Quantitative adding and feeding mechanism

By designing a quantitative addition and feeding mechanism, the servo motor drives the movable turntable and the stop plate to achieve quantitative feeding. Combining vibration and rotating motors to prevent flour from agglomeration, the flour accumulation problem is solved and the uniformity and processing efficiency of flour feeding are improved.

CN223274774UActive Publication Date: 2025-08-29HANGZHOU WEIXIAN IND CO LTD
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Patent Information

Application Number
CN202422563456.0
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-10-23
Publication Date
2025-08-29
Estimated Expiration
2034-10-23

AI Technical Summary

Technical Problem

The existing feeding mechanism cannot achieve uniform and quantitative addition of flour, which can easily lead to flour accumulation and affect processing efficiency.

Method used

A quantitative addition and feeding mechanism is designed, including a quantitative assembly and a discharge assembly, and a servo motor drives a movable turntable and a barrier plate to achieve quantitative discharge, combining vibration and rotating motors to prevent flour from agglomeration and accumulation.

Benefits of technology

The quantitative addition of flour is achieved to prevent clogging, ensure uniformity and stability of feeding, and improve processing efficiency.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses a quantitative feeding mechanism, which relates to the technical field of noodle production, and comprises a first support frame and a quantitative assembly, the inner side of the upper end of the first support frame is provided with a material conveying tank, the right end of the material conveying tank is provided with a second support frame, and the outer side of the right end of the material conveying tank is provided with a connecting frame; the quantifying assembly is arranged at the right end of the connecting frame and comprises an auxiliary tank, a discharging pipe, a material blocking plate, a protective barrel, a servo motor, a movable rotating disc, a discharging hole, a connecting shaft and a material dispersing plate, the auxiliary tank is arranged at the right end of the connecting frame, and the discharging pipe is installed at the right end of the lower surface in the auxiliary tank; a baffle is mounted at the lower end of the right side of the inner surface of the auxiliary tank, and a protective cylinder is mounted on the lower surface in the auxiliary tank. According to the quantitative adding and feeding mechanism, quantitative adding of flour can be achieved through the quantitative assembly, then uniform feeding is conducted, stable feeding can be achieved through the discharging assembly, and flour accumulation is prevented.
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Description

Technical Field

[0001] The utility model relates to the technical field of noodle production, in particular to a quantitative adding and feeding mechanism. Background Art

[0002] Noodle production is generally classified as an agricultural and sideline food processing industry. Although noodle production involves grain grinding, the entire production process focuses more on processing and preparing flour to make it a directly edible food. To improve the efficiency of the noodle production process, a feeding mechanism is needed to assist in the feeding of flour to improve feeding efficiency. However, current feeding mechanisms still have the following shortcomings:

[0003] For example, patent publication number CN216164813U discloses a uniform feeding device for producing selenium-enriched noodles. This device eliminates clumping dough and evenly distributes the mixed noodles, effectively improving feeding uniformity. While highly practical, it cannot guarantee uniform and quantitative feeding when adding flour, which can easily lead to flour accumulation and affect processing efficiency.

[0004] Therefore, in view of this, the existing structural deficiencies are studied and improved, and a quantitative addition and feeding mechanism is proposed. Utility Model Content

[0005] The purpose of the present invention is to provide a quantitative feeding mechanism to solve the problems raised in the above background technology.

[0006] To achieve the above-mentioned purpose, the utility model provides the following technical solutions: a quantitative addition and feeding mechanism, comprising a first support frame and a quantitative component, a material transfer tank is installed on the inner side of the upper end of the first support frame, and a second support frame is provided at the right end of the material transfer tank, a connecting frame is installed on the outer side of the right end of the material transfer tank, the quantitative component is arranged at the right end of the connecting frame, and the quantitative component includes an auxiliary tank, a discharge pipe, a material baffle plate, a protective cylinder, a servo motor, a movable turntable, a discharge hole, a connecting shaft and a bulk plate, the auxiliary tank is arranged at the right end of the connecting frame, and a discharge pipe is installed at the right end of the lower surface of the auxiliary tank, a material baffle plate is installed at the lower end of the right side of the inner surface of the auxiliary tank, and a protective cylinder is installed on the lower surface of the auxiliary tank, and a servo motor is installed inside the protective cylinder.

[0007] Furthermore, the output end of the servo motor is connected to a movable turntable via a coupling, and a discharge hole is provided at the right end of the surface of the movable turntable.

[0008] Furthermore, a connecting shaft is installed on the upper surface of the movable turntable, and a bulk plate is installed on the outer side of the connecting shaft, and the bulk plate and the connecting shaft are an integrated structure.

[0009] Furthermore, a rotating motor is installed on the left surface of the material transfer tank, and the output end of the rotating motor is connected to a material transfer auger through a coupling.

[0010] Furthermore, a feed pipe is connected to the upper left side of the material transfer tank, and a discharge pipe is provided on the lower right side of the material transfer tank.

[0011] Furthermore, a fixed base plate is installed at the bottom of the first support frame, and a support frame is provided on the left side of the upper surface of the fixed base plate, and a discharging assembly for preventing accumulation is provided inside the support frame.

[0012] Furthermore, the discharging assembly includes a storage hopper, a rotating motor, a rotating shaft and a stirring rod, and the storage hopper is arranged on the inner surface of the support frame, the rotating motor is installed on the front surface of the upper end of the storage hopper, and the output end of the rotating motor is connected to the rotating shaft through a coupling, and the stirring rod is installed on the surface of the rotating shaft.

[0013] Furthermore, the discharging assembly also includes a vibration motor and an inclined discharging plate, and a vibration motor is installed at the upper end of the rear surface of the storage hopper, an inclined discharging plate is provided at the lower end of the inner surface of the storage hopper, and the front surface of the lower end of the storage hopper is connected to the rear end of the feed pipe.

[0014] The utility model provides a quantitative addition feeding mechanism, which has the following beneficial effects:

[0015] 1. The utility model is provided with a quantitative component, which includes an auxiliary tank, a discharge pipe, a baffle plate, a protective cylinder, a servo motor, a movable turntable, a discharge hole, a connecting shaft and a bulk plate. When in use, flour falls into the auxiliary tank, the servo motor is started, and the servo motor drives the movable turntable to rotate. The baffle plate will block the flour on the movable turntable. When the discharge hole of the movable turntable is rotated to dock with the discharge pipe, the flour will be discharged through the discharge pipe. The docking interval time between the discharge hole and the discharge pipe is relatively fixed to achieve quantitative unloading. The amount of discharge is adjusted by adjusting the speed of the movable turntable. During the rotation of the movable turntable, the connecting shaft will be driven to rotate, so that the connecting shaft drives the bulk plate to rotate, scattering the flour to prevent blockage, so that the device can achieve quantitative addition of flour and then uniform feeding.

[0016] 2. The utility model is provided with a discharging assembly, which includes a storage hopper, a rotating motor, a rotating shaft and a stirring rod. The discharging assembly also includes a vibrating motor and an inclined discharging plate. When in use, flour is put into the storage hopper, and at the same time, the rotating motor is started to drive the rotating shaft to rotate, and then drive the stirring rod to rotate, breaking up the flour to prevent agglomeration or accumulation. At the same time, the vibrating motor is started to drive the storage hopper to vibrate, so that the flour can smoothly enter the transfer tank from the inclined discharging plate through the feed pipe, so that the device can stably load the material and prevent flour from accumulating. BRIEF DESCRIPTION OF THE DRAWINGS

[0017] Figure 1 This is a schematic diagram of the three-dimensional structure of a quantitative addition and feeding mechanism of the present invention;

[0018] Figure 2 This is a schematic diagram of the three-dimensional structure of a feeding component of a quantitative feeding mechanism of the present invention;

[0019] Figure 3 This is a schematic diagram of the three-dimensional structure of a discharging component of a quantitative addition and feeding mechanism of the utility model;

[0020] Figure 4 This is a schematic diagram of the three-dimensional structure of a material transfer tank of a quantitative addition and feeding mechanism of the present invention.

[0021] In the figure: 1. First support frame; 2. Transfer tank; 3. Second support frame; 4. Connecting frame; 5. Dosing assembly; 501. Auxiliary tank; 502. Discharge pipe; 503. Baffle plate; 504. Protective cylinder; 505. Servo motor; 506. Movable turntable; 507. Discharge hole; 508. Connecting shaft; 509. Bulk plate; 6. Rotating motor; 7. Transfer auger; 8. Feed pipe; 9. Discharge pipe; 10. Fixed bottom plate; 11. Support frame; 12. Discharge assembly; 1201. Storage hopper; 1202. Rotating motor; 1203. Rotating shaft; 1204. Stirring rod; 1205. Vibrating motor; 1206. Tilted discharge plate. DETAILED DESCRIPTION

[0022] The following embodiments of the present invention are described in further detail with reference to the accompanying drawings and examples. The following examples are used to illustrate the present invention, but are not intended to limit the scope of the present invention.

[0023] like Figures 1 to 4 As shown, a quantitative addition and feeding mechanism includes a first support frame 1 and a quantitative component 5, a transfer tank 2 is installed on the inner side of the upper end of the first support frame 1, and a second support frame 3 is provided at the right end of the transfer tank 2, a connecting frame 4 is installed on the outer side of the right end of the transfer tank 2, the quantitative component 5 is arranged at the right end of the connecting frame 4, and the quantitative component 5 includes an auxiliary tank 501, a discharge pipe 502, a baffle plate 503, a protective cylinder 504, a servo motor 505, a movable turntable 506, a discharge hole 507, a connecting shaft 508 and a bulk plate 509, the auxiliary tank 501 is arranged at the right end of the connecting frame 4, and the discharge pipe 502 is installed on the right end of the lower surface of the auxiliary tank 501, the baffle plate 503 is installed at the lower end of the right side of the inner surface of the auxiliary tank 501, and a protective cylinder 504 is installed on the lower surface of the auxiliary tank 501, and a servo motor 505 is installed inside the protective cylinder 504.

[0024] The specific operation is as follows. When in use, flour falls into the auxiliary tank 501, and the servo motor 505 is started, so that the servo motor 505 drives the movable turntable 506 to rotate, and the baffle plate 503 will block the flour on the movable turntable 506. When the discharge hole 507 of the movable turntable 506 rotates to dock with the discharge pipe 502, the flour will be discharged through the discharge pipe 502. The docking interval time between the discharge hole 507 and the discharge pipe 502 is relatively fixed to achieve quantitative discharge. The amount of discharge is adjusted by adjusting the speed of the movable turntable 506. During the rotation of the movable turntable 506, the connecting shaft 508 will be driven to rotate, so that the connecting shaft 508 drives the bulk plate 509 to rotate, and the flour is sprinkled to prevent blockage.

[0025] Please refer to Figure 1 、 Figure 3 and Figure 4 The output end of the servo motor 505 is connected to the movable turntable 506 through a coupling, and a discharge hole 507 is provided on the right end of the surface of the movable turntable 506. A connecting shaft 508 is installed on the upper surface of the movable turntable 506, and a bulk plate 509 is installed on the outside of the connecting shaft 508. The bulk plate 509 and the connecting shaft 508 are an integrated structure. A rotating motor 6 is installed on the left surface of the transfer tank 2, and the output end of the rotating motor 6 is connected to the transfer auger 7 through a coupling. A feed pipe 8 is connected to the upper left end of the transfer tank 2, and a discharge pipe 9 is provided on the lower right end of the transfer tank 2. A fixed base plate 10 is installed at the bottom of the first support frame 1, and a support frame 11 is provided on the left side of the upper surface of the fixed base plate 10. A discharge group for preventing accumulation is provided inside the support frame 11. Part 12, the discharging assembly 12 includes a storage hopper 1201, a rotating motor 1202, a rotating shaft 1203 and a stirring rod 1204, and the storage hopper 1201 is arranged on the inner surface of the support frame 11, the front surface of the upper end of the storage hopper 1201 is installed with a rotating motor 1202, and the output end of the rotating motor 1202 is connected to the rotating shaft 1203 through a coupling, and the surface of the rotating shaft 1203 is installed with a stirring rod 1204, the discharging assembly 12 also includes a vibration motor 1205 and an inclined discharging plate 1206, and the upper end of the rear surface of the storage hopper 1201 is installed with a vibration motor 1205, the lower end of the inner surface of the storage hopper 1201 is provided with an inclined discharging plate 1206, and the front surface of the lower end of the storage hopper 1201 is connected to the rear end of the feeding pipe 8;

[0026] The specific operation is as follows. When in use, flour is put into the storage hopper 1201. At the same time, the rotating motor 1202 is started, so that the rotating motor 1202 drives the rotating shaft 1203 to rotate, and then drives the stirring rod 1204 to rotate, and the flour is broken up to prevent agglomeration or accumulation. At the same time, the vibration motor 1205 is started, so that the vibration motor 1205 drives the storage hopper 1201 to vibrate, so that the flour can smoothly enter the transfer tank 2 from the inclined discharge plate 1206 through the feed pipe 8, and the rotating motor 6 is started, so that the rotating motor 6 drives the transfer auger 7 to rotate, and drives the flour to be transmitted upward.

[0027] In summary, if Figures 1 to 4 As shown, when the quantitative addition and feeding mechanism is used, first, flour is put into the storage hopper 1201, and at the same time, the rotating motor 1202 is started, so that the rotating motor 1202 drives the rotating shaft 1203 to rotate, and then drives the stirring rod 1204 to rotate, so as to break up the flour and prevent it from agglomerating or piling up. At the same time, the vibration motor 1205 is started, so that the vibration motor 1205 drives the storage hopper 1201 to vibrate, so that the flour can smoothly enter the transfer tank 2 from the inclined discharge plate 1206 through the feed pipe 8, and then the rotating motor 6 is started, so that the rotating motor 6 drives the transfer auger 7 to rotate, and drives the flour to be transmitted upward, and then the flour passes through the discharge pipe 9. The flour falls into the auxiliary tank 501, and the servo motor 505 is started, so that the servo motor 505 drives the movable turntable 506 to rotate, and the baffle plate 503 will block the flour on the movable turntable 506. When the discharge hole 507 of the movable turntable 506 rotates to dock with the discharge pipe 502, the flour will be discharged through the discharge pipe 502. The docking interval time between the discharge hole 507 and the discharge pipe 502 is relatively fixed to achieve quantitative discharge. The amount of discharge is adjusted by adjusting the speed of the movable turntable 506. During the rotation of the movable turntable 506, the connecting shaft 508 will be driven to rotate, so that the connecting shaft 508 drives the bulk plate 509 to rotate, and the flour is sprinkled to prevent blockage.

[0028] The embodiments of the present invention are provided for purposes of illustration and description and are not intended to be exhaustive or to limit the present invention to the disclosed forms. Many modifications and variations will be apparent to those skilled in the art. The embodiments are selected and described to better illustrate the principles and practical applications of the present invention and to enable those skilled in the art to understand the present invention and design various embodiments with various modifications suitable for specific applications.

Claims

1. A quantitative feeding mechanism, comprising a first support frame (1) and a quantitative component (5), characterized in that: A transfer tank (2) is installed on the inner side of the upper end of the first support frame (1), and a second support frame (3) is provided on the right end of the transfer tank (2). A connecting frame (4) is installed on the outer side of the right end of the transfer tank (2). The quantitative component (5) is provided on the right end of the connecting frame (4), and the quantitative component (5) includes an auxiliary tank (501), a discharge pipe (502), a baffle plate (503), a protective cylinder (504), a servo motor (505), a movable turntable (506), a discharge The auxiliary tank (501) is provided at the right end of the connecting frame (4), and a discharge pipe (502) is installed at the right end of the lower surface of the auxiliary tank (501). A baffle plate (503) is installed at the lower end of the right side of the inner surface of the auxiliary tank (501), and a protective cylinder (504) is installed on the lower surface of the auxiliary tank (501). A servo motor (505) is installed inside the protective cylinder (504).

2. A quantitative addition and feeding mechanism according to claim 1, characterized in that: The output end of the servo motor (505) is connected to a movable turntable (506) via a coupling, and a discharge hole (507) is provided at the right end of the surface of the movable turntable (506).

3. A quantitative addition and feeding mechanism according to claim 2, characterized in that: A connecting shaft (508) is installed on the upper surface of the movable turntable (506), and a bulk plate (509) is installed on the outer side of the connecting shaft (508). The bulk plate (509) and the connecting shaft (508) are an integrated structure.

4. A quantitative addition and feeding mechanism according to claim 1, characterized in that: A rotating motor (6) is installed on the left surface of the material transfer tank (2), and the output end of the rotating motor (6) is connected to a material transfer auger (7) via a coupling.

5. A quantitative addition and feeding mechanism according to claim 1, characterized in that: The upper left side of the material transfer tank (2) is connected to a feed pipe (8), and the lower right side of the material transfer tank (2) is provided with a discharge pipe (9).

6. A quantitative addition and feeding mechanism according to claim 1, characterized in that: A fixed base plate (10) is installed at the bottom of the first support frame (1), and a support frame (11) is provided on the left side of the upper surface of the fixed base plate (10), and a discharge assembly (12) for preventing accumulation is provided inside the support frame (11).

7. A quantitative addition and feeding mechanism according to claim 6, characterized in that: The discharging assembly (12) comprises a storage hopper (1201), a rotating motor (1202), a rotating shaft (1203) and a stirring rod (1204), wherein the storage hopper (1201) is arranged on the inner surface of the supporting frame (11), the rotating motor (1202) is mounted on the front surface of the upper end of the storage hopper (1201), and the output end of the rotating motor (1202) is connected to the rotating shaft (1203) via a coupling, and the stirring rod (1204) is mounted on the surface of the rotating shaft (1203).

8. A quantitative addition and feeding mechanism according to claim 7, characterized in that: The discharge assembly (12) further comprises a vibration motor (1205) and an inclined discharge plate (1206), and the vibration motor (1205) is mounted on the upper end of the rear surface of the storage hopper (1201), the inclined discharge plate (1206) is provided on the lower end of the inner surface of the storage hopper (1201), and the front surface of the lower end of the storage hopper (1201) is connected to the rear end of the feed pipe (8).

Citation Information

Patent Citations

  • Uniform feeding device for selenium-rich noodle production

    CN216164813U