Cake batter dosing device
By combining the circular block semi-circular groove and the electric push rod limiting block structure, the waste and blockage caused by flour adhesion are solved, achieving efficient quantitative dispensing and residue removal, and improving dispensing accuracy and raw material utilization.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- WUJIUDAO (WUHAN) FOOD TECH CO LTD
- Filing Date
- 2025-08-11
- Publication Date
- 2026-06-02
Smart Images

Figure CN224312051U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the field of cake batter quantitative dispensing technology, specifically to a cake batter quantitative dispensing device. Background Technology
[0002] The intelligent cake dispensing equipment disclosed in the authorization announcement number CN210592503U includes a dispensing equipment body, a protective mechanism, and a sliding mechanism. The protective mechanism is located on the top outer surface of the dispensing equipment body and includes a connecting base. A protective cover is rotatably connected to one outer surface of the connecting base. This utility model, through the setting of a connecting base, protective cover, buckle piece, slot, placement slot, handle slot, first fixing strip, second fixing strip, fixing panel, hook, bushing, first fixing piece, screw, second fixing piece, and bearing, facilitates the protection of the cake from external contamination during later use of the equipment, reduces damage to the cake, saves production costs to a certain extent, and improves the quality of the cake.
[0003] Its pulleys, shafts, clamps, rotating support frames, and threaded slots facilitate easy movement during later use, reduce manpower requirements, improve work efficiency, and bring better application prospects.
[0004] However, when processing cake batter, the flour ingredients need to be added and packaged separately. During the flour packaging process, some flour adheres to the inner wall of the device and cannot participate in the packaging, resulting in waste and increasing the risk of blockage. This solution is not very efficient for packaging cake processing ingredients. Utility Model Content
[0005] To address the shortcomings of existing technologies, this utility model provides a cake batter quantitative dispensing device, which solves the problem that during cake batter processing, flour raw materials need to be fed and dispensed. During the flour dispensing process, some flour adheres to the inner wall of the device and cannot participate in the dispensing, resulting in waste and increasing the risk of blockage.
[0006] To achieve the above objectives, this utility model provides the following technical solution: a cake batter quantitative dispensing device, comprising a square box, a drive motor fixedly connected to the center of the surface of the square box, a circular block fixedly connected to the output end of the drive motor through the square box, a semi-circular groove formed in a ring array on the outer wall of the circular block, a feeding groove formed on one side of the bottom of the square box, a storage box provided on the side of the square box, a feeding hopper provided on the top of the storage box, an inclined plate with its lower end facing the feeding groove provided on the bottom of the storage box, and a dropping groove formed on the bottom surface of the square box away from the feeding groove;
[0007] The bottom of the square box is provided with a trapezoidal box, and an electric push rod is fixedly connected to the surface of the trapezoidal box. Clamping plate assemblies are provided on both sides of the electric push rod on the surface of the trapezoidal box. A fixed plate is movably connected inside the clamping plate assemblies. An elastic rubber rod is provided on one end of the fixed plate, and the end of the elastic rubber rod contacts the surface of the trapezoidal box. A spring is also fixedly connected to this end of the fixed plate. The other end of the spring is fixed to the surface of the trapezoidal box. A limiting block is provided on the other end of the fixed plate. An arc-shaped groove adapted to the limiting block is opened on the surface of the electric push rod, and the limiting block is engaged in the arc-shaped groove.
[0008] In one specific embodiment, the clamping plate assembly is composed of symmetrically arranged metal clamps, and the fixing plate is movably installed inside the clamping plate assembly via a rotating shaft.
[0009] In a specific embodiment, the surface of the limiting block is arc-shaped and the radius of curvature is consistent with the inner wall of the arc-shaped groove, and the arc-shaped groove is equidistantly distributed along the axial direction of the electric push rod.
[0010] In one specific embodiment, the end of the elastic rubber rod is hemispherical, and the hemispherical end abuts against the side wall surface of the trapezoidal box to form an impact contact surface.
[0011] In one specific embodiment, the material discharge trough is directly opposite the top opening of the trapezoidal box, and the bottom of the trapezoidal box has a dispensing outlet with an outlet diameter smaller than the volume of the semi-circular trough.
[0012] In one specific embodiment, the inclined plate is inclined, and the lower end of the inclined plate is fitted with the edge of the feed trough to form a material discharge channel.
[0013] Compared with the prior art, the present invention provides a cake batter quantitative dispensing device, which has the following beneficial effects:
[0014] In the technical solution disclosed in this utility model, the semi-circular groove structure of the annular array on the outer wall of the circular block quantitatively collects the batter during rotation. When the semi-circular groove rotates to the discharge trough, it completes equal-volume dispensing, reducing dispensing errors and eliminating the problem of cake quality fluctuations caused by inconsistent dispensing quantities in traditional equipment. The utilization rate of raw materials is improved. The electric push rod uses an arc-shaped groove on its surface and a limit block to trigger the movement. Combined with the striking component of the elastic rubber rod on the fixed plate, the electric push rod continuously moves the limit block during extension and retraction, causing the elastic rubber rod to strike the side wall of the trapezoidal box at high frequency, thoroughly removing batter residue adhering to the inner wall and reducing the clogging failure rate. Attached Figure Description
[0015] The accompanying drawings, which are included to provide a further understanding of this application and form part of this application, illustrate exemplary embodiments and are used to explain this application, but do not constitute an undue limitation of this application. In the drawings:
[0016] Figure 1 This is a schematic diagram of the overall structure of this utility model;
[0017] Figure 2 This is a schematic diagram of the square box structure of this utility model;
[0018] Figure 3 This is a schematic diagram of the circular block and drive motor structure of this utility model;
[0019] Figure 4 This is a schematic diagram of the electric push rod structure of this utility model.
[0020] In the diagram: 1. Square box; 2. Drive motor; 3. Circular block; 4. Semicircular groove; 5. Storage box; 6. Feed hopper; 7. Inclined plate; 8. Drop chute; 9. Trapezoidal box; 10. Electric push rod; 11. Clamping plate assembly; 12. Fixing plate; 13. Elastic rubber rod; 14. Spring; 15. Limiting block; 16. Arc groove. Detailed Implementation
[0021] The following will describe in detail the implementation of this application with reference to the accompanying drawings and embodiments, so that the implementation process of how this application uses technical means to solve technical problems and achieve technical effects can be fully understood and implemented accordingly.
[0022] Figures 1-4 In one embodiment of this utility model, a cake batter quantitative dispensing device includes a square box 1, a drive motor 2 fixedly connected to the center of the surface of the square box 1, a circular block 3 fixedly connected through the output end of the drive motor 2 through the square box 1, a semi-circular groove 4 formed in a ring array on the outer wall of the circular block 3, a feeding groove on one side of the bottom of the square box 1, a storage box 5 on the side of the square box 1, a feeding hopper 6 on the top of the storage box 5, an inclined plate 7 with its lower end facing the feeding groove on the inner bottom of the storage box 5, and a discharge groove 8 on the inner bottom surface of the square box 1 away from the feeding groove.
[0023] The specific problem addressed in this embodiment is that during cake batter processing, flour raw materials need to be added and packaged. During this process, some flour adheres to the inner wall of the device and cannot participate in the packaging, resulting in waste and increasing the risk of blockage. This invention utilizes a semi-circular groove 4 structure with an annular array on the outer wall of the circular block 3 to quantitatively collect batter during rotation. When the semi-circular groove 4 rotates to the discharge trough 8, equal-volume packaging is completed, reducing packaging errors and eliminating the cake quality fluctuation problem caused by inconsistent packaging in traditional equipment. This improves raw material utilization. The electric push rod 10 employs a triggering structure with an arc-shaped groove 16 on its surface and a limiting block 15, combined with a striking component of the elastic rubber rod 13 on the fixed plate 12. This causes the electric push rod 10 to continuously push the limiting block 15 during extension and retraction, driving the elastic rubber rod 13 to frequently impact the side wall of the trapezoidal box 9, thoroughly removing batter residue adhering to the inner wall and reducing the blockage failure rate.
[0024] A trapezoidal box 9 is set at the bottom of the square box 1. An electric push rod 10 is fixedly connected to the surface of the trapezoidal box 9. Clamping plate assemblies 11 are set on both sides of the electric push rod 10 on the surface of the trapezoidal box 9. A fixing plate 12 is movably connected inside the clamping plate assembly 11. An elastic rubber rod 13 is set on one end of the surface of the fixing plate 12, and the end of the elastic rubber rod 13 contacts the surface of the trapezoidal box 9. A spring 14 is also fixedly connected to this end of the fixing plate 12. The other end of the spring 14 is fixed to the surface of the trapezoidal box 9. A limiting block 15 is set on the other end of the fixing plate 12. An arc-shaped groove 16 adapted to the limiting block 15 is opened on the surface of the electric push rod 10, and the limiting block 15 is snapped in place. Inside the arc-shaped groove 16, in this specific embodiment, flour enters the storage box 5 through the feeding hopper 6 and slides into the feeding groove of the square box 1 along the inclined plate 7. When the drive motor 2 drives the circular block 3 to rotate, its annular semi-circular groove 4 sequentially hooks the flour in the feeding groove. When the semi-circular groove 4 rotates to the position of the dropping groove 8, the flour falls into the trapezoidal box 9 below. Simultaneously, the electric push rod 10 extends and retracts, causing the surface arc-shaped groove 16 to move the limiting block 15, driving the fixed plate 12 to swing around the axis of the clamping plate assembly 11. The elastic rubber rod 13, under the energy storage of the spring 14, strikes the side wall of the trapezoidal box 9 at high frequency, achieving zero residue throughout the entire dispensing process. The combined effect of the semi-circular groove 4's quantitative volume and the mechanically triggered vibration of the arc-shaped groove 16 / limiting block 15 reduces dispensing accuracy errors and lowers the risk of blockage.
[0025] In this specific embodiment, the clamping plate assembly 11 is composed of symmetrically arranged metal clamping pieces, and the fixing plate 12 is movably installed inside the clamping plate assembly 11 via a rotating shaft;
[0026] The clamping plate assembly 11, composed of symmetrical metal clips, is mounted on the fixing plate 12 via a built-in rotating shaft. When the limiting block 15 is moved by the arc groove 16, the fixing plate 12 can swing freely along the rotating shaft to ensure that the impact stroke of the elastic rubber rod 13 is maximized.
[0027] In this specific embodiment, the surface of the limiting block 15 is arc-shaped and the radius of curvature is consistent with the inner wall of the arc-shaped groove 16. The arc-shaped groove 16 is equidistantly distributed along the axial direction of the electric push rod 10.
[0028] The radius of curvature of the arc-shaped limiting block 15 is perfectly matched with the inner wall of the arc-shaped groove 16 on the surface of the electric push rod 10, with a gap between them; the equidistantly distributed arc-shaped grooves 16 cause the electric push rod 10 to trigger an impact every time it extends or retracts.
[0029] In this specific embodiment, the end of the elastic rubber rod 13 is hemispherical, and the hemispherical end abuts against the side wall surface of the trapezoidal box 9 to form an impact contact surface;
[0030] The hemispherical protrusion at the end of the elastic rubber rod 13 impacts the side wall of the trapezoidal box 9 at a high frequency. The hemispherical contact surface concentrates the impact force to the area where the flour is attached, thus improving the shaking efficiency compared to planar impact.
[0031] In this specific embodiment, the material discharge chute 8 is directly opposite the top opening of the trapezoidal box 9, and the bottom of the trapezoidal box 9 has a dispensing outlet with an outlet diameter smaller than the volume of the semi-circular groove 4.
[0032] The feeding trough 8 is vertically aligned with the top opening of the trapezoidal box 9, allowing flour to fall directly into the trapezoidal cavity; the bottom outlet diameter of the trapezoidal box 9 is designed to be 1 / 3 of the volume of the semi-circular groove 4, ensuring that each portion of flour is completely packaged.
[0033] In this specific embodiment, the inclined plate 7 is inclined, and the lower end of the inclined plate 7 is fitted with the edge of the feed trough to form a material discharge channel;
[0034] The inclined plate 7 extends at an angle to the edge of the feed trough, and the gap between the two forms a narrow slit-type material discharge channel, so that the flour flows into the feed trough continuously and evenly.
[0035] Working principle: After the flour falls into the storage box 5 through the feeding hopper 6, it slides into the feeding groove of the square box 1 along the inclined plate 7; the drive motor 2 drives the circular block 3 to rotate so that the annular semicircular groove 4 hooks up a certain amount of flour; when the semicircular groove 4 rotates to the dropping groove 8, the flour falls into the trapezoidal box 9; simultaneously, the electric push rod 10 extends and retracts through the arc groove 16 to move the limit block 15, driving the fixed plate 12 to swing around the axis of the clamping plate group 11, so that the elastic rubber rod 13 hits the side wall of the trapezoidal box 9 at high frequency under the action of the spring 14, realizing continuous quantitative dispensing and zero residue operation.
[0036] The control method of this utility model is automatic control through a controller. The control circuit of the controller can be implemented by simple programming by those skilled in the art. The power supply is also common knowledge in the field. Since this utility model is mainly used to protect mechanical devices, the control method and circuit connection will not be explained in detail.
[0037] It should be noted that, in this document, the terms “comprising,” “including,” or any other variations thereof are intended to cover non-exclusive inclusion, such that a process, method, article, or apparatus that comprises a list of elements includes not only those elements but also other elements not expressly listed, or elements inherent to such process, method, article, or apparatus.
[0038] Although embodiments of the present invention have been shown and described, it will be understood by those skilled in the art that various changes, modifications, substitutions and alterations can be made to these embodiments without departing from the principles and spirit of the present invention, the scope of which is defined by the appended claims and their equivalents.
Claims
1. A cake batter quantitative dispensing device, comprising a square box (1), characterized in that: A drive motor (2) is fixedly connected to the middle of the surface of the square box (1). The output end of the drive motor (2) passes through the square box (1) and is fixedly connected to a circular block (3). The outer wall of the circular block (3) is provided with a semi-circular groove (4) in a ring array. A feeding groove is provided on one side of the bottom of the square box (1). A storage box (5) is provided on the side of the square box (1). A feeding hopper (6) is provided on the top of the storage box (5). An inclined plate (7) with its lower end facing the feeding groove is provided on the bottom of the storage box (5). A dropping groove (8) is provided on the bottom side of the square box (1) away from the feeding groove. The bottom of the square box (1) is provided with a trapezoidal box (9), and an electric push rod (10) is fixedly connected to the surface of the trapezoidal box (9). A clamping plate group (11) is provided on both sides of the electric push rod (10) on the surface of the trapezoidal box (9). A fixing plate (12) is movably connected inside the clamping plate group (11). An elastic rubber rod (13) is provided on one end of the fixing plate (12) and the end of the elastic rubber rod (13) contacts the surface of the trapezoidal box (9). A spring (14) is also fixedly connected to the surface of the fixing plate (12). The other end of the spring (14) is fixed to the surface of the trapezoidal box (9). A limiting block (15) is provided on the other end of the fixing plate (12). An arc groove (16) adapted to the limiting block (15) is opened on the surface of the electric push rod (10). The limiting block (15) is snapped into the arc groove (16).
2. The cake batter quantitative dispensing equipment according to claim 1, characterized in that: The clamping plate assembly (11) is composed of symmetrically arranged metal clamps, and the fixing plate (12) is movably installed inside the clamping plate assembly (11) via a rotating shaft.
3. The cake batter quantitative dispensing equipment according to claim 1, characterized in that: The surface of the limiting block (15) is arc-shaped and the radius of curvature is consistent with the inner wall of the arc groove (16). The arc groove (16) is equidistantly distributed along the axial direction of the electric push rod (10).
4. The cake batter quantitative dispensing equipment according to claim 1, characterized in that: The end of the elastic rubber rod (13) is hemispherical, and the hemispherical end abuts against the side wall surface of the trapezoidal box (9) to form an impact contact surface.
5. A cake batter quantitative dispensing device according to claim 1, characterized in that: The material discharge trough (8) is directly opposite the top opening of the trapezoidal box (9), and the bottom of the trapezoidal box (9) has a dispensing outlet with an outlet diameter smaller than the volume of the semicircular groove (4).
6. The cake batter quantitative dispensing equipment according to claim 1, characterized in that: The inclined plate (7) is inclined, and the lower end of the inclined plate (7) is fitted with the edge of the feed trough to form a material dropping channel.