An improved bean fruit and its preparation system and method

By using raw materials for natural pigments of soybeans, gelatin and fruit fruit flavor powder, combined with specific production steps and system design, the problems of many preservatives and inconvenient production in the existing bean fruit production are solved, and healthy, natural and diversified bean fruit production are achieved, which is suitable for large-scale production.

CN116784455BActive Publication Date: 2025-06-13HUAINAN UNITED UNIVERSITY
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Patent Information

Application Number
CN202310344214.X
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2023-04-03
Publication Date
2025-06-13
Estimated Expiration
2043-04-03

AI Technical Summary

Technical Problem

The existing bean fruit uses a lot of preservatives and additives during the production process, and the production is inconvenient and difficult to meet the needs of multiple flavors.

Method used

Soybeans, gelatin and fruit-flavored powder natural pigments are used as raw materials, and through specific production steps and systematic design, the healthy, natural and diversified production of beans and fruits is achieved.

Benefits of technology

Through simple addition of ingredients, the natural green, high nutrition and good taste of bean fruit is ensured, and it meets the production needs of different specifications and multiple flavors. It is suitable for large-scale production and is easy to clean and use.

✦ Generated by Eureka AI based on patent content.

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Abstract

The present invention relates to the field of food production, and discloses an improved bean fruit and its preparation system and method, including two symmetrically arranged restraint frame plates, on which sliding grooves are provided; a conveying device connected between the two restraint frame plates; a first rack provided on the restraint frame plates, on one side of which there is a functional groove located inside the restraint frame plates, and a first spring is arranged in the functional groove; a receiver located between the two restraint frame plates and cooperating with the conveying device; a recycling device arranged between the two restraint frame plates and connected to the ground. The present invention can ensure natural green and high nutrition, and ensure its taste, is convenient for production, easy to promote, can quickly and stably produce a small amount of bean fruit in multiple batches, adapt to the production of different specifications of bean fruit, can produce multiple flavors simultaneously in the same period, adapt to large-scale production, and at the same time is convenient for cleaning and use, facilitating the progress of work.
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Description

Technical Field

[0001] The invention relates to the field of food production, and in particular to an improved bean fruit and a preparation system and method thereof. Background Art

[0002] Douguo is a kind of food made from soy products and made into pudding-like food. It generally refers to food that is solidified from slurry materials.

[0003] In the production process of existing bean fruits, generally more preservatives or additives are used, and the overall production is not too healthy. Large-scale production cannot meet the needs of various flavors, and overall large-scale production is relatively inconvenient. Summary of the invention

[0004] In order to solve the technical problem of inconvenient production, the present invention provides an improved bean fruit and a preparation system and method thereof.

[0005] The present invention is implemented by the following technical solutions:

[0006] An improved bean fruit comprises the following raw materials: soybean, gelatin, fruit flavor powder and natural pigment.

[0007] A method for making an improved bean fruit comprises the following steps:

[0008] S1: Material selection

[0009] Soybeans: Choose fresh, plump, uniform in size, bright in color, and free of spoilage and borers. Soak in clean water for at least 6 hours.

[0010] S2: Weigh an appropriate amount of peach flavor powder and dilute it with water. Stir with a glass rod to dissolve it and set aside for use;

[0011] S3: Pour the peach juice into a container containing soybeans, grind the mixture into soybean milk, and separate the soybean dregs from the soybean milk with a filter cloth;

[0012] S4: Soak 4 gelatin sheets in cold water for 4-5 minutes.

[0013] S5: Put soy milk into a container and boil it. When the soy milk cools to 60°C, add the soaked gelatin and stir with a glass rod until it dissolves.

[0014] S6: Put the processed soy milk into a peach-shaped mold and place it in a refrigerator to form the mold;

[0015] S7: Spray the formed tofu pudding with red paint and place it on a plate.

[0016] An improved bean fruit preparation system, comprising:

[0017] Binding frame plates, there are two of them symmetrically arranged, and sliding grooves are provided on them;

[0018] Transport device, which is connected between the two binding frame plates;

[0019] First rack, which is arranged on the binding frame plate, and a function groove located inside the binding frame plate is provided on one side thereof, and a first spring is arranged in the function groove;

[0020] Receiver, which is located between the two binding frame plates and is matched with the transport device;

[0021] Recovery device, which is arranged between the two binding frame plates and is connected to the ground.

[0022] As a further improvement of the above solution, the transport device includes:

[0023] Power box, one side of which is connected with a motor, and the output end of the motor is drivingly connected with a first transmission component;

[0024] Cross bar, which is rotatably connected with the power box and is drivingly connected with the first transmission component, and one end of the cross bar is connected with a power rod;

[0025] Second gear, which is fixedly sleeved with the power rod, and a second rack fixedly connected with the binding frame plate is meshed with the outer wall thereof;

[0026] Limit block, which is slidably connected with the groove wall of the sliding groove, and a stabilizing tube is fixedly connected to one side thereof;

[0027] Connecting sleeve, which is threadedly connected with the power box, and a preliminary box is threadedly sleeved under it;

[0028] Power screw, which is rotatably sleeved with the preliminary box, and a plurality of mixing rods located inside the preliminary box are fixedly connected to the outer wall thereof;

[0029] Gearbox, which is drivingly connected with the first transmission component, and its output end is drivingly connected with the power screw through a spline;

[0030] Filter tube, which is threadedly sleeved with the preliminary box, and a plurality of filter sleeves are arranged inside it;

[0031] Crushing box, which is fixedly connected with the preliminary box, and a crushing knife fixedly connected with the power screw is arranged inside it;

[0032] Extrusion sleeve, which is slidably sleeved with the crushing box and is matched with the power screw;

[0033] Magnetic cover, which is connected with the crushing box;

[0034] Discharge mechanism, which is arranged on one side of the preliminary box;

[0035] First gear, which is matched with the first rack.

[0036] As a further improvement of the above solution, the discharging mechanism includes:

[0037] A folding tube, one end of which is fixedly connected to the power box, a second spring is connected inside it, the other end of the second spring is fixedly connected to a moving tube, a protrusion is arranged on one side of the folding tube, a flow discharge hole matching the protrusion is arranged on the moving tube, and a first magnet is fixedly connected to one end of the moving tube;

[0038] A follower tube, which is slidably sleeved in the function groove, is fixedly connected with an inclined hopper on one side, the inclined hopper cooperates with the moving tube, a second magnet is fixedly connected in the inclined hopper, one side of the follower tube is connected with a flexible tube, and one side of the flexible tube is connected with the receiver.

[0039] As a further improvement of the above solution, a guiding block is arranged on the binding frame, and the guiding block cooperates with the first gear.

[0040] As a further improvement of the above solution, the receiver includes a working sleeve fixedly connected to the binding frame plate, an adding mechanism connected to the flexible tube is arranged at the top of the working sleeve, a second motor is fixedly connected to the bottom of the working sleeve, the output end of the second motor is in transmission connection with a stirring rod rotatably connected to the working sleeve, a plurality of mixing arcs located in the working sleeve are fixedly connected to the outer wall of the stirring rod, and a sewage discharge pipe and a finished product pipe are connected to the bottom of the working sleeve.

[0041] As a further improvement of the above solution, the adding mechanism includes an adding box fixedly connected to the working sleeve, a raw material box is fixedly connected inside the adding box, a plurality of telescopic rods are fixedly connected inside the raw material box, the output end of the telescopic rod is connected with a moving plate slidably sleeved with the raw material box, a spraying pipe is fixedly connected to one side of the raw material box, a dispersing rod fixedly connected to the stirring rod is arranged below the spraying pipe, and one side of the adding box is connected with the flexible tube.

[0042] As a further improvement of the above solution, the recycling device includes a movable collection box, a plurality of vibrators are placed inside the collection box, a screening plate is fixedly connected to one side of the vibrator, and a cleaning pipe is fixedly connected to the bottom of the collection box.

[0043] As a further improvement of the above solution, a guiding arc is connected to one side of the binding frame plate, an electromagnet bar is arranged below the binding frame plate, and a guiding cylinder is arranged inside the crushing box.

[0044] Compared with the prior art, the beneficial effects of the present invention are as follows:

[0045] 1. By adding simple ingredients, it can ensure natural, green and highly nutritious, and ensure its taste, convenient for making and easy to promote.

[0046] 2. Through the preparation of the preparation system, a small amount of beans can be produced quickly and stably in multiple batches, adapting to the production of different specifications of beans. Multiple flavors can be produced simultaneously during the same period, adapting to large-scale production. At the same time, it is easy to clean and use as a whole, facilitating the progress of work. BRIEF DESCRIPTION OF THE DRAWINGS

[0047] Figure 1 It is a front cross-sectional view schematic diagram of the present invention;

[0048] Figure 2 It is a left cross-sectional view schematic diagram of the present invention;

[0049] Figure 3 It is a partial right cross-sectional view schematic diagram;

[0050] Figure 4 It is a partial left cross-sectional view schematic diagram;

[0051] Figure 5 It is Figure 3 an enlarged structural schematic diagram of part A in

[0052] Figure 6 It is Figure 4 an enlarged structural schematic diagram of part B in

[0053] Figure 7 It is a left cross-sectional view schematic diagram of the discharge mechanism;

[0054] Figure 8 It is a front cross-sectional view schematic diagram of the adding mechanism.

[0055] MAIN SYMBOL DESCRIPTION:

[0056] 1. Binding frame plate; 2. Transport device; 3. First rack; 4. Function slot; 5. First spring; 6. Receiver; 7. Vibrator; 8. Collection box; 9. Cleaning pipe; 10. Screening plate; 20. Power box; 21. First transmission component; 22. Cross bar; 23. Preliminary box; 24. Filter pipe; 25. Crushing knife; 26. Guide cylinder; 27. Power screw; 28. Extrusion sleeve; 29. Magnetic cover; 30. Crushing box; 31. Mixing rod; 32. Connecting sleeve; 33. Gearbox; 34. Stabilizing pipe; 36. Second rack; 37. Sliding slot; 38. Second gear; 39. Limiting block; 40. First gear; 41. Power rod; 42. Adding box; 43. Working sleeve; 44. Second motor; 45. Sewage pipe; 46. Finished product pipe; 47. Mixing arc; 48. Hose; 49. Raw material box; 50. Telescopic rod; 51. Moving plate; 52. Scattering rod; 53. Stirring rod; 54. Injection pipe; 55. Folding pipe; 56. Second spring; 57. Follow-up pipe; 58. Drainage hole; 59. Inclined hopper; 60. Second magnet; 61. First magnet; 62. Moving pipe; 63. Protrusion. DETAILED DESCRIPTION OF THE INVENTION

[0057] Next, in combination with the accompanying drawings and specific embodiments, the present invention will be further described. It should be noted that, on the premise of no conflict, the following-described embodiments or technical features can be arbitrarily combined to form new embodiments.

[0058] Example 1: It includes the following raw materials: soybeans, gelatin, fruit flavor powder, and natural pigments. Simple materials make the ingredients purer and reduce the use of additives.

[0059] Example 2: It includes the following steps

[0060] S1: Select materials

[0061] Select fresh, plump, evenly sized, brightly colored soybeans without spoilage or pests, and soak them in clean water for at least 6 hours to ensure the quality of the soybeans and the subsequent taste.

[0062] S2: Weigh an appropriate amount of peach flavor powder, dilute it with water, and stir it with a glass rod until dissolved for later use. The flavor powder enhances the flavor.

[0063] S3: Pour the peach juice into the container containing soybeans, grind the mixture into soy milk, and separate the soybean dregs and soy milk with a filter cloth to ensure a delicate taste by separating the dregs.

[0064] S4: Take 4 gelatin sheets and soak them in cold water for 4 - 5 minutes for later use;

[0065] S5: Put the soy milk into a container and boil it. Wait until the soy milk cools to 60°C, add the soaked gelatin, and stir it with a glass rod until dissolved. The gelatin ensures shaping.

[0066] S6: Pour the processed soy milk into a peach - shaped mold and place it in the refrigerator to refrigerate and form;

[0067] S7: Spray the formed tofu pudding with red pigment and place it on a plate

[0068] Example 3: Combine Figure 1-8, including: two symmetrically arranged binding frame plates 1, on which a sliding groove 37 is provided, the binding frame plates 1 perform binding and limitation on both sides; a conveying device 2, which is connected between the two binding frame plates 1, and the conveying device 2 performs moving transportation and preliminary processing work; a first rack 3, which is provided on the binding frame plate 1, and a function groove 4 located inside the binding frame plate 1 is provided on one side of it, a first spring 5 is arranged in the function groove 4, both the first rack 3 and the function groove 4 perform limiting and assisting functions, and the first spring 5 ensures the return of the subsequent device; a receiver 6, which is located between the two binding frame plates 1 and is matched with the conveying device 2, the receiver 6 receives semi-finished products and performs subsequent processing; a recycling device, which is arranged between the two binding frame plates 1 and is connected to the ground, and the recycling device performs subsequent recycling work to ensure the continuous progress of the work.

[0069] The transfer device 2 includes: a power box 20, with a motor connected to one side thereof, the output end of the motor being drivingly connected to a first transmission component 21. The motor in the power box 20 supplies energy and at the same time transmits torque through the first transmission component 21. A cross bar 22, which is rotatably connected to the power box 20 and is drivingly connected to the first transmission component 21. One end of the cross bar 22 is connected to a power rod 41. Through the operation of the first transmission component 21, the cross bar 22 rotates, further driving the power rod 41 to rotate. A second gear 38, which is fixedly sleeved on the power rod 41, and its outer wall is meshed with a second rack 36 fixedly connected to the restraint frame plate 1. The power rod 41 drives the second gear 38 to rotate, and under the limitation of the second rack 36, the movement of the power box 20 is realized. A limiting block 39, which is slidably connected to the wall of the sliding groove 37, and one side thereof is fixedly connected to a stabilizing tube 34. A connecting sleeve 32, which is threadedly connected to the power box 20, and its lower side is threadedly sleeved with a preliminary box 23. The connecting sleeve 32 connects the upper and lower devices, facilitating subsequent disassembly. Work is carried out in the preliminary box 23 for preliminary processing. A power screw 27, which is rotatably sleeved on the preliminary box 23, and its outer wall is fixedly connected with a plurality of mixing rods 31 located inside the preliminary box 23. The power screw 27 rotates along with the operation of the gearbox 33. The gearbox 33, which is drivingly connected to the first transmission component 21, and its output end is drivingly connected to the power screw 27 through a spline. The two ends of the power screw 27 are cylindrical, and the middle part has threads. A filter tube 24, which is threadedly sleeved on the preliminary box 23, and multiple filter sleeves are arranged inside it. The filter tube 24 allows soymilk to pass through and blocks soybean dregs. A crushing box 30, which is fixedly connected to the preliminary box 23, and a crushing knife 25 fixedly connected to the power screw 27 is arranged inside it. The crushing knife 25 in the crushing box 30 rotates to cut and crush the soymilk. An extrusion sleeve 28, which is slidably sleeved on the crushing box 30 and cooperates with the power screw 27. The extrusion sleeve 28 extrudes the subsequent soymilk. A magnetic cover 29, which is connected to the crushing box 30. The magnetic cover 29 seals and at the same time facilitates subsequent taking out. A discharging mechanism, which is arranged on one side of the preliminary box 23, and the discharging mechanism discharges. A first gear 40, which cooperates with the first rack 3. The first gear 40 cooperates with the first rack 3 to drive the rotation of the power box 20.

[0070] The discharge mechanism includes: a folding tube 55, one end of which is fixedly connected to the power box 20, a second spring 56 is connected inside it, the other end of the second spring 56 is fixedly connected to a moving tube 62, a protrusion 63 is arranged on one side of the folding tube 55, a drain hole 58 that cooperates with the protrusion 63 is arranged on the moving tube 62, one end of the moving tube 62 is fixedly connected to a first magnet 61, a solenoid valve is connected to the folding tube 55. During the movement, the moving tube 62 in the folding tube 55 is inserted into the inclined hopper 59 to achieve conduction, and then enters other positions through the hose 48. The follower tube 57 moves along with the folding tube 55 and moves during the adaptation process. The follower tube 57 is slidably sleeved in the function slot 4, and an inclined hopper 59 is fixedly connected to one side of it. The inclined hopper 59 cooperates with the moving tube 62, a second magnet 60 is fixedly connected inside the inclined hopper 59, one side of the follower tube 57 is connected to a hose 48, and one side of the hose 48 is connected to the receiver 6.

[0071] Guide blocks are arranged on the restraint frame 1, and the guide blocks cooperate with the first gear 40. The guide blocks achieve a certain binding force after flipping.

[0072] The receiver 6 includes a working sleeve 43 fixedly connected to the restraint frame plate 1. An adding mechanism connected to the hose 48 is arranged at the top of the working sleeve 43. A second motor 44 is fixedly connected to the bottom of the working sleeve 43. The output end of the second motor 44 is drivingly connected to a stirring rod 53 rotatably connected to the working sleeve 43. A plurality of mixing arcs 47 located inside the working sleeve 43 are fixedly connected to the outer wall of the stirring rod 53. A sewage discharge pipe 45 and a finished product pipe 46 are connected to the bottom of the working sleeve 43. The adding mechanism includes an adding box 42 fixedly connected to the working sleeve 43. A raw material box 49 is fixedly connected inside the adding box 42. A plurality of telescopic rods 50 are fixedly connected inside the raw material box 49. The output end of the telescopic rod 50 is connected to a moving plate 51 slidably sleeved with the raw material box 49. A spraying pipe 54 is fixedly connected to one side of the raw material box 49. A dispersing rod 52 fixedly connected to the stirring rod 53 is arranged below the spraying pipe 54. One side of the adding box 42 is connected to the hose 48. The soymilk supplied from the outside enters the adding box 42. At the same time, driven by the telescopic rod 50, the moving plate 51 moves, and the powder in the raw material box 49 is sprayed into the adding box 42 through the spraying pipe 54. At the same time, it is preliminarily mixed by the dispersing rod 52, and then enters the working sleeve 43, and is further dispersed and mixed by the mixing arcs 47, and finally discharged through the finished product pipe 46.

[0073] The recycling device includes a movable collection box 8. A plurality of vibrators 7 are placed inside the collection box 8. A screening plate 10 is fixedly connected to one side of the vibrator 7. A cleaning pipe 9 is fixedly connected to the bottom of the collection box 8. The vibrator 7 vibrates, causing the screening plate 10 to vibrate, further enabling the soybean residue to enter the lower side of the collection box 8 through the screening plate 10, and at the same time intercepting the others on the screening plate 10.

[0074] One side of the binding frame plate 1 is connected with a guiding arc, an electromagnet bar is arranged below the binding frame plate 1, a guiding cylinder 26 is arranged in the crushing box 30, the guiding arc conducts necessary guiding, and the guiding cylinder 26 conducts a certain guiding on the flow direction.

[0075] Combined with Figure 1-8 , the implementation principle of the embodiment of the present application is as follows: Place the soaked soybeans into the crushing box 30, then cover the magnetic cover 29. Under the action of gravity, the crushing box 30 is located on the lower side. At the same time, driven by the motor and transmitted by the first transmission component 21, the second rack 36 and the second gear 38 cooperate with each other, causing the power box 20 to move. During the movement, the power screw 27 is driven to rotate through the speed change of the gearbox 33. At this time, the crushing knife 25 rotates at a high speed to cut the soybeans. Then, when it continues to move to the first rack 3, the first gear 40 contacts the first rack 3, driving the stable tube 34 to rotate, and then causing the power box 20 to rotate, further causing the power box 20 to be located at the highest position. At this time, the drain hole 58 on the folding tube 55 contacts the inclined hopper 59. At the same time, under the action of the first magnet 61 and the second magnet 60, the drain hole 58 is communicated with the protrusion 63 to realize fluid flow. And under the action of gravity, the extrusion sleeve 28 descends, contacts the power screw 27, and then quickly descends to extrude the stirred liquid. After being filtered by the filter tube 24, it enters the preliminary box 23. The preliminary box 23 is filled with fruit flavor powder. After being stirred and rinsed by the mixing rod 31, it is discharged into the follower tube 57 through the folding tube 55, and then enters the addition box 42 through the hose 48. At this time, driven by the telescopic rod 50, the moving plate 51 moves, spraying the powder in the raw material box 49 into the addition box 42 through the spraying tube 54. At the same time, it is preliminarily mixed by the dispersing rod 52, and then enters the working sleeve 43. Further, it is dispersed and mixed by the mixing arc 47, and finally discharged through the finished product tube 46 to complete the production. Subsequently, the finished product is collected, shaped and used. When it falls to the bottom, under the action of magnetism, the magnetic cover 29 is separated, and at the same time, the motor stops rotating. Under the action of gravity or manpower, the crushing box 30 is taken out and rotated in the reverse direction. Then, the soybean dregs are on the screening plate 10. At this time, the vibrator 7 vibrates, causing the screening plate 10 to vibrate, further causing the soybean dregs to enter the lower side of the collection box 8 through the screening plate 10, and at the same time intercepting other large objects on the screening plate 10.

[0076] The above-mentioned implementation manners are only the preferred implementation manners of the present invention, and cannot be used to limit the protection scope of the present invention. Any non-substantial changes and substitutions made by those skilled in the art based on the present invention belong to the protection scope required by the present invention.

Claims

1. A preparation system for tofu pudding, characterized in that, comprising: Binding frame plates, two of which are symmetrically arranged and are provided with sliding grooves thereon; A transporting device connected between the two binding frame plates; A first rack arranged on the binding frame plate, with a functional groove located inside the binding frame plate on one side thereof, and a first spring is arranged in the functional groove; A receiver located between the two binding frame plates and cooperating with the transporting device; A recycling device arranged between the two binding frame plates and connected to the ground; The transporting device includes: A power box, with a motor connected to one side thereof, and the output end of the motor is drivingly connected to a first transmission component; A cross bar rotatably connected to the power box and drivingly connected to the first transmission component, and one end of the cross bar is connected to a power rod; A second gear fixedly sleeved on the power rod, and the outer wall thereof is meshed with a second rack fixedly connected to the binding frame plate; A limiting block slidably connected to the groove wall of the sliding groove, and a stabilizing tube is fixedly connected to one side thereof; A connecting sleeve threadedly connected to the power box, and a preliminary box is threadedly sleeved on the lower side thereof; A power screw rod rotatably sleeved in the preliminary box, and a plurality of mixing rods located inside the preliminary box are fixedly connected to the outer wall thereof; A gearbox drivingly connected to the first transmission component, and the output end thereof is drivingly connected to the power screw rod through a spline; A filter tube threadedly sleeved on the preliminary box, and a plurality of filter sleeves are arranged inside it; A crushing box fixedly connected to the preliminary box, and a crushing knife fixedly connected to the power screw rod is arranged inside it; An extrusion sleeve slidably sleeved on the crushing box and cooperating with the power screw rod; A magnetic cover connected to the crushing box; A discharging mechanism arranged on one side of the preliminary box; A first gear cooperating with the first rack; The discharging mechanism includes: A folding tube, one end of which is fixedly connected to the power box, a second spring is connected inside it, and the other end of the second spring is fixedly connected to a moving tube. A protrusion is arranged on one side of the folding tube, and a drainage hole cooperating with the protrusion is arranged on the moving tube. One end of the moving tube is fixedly connected to a first magnet; A follower tube slidably sleeved in the functional groove, with an inclined hopper fixedly connected to one side thereof. The inclined hopper cooperates with the moving tube, and a second magnet is fixedly connected inside the inclined hopper. One side of the follower tube is connected to a flexible tube, and one side of the flexible tube is connected to the receiver; The receiver includes a working sleeve fixedly connected to the binding frame plate. An adding mechanism connected to the flexible tube is arranged at the top of the working sleeve. A second motor is fixedly connected to the bottom of the working sleeve, and the output end of the second motor is drivingly connected to a stirring rod rotatably connected to the working sleeve. A plurality of mixing arcs located inside the working sleeve are fixedly connected to the outer wall of the stirring rod. A sewage discharge pipe and a finished product pipe are connected to the bottom of the working sleeve; One side of the binding frame plate is connected to a guiding arc, and an electromagnet bar is arranged below the binding frame plate.

2. The preparation system for tofu pudding according to claim 1, characterized in that, A guiding block is arranged on the binding frame, and the guiding block cooperates with the first gear.

3. The preparation system for tofu pudding according to claim 1, characterized in that, The adding mechanism includes an adding box fixedly connected to the working sleeve. A raw material box is fixedly connected inside the adding box. A plurality of telescopic rods are fixedly connected inside the raw material box. The output end of the telescopic rod is connected to a moving plate that is slidably sleeved with the raw material box. One side of the raw material box is fixedly connected to a spray pipe. Below the spray pipe, there is a dispersing rod fixedly connected to the stirring rod. One side of the adding box is connected to a hose.

4. A preparation system for tofu pudding according to claim 1, characterized in that the recycling device includes a movable collection box. A plurality of vibrators are placed inside the collection box. One side of the vibrator is fixedly connected to a screening plate. The bottom of the collection box is fixedly connected to a cleaning pipe.

5. A preparation system for tofu pudding according to claim 1, characterized in that a guiding cylinder is arranged inside the crushing box.

Citation Information

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