly connected between the outer surfaces of the two adjusting rods 107, the injection pipe 111 and the discharge pipe 112 are respectively connected and arranged on the outer surfaces of both sides of the adjusting frame 110, and the two supporting wheels 113 are respectively slidably sleeved on the injection The outer surfaces of the liquid pipe 111 and the discharge pipe 112 can be spliced ​​and used for multiple conveying mechanisms 1 according to actual usage conditions, so that the limit plates 119 of adjacent conveying mechanisms 1 are in contact with each other relative to the outer surfaces. At this time, one end of the adjacent conveyor belts 106 can be in a beveled state and close to each other under the support of the slide plate 102. By controlling and starting the drive motor 118, the drive motor 118 can cooperate with the installation shaft to drive the corresponding rotating wheel 103 to rotate. The rotating rotating wheel 103 cooperates with the remaining rotating wheels 103 and the slide plate 102 to drive the rotating belt 105 to rotate synchronously. The rotating rotating belt 105 can drive the conveyor belt 106 to rotate downward from the side of the collecting frame 115, and then when the pre-processed dough on the top of the conveyor belt 106 follows the conveyor belt 106 to move to the side of the adjacent conveying mechanism 1,With the inclined support of the side of the slide plate 102, the top of the conveyor belt 106 can be quickly separated from the bottom of the pre-treated dough, so as to prevent the conveyor belt 106 from vertically adhering to and taking away the pre-treated dough. At this time, the fallen part of the pre-treated dough can be quickly supported by the top of the adjacent conveyor belt 106 for upward transportation, so that the separated pre-treated dough can be quickly transferred to the top of the adjacent conveyor belt 106, so that the conveying mechanism 1 can effectively prevent the pre-treated dough from adhering to the conveyor belt 106 during the conveying process, thereby ensuring the efficient conveying of the conveying mechanism 1. At the same time, by rotating the adjustment rod 107, the two adjustment rods 107 can rotate synchronously with the cooperation of the linkage wheel 108 and the linkage belt 109, so that the rotating adjustment rod 107 can move the adjustment frame 110 to adjust the use height, so that the bottom of the adjustment frame 110 can The conveyor belt 106 can be attached to the outer surface of the conveyor belt 106. At this time, it is connected to the existing liquid conveying equipment through the injection pipe 111 and the discharge pipe 112, so that liquids of different temperatures can be transported to the inside of the regulating frame 110 according to the actual temperature cycle of the conveyor belt 106, thereby ensuring that the conveyor belt 106 is not easily affected by temperature changes and structural changes. At the same time, the conveyor belt 106 temperature can be adjusted to prevent the pre-treated dough from sticking to the conveyor belt 106. Under the support of the sticking plate 114, when the conveyor belt 106 passes through the guide strip 116 and the collecting frame 115, the pre-treated dough remaining on the surface of the conveyor belt 106 can be squeezed and separated by the guide strip 116 and the collecting frame 115 and fall into the inside of the guide frame 117, ensuring the cleanliness of the surface of the conveyor belt 106, so that the conveying mechanism 1 can effectively prevent the pre-treated dough from sticking;

[0042] See also Figure 12-16The cutting mechanism 2 is arranged on the conveying mechanism 1. The cutting mechanism 2 includes two moving frames 201, a top frame 205, a lifting frame 219, a push plate 226, two reset frames 227, a cutting plate 231, a rotating component and a vibrating component. The top frame 205 is slidably inserted between the two moving frames 201, the lifting frame 219 is slidably inserted on the bottom surface of the top frame 205, and the push plate 226 is slidably inserted on the bottom of the lifting frame 219. The two reset frames 227 are fixedly connected to the bottom of the push plates 226. A support spring 228 is slidably arranged inside each reset frame 227. A reset rod 229 is slidably inserted on the bottom surface of each reset frame 227. A pressing sheet is fixedly connected to the top of each reset rod 229, and an extension rod 230 is threadedly connected to the bottom of each reset rod 229. The top of the cutting plate 231 is rotatably connected to two connecting tubes 232, each connecting tube 232 and the corresponding extension rod 230 are threadedly connected, the top of each base frame 101 is fixedly connected to the limiting plate 119, and the outer surface of one side of each limiting plate 119 is provided with a limiting groove, and each mobile frame 201 is slidably set on the corresponding limiting plate 119, and the outer surface of one side of each mobile frame 201 is threadedly connected to the limiting bolt 202, and one end of each limiting bolt 202 slides through the corresponding limiting groove, and one end of each limiting bolt 202 is rotatably connected to the limiting plate 203, and the outer surface of one side of each mobile frame 201 is fixedly connected to the support rod 204, and the top surface of the top frame 205 is rotatably connected to two support tubes 206, and each support tube 206 and the corresponding support rod 204 are Threaded connection, each support tube 206 is sleeved with a first worm gear on the outer surface, and a rotating shaft 207 is rotatably connected between the opposite outer surfaces on both sides of the top frame 205. Two first worms 208 are sleeved on the outer surface of the rotating shaft 207, and each first worm 208 is meshed with the corresponding first worm gear. The rotating component includes a rotating plate 210, a rotating motor 209, a positioning rod 211, a positioning block 212 and a linkage bar 218. The rotating plate 210 is rotatably connected to the outer surface of one side of the top frame 205, and the rotating motor 209 is fixedly connected to the outer surface of the other side of the top frame 205. The output end of the rotating motor 209 is fixedly connected to the outer surface of one side of the rotating plate 210, the positioning rod 211 is rotatably connected to the outer surface of one side of the rotating plate 210, and the positioning block 212 is threadedly connected to the outer surface of the positioning rod 211. The outer surface of the linkage bar 218 is slidably sleeved on the outer surface of the positioning block 212, and the outer surface of one side of the linkage bar 218 is fixedly connected to the outer surface of one side of the lifting frame 219, and the outer surface of one side of the rotating plate 210 is fixedly connected with two clamping strips 215, and the outer surface of one side of the positioning block 212 is slidably penetrated by a clamping rod 213, and one end of the clamping rod 213 is fixedly connected to a fixed clamping plate, and the outer surface of the clamping rod 213 is slidably sleeved with a movable clamping plate 214, and the outer surface of the clamping rod 213 is threadedly connected with two limiting nuts, and the outer surface of one side of the rotating plate 210 is fixedly connected with a counterweight plate 216, and the outer surface of one side of the counterweight plate 216 is threadedly connected with a plurality of counterweight blocks 217, and the vibration component includes two mounting blocks, a push rod 220, a clamping rod 222, a sliding bar 221, two push bars 225 and a mobile motor 224,The two mounting blocks are fixedly connected to the top of the carrying frame 219, the push rod 220 is rotatably connected between the relative outer surfaces of the two mounting blocks, the outer surface of the push rod 220 is provided with a push groove, the slide bar 221 is slidably inserted between the relative outer surfaces of the two mounting blocks, the clamping rod 222 is rotatably connected to the bottom of the slide bar 221, and the bottom end of the clamping rod 222 extends into the push groove, the two push bars 225 are respectively fixedly connected to the outer surfaces on both sides of the slide bar 221, one end of the two push bars 225 is respectively fixedly connected to the outer surfaces on both sides of the push plate 226, a second worm gear 223 is sleeved on one end of the push rod 220, the top of the carrying frame 219 is rotatably connected to the second worm, the second worm gear and the second worm gear 223 are meshed, the mobile motor 224 is fixedly connected to the top of the carrying frame 219, and the output end of the mobile motor 224 and One end of the second worm is fixedly connected, and the positioning rod 211 is rotated and adjusted according to the actual height of the pre-processed dough, so that the rotating positioning rod 211 can adjust the distance between the top block and the rotation center of the rotating plate 210, and then the limiting nut is tightened, so that the limiting nut can cooperate with the clamping rod 213 to make the movable clamping plate 214 and the fixed clamping plate close to each other, so that the movable clamping plate 214 and the fixed clamping plate can squeeze the corresponding clamping strip 215, and then the position of the positioning block 212 can be fixed and restricted stably. At this time, the rotating motor 209 is controlled to start, and under the action of the counterweight plate 216 and the counterweight block 217, the weight of the rotating plate 210 close to the positioning block 212 side and the counterweight plate 216 side can be more balanced, so that the rotating motor 209 can be more The rotating plate 210 is efficiently driven to rotate. During the rotation of the rotating plate 210, as the distance between the positioning block 212 and the rotation center of the rotating plate 210 changes, the positioning block 212 can support the linkage bar 218 to reciprocate at different heights. The reciprocating linkage bar 218 can cooperate with the lifting frame 219 and the push plate 226 to drive the cutting plate 231 to synchronously reciprocate at a certain height, so that the cutting plate 231 can cut the pre-treated dough. At the same time, the mobile motor 224 is controlled to start, so that the mobile motor 224 cooperates with the second worm and the second worm gear 223 to drive the push plate 226 to rotate, so that the rotating push rod 220 can push the clamping rod 222 to reciprocate in the horizontal direction through the push groove, so that the clamping rod 222 cooperates with the slide bar 221 and the push bar 225 to synchronously drive the push plate 226 to reciprocate in the horizontal direction, so that the push plate 226 can synchronously drive the cutting plate 231 to reciprocate in the horizontal direction through the reset frame 227, the reset rod 229, the extension rod 230 and the connecting tube 232, thereby ensuring that the cutting plate 231 can quickly reciprocate in the horizontal direction during the height change process, so that the cutting plate 231 can cut and separate the pre-treated dough more efficiently, and prevent the pre-treated dough from sticking to the cutting plate 231. As the structure of the pre-treated dough changes, the rotating shaft 207 can be rotated so that the rotating shaft 207 can synchronously drive the support tube 206 to rotate through the first worm gear and the first worm 208.Furthermore, the height of the top frame 205 can be quickly adjusted within the position limit of the support rod 204, and the height of the cutting board 231 can be conveniently adjusted. At the same time, the height of the cutting board 231 can be quickly adjusted by adding or removing the splicing extension rod 230. At the same time, under the support of the support spring 228, during the cutting process of the cutting board 231, the extension rod 230, the reset rod 229 and the pressing sheet can be used to squeeze the support spring 228 to shrink, so that the cutting board 231 can affect the rotation of the conveyor belt 106 when cutting the pre-treated dough, thereby improving the actual cutting efficiency.

[0043] The following is a detailed description of the intelligent food processing cutting and transportation method provided by the embodiment of the present invention, and its use method includes the following steps:

[0044] Step 1, conveying adjustment: according to the actual use situation, multiple conveying mechanisms 1 can be spliced ​​and used, so that the limit plates 119 of adjacent conveying mechanisms 1 are in contact with each other relative to the outer surface. At this time, one end of the adjacent conveying belts 106 can be close to each other in a bevel state under the support of the slide plate 102. By controlling the start of the driving motor 118, the driving motor 118 can cooperate with the installation shaft to drive the corresponding rotating wheel 103 to rotate. The rotating rotating wheel 103 cooperates with the remaining rotating wheels 103 and the slide plate 102 to drive the rotating belt 105 to rotate synchronously. The rotating rotating belt 105 can drive the conveyor belt 106 from the collection frame 115 to the conveyor belt 106. The conveyor belt 106 rotates sideways and downwards, and when the pre-processed dough on the top of the conveyor belt 106 moves to the side of the adjacent conveyor mechanism 1 with the conveyor belt 106, the top of the conveyor belt 106 can be quickly separated from the bottom of the pre-processed dough under the inclined support of the side of the slide plate 102, so as to prevent the conveyor belt 106 from vertically adhering to and taking away the pre-processed dough. At this time, the falling part of the pre-processed dough can be quickly supported by the top of the adjacent conveyor belt 106 for upward transportation, so that the separated pre-processed dough can be quickly transferred to the top of the adjacent conveyor belt 106, so that the conveyor mechanism 1 can effectively avoid the pre-processed dough during the transportation process. The processed dough adheres to the conveyor belt 106, ensuring the efficient conveying of the conveying mechanism 1. At the same time, the adjusting rod 107 is rotated to adjust the two adjusting rods 107, and then the two adjusting rods 107 can rotate synchronously with the cooperation of the interlocking wheel 108 and the interlocking belt 109, so that the rotating adjusting rod 107 can move and adjust the use height of the adjusting frame 110, so that the bottom of the adjusting frame 110 can fit the outer surface of the conveyor belt 106. At this time, it is connected with the existing liquid conveying equipment through the injection pipe 111 and the discharge pipe 112, so that liquids of different temperatures can be transported to the inside of the adjusting frame 110 according to the actual temperature cycle of the conveyor belt 106. , thereby ensuring that the conveyor belt 106 is not easily affected by temperature changes and undergoing structural changes, and at the same time being able to adjust the temperature of the conveyor belt 106, thereby preventing the pre-treated dough from sticking to the conveyor belt 106. Under the support of the pasting plate 114, when the conveyor belt 106 passes through the guide strip 116 and the collecting frame 115, the pre-treated dough remaining on the surface of the conveyor belt 106 can be squeezed and separated by the guide strip 116 and the collecting frame 115 and fall into the guide frame 117, ensuring the cleanliness of the surface of the conveyor belt 106, so that the conveying mechanism 1 can effectively prevent the pre-treated dough from sticking, thereby improving the actual use effect of the equipment;

[0045] Step 2, cutting adjustment: according to the actual height of the pre-processed dough, the positioning rod 211 is rotated and adjusted so that the rotating positioning rod 211 can adjust the distance between the top block and the rotation center of the rotating plate 210, and then the limiting nut is tightened so that the limiting nut can cooperate with the clamping rod 213 to make the movable clamping plate 214 and the fixed clamping plate close to each other, so that the movable clamping plate 214 and the fixed clamping plate can squeeze the corresponding clamping strip 215, and then the position of the positioning block 212 can be fixed and restricted stably. At this time, the rotating motor 209 is controlled to start, and the rotating plate 210 is moved close to the fixed plate 214 under the action of the counterweight plate 216 and the counterweight block 217. The weight of one side of the positioning block 212 and the one side of the counterweight plate 216 can be relatively balanced, so that the rotating motor 209 can more efficiently drive the rotating plate 210 to rotate. During the rotation of the rotating plate 210, as the distance between the positioning block 212 and the rotation center of the rotating plate 210 changes, the positioning block 212 can support the linkage bar 218 to reciprocate at different heights. The reciprocating linkage bar 218 can cooperate with the lifting frame 219 and the pushing plate 226 to drive the cutting plate 231 to reciprocate at a certain height synchronously, so that the cutting plate 231 can cut the pre-treated dough. At the same time, by controlling the mobile motor 209 to start The moving motor 224 cooperates with the second worm and the second worm gear 223 to drive the push plate 226 to rotate, so that the rotating push rod 220 can push the clamping rod 222 to move back and forth in the horizontal direction through the push groove, and then the clamping rod 222 cooperates with the slide bar 221 and the push bar 225 to synchronously drive the push plate 226 to move back and forth in the horizontal direction, and then the push plate 226 can synchronously drive the cutting plate 231 to move back and forth in the horizontal direction through the reset frame 227, the reset rod 229, the extension rod 230 and the connecting pipe 232, thereby ensuring that the cutting plate 231 is in the process of changing its height, and the horizontal position is also quickly moved back and forth. The multiple-circulation movement enables the cutting plate 231 to cut and separate the pre-treated dough more efficiently, and prevents the pre-treated dough from sticking to the cutting plate 231. As the structure of the pre-treated dough changes, the rotating shaft 207 can be rotated so that the rotating shaft 207 can synchronously drive the support tube 206 to rotate through the first worm gear and the first worm 208, and then the position of the support rod 204 can be limited, so that the use height of the top frame 205 can be quickly adjusted, and then the use height of the cutting plate 231 can be conveniently adjusted, so that the equipment can meet the cutting processing needs of pre-treated dough of different specifications, thereby improving the versatility of the actual use of the equipment.

[0046] The above description is only a preferred embodiment of the present invention and is not intended to limit the present invention. Any modifications, equivalent substitutions and improvements made within the spirit and principles of the present invention should be included in the protection scope of the present invention.

Claims

1. Intelligent food processing cutting and transportation equipment, characterized in that: include: A conveying mechanism (1), the conveying mechanism (1) comprising two base frames (101), a slide plate (102), four rotating wheels (103), two supporting rollers (104), two rotating belts (105), a conveying belt (106), a collecting component and an adjusting component, the slide plate (102) being fixedly connected between opposite outer surfaces of the two base frames (101), two mounting shafts being rotatably connected between opposite inner surfaces of the two base frames (101), each of the rotating wheels (103) being respectively sleeved on the outer surface of a corresponding mounting shaft, each of the supporting rollers (104) being slidably sleeved on the outer surface of a corresponding mounting shaft, each of the rotating belts (105) being sleeved between the outer surfaces of the two corresponding rotating wheels (103), the conveying belt (106) being fixedly connected between the opposite outer surfaces of the two rotating belts (105), and the collecting component and the adjusting component being both arranged on the two base frames (101); and The cutting mechanism (2) is arranged on the conveying mechanism (1), and comprises two movable frames (201), a top frame (205), a lifting frame (219), a push plate (226), two reset frames (227), a cutting plate (231), a rotating component and a vibrating component. The top frame (205) is slidably inserted between the two movable frames (201), the lifting frame (219) is slidably inserted on the bottom surface of the top frame (205), the push plate (226) is slidably inserted on the bottom of the lifting frame (219), and the two reset frames (227) are arranged on the cutting plate (231). 227) are fixedly connected to the bottom of the push plate (226), a support spring (228) is slidably arranged inside each of the reset frames (227), a reset rod (229) is slidably inserted into the bottom surface of each of the reset frames (227), a pressing plate is fixedly connected to the top of each of the reset rods (229), an extension rod (230) is threadedly connected to the bottom of each of the reset rods (229), and two connecting tubes (232) are rotatably connected to the top of the cutting plate (231), and each of the connecting tubes (232) and the corresponding extension rod (230) are threadedly connected.

2. The intelligent food processing cutting and conveying equipment according to claim 1, characterized in that: The inner surface wall of each rotating belt (105) is in contact with the top of the slide plate (102), and the conveyor belt (106) is slidably sleeved between the slide plate (102) and the outer surfaces of the two supporting rollers (104).

3. The intelligent food processing cutting and conveying equipment according to claim 2, characterized in that: A driving motor (118) is fixedly connected to the outer surface of one side of one of the base frames (101), and the output end of the driving motor (118) is fixedly connected to one end of the corresponding mounting shaft. A pasting plate (114) is fixedly connected between the opposite outer surfaces of the two base frames (101), and the outer surface of one side of the pasting plate (114) is in contact with the inner walls of the conveyor belt (106) and the two transfer belts (105).

4. The intelligent food processing cutting and conveying equipment according to claim 3, characterized in that: The collecting component comprises a collecting frame (115), two guide bars (116) and a material guide frame (117); the collecting frame (115) is fixedly connected between the relative outer surfaces of the two base frames (101); the top of the collecting frame (115) is in contact with the outer surface of the conveyor belt (106); the two guide bars (116) are fixedly connected to the top of the collecting frame (115); the top of each guide bar (116) is in contact with the outer surface of the conveyor belt (106); and the material guide frame (117) is connected and arranged at the bottom of the collecting frame (115).

5. The intelligent food processing cutting and conveying equipment according to claim 4, characterized in that: The adjusting component comprises two adjusting rods (107), two interlocking wheels (108), an interlocking belt (109), an adjusting frame (110), an injection pipe (111), a discharge pipe (112) and two supporting wheels (113); each adjusting rod (107) is rotatably connected to the outer surface of one side of the corresponding base frame (101); each interlocking wheel (108) is sleeved on the outer surface of the corresponding adjusting rod (107); the interlocking belt (109) is sleeved between the outer surfaces of the two interlocking wheels (108); the adjusting frame (110) is threadedly connected between the outer surfaces of the two adjusting rods (107); the injection pipe (111) and the discharge pipe (112) are respectively connected and arranged on the outer surfaces of both sides of the adjusting frame (110); and the two supporting wheels (113) are respectively slidably sleeved on the outer surfaces of the injection pipe (111) and the discharge pipe (112).

6. The intelligent food processing cutting and conveying equipment according to claim 5, characterized in that: The top of each base frame (101) is fixedly connected to a limiting plate (119), and a limiting groove is provided on the outer surface of one side of each limiting plate (119). Each movable frame (201) is slidably arranged on the corresponding limiting plate (119), and a limiting bolt (202) is threadedly connected to the outer surface of one side of each movable frame (201). One end of each limiting bolt (202) slides through the corresponding limiting groove, and one end of each limiting bolt (202) is rotatably connected to a limiting plate (203).

7. The intelligent food processing cutting and conveying equipment according to claim 6, characterized in that: The outer surface of one side of each of the mobile frames (201) is fixedly connected to a support rod (204); the inner top surface of the top frame (205) is rotatably connected to two support tubes (206); each of the support tubes (206) is threadedly connected to the corresponding support rod (204); the outer surface of each of the support tubes (206) is sleeved with a first worm gear; a rotating shaft (207) is rotatably connected between the opposite outer surfaces of both sides of the top frame (205); the outer surface of the rotating shaft (207) is sleeved with two first worms (208); each of the first worms (208) is meshed with the corresponding first worm gear.

8. The intelligent food processing cutting and conveying equipment according to claim 7, characterized in that: The rotating component comprises a rotating plate (210), a rotating motor (209), a positioning rod (211), a positioning block (212) and a linkage bar (218); the rotating plate (210) is rotatably connected to the outer surface of one side of the top frame (205); the rotating motor (209) is fixedly connected to the outer surface of the other side of the top frame (205); the output end of the rotating motor (209) is fixedly connected to the outer surface of one side of the rotating plate (210); the positioning rod (211) is rotatably connected to the outer surface of one side of the rotating plate (210); the positioning block (212) is threadedly connected to the outer surface of the positioning rod (211); and the linkage bar (218) is slidably sleeved on the outer surface of the positioning block (212). The outer surface of one side of the linkage bar (218) and the outer surface of one side of the lifting frame (219) are fixedly connected, the outer surface of one side of the rotating plate (210) is fixedly connected with two clamping strips (215), the outer surface of one side of the positioning block (212) is slidably penetrated by a clamping rod (213), one end of the clamping rod (213) is fixedly connected with a fixed clamping plate, the outer surface of the clamping rod (213) is slidably sleeved with a movable clamping plate (214), the outer surface of the clamping rod (213) is threadedly connected with two limit nuts, the outer surface of one side of the rotating plate (210) is fixedly connected with a counterweight plate (216), and the outer surface of one side of the counterweight plate (216) is threadedly connected with a plurality of counterweight blocks (217).

9. The intelligent food processing cutting and conveying equipment according to claim 8, characterized in that: The vibration component comprises two mounting blocks, a push rod (220), a clamping rod (222), a slide bar (221), two push bars (225) and a moving motor (224); the two mounting blocks are fixedly connected to the top of the bracket (219); the push rod (220) is rotatably connected between the relative outer surfaces of the two mounting blocks; a push groove is provided on the outer surface of the push rod (220); the slide bar (221) is slidably inserted between the relative outer surfaces of the two mounting blocks; the clamping rod (222) is rotatably connected to the bottom of the slide bar (221); and the bottom end of the clamping rod (222) extends The push rod (220) extends into the push groove, the two push strips (225) are respectively fixedly connected to the outer surfaces of both sides of the slide bar (221), one end of the two push strips (225) is respectively fixedly connected to the outer surfaces of both sides of the push plate (226), one end of the push rod (220) is sleeved with a second worm gear (223), the top of the lifting frame (219) is rotatably connected to a second worm, the second worm gear is meshed with the second worm gear (223), the moving motor (224) is fixedly connected to the top of the lifting frame (219), and the output end of the moving motor (224) is fixedly connected to one end of the second worm gear.

10. An intelligent food processing cutting and transportation method, characterized in that: The method is applied to the intelligent food processing cutting and conveying equipment described in claim 9, comprising the following steps: S1. Conveying adjustment: According to actual use conditions, multiple conveying mechanisms (1) can be spliced ​​and used, so that the limiting plates (119) of adjacent conveying mechanisms (1) are in contact with each other relative to the outer surface. At this time, one end of the adjacent conveying belts (106) can be close to each other in a cut-off state under the support of the slide plate (102). By controlling and starting the driving motor (118), the driving motor (118) cooperates with the installation shaft to drive the corresponding rotating wheel (103) to rotate. The rotating rotating wheel (103) cooperates with the remaining rotating wheels (103) and the slide plate (102) to drive the rotating belt (105) to rotate synchronously. The rotating rotating belt (105) can drive the conveying mechanism (1) to rotate synchronously. The conveyor belt (106) rotates downward from one side of the collecting frame (115), and when the pre-processed dough on the top of the conveyor belt (106) moves to the side of the adjacent conveying mechanism (1) following the conveyor belt (106), the top of the conveyor belt (106) can be quickly separated from the bottom of the pre-processed dough under the inclined support of the side of the slide plate (102), so as to prevent the conveyor belt (106) from vertically adhering to and separating the pre-processed dough. At this time, the falling part of the pre-processed dough can be quickly supported by the top of the adjacent conveyor belt (106) and transported upward, so that the separated pre-processed dough can be quickly transferred to the top of the adjacent conveyor belt (106). The conveying mechanism (1) can effectively prevent the pre-treated dough from sticking to the conveying belt (106) during the conveying process, thereby ensuring the efficient conveying of the conveying mechanism (1). At the same time, the adjusting rod (107) is rotated to adjust the dough, and then the two adjusting rods (107) can be rotated synchronously with the cooperation of the linkage wheel (108) and the linkage belt (109), so that the rotating adjusting rod (107) can move and adjust the use height of the adjusting frame (110), so that the bottom of the adjusting frame (110) can fit the outer surface of the conveying belt (106). At this time, the adjusting frame (110) is connected to the existing liquid conveying equipment through the injection pipe (111) and the discharge pipe (112), so that the adjusting frame (110) can be adjusted to the use height of the adjusting frame (110). Liquids of different temperatures are transported to the inside of the regulating frame (110) according to the actual temperature of the conveyor belt (106), thereby ensuring that the conveyor belt (106) is not easily affected by temperature changes and undergoing structural changes. At the same time, the temperature of the conveyor belt (106) can be adjusted to prevent the pre-treated dough from adhering to the conveyor belt (106). When the conveyor belt (106) passes through the guide strip (116) and the collecting frame (115), the pre-treated dough remaining on the surface of the conveyor belt (106) can be squeezed and separated by the guide strip (116) and the collecting frame (115) and fall into the inside of the material guide frame (117) under the support of the pasting plate (114); S2, cutting adjustment: according to the actual height of the pre-processed dough, the positioning rod (211) is rotated and adjusted so that the rotating positioning rod (211) can adjust the distance between the top block and the rotation center of the rotating plate (210), and then by tightening the limiting nut, the limiting nut can cooperate with the clamping rod (213) to make the movable clamping plate (214) and the fixed clamping plate approach each other, so that the movable clamping plate (214) and the fixed clamping plate can squeeze the corresponding clamping strip (215), and then the position of the positioning block (212) can be fixed and restricted. At this time, by controlling the start of the rotating motor (209), under the action of the counterweight plate (216) and the counterweight block (217), the rotating plate (210) is moved. The weight of the side of the positioning block (212) and the side of the counterweight plate (216) close to the positioning block (210) can be relatively balanced, so that the rotating motor (209) can more efficiently drive the rotating plate (210) to rotate. During the rotation of the rotating plate (210), as the distance between the positioning block (212) and the rotation center of the rotating plate (210) changes, the positioning block (212) can support the linkage bar (218) to reciprocate at different heights. The reciprocating linkage bar (218) can cooperate with the lifting frame (219) and the pushing plate (226) to drive the cutting plate (231) to reciprocate at a certain height synchronously, so that the cutting plate (231) can cut the pre-treated surface. The cutting process of the ball is carried out, and at the same time, the moving motor (224) is controlled to be started, so that the moving motor (224) cooperates with the second worm and the second worm wheel (223) to drive the push plate (226) to rotate, and then the rotating push rod (220) can push the clamping rod (222) to move back and forth in the horizontal direction through the push groove, and then the clamping rod (222) cooperates with the slide bar (221) and the push bar (225) to synchronously drive the push plate (226) to move back and forth in the horizontal direction, and then the push plate (226) can synchronously drive the cutting plate (231) to move back and forth in the horizontal direction through the reset frame (227), the reset rod (229), the extension rod (230) and the connecting pipe (232). The cutting board (231) is moved so as to ensure that the cutting board (231) can move back and forth rapidly in the horizontal direction during the height change process, so that the cutting board (231) can cut and separate the pre-treated dough more efficiently, and prevent the pre-treated dough from sticking to the cutting board (231). As the structure of the pre-treated dough changes, the rotating shaft (207) can be rotated so that the rotating shaft (207) can synchronously drive the support tube (206) to rotate through the first worm gear and the first worm (208), and then the use height of the top frame (205) can be quickly adjusted within the position limit of the support rod (204), and then the use height of the cutting board (231) can be conveniently adjusted.