Whole-grain sesame food processing equipment

By designing a cooling mechanism that combines the synchronization wheel and the air guide plate, the problem of uneven cooling of sesame balls is solved, uniform wind blowing and height adjustment are achieved, and the efficiency and quality of sesame ball processing are improved.

CN120403191AInactive Publication Date: 2025-08-01河南省农业科学院农产品加工研究中心
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Patent Information

Application Number
CN202510633272.3
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2025-05-16
Publication Date
2025-08-01
Estimated Expiration
Not applicable · inactive patent

AI Technical Summary

Technical Problem

In existing sesame ball processing equipment, the fan fixation leads to limited wind coverage, and the sesame ball cannot be cooled evenly, affecting the subsequent processing effect.

Method used

A whole-grain sesame food processing equipment including a cooling mechanism and a lifting mechanism is designed. Through the coordination of the synchronization wheel, rotating rod and air guide plate, the fan wind power is uniformly blown to the surface of the sesame ball, and the wind power range is adjusted through the lifting mechanism to meet different process needs.

Benefits of technology

It realizes uniform cooling of sesame balls, improves processing efficiency and quality, and meets the cooling requirements of different production rhythms.

✦ Generated by Eureka AI based on patent content.

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Abstract

The invention belongs to the technical field of food processing, and discloses whole-grain sesame food processing equipment which comprises a pelleting machine and further comprises a cooling mechanism arranged on the outer wall of the top end of the pelleting machine through a lifting mechanism; the raw material box is arranged on the outer wall of the top end of the pelleting machine; the conveying module is arranged on the pelleting machine; wherein the cooling mechanism comprises a fixed box, and the inner wall of the fixed box is fixedly connected with a fan; the lifting mechanism comprises a fixing block, and the inner wall of the fixing block is slidably connected with a moving rod. An output shaft of the fan is fixedly connected with a synchronous wheel A; through cooperation of structures such as the air deflectors and the rotating shafts, when the fan is started, the multiple sets of rotating shafts synchronously rotate in a reciprocating mode, the rotating plates and the air deflectors continuously swing in a reciprocating mode, wind power generated by the fan is blown to the surfaces of sesame balls more evenly, and the problem that the cooling comprehensiveness of the sesame balls is affected due to the fact that the wind power range of the fan is too small is solved.
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Description

Technical Field

[0001] The present invention belongs to the technical field of food processing, and specifically relates to a whole-grain sesame food processing device. Background Art

[0002] The whole-grain sesame food processing device is a series of devices for processing whole-grain sesame foods, including machines with various functions such as screening, crushing, mixing, and forming. For example, a complete set of cleaning machinery can clean impurities in sesame, and a crusher can crush sesame, etc.; the sesame ball processing device is specifically used for producing whole-grain sesame balls, and common ones include fully automatic whole-grain forming machines, pill-making machines, etc. The former uses fully automatic mechanical rotation and pneumatic soft pressing for forming, and can produce products in various shapes; the latter can make the evenly mixed and refined sesame medicinal paste into pills of uniform size.

[0003] During the process of processing sesame balls by a pill-making machine, since the raw materials of sesame balls need to be refined at high temperature, the temperature of the formed sesame balls is also relatively high, and it needs to be cooled before being transported to the next step for processing. During the transportation and cooling process, in some existing technologies, cooling is carried out by a fan. However, since the fan is fixed on the pill-making machine, the wind coverage range is limited, and it is impossible to evenly blow the wind onto the surfaces of all sesame balls during cooling, resulting in different cooling effects of the sesame balls and affecting subsequent processing. Therefore, in view of the above problems, a whole-grain sesame food processing device is proposed. Summary of the Invention

[0004] To solve the problems raised in the above background art, the present invention provides a whole-grain sesame food processing device.

[0005] To achieve the above object, the present invention provides the following technical solution: A whole-grain sesame food processing device, including a pill-making machine, further including:

[0006] A cooling mechanism, the cooling mechanism is arranged on the top outer wall of the pill-making machine through a lifting mechanism;

[0007] A raw material box, the raw material box is arranged on the top outer wall of the pill-making machine;

[0008] A conveying module, the conveying module is arranged on the pill-making machine;

[0009] Among them, the cooling mechanism includes a fixed box, and a fan is fixedly connected to the inner wall of the fixed box;

[0010] The lifting mechanism includes a fixed block, and a moving rod is slidably connected to the inner wall of the fixed block.

[0011] Preferably, a synchronous pulley A is fixedly connected to the output shaft of the fan. The outer wall of the synchronous pulley A is drivingly connected to a synchronous pulley B through a synchronous belt. A fixed rod is fixedly connected to the outer wall of the synchronous pulley B. A moving block is hinged to the outer wall of the fixed rod through a rotating rod. A rotating shaft is rotatably connected to the inner wall of the fixed box. A gear is fixedly connected to the outer wall of one end of the rotating shaft. A sprocket is fixedly connected to the outer wall of the other end of the rotating shaft. A rack is fixedly connected to the outer wall of the moving block. A chain is wound around the outer wall of the sprocket. A rotating plate is fixedly connected to the outer wall of the rotating shaft. A wind guiding plate is fixedly connected to the outer wall of the rotating plate.

[0012] Preferably, the synchronous pulley A is rotatably connected to the outer wall of the fan, and the synchronous pulley B is rotatably connected to the inner wall of the fixed box.

[0013] Preferably, one end of the rotating rod is hinged to the outer wall of the fixed rod, and the other end of the rotating rod is hinged to the outer wall of the moving block. The moving block is slidably connected to the inner wall of the fixed box.

[0014] Preferably, the gear meshes with the rack. Multiple groups of sprockets are provided, and the multiple groups of sprockets are drivingly connected through a chain.

[0015] Preferably, a groove is formed in the inner wall of the fixed block. A pull rod is slidably connected to the inner wall of the moving rod. A partition plate is fixedly connected to the outer wall of the top end of the pull rod. An insertion block is hinged to the outer wall of the bottom end of the pull rod through a hinge rod. Two groups of insertion blocks are provided, and the two groups of insertion blocks are elastically connected through an elastic member.

[0016] Preferably, the fixed block is fixedly connected to the outer wall of the top end of the pill making machine, and the moving rod is fixedly connected to the outer wall of the fixed box.

[0017] Preferably, the insertion block is slidably connected to the inner wall of the moving rod, and the insertion block is clamped with the groove.

[0018] Preferably, one end of the hinge rod is hinged to the outer wall of the insertion block, and the other end of the hinge rod is hinged to the outer wall of the bottom end of the pull rod.

[0019] Preferably, the two ends of the elastic member are respectively fixedly connected to the outer walls of the two groups of insertion blocks. The pull rod penetrates through the outer wall of the moving rod, and the partition plate is slidably connected to the inner wall of the moving rod.

[0020] Compared with the prior art, the beneficial effects of the present invention are as follows:

[0021] Through the cooperation of structures such as the air deflector and the rotating shaft, when the fan starts, the synchronous pulley B is driven to rotate by the synchronous pulley A and the synchronous belt, and the crank and connecting rod motion is performed through the fixed rod, the rotating rod, and the moving block, driving the rack to reciprocate, so that multiple groups of rotating shafts rotate synchronously and reciprocally, and the rotating plate and the air deflector swing reciprocally continuously, blowing the wind generated by the fan more evenly onto the surface of the sesame pills, avoiding the problem that the small range of the fan wind power affects the comprehensiveness of the sesame pill cooling;

[0022] Through the cooperation of structures such as the moving rod and the insertion block, the height of the cooling mechanism can be conveniently and quickly adjusted through the lifting mechanism, so that according to different process requirements, the fan wind power can be blown onto the surface of the sesame pills more widely or more concentratedly and strongly, without the need to adjust the height of the fan by turning bolts, with simple operation and higher efficiency. Brief Description of the Drawings

[0023] Figure 1 It is a schematic diagram of the main structure of the present invention;

[0024] Figure 2 It is a schematic diagram of the structure of the cooling mechanism of the present invention;

[0025] Figure 3 It is a schematic diagram of the cross-section of the fixed box, the fan, and the air deflector of the present invention;

[0026] Figure 4 For the present invention Figure 3 The enlarged structure schematic diagram of part A in it;

[0027] Figure 5 It is a schematic diagram of the fan, the sprocket, and the chain of the present invention;

[0028] Figure 6 It is a schematic diagram of the disassembled structure of the cross-section of the fixed block and the moving rod of the present invention.

[0029] In the figure: 1, pill making machine; 2, cooling mechanism; 201, fixed box; 202, fan; 203, rotating plate; 204, air deflector; 205, synchronous pulley A; 206, synchronous belt; 207, synchronous pulley B; 208, fixed rod; 209, rotating rod; 210, moving block; 211, rotating shaft; 212, rack; 213, gear; 214, sprocket; 215, chain; 3, lifting mechanism; 301, fixed block; 302, groove; 303, moving rod; 304, pull rod; 305, partition board; 306, hinged rod; 307, insertion block; 308, elastic member; 4, raw material box; 5, conveying module. Detailed Description of the Invention

[0030] Next, the technical solutions in the embodiments of the present invention will be clearly and completely described in conjunction with the accompanying drawings in the embodiments of the present invention. Obviously, the described embodiments are only a part of the embodiments of the present invention, rather than all the embodiments. All other embodiments obtained by those of ordinary skill in the art based on the embodiments of the present invention without creative efforts shall fall within the protection scope of the present invention.

[0031] As Figures 1 to 6 shown, the present invention provides a whole-grain sesame food processing device, including a pill-making machine 1, and further including:

[0032] A cooling mechanism 2, the cooling mechanism 2 is arranged on the top outer wall of the pill-making machine 1 through a lifting mechanism 3;

[0033] A raw material box 4, the raw material box 4 is arranged on the top outer wall of the pill-making machine 1;

[0034] A conveying module 5, the conveying module 5 is arranged on the pill-making machine 1;

[0035] Among them, the cooling mechanism 2 includes a fixed box 201, and a fan 202 is fixedly connected to the inner wall of the fixed box 201;

[0036] The lifting mechanism 3 includes a fixed block 301, and a moving rod 303 is slidably connected to the inner wall of the fixed block 301.

[0037] Adopting the above scheme: The pill-making machine 1, the raw material box 4, and the conveying module 5 are the main bodies of the whole-grain sesame pill processing device, which are prior arts. Sesame raw materials can be placed in the raw material box 4, and the sesame raw materials are filled into the conveying module 5 through the internal feeding module of the raw material box 4. The conveying module 5 is composed of multiple plastic trays, and there are multiple round holes on the plastic trays. After the sesame raw materials are placed in the round holes, they can be formed. This process is all prior art; after the sesame raw materials are formed, the sesame pills are conveyed to the next device through the conveying module 5 for further processing. During the conveying process, they will pass through the cooling mechanism 2 for cooling to prevent the sesame raw materials from being too hot and affecting subsequent processing; the cooling mechanism 2 is arranged on the pill-making machine 1 through the lifting mechanism 3, and the lifting mechanism 3 can adjust the distance between the cooling mechanism 2 and the sesame pills on the conveying module 5 to adjust the wind force generated by the fan 202 on the sesame pills according to actual processing requirements, and the adjustment operation is relatively convenient and fast.

[0038] As Figures 2 to 5As shown in the figure, the output shaft of the fan 202 is fixedly connected with a synchronous pulley A205. The outer wall of the synchronous pulley A205 is drivingly connected with a synchronous pulley B207 through a synchronous belt 206. The outer wall of the synchronous pulley B207 is fixedly connected with a fixing rod 208. The outer wall of the fixing rod 208 is hinged with a moving block 210 through a rotating rod 209. The inner wall of the fixing box 201 is rotatably connected with a rotating shaft 211. One end of the outer wall of the rotating shaft 211 is fixedly connected with a gear 213, and the other end of the outer wall of the rotating shaft 211 is fixedly connected with a sprocket 214. The outer wall of the moving block 210 is fixedly connected with a rack 212. The outer wall of the sprocket 214 is wound with a chain 215. The outer wall of the rotating shaft 211 is fixedly connected with a rotating plate 203, and the outer wall of the rotating plate 203 is fixedly connected with a wind guiding plate 204.

[0039] With the above scheme: The wind generated by the fan 202 will act on the sesame pills of the lower conveying module 5 to cool the sesame pills. When the fan 202 rotates to generate wind, it will drive multiple groups of rotating plates 203 and wind guiding plates 204 below the fan 202 to reciprocally flip, and evenly blow the wind generated by the fan 202 onto the sesame pills, avoiding the problem that the wind can only cover a small range due to the immobility of the fan 202, which affects the cooling effect of the sesame pills; When the fan 202 is started, its output shaft will drive the synchronous pulley A205 to rotate synchronously, and drive the synchronous pulley B207 in the fixing box 201 to rotate synchronously through the transmission of the synchronous belt 206. The diameter of the synchronous pulley A205 is smaller than that of the synchronous pulley B207, and there is a rotational speed difference between the two. Therefore, when the fan 202 operates at a high speed, the synchronous pulley B207 will rotate at a lower speed; There are multiple groups of rotating shafts 211, and the gear 213 is fixed on a group of rotating shafts 211 close to the moving block 210. Sprockets 214 are arranged on the outer walls of each group of rotating shafts 211. When a group of rotating shafts 211 rotates, through the cooperation of the sprocket 214 and the chain 215 on this group of rotating shafts 211, it will drive other groups of rotating shafts 211 and sprockets 214 to rotate synchronously. The sprockets 214 and the chain 215 are both prior arts. Tooth blocks are arranged on the surface of the sprocket 214, and tooth grooves are formed on the surface of the chain 215. When the sprocket 214 rotates, the tooth blocks will exert a force on the tooth grooves to make the chain 215 play a transmission effect.

[0040] As Figures 2 to 5 shown in the figure, the synchronous pulley A205 is rotatably connected to the outer wall of the fan 202, and the synchronous pulley B207 is rotatably connected to the inner wall of the fixing box 201; One end of the rotating rod 209 is hinged to the outer wall of the fixing rod 208, and the other end of the rotating rod 209 is hinged to the outer wall of the moving block 210. The moving block 210 is slidably connected to the inner wall of the fixing box 201; The gear 213 meshes with the rack 212. There are multiple groups of sprockets 214, and the multiple groups of sprockets 214 are drivingly connected through a chain 215.

[0041] Adopting the above solution: When the synchronous pulley A205 drives the synchronous pulley B207 to rotate through the synchronous belt 206, the fixed rod 208 will move in a circular motion synchronously with the synchronous pulley B207, and the rotating rod 209 and its fixed end will flip along the circumference. The other end of the rotating rod 209 will drive the moving block 210 to move. Since the moving block 210 slides on the inner wall of the fixed box 201 and can only move horizontally, the moving block 210 can be driven by the rotating rod 209 to move horizontally synchronously with the rack 212. Furthermore, the synchronous pulley B207, the fixed rod 208, the rotating rod 209 and the moving block 210 perform a crank - connecting rod motion. The moving block 210 will drive the rack 212 to move back and forth continuously, and the rack 212 will drive the gear 213 to rotate back and forth continuously, so that a set of rotating shafts 211 fixed to the gear 213 rotate back and forth synchronously; under the action of the sprocket 214 and the chain 215 on the outer wall of this set of rotating shafts 211, other sets of rotating shafts 211 can be driven to rotate back and forth synchronously. At this time, the rotating plate 203 and the air deflector 204 fixed on the surface of the rotating shaft 211 will swing back and forth accordingly. After the wind generated by the fan 202 passes through the continuously swinging air deflector 204, it will evenly blow on the sesame balls on the conveying module 5, and will not affect the cooling effect of the sesame balls due to the small wind coverage range of the fan 202, which is more comprehensive.

[0042] As Figure 6 shown, a groove 302 is formed in the inner wall of the fixed block 301. A pull rod 304 is slidably connected to the inner wall of the moving rod 303. A partition plate 305 is fixedly connected to the outer wall of the top end of the pull rod 304. The outer wall of the bottom end of the pull rod 304 is hinged to an insertion block 307 through a hinge rod 306. There are two sets of insertion blocks 307, and the two sets of insertion blocks 307 are elastically connected through an elastic member 308.

[0043] Adopting the above solution: The moving rod 303 can move up and down in the inner wall of the fixed block 301 to adjust the height of the cooling mechanism 2. When the process requires a relatively slow cooling rate of the sesame pills to avoid problems such as internal structure changes or surface cracks caused by rapid cooling, the height of the cooling mechanism 2 can be appropriately increased, so that the wind blows more widely on the surface of the sesame pills and makes the cooling process smoother; when the production rhythm is fast and it is necessary to quickly cool the sesame pills to a specific temperature to enter the next process, lowering the height of the cooling mechanism 2 can make the sesame pills closer to the fan 202, making the wind act more concentrated and strongly on the sesame pills, accelerating the cooling rate and meeting the requirements of production efficiency; the insertion block 307 is provided with an arc surface that always faces upward. Under normal conditions, the straight surface below the insertion block 307 contacts the inner wall of the groove 302, which can support the moving rod 303 and keep the height of the cooling mechanism 2 unchanged; when it is necessary to raise the cooling mechanism 2, the fixed box 201 can be directly pulled upward, driving the moving rod 303 to move upward in the inner wall of the fixed block 301. At this time, the arc surface of the insertion block 307 is squeezed by the inner wall of the groove 302, causing the insertion block 307 to move toward the middle and into the inner wall of the moving rod 303, compressing the elastic member 308, thus not affecting the movement of the moving rod 303; when the cooling mechanism 2 is adjusted to the appropriate height, the position of the insertion block 307 corresponds to a set of grooves 302. At this time, the elastic member 308 will eject the insertion blocks 307 on both sides outward under its own elastic force and engage with the grooves 302, completing the adjustment of the cooling mechanism 2.

[0044] As Figure 6 shown, the fixed block 301 is fixedly connected to the outer wall of the top of the pill-making machine 1, and the moving rod 303 is fixedly connected to the outer wall of the fixed box 201; the insertion block 307 is slidably connected in the inner wall of the moving rod 303, and the insertion block 307 is engaged with the groove 302; one end of the articulated rod 306 is articulated to the outer wall of the insertion block 307, and the other end of the articulated rod 306 is articulated to the outer wall of the bottom end of the pull rod 304; both ends of the elastic member 308 are fixedly connected to the outer walls of the two insertion blocks 307, the pull rod 304 penetrates the outer wall of the moving rod 303, and the partition plate 305 is slidably connected to the inner wall of the moving rod 303.

[0045] Adopting the above solution: Multiple groups of grooves 302 are provided and vertically distributed on the inner walls on both sides of the fixed block 301. The setting of multiple groups of grooves 302 can adjust the moving rod 303 to multiple positions and fix it, so that the cooling mechanism 2 is fixed at multiple heights to meet different production requirements; when it is necessary to lower the height of the cooling mechanism 2, the partitions 305 of the cooling mechanisms 2 on both sides can be pulled upward first to drive the pull rod 304 to move synchronously. The bottom end of the pull rod 304 will pull the hinge rods 306 on both sides to flip towards the middle at the same time. Since the insertion block 307 can only move horizontally in the inner wall of the moving rod 303, the corresponding insertion blocks 307 can be driven to move towards the middle at the same time through the hinge rods 306, compressing the elastic member 308. After the insertion block 307 is separated from the groove 302, the one-way limit of the moving rod 303 can be released, and the moving rod 303 and the cooling mechanism 2 can be moved downward at the same time to lower the height; similarly, after adjusting to the appropriate position, the insertion block 307 will be clamped with the corresponding groove 302 to complete the fixation. When adjusting, it is not necessary to operate by turning the bolts multiple times, which is more convenient and fast, and improves the work efficiency.

[0046] The working principle and usage process of the present invention:

[0047] Place the sesame raw materials in the raw material box 4 on the outer wall of the top end of the pill making machine 1. The feeding module inside the raw material box 4 is started to fill the sesame raw materials into the conveying module 5 on the pill making machine 1 to be initially formed into sesame pills; the conveying module 5 drives the sesame pills to move upward and convey them to the subsequent processing equipment. During the conveying process, they will pass through the cooling mechanism 2 located at the top end of the pill making machine 1.

[0048] The fan 202 in the cooling mechanism 2 is started to generate wind acting on the sesame pills on the lower conveying module 5 to cool them; when the fan 202 rotates, its output shaft drives the synchronous wheel A205 to rotate synchronously, and drives the synchronous wheel B207 to rotate through the transmission of the synchronous belt 206. Since there is a speed difference between the synchronous wheel A205 and the synchronous wheel B207, the synchronous wheel B207 rotates at a lower speed.

[0049] When the synchronous wheel B207 rotates, it drives the fixed rod 208, the rotating rod 209, and the moving block 210 to perform a crank - connecting rod motion. The moving block 210 drives the rack 212 to reciprocate horizontally in the inner wall of the fixed box 201. Through the meshing of the rack 212 and the gear 213, a set of rotating shafts 211 fixed to the gear 213 are driven to reciprocate; through the cooperation of the sprocket 214 and the chain 215 on this set of rotating shafts 211, the other sets of rotating shafts 211 are driven to reciprocate synchronously. The rotating plates 203 and the air guide plates 204 fixed on the surface of the rotating shafts 211 swing reciprocally, uniformly blowing the wind generated by the fan 202 towards the sesame pills, improving the cooling effect of the sesame pills and preventing the influence caused by the small wind range of the fan 202.

[0050] According to specific processing requirements, the height of the cooling mechanism 2 can be adjusted to regulate the wind force of the fan 202; when the technological requirement is that the sesame balls are slowly cooled, the fixed box 201 can be directly pulled upward to drive the moving rod 303 to move upward inside the inner wall of the fixed block 301. At this time, the arc surface of the insertion block 307 is squeezed by the inner wall of the groove 302 and moves toward the middle into the inner wall of the moving rod 303, compressing the elastic member 308; when the cooling mechanism 2 is adjusted to the appropriate height, the insertion block 307 corresponds to the position of the corresponding groove 302, and the elastic force of the elastic member 308 causes the insertion block 307 to pop out outward and engage with the groove 302 to complete the height adjustment operation. At this time, the wind force of the fan 202 will blow on the sesame balls more widely and slowly.

[0051] When rapid cooling of the sesame balls is required, first pull upward the partition plates 305 of the cooling mechanisms 2 on both sides to drive the synchronous movement of the pull rods 304. The bottom ends of the pull rods 304 pull the hinge rods 306 on both sides to flip toward the middle, driving the insertion blocks 307 to move toward the middle, compressing the elastic member 308, so that the insertion blocks 307 are disengaged from the grooves 302, releasing the one-way limit of the moving rod 303. Then move the moving rod 303 and the cooling mechanism 2 downward to the appropriate position, and the insertion blocks 307 are engaged with the corresponding grooves 302 to complete the fixation. After the cooling mechanism 2 is lowered, the wind force generated by the fan 202 can blow more concentratedly and strongly on the surface of the sesame balls, improving the cooling efficiency.

[0052] The sesame balls that have undergone the cooling treatment are continuously conveyed to the subsequent equipment through the conveying module 5 for further processing to complete the production process of the whole-grain sesame food.

[0053] It should be noted that in this article, relational terms such as first and second are only used to distinguish one entity or operation from another entity or operation, and do not necessarily require or imply any actual relationship or order between these entities or operations. Moreover, the terms "comprising", "including" or any other variant thereof are intended to cover non-exclusive inclusion, so that a process, method, article or device including a series of elements not only includes those elements but also includes other elements not expressly listed, or also includes elements inherent to such process, method, article or device.

[0054] Although the embodiments of the present invention have been shown and described, for those of ordinary skill in the art, it can be understood that various changes, modifications, substitutions and variations can be made to these embodiments without departing from the principle and spirit of the present invention. The scope of the present invention is defined by the appended claims and their equivalents.

Claims

1. A whole-seed sesame food processing device, including a pill-making machine (1), characterized in that: Also includes: A cooling mechanism (2), the cooling mechanism (2) being arranged on the top outer wall of the pill making machine (1) via a lifting mechanism (3); A raw material box (4), the raw material box (4) being arranged on the top outer wall of the pill making machine (1); A conveying module (5), wherein the conveying module (5) is arranged on the pill making machine (1); Wherein, the cooling mechanism (2) comprises a fixed box (201), and a fan (202) is fixedly connected to the inner wall of the fixed box (201); The lifting mechanism (3) comprises a fixed block (301), and the inner wall of the fixed block (301) is slidably connected to a moving rod (303).

2. The whole-seed sesame food processing equipment according to claim 1, characterized in that: The output shaft of the fan (202) is fixedly connected to a synchronous wheel A (205), the outer wall of the synchronous wheel A (205) is connected to a synchronous wheel B (207) via a synchronous belt (206), the outer wall of the synchronous wheel B (207) is fixedly connected to a fixed rod (208), the outer wall of the fixed rod (208) is hinged to a moving block (210) via a rotating rod (209), and the inner wall of the fixed box (201) is rotatably connected to a rotating shaft (211). The outer wall of one end of the rotating shaft (211) is fixedly connected to a gear (213), the outer wall of the other end of the rotating shaft (211) is fixedly connected to a sprocket (214), the outer wall of the moving block (210) is fixedly connected to a rack (212), a chain (215) is wound around the outer wall of the sprocket (214), the outer wall of the rotating shaft (211) is fixedly connected to a rotating plate (203), and the outer wall of the rotating plate (203) is fixedly connected to an air guide plate (204).

3. The full-grain sesame food processing equipment according to claim 2, characterized in that: The synchronous wheel A (205) is rotatably connected to the outer wall of the fan (202), and the synchronous wheel B (207) is rotatably connected to the inner wall of the fixed box (201).

4. The full-grain sesame food processing equipment according to claim 2, characterized in that: One end of the rotating rod (209) is hinged to the outer wall of the fixed rod (208), and the other end of the rotating rod (209) is hinged to the outer wall of the moving block (210), and the moving block (210) is slidably connected to the inner wall of the fixed box (201).

5. The whole-grain sesame food processing equipment according to claim 2, characterized in that: The gear (213) is meshed with the rack (212), and the sprockets (214) are provided in multiple groups, and the multiple groups of sprockets (214) are connected by a chain (215).

6. The full-grain sesame food processing equipment according to claim 1, wherein: The inner wall of the fixed block (301) is provided with a groove (302), the inner wall of the movable rod (303) is slidably connected to a pull rod (304), the top outer wall of the pull rod (304) is fixedly connected to a partition (305), the bottom outer wall of the pull rod (304) is hinged to an insert block (307) through a hinge rod (306), and the insert blocks (307) are provided in two groups, and the two groups of the insert blocks (307) are elastically connected through an elastic member (308).

7. The full-grain sesame food processing equipment according to claim 6, wherein: The fixed block (301) is fixedly connected to the top outer wall of the pill making machine (1), and the moving rod (303) is fixedly connected to the outer wall of the fixed box (201).

8. The whole-grain sesame food processing equipment according to claim 6, characterized in that: The insert block (307) is slidably connected to the inner wall of the moving rod (303), and the insert block (307) is engaged with the groove (302).

9. The full-grain sesame food processing equipment according to claim 6, characterized in that: One end of the articulated rod (306) is articulated to the outer wall of the insertion block (307), and the other end of the articulated rod (306) is articulated to the outer wall of the bottom end of the pull rod (304).

10. The full-grain sesame food processing equipment according to claim 6, characterized in that: Both ends of the elastic member (308) are fixedly connected to the outer walls of two groups of insertion blocks (307). The pull rod (304) penetrates through the outer wall of the moving rod (303), and the partition plate (305) is slidably connected to the inner wall of the moving rod (303).