Bean product pressing, overturning and feeding equipment

By designing a high-strength frame and an automated flipping and feeding device, the problems of tofu damage and poor equipment adaptability caused by traditional manual feeding have been solved, achieving efficient and stable tofu production.

CN223962800UActive Publication Date: 2026-03-03JINCAIDI FOOD CO LTD
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-03-31
Publication Date
2026-03-03

AI Technical Summary

Technical Problem

Traditional methods of loading tofu into boxes rely on manual labor, resulting in a high rate of tofu damage and poor adaptability of existing turning equipment, which increases production costs.

Method used

A bean product pressing and turning feeding device was designed. It adopts a high-strength frame mounting plate, a turning mechanism and a transport mechanism, combined with an adjustment mechanism and a telescopic cylinder to realize the automatic turning and adaptation of the mold, ensuring the flexibility and stability of the equipment.

Benefits of technology

It achieves automated demolding of tofu, reduces breakage rate, improves production efficiency, reduces equipment customization costs, expands the applicability and operational stability of the equipment, and meets the hygiene requirements of food production.

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Abstract

The utility model discloses bean product pressing, overturning and feeding equipment, and relates to the technical field of bean curd demolding. Comprising a rack and a rack mounting plate, the turnover mechanism is located above the mounting plate and is provided with a plurality of first supporting seats, supporting wheels are mounted at the top end of the turnover mechanism, a first disc and a second disc are further arranged and fixed through a connecting rod, the side, away from the first disc, of the second disc is sleeved with a circular ring, the circumferential surface of the second disc is covered with a chain or a rack, a turnover driving motor is arranged, a working cavity is formed between the two discs, and bottom plates are arranged on the top face and the bottom face; the conveying mechanism is fixed to the side, facing the working cavity, of the bottom plate and connected with the disc surface. The adjusting mechanism is located between the conveying mechanism and the bottom plate, and the working end is fixedly connected with the surface. The transportation mechanism and the turnover mechanism work cooperatively, and automatic box feeding is achieved; the conveyor belt can accurately convey the mold, and the turnover driving motor is started immediately, so that the production speed is effectively increased; meanwhile, mold positioning is dynamically adjusted through the adjusting mechanism, manual alignment errors can be avoided, the bean curd breakage rate is reduced, and the production efficiency and the product quality are improved.
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Description

Technical Field

[0001] This utility model belongs to the field of tofu demolding technology, specifically a bean product pressing, turning and feeding device. Background Technology

[0002] Making tofu involves several steps, including soaking soybeans, grinding them into a paste, filtering, boiling the paste, adding coagulant, pressing, and removing the tofu from the box.

[0003] Among them, "boxing" refers to removing the formed tofu from the mold and placing it in a special tofu basket. Traditionally, boxing is done manually. As working hours increase, workers' physical strength gradually decreases, making it easy for errors to occur during boxing, resulting in damage to the formed tofu. At the same time, with the increase in the size of individual tofu molds in industrial production, challenges are posed to the physical strength and continuous working ability of workers.

[0004] A search revealed a utility model with publication number CN221044237U that proposes a flipping device for tofu demolding, relating to the field of tofu demolding technology. Its main technical solution includes a connecting plate, a flipping mechanism, a support, and a clamping mechanism comprising a driving component and a clamping plate. The placement groove has two opposing groove walls, and a driving component is installed on the groove wall. A clamping plate located within the placement groove is mounted on the output shaft of the driving component. However, the dimensions of this structure are fixed, requiring the customization of different sized flipping devices when using molds of different sizes, increasing production costs. Summary of the Invention

[0005] To address the issues that traditional loading methods are not well adapted to industrial production lines and that existing turning equipment can generally only be matched with molds of one size, this invention proposes a bean product pressing and turning loading device to solve these problems.

[0006] A bean product pressing and turning feeding device includes a frame, with a frame mounting plate connected to the top of the frame; the frame mounting plate is made of high-strength material to ensure that the equipment does not vibrate or deform under high-speed operation or heavy load conditions, thus ensuring overall operating accuracy; the frame mounting plate provides standardized interfaces for the turning mechanism, the transport mechanism, etc., to facilitate later maintenance or functional expansion.

[0007] A flipping mechanism is located above the frame mounting plate. The flipping mechanism includes multiple first support seats, each with a support wheel mounted on its top. It also includes a first disc and a second disc, which are fixed or limited by a connecting rod. A ring is fitted onto the circumferential surface of the second disc away from the first disc. The circumferential surface of the second disc is covered with a chain or rack, which is engaged with a flipping drive motor. A working cavity is formed between the first disc and the second disc, and a base plate is provided on the top and bottom surfaces of the working cavity.

[0008] The first and second discs are rigidly connected by a connecting rod to ensure that the two discs rotate synchronously and avoid mold offset or jamming caused by asynchrony.

[0009] The support wheel rolls along the ring of the second disk, replacing the traditional bearing, reducing rotational resistance and extending service life;

[0010] The stop block and the limit block work together to force the disc to stop after rotating 180°, avoiding overshoot or reset errors, and ensuring that the tofu falls accurately into the frame after demolding.

[0011] Using chain or rack drive, the transmission method can be selected according to load requirements, improving the flexibility of equipment use.

[0012] A transport mechanism, which is fixedly installed on the base plate on the side facing the working cavity and connected to the surface of the disc;

[0013] An adjustment mechanism is located between the transport mechanism and the base plate, and the working end of the adjustment mechanism is fixedly connected to the surface of the adjustment mechanism.

[0014] Multiple first support seats are fixedly installed in parallel on the surface of the frame mounting plate. The surface of the frame mounting plate is provided with a rotating drive motor mounting seat. A second support seat is provided on the side of the frame mounting plate near the second disc. A support wheel is provided at the top of the second support seat. The support wheel rolls along the surface of the ring.

[0015] A limit block is provided on the circumferential side surface of the second disk, and a stop block is provided on the side surface of the first disk and the second disk away from the working cavity.

[0016] L-shaped connecting blocks are installed on the surface of the first and second discs near the working chamber. The base plate is fixedly connected to the surface of the first and second discs through the L-shaped connecting blocks. The base plate is rigidly connected to the discs through the L-shaped connecting blocks to distribute the torque load during flipping and prevent deformation of the working chamber. The surface of the base plate is smooth and has through grooves to facilitate the rapid discharge of tofu residue or washing water, which meets food-grade hygiene requirements. Since the second disc has a large mass, a second support is provided to assist the movement of the second disc.

[0017] It also includes a mounting plate, the transport mechanism includes multiple parallel rollers, the surface of the rollers is covered with a conveyor belt, the rollers roll in the direction of the disc, one end of the roller is provided with a roller sprocket, and it also includes a roller support base, the roller support base is fixedly installed on the surface of the mounting plate near the working chamber, both ends of the roller are movably connected to the roller support base, the roller support base is fitted with a roller pressure plate, the outer surface of the roller support base is covered with a chain guard, and the surface of the chain guard is provided with a guide seat.

[0018] The chain guard completely covers the chain to prevent bean curd residue or moisture from entering, reducing chain wear and noise;

[0019] The guide seat guides the edge of the conveyor belt through rollers or chutes to prevent deviation; the transition wheel seat ensures a smooth transition of the chain when it is driven in multiple directions, reducing the risk of chain skipping.

[0020] A through groove is formed on the surface of the base plate. A conveyor belt drive motor is installed on the surface of the base plate away from the working chamber. The output end of the conveyor belt drive motor faces the through groove. A conveyor drive sprocket is fixedly connected to the output end of the conveyor belt drive motor. A tensioning seat is installed on the surface of the base plate near the through groove. Multiple conveyor driven sprockets are installed on the surface of the tensioning seat. Chains are wound around the surfaces of the conveyor drive sprocket, the conveyor driven sprocket, and the roller sprocket. Adjusting bolts are provided on the surface of the tensioning seat.

[0021] The adjusting bolt is linked to the tensioning seat, and the chain length is automatically adjusted according to the displacement of the transport mechanism;

[0022] The tensioning seat dynamically adjusts the position of the driven sprocket of the conveyor by adjusting the bolts, tightening or loosening the chain in real time, compensating for the deformation of the conveyor belt caused by temperature or wear, and ensuring the stability of the conveyor. The symmetrically distributed telescopic cylinders ensure that the force is evenly distributed during the adjustment process, avoiding the deformation of the mechanism caused by stress concentration on one side.

[0023] The rollers are flexibly mounted via roller supports, allowing for automatic correction in case of slight mold misalignment during transport and preventing positional deviations when the mold is inserted into the working cavity. The conveyor belt drive motor directly drives the conveyor drive sprocket, reducing intermediate transmission links, lowering energy consumption, and improving power transmission efficiency.

[0024] The adjustment mechanism includes a telescopic cylinder, and multiple telescopic cylinders are provided. The mounting plates of the multiple telescopic cylinders are symmetrically distributed along the central axis. The working end of the telescopic cylinder is fixedly connected to the mounting plate, and the telescopic cylinder is fixedly connected to the surface of the base plate near the working cavity.

[0025] The telescopic cylinders are symmetrically distributed along the central axis. Driven by hydraulic or pneumatic pressure, they push the mounting plate to move vertically or horizontally, thereby realizing the overall lifting or translation of the transport mechanism and adapting to changes in mold width.

[0026] A drag chain mounting bracket is installed on the surface of the frame mounting plate, and transition wheel seats and transition mounting brackets are installed on the surfaces of the first and second discs. Adjustable feet are installed at the bottom of the frame. The drag chain mounting bracket fixes the motor cable and sensor circuit, avoiding wire breakage or short circuit caused by the pulling of moving parts, thereby improving the reliability of the equipment.

[0027] When the equipment is working, the conveyor belt drive motor starts, which drives the roller sprocket to rotate through the chain, driving the roller covering the conveyor belt to rotate. The mold is smoothly sent into the working cavity composed of the first and second discs. At this time, the telescopic cylinder in the adjustment mechanism adjusts the height of the mounting plate according to the mold size, and the tensioning seat dynamically controls the chain tension through the adjusting bolts to ensure that the conveyor belt is stably aligned.

[0028] The flip drive motor drives the chain or rack to rotate the second disc, which in turn drives the first disc to rotate synchronously through the connecting rod; the support wheel rolls along the ring of the second disc, and the limit block and stop block constrain the disc to rotate at an angle of 180°. The mold flips with the working cavity, and the tofu is demolded by gravity and falls into the collection device; the bottom plate is fixed by the L-shaped connecting block to prevent the cavity from deforming.

[0029] The flip drive motor reverses, and the disc returns to its initial position; the transport mechanism continuously conveys the next mold, the chain guard and guide seat protect the transmission components, the transition wheel seat ensures a smooth chain transition, and the drag chain mounting bracket fixes the cable, completing the automated cycle.

[0030] Compared with the prior art, the present invention has the following beneficial effects:

[0031] 1. Solve the problem of traditional manual box loading: The transportation mechanism and the flipping mechanism work together to achieve full-process automation. After the conveyor belt accurately delivers the mold, the flipping drive motor starts immediately, which improves the production speed. The mold positioning is dynamically adjusted by the adjustment mechanism to reduce the breakage rate of tofu. During the reset stage, transportation and flipping are synchronized to achieve "seamless cycle" and increase the output per unit time.

[0032] 2. Solve the compatibility problem of existing equipment: The adjustment mechanism and the transportation mechanism are linked to achieve compatibility. The telescopic cylinder adjusts the roller spacing or height to adapt to changes in mold width. The tension seat adjusts the chain length to avoid problems. When changing molds, the stroke and tension can be quickly adjusted to improve equipment utilization and reduce customization costs. The stop and limit blocks are adjustable to adapt to different flipping angles, expanding the applicability of the equipment.

[0033] 3. Ensuring stability and safety: Mechanical limit and transmission protection work together, with support wheels, limit blocks, and stops preventing overturning and overshoot; chain guards, guide seats, and transition wheel seats reduce transmission failures; the base plate and disc are rigidly connected, and the frame adopts a truss structure to improve structural rigidity, reduce the failure rate, and ensure operational stability.

[0034] 4. Meets food production requirements: Adopts easy-to-clean and pollution-proof design; open structure facilitates the discharge of residue and cleaning; transmission components are made of stainless steel; fully enclosed protection isolates contaminants; fixed cables avoid contact with food areas; automated process achieves human-machine isolation and reduces operational risks. Attached Figure Description

[0035] To more clearly illustrate the technical solutions in the embodiments of the present invention or the prior art, the drawings used in the description of the embodiments or the prior art will be briefly introduced below. Obviously, for those skilled in the art, other drawings can be obtained based on these drawings without creative effort.

[0036] Figure 1 A three-dimensional structural diagram of a bean product pressing and turning feeding device;

[0037] Figure 2 for Figure 1 Enlarged view of section A in the middle;

[0038] Figure 3 for Figure 1 Enlarged view of section B;

[0039] Figure 4 for Figure 1 Enlarged view of section C;

[0040] Figure 5 This is a front view of a bean product pressing and turning feeding device;

[0041] Figure 6 This is a side view of a bean product pressing and turning feeding device;

[0042] Figure 7 for Figure 6 Sectional view of part D in the middle;

[0043] Figure 8 for Figure 5 Sectional view of aa;

[0044] Figure 9 This is a top view of a bean product pressing and turning feeding device.

[0045] In the picture:

[0046] 1. Rack; 101. Rack mounting plate;

[0047] 2. First support seat;

[0048] 3. Support wheels;

[0049] 4. First disk;

[0050] 5. Cable chain mounting bracket;

[0051] 6. L-shaped connecting block;

[0052] 7. Chain guard;

[0053] 8. Connecting rod;

[0054] 9. Conveyor belt drive motor;

[0055] 10. Adjusting bolts;

[0056] 11. Flip the chain;

[0057] 12. The second disk;

[0058] 13. Conveyor belt;

[0059] 14. Base plate;

[0060] 15. Second support seat;

[0061] 16. Stop;

[0062] 17. Mounting bracket for the tilt drive motor;

[0063] 18. Adjust the footrest;

[0064] 20. Excessive installation racks;

[0065] 21. Tilting drive motor;

[0066] 22. Roller sprocket;

[0067] 23. Drum;

[0068] 24. Transition wheel seat;

[0069] 25. Telescopic cylinder;

[0070] 26. Conveyor driven sprocket;

[0071] 27. Tension seat;

[0072] 28. Roller support base;

[0073] 29. Guide seat; Detailed Implementation

[0074] To make the objectives, technical solutions, and advantages of this invention clearer, the invention will be further described in detail below with reference to embodiments. It should be understood that the specific embodiments described herein are merely illustrative and not intended to limit the invention.

[0075] The application principle of the present invention will be further described below with reference to the accompanying drawings and specific embodiments.

[0076] Example 1

[0077] like Figure 1-9 As shown: A bean product pressing and turning feeding device includes a frame 1, and a frame mounting plate 101 is connected to the top of the frame 1; the frame mounting plate 101 is made of high-strength material to ensure that the equipment does not vibrate or deform under high-speed operation or heavy load conditions, and to ensure the overall operating accuracy; the frame mounting plate 101 provides standardized interfaces for the turning mechanism, the transport mechanism, etc., which facilitates later maintenance or functional expansion.

[0078] A flipping mechanism is located above the frame mounting plate 101. The flipping mechanism includes multiple first support seats 2, with support wheels 3 mounted on the top of each first support seat 2. It also includes a first disc 4 and a second disc 12, which are fixed or limited by a connecting rod 8. A ring is fitted onto the circumferential surface of the second disc 12 away from the first disc 4. The circumferential surface of the second disc 12 is covered with a flipping chain 11 or a rack, which is engaged with a flipping drive motor 21. A working cavity is formed between the first disc 4 and the second disc 12, and a base plate 14 is provided on the top and bottom surfaces of the working cavity.

[0079] The first disk 4 and the second disk 12 are rigidly connected by the connecting rod 8 to ensure that the two disks rotate synchronously and avoid mold offset or jamming caused by asynchrony.

[0080] The support wheel 3 rolls along the ring of the second disk 12, replacing the traditional bearing, reducing rotational resistance and extending service life;

[0081] The stop block 16 works in conjunction with the limit block to force the disc to stop after rotating 180°, avoiding overshoot or reset errors and ensuring that the tofu falls accurately into the frame after demolding.

[0082] The equipment is driven by either a reversing chain 11 or a rack and pinion, allowing users to choose the transmission method according to load requirements and improving the flexibility of equipment use.

[0083] A transport mechanism is fixedly installed on the base plate 14 on the side facing the working cavity and connected to the surface of the disc.

[0084] An adjustment mechanism is located between the transport mechanism and the base plate 14, and the working end of the adjustment mechanism is fixedly connected to the surface of the adjustment mechanism.

[0085] Multiple first support seats 2 are fixedly installed in parallel on the surface of the frame mounting plate 101. A flip drive motor mounting seat 17 is provided on the surface of the frame mounting plate 101. A second support seat 15 is provided on the side of the frame mounting plate 101 near the second disc 12. A support wheel 3 is provided at the top of the second support seat 15. The support wheel 3 rolls along the surface of the annulus.

[0086] A limit block is provided on the circumferential side surface of the second disk 12, and a stop block 16 is provided on the side surface of the first disk 4 and the second disk 12 away from the working cavity.

[0087] L-shaped connecting blocks 6 are installed on the surfaces of the first disc 4 and the second disc 12 near the working chamber. The base plate 14 is fixedly connected to the surfaces of the first disc 4 and the second disc 12 through the L-shaped connecting blocks 6. The base plate 14 is rigidly connected to the discs through the L-shaped connecting blocks 6 to distribute the torque load during flipping and prevent deformation of the working chamber. The surface of the base plate 14 is smooth and has through grooves to facilitate the rapid discharge of tofu residue or washing water, which meets food-grade hygiene requirements.

[0088] It also includes a mounting plate. The transport mechanism includes multiple parallel rollers 23, the surface of which is covered with a conveyor belt. The rollers 23 roll in the direction of the disc. One end of each roller 23 is provided with a roller sprocket 22. It also includes a roller support 28, which is fixedly installed on the surface of the mounting plate near the working chamber. Both ends of the rollers 23 are movably connected to the roller support 28. The roller support 28 is fitted with a roller pressure plate. The outer surface of the roller support 28 is covered with a chain guard 7, and the surface of the chain guard 7 is provided with a guide seat 29.

[0089] The chain guard 7 completely encloses the drive chain to prevent bean residue or moisture from entering, and to reduce chain wear and noise;

[0090] The transition wheel seat 24 ensures a smooth transition of the chain during multi-directional transmission, reducing the risk of chain skipping.

[0091] A through groove is formed on the surface of the base plate 14. A conveyor belt drive motor 9 is installed on the surface of the base plate 14 away from the working chamber. The output end of the conveyor belt drive motor 9 faces the through groove. A conveyor drive sprocket is fixedly connected to the output end of the conveyor belt drive motor 9. A tensioning seat 27 is installed on the surface of the base plate 14 near the through groove. Multiple conveyor driven sprockets 26 are installed on the surface of the tensioning seat 27. Chains are wound around the surface of the conveyor drive sprocket, the conveyor driven sprockets 26 and the roller sprocket 22. Adjusting bolts 10 are provided on the surface of the tensioning seat 27.

[0092] The adjusting bolt 10 is linked to the tensioning seat 27, and the chain length is automatically adjusted according to the displacement of the transport mechanism.

[0093] The tensioning seat 27 dynamically adjusts the position of the driven sprocket 26 of the conveyor through the adjusting bolt 10, tightening or loosening the chain in real time, compensating for the deformation of the conveyor belt 13 caused by temperature or wear, and ensuring the stability of the conveyor. The symmetrically distributed telescopic cylinders 25 ensure uniform force during the adjustment process and avoid deformation of the mechanism caused by stress concentration on one side.

[0094] Roller 23 is flexibly mounted via roller support 28, allowing for automatic correction when the mold slightly shifts during transport, preventing positional deviations when the mold is stuck in the working cavity. The conveyor belt drive motor 9 directly drives the conveyor drive sprocket, reducing intermediate transmission links, lowering energy consumption, and improving power transmission efficiency.

[0095] The adjustment mechanism includes a telescopic cylinder 25, and multiple telescopic cylinders 25 are provided. The multiple telescopic cylinders 25 are symmetrically distributed along the central axis of the mounting plate. The working end of the telescopic cylinder 25 is fixedly connected to the mounting plate. The telescopic cylinder 25 is fixedly connected to the surface of the base plate 14 near the working cavity.

[0096] The telescopic cylinders 25 are symmetrically distributed along the central axis. Driven by hydraulic or pneumatic pressure, they push the mounting plate to move vertically or horizontally, thereby realizing the overall lifting or translation of the transport mechanism and adapting to changes in mold width.

[0097] A drag chain mounting bracket 5 is installed on the surface of the frame mounting plate 101. Transition wheel seats 24 and transition mounting brackets 20 are installed on the surfaces of the first disc 4 and the second disc 12. Adjustable feet are installed at the bottom of the frame 1. The drag chain mounting bracket 5 fixes the motor cable and sensor circuit, avoiding wire breakage or short circuit caused by the pulling of moving parts, and improving the reliability of the equipment.

[0098] Example 2

[0099] Based on Example 1, a bean product pressing and turning feeding device is provided. During operation, the conveyor belt drive motor 9 starts and drives the roller sprocket 22 to rotate through the chain, which in turn drives the roller 23 covering the conveyor belt 13 to rotate. The mold is smoothly fed into the working cavity composed of the first disc 4 and the second disc 12. At this time, the telescopic cylinder 25 in the adjustment mechanism adjusts the height of the mounting plate according to the mold size, and the tensioning seat 27 dynamically controls the tension of the chain through the adjusting bolt 10 to ensure that the conveyor belt 13 is stably aligned.

[0100] The flip drive motor 21 drives the chain or rack to rotate the second disc 12, which in turn drives the first disc 4 to rotate synchronously through the connecting rod 8. The support wheel 3 rolls along the ring of the second disc 12, and the limit block and stop block 16 constrain the rotation angle of the disc to 180°. The mold flips with the working cavity, and the tofu is demolded by gravity and falls into the collection device. The bottom plate 14 is fixed by the L-shaped connecting block 6 to prevent the cavity from deforming.

[0101] The flip drive motor 21 reverses, and the disc returns to its initial position; the transport mechanism continues to transport the next mold, the chain guard 7 and guide seat 29 protect the transmission components, the transition wheel seat 24 ensures a smooth chain transition, and the drag chain mounting bracket 5 fixes the cable, completing the automated cycle.

[0102] It will be apparent to those skilled in the art that the present invention is not limited to the details of the exemplary embodiments described above, and that the invention can be implemented in other specific forms without departing from the spirit or essential characteristics of the invention. Therefore, the embodiments should be considered in all respects as exemplary and non-limiting, and the scope of the invention is defined by the appended claims rather than the foregoing description. Thus, it is intended that all variations falling within the meaning and scope of equivalents of the claims be included within the present invention.

[0103] Furthermore, it should be understood that although this specification describes embodiments, not every embodiment contains only one independent technical solution. This narrative style is merely for clarity. Those skilled in the art should consider the specification as a whole, and the technical solutions in each embodiment can also be appropriately combined to form other embodiments that can be understood by those skilled in the art.

Claims

1. A soy product press flip loading apparatus, characterized by: A rack (1), the top end of the rack (1) is connected with a rack mounting plate (101); A turnover mechanism is located above the rack mounting plate (101); the turnover mechanism comprises a plurality of first support seats (2), the top end of the first support seat (2) is provided with a support wheel (3), and the first support seat (2) further comprises a first disc (4) and a second disc (12), the first disc (4) and the second disc (12) are fixedly arranged or limitingly arranged through a connecting rod (8), a circular ring is sleeved on the side of the circumferential surface of the second disc (12) away from the first disc (4), the circumferential surface of the second disc (12) is covered with a turnover chain (11) or a rack, the turnover chain (11) or the rack is matched with a turnover driving motor (21), and the first disc (4) and the second disc (12) form a working cavity therebetween.

2. The pressed bean product flip loading apparatus of claim 1, wherein: A conveying mechanism is fixedly installed on the bottom plate (14) side facing the working cavity and connected with the disc surface; An adjusting mechanism is located between the conveying mechanism and the bottom plate (14), and the working end of the adjusting mechanism is fixedly connected with the surface of the adjusting mechanism.

3. The bean product press turnover feeding equipment according to claim 1, characterized in that: A plurality of the first support seats (2) are fixedly installed in parallel on the surface of the rack mounting plate (101), the surface of the rack mounting plate (101) is provided with a turnover driving motor mounting seat (17), the side of the surface of the rack mounting plate (101) close to the second disc (12) is provided with a second support seat (15), the top end of the second support seat (15) is provided with a support wheel (3), and the support wheel (3) rolls along the surface of the circular ring.

4. The pressed bean product flip loading apparatus of claim 2, wherein: The circumferential side surface of the second disc (12) is provided with a limiting block, and the surfaces of the first disc (4) and the second disc (12) away from the working cavity are provided with a stop block (16).

5. The pressed bean product flip loading apparatus of claim 3, wherein: The surfaces of the first disc (4) and the second disc (12) close to the working cavity are provided with L-shaped connecting blocks (6), and the bottom plate (14) is fixedly connected with the surfaces of the first disc (4) and the second disc (12) through the L-shaped connecting blocks (6).

6. The pressed bean product flip loading apparatus of claim 2, wherein: Further comprising a mounting plate, the conveying mechanism comprises a plurality of parallel arranged rollers (23), the surface of the roller (23) is covered with a conveyor belt, the rolling direction of the roller (23) faces the disc, one end of the roller (23) is provided with a roller chain wheel (22), and the roller (23) further comprises a roller support seat (28), the roller support seat (28) is fixedly installed on the surface of the mounting plate close to the working cavity, the two ends of the roller (23) are movably connected with the roller support seat (28), the roller support seat (28) is matched with a roller pressing plate, the outer surface of the roller support seat (28) is covered with a chain cover (7), and the surface of the chain cover (7) is provided with a guide seat (29).

7. The pressed bean product flip loading apparatus of claim 5, wherein: The bottom plate (14) is provided with a through groove, the surface of the bottom plate (14) away from the working cavity is provided with a conveying belt driving motor (9), the output end of the conveying belt driving motor (9) faces the through groove, the output end of the conveying belt driving motor (9) is fixedly connected with a conveying driving sprocket, the surface of the bottom plate (14) close to the through groove is provided with a tensioning seat (27), the surface of the tensioning seat (27) is provided with a plurality of conveying driven sprockets (26), the conveying driving sprocket, the conveying driven sprockets (26) and the drum sprocket (22) are wound with a chain, and the surface of the tensioning seat (27) is provided with an adjusting bolt (10).

8. The pressed bean product flip loading apparatus of claim 6, wherein: The adjusting mechanism comprises a plurality of telescopic cylinders (25), the plurality of telescopic cylinders (25) are arranged on the mounting plate and are distributed in an axisymmetric manner, the working end of the telescopic cylinder (25) is fixedly connected with the mounting plate, and the telescopic cylinder (25) is fixedly connected to the surface of the bottom plate (14) close to the working cavity.

9. The pressed bean product flip loading apparatus of claim 1, wherein: The surface of the rack mounting plate (101) is provided with a drag chain mounting rack (5).

10. The pressed bean product flip loading apparatus of claim 1, wherein: The surface of the first disc (4) and the second disc (12) is provided with a transition wheel seat (24) and an overrunning mounting rack (20), and the bottom of the rack (1) is provided with an adjusting foot seat.

Citation Information

Patent Citations

  • A turning device for demoulding tofu

    CN221044237U