Integrated full-automatic dosing device

By introducing a stirring device into the dosing device, the agglomerated powder is dispersed by the rotating rod and the connecting rod, the problem of the agglomeration affecting the discharge of the powder is solved, and the smooth and efficient discharge of the powder is achieved.

CN222861198UActive Publication Date: 2025-05-13XIAMEN HONGHU GONGCHUANG TECHNOLOGY CO LTD
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Patent Information

Application Number
CN202421772216.5
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-07-25
Publication Date
2025-05-13
Estimated Expiration
2034-07-25

AI Technical Summary

Technical Problem

During use of existing dosing devices, dry powdered drugs may easily agglomerate when they come into contact with air, affecting the discharge of the powder.

Method used

An integrated fully automatic dosing device is designed with a built-in agitating device, which breaks the agglomerated powdered drug by rotating rod and connecting rod to ensure that the drug can enter the stirring barrel smoothly through the discharge hole.

Benefits of technology

Effectively prevent the powder from agglomerating, ensure smooth discharge of the powder, and improve the efficiency of the dosing device.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model provides an integrated full-automatic dosing device, which relates to the technical field of dosing devices, and comprises a storage box, a sliding rod is inserted on one side of the storage box in a sliding and penetrating manner, one end of the sliding rod close to the storage box is fixedly connected with a baffle plate, the surface of the sliding rod is sleeved with a first spring, and the baffle plate is fixedly connected with the storage box. One end of the first spring is fixedly connected with the end, away from the storage box, of the sliding rod, the end, close to the sliding rod, of the first spring is fixedly connected with one side of the storage box, a stirring barrel is arranged at the bottom of the storage box, a motor is fixedly connected to the top of the stirring barrel, and a stirring rod is fixedly connected to the output end of the motor; a cam is fixedly connected to the surface of the stirring rod, when the stirring device is used, the rotating rod is controlled to rotate in the storage box, and then caked powdery medicine is scattered through the connecting rod, so that the medicine can well enter the stirring barrel through a discharging hole formed in the bottom of the storage box.
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Description

Technical Field

[0001] The utility model relates to the technical field of dosing devices, in particular to an integrated full-automatic dosing device. Background Art

[0002] The dosing device is an integrated device used to automatically add drugs when using powdered drugs for water pollution treatment. When using the dosing device, the dry powdered drugs are placed inside the storage box. When the cam on the surface of the stirring rod squeezes the sliding rod, the baffle is moved away from the discharge port, and then the powder enters the inside of the mixing barrel. When the cam is away from the sliding rod, the first spring squeezes the sliding rod, thereby driving the baffle to block the discharge port, so that the dosing can be fully automatic as the stirring rod rotates.

[0003] The inventor has found in his daily work that the dosing device still has at least the following problems: when using the dosing device, the dry powder medicine is placed inside the storage box. When the cam on the surface of the stirring rod squeezes the sliding rod, the baffle is moved away from the discharge port, and then the medicine powder enters the inside of the stirring barrel. When the cam is away from the sliding rod, the first spring squeezes the sliding rod, thereby driving the baffle to block the discharge port. However, in actual use, the medicine powder is directly placed inside the storage box. The medicine powder is in contact with the air for a long time and may come into contact with water vapor in the air, thereby causing the medicine powder to agglomerate, which will affect the discharge of the medicine powder to a certain extent. Utility Model Content

[0004] The utility model aims to solve the shortcomings in the prior art and proposes an integrated full-automatic dosing device.

[0005] In order to achieve the above-mentioned purpose, the utility model adopts the following technical scheme: an integrated fully automatic dosing device, comprising a storage box, a sliding rod is inserted and slidably penetrated on one side of the storage box, the sliding rod is fixedly connected to an end of the storage box close to the storage box with a baffle, a first spring is sleeved on the surface of the sliding rod, one end of the first spring is fixedly connected to an end of the sliding rod away from the storage box, the end of the first spring close to the sliding rod is fixedly connected to one side of the storage box, a stirring barrel is arranged at the bottom of the storage box, a motor is fixedly connected to the top of the stirring barrel, a stirring rod is fixedly connected to the output end of the motor, a cam is fixedly connected to the surface of the stirring rod, the stirring rod is rotatably penetrated and inserted in the top of the stirring barrel, a stirring device is arranged inside the storage box, a limiting device is arranged on one side of the storage box, the stirring device comprises a rotating rod, the rotating rod is rotatably inserted in the inner wall of the storage box, and a connecting rod is evenly and fixedly connected to the surface of the rotating rod.

[0006] The effect achieved by the above components is: when using the stirring device, the rotating rod is controlled to rotate inside the storage box, and then the agglomerated powdered medicine is broken up through the connecting rod, so that the medicine can enter the interior of the stirring barrel through the discharge hole set at the bottom of the storage box.

[0007] Preferably, a gear is fixedly connected to the surface of the rotating rod.

[0008] The effect achieved by the above components is that because the gear is fixed on the surface of the rotating rod, the rotating rod can be driven to rotate when the gear is controlled to rotate.

[0009] Preferably, the bottom of the storage box is fixedly connected to a connecting frame, the inner wall of the connecting frame is slidably connected to a connecting plate, one side of the connecting plate is fixedly connected to one side of the baffle, the end of the connecting plate away from the baffle is fixedly connected to a rack, and the rack and gear are meshed with each other.

[0010] The effect achieved by the above components is that when the baffle is squeezed and moved, because the rack and the gear are meshed with each other, the rotation of the gear can be well controlled, so that the gear can be driven to rotate during automatic dosing.

[0011] Preferably, a connecting tube is provided on the surface sliding sleeve of the connecting rod, a second spring is fixedly connected to one side of the inner wall of the connecting tube, and one end of the second spring close to the connecting tube is fixedly connected to one end of the connecting rod.

[0012] The effect achieved by the above components is: the second spring presses the connecting tube in a direction away from the connecting rod, so that the connecting tube is well pressed against the inner wall of the storage box.

[0013] Preferably, the limiting device comprises a rectangular block, the bottom of the storage box is evenly provided with rectangular grooves, the inner wall of the rectangular groove is slidably connected to the rectangular block, and the bottom of the rectangular block is fixedly connected to the top of the mixing barrel.

[0014] The effect achieved by the above components is: when using the limit device, manually slide the rectangular block into the inside of the rectangular groove, so that the storage box can be set on the top of the mixing barrel, and the reverse operation can separate the storage box and the mixing barrel, thereby facilitating the cleaning of the storage box.

[0015] Preferably, a support frame is fixedly connected to one side of the mixing barrel, a round rod is rotatably inserted on the top of the support frame, and a semicircular plate is fixedly connected to the top of the round rod.

[0016] The effect achieved by the above components is: manually controlling the rotation of the round rod, and then setting the semicircular plate on the top of the storage box, so that the storage box can be well restricted on the top of the mixing barrel.

[0017] Preferably, a limiting groove is provided on the top of the support frame, and the inner wall of the limiting groove is slidably connected to a limiting block.

[0018] The effect achieved by the above components is: the limiting block is slid out of the limiting groove, and then the limiting block is set on one side of the semicircular plate, so that the semicircular plate can be well limited to the top of the storage box.

[0019] Preferably, a damping rod is fixedly connected to the bottom of the inner wall of the limiting groove, the top of the damping rod is fixedly connected to the bottom of the limiting block, a third spring is sleeved on the surface of the damping rod, one end of the third spring is fixedly connected to the bottom of the inner wall of the limiting groove, and one end of the third spring close to the damping rod is fixedly connected to the bottom of the limiting block.

[0020] The effect achieved by the above components is: the limiting block is pressed in a direction away from the limiting groove by the third spring, so that the limiting block is arranged on one side of the semicircular plate.

[0021] In the utility model, a stirring device is provided. When the stirring device is used, the rotating rod is controlled to rotate inside the storage box, and then the agglomerated powdered medicine is broken up through the connecting rod, so that the medicine can enter the interior of the stirring barrel through the discharge hole provided at the bottom of the storage box. BRIEF DESCRIPTION OF THE DRAWINGS

[0022] Figure 1 The utility model provides a three-dimensional structural schematic diagram of an integrated fully automatic dosing device;

[0023] Figure 2 This is a three-dimensional structural schematic diagram of a novel connecting rod proposed in the utility model;

[0024] Figure 3 This is a three-dimensional structural schematic diagram of a new type of connecting tube proposed by the utility model;

[0025] Figure 4 The utility model provides a three-dimensional structural schematic diagram of a novel limit block.

[0026] Legend: 1. Storage box; 2. Sliding rod; 3. Baffle; 4. First spring; 5. Stirring barrel; 6. Motor; 7. Cam; 8. Stirring device; 801. Rotating rod; 802. Connecting rod; 803. Connecting frame; 804. Connecting plate; 805. Rack; 806. Gear; 807. Connecting cylinder; 808. Second spring; 9. Limiting device; 901. Rectangular groove; 902. Rectangular block; 903. Support frame; 904. Round rod; 905. Semicircular plate; 906. Limiting groove; 907. Limiting block; 908. Damping rod; 909. Third spring; 10. Stirring rod. DETAILED DESCRIPTION

[0027] Embodiment 1, as Figure 1-4 As shown, an integrated fully automatic dosing device is provided, a sliding rod 2 is inserted and slidably penetrated on one side of a storage box 1, a baffle 3 is fixedly connected to the end of the sliding rod 2 close to the storage box 1, a first spring 4 is sleeved on the surface of the sliding rod 2, one end of the first spring 4 is fixedly connected to the end of the sliding rod 2 away from the storage box 1, and the end of the first spring 4 close to the sliding rod 2 is fixedly connected to one side of the storage box 1, a stirring barrel 5 is provided at the bottom of the storage box 1, a motor 6 is fixedly connected to the top of the stirring barrel 5, a stirring rod 10 is fixedly connected to the output end of the motor 6, and a cam is fixedly connected to the surface of the stirring rod 10 7. The stirring rod 10 is rotatably inserted through the top of the stirring barrel 5. A stirring device 8 is arranged inside the storage box 1. A limiting device 9 is arranged on one side of the storage box 1. When the dosing device is used, the dry powder medicine is placed inside the storage box 1. When the cam 7 on the surface of the stirring rod 10 squeezes the sliding rod 2, the baffle 3 is brought away from the discharge port, and then the powder enters the inside of the stirring barrel 5. When the cam 7 is away from the sliding rod 2, the first spring 4 squeezes the sliding rod 2, and then drives the baffle 3 to block the discharge port, so that the dosing can be fully automatic with the rotation of the stirring rod 10.

[0028] Reference Figure 2 and Figure 3 The stirring device 8 includes a rotating rod 801, which is rotatably inserted into the inner wall of the storage box 1. The surface of the rotating rod 801 is evenly fixedly connected with a connecting rod 802. When the stirring device 8 is used, the rotating rod 801 is controlled to rotate inside the storage box 1, and then the agglomerated powdered medicine is broken up through the connecting rod 802, so that the medicine can enter the inside of the stirring barrel 5 through the discharge hole set at the bottom of the storage box 1. The surface of the rotating rod 801 is fixedly connected with a gear 806. Because the gear 806 is fixed on the surface of the rotating rod 801, the rotating rod 801 can be driven to rotate when the gear 806 is controlled to rotate. The bottom of the storage box 1 is fixedly connected with a connecting frame 803, and the inner wall of the connecting frame 803 is slidably connected with a connecting plate 804. The connecting plate 804 is connected to the inner wall of the connecting frame 803. One side of 04 is fixedly connected to one side of the baffle 3, and the end of the connecting plate 804 away from the baffle 3 is fixedly connected with a rack 805, and the rack 805 and the gear 806 are meshed with each other. When the baffle 3 is squeezed and moved, because the rack 805 and the gear 806 are meshed with each other, the rotation of the gear 806 can be well controlled, so that the gear 806 can be driven to rotate during automatic dosing. The surface sliding sleeve of the connecting rod 802 is provided with a connecting tube 807, and one side of the inner wall of the connecting tube 807 is fixedly connected with a second spring 808, and the end of the second spring 808 close to the connecting tube 807 is fixedly connected to one end of the connecting rod 802, and the connecting tube 807 is squeezed away from the connecting rod 802 by the second spring 808, so that the connecting tube 807 is well squeezed on the inner wall of the storage box 1.

[0029] Reference Figure 4 The limiting device 9 includes a rectangular block 902, and a rectangular groove 901 is evenly opened at the bottom of the storage box 1. The inner wall of the rectangular groove 901 is slidably connected to the rectangular block 902, and the bottom of the rectangular block 902 is fixedly connected to the top of the mixing barrel 5. When using the limiting device 9, the rectangular block 902 is manually slid into the inside of the rectangular groove 901, so that the storage box 1 can be set on the top of the mixing barrel 5. The reverse operation can separate the storage box 1 and the mixing barrel 5, which is convenient for cleaning the storage box 1. A support frame 903 is fixedly connected to one side of the mixing barrel 5, and a round rod 904 is rotatably inserted on the top of the support frame 903. A semicircular plate 905 is fixedly connected to the top of the round rod 904. The rotation of the round rod 904 is manually controlled, and then the semicircular plate 905 is set on the top of the storage box 1. In this way, the storage box 1 can be well limited to the top of the mixing barrel 5. 3 is provided with a limiting groove 906 at the top, and the inner wall of the limiting groove 906 is slidably connected to the limiting block 907, so that the limiting block 907 is slid out of the limiting groove 906, and then the limiting block 907 is set on one side of the semicircular plate 905, so that the semicircular plate 905 can be well limited to the top of the storage box 1, and the bottom of the inner wall of the limiting groove 906 is fixedly connected with a damping rod 908, the top of the damping rod 908 and the bottom of the limiting block 907 are fixedly connected, and the surface of the damping rod 908 is sleeved with a third spring 909, one end of the third spring 909 is fixedly connected to the bottom of the inner wall of the limiting groove 906, and one end of the third spring 909 close to the damping rod 908 is fixedly connected to the bottom of the limiting block 907, and the limiting block 907 is squeezed away from the limiting groove 906 by the third spring 909, so that the limiting block 907 is set on one side of the semicircular plate 905.

[0030] Working principle, when using the dosing device, place the dry powder medicine inside the storage box 1, when the cam 7 on the surface of the stirring rod 10 squeezes the sliding rod 2, the baffle 3 is moved away from the discharge port, and then the medicine powder enters the inside of the mixing barrel 5, when the cam 7 is away from the sliding rod 2, the first spring 4 squeezes the sliding rod 2, and then drives the baffle 3 to block the discharge port, so that the dosing can be fully automatic with the rotation of the stirring rod 10, when using the stirring device 8, that is, when the baffle 3 is squeezed and moved, because the rack 805 and the gear 806 are meshed with each other, the rotation of the gear 806 can be well controlled, so that the gear 806 can be driven to rotate during automatic dosing, because the gear 806 is fixed on the surface of the rotating rod 801, when the gear 806 is controlled to rotate, the rotating rod 801 can be driven to rotate, and the rotating rod 801 is controlled to rotate inside the storage box 1, and is squeezed in the direction away from the connecting rod 802 by the second spring 808. The connecting cylinder 807 is connected, so that the connecting cylinder 807 is well pressed on the inner wall of the storage box 1, and the agglomerated powdered medicine is broken up through the connecting rod 802, so that the medicine can well enter the interior of the mixing barrel 5 through the discharge hole set at the bottom of the storage box 1. When using the limiting device 9, the rectangular block 902 is manually slid into the interior of the rectangular groove 901, and the round rod 904 is manually controlled to rotate, so that the semicircular plate 905 is set on the top of the storage box 1, and the limiting block 907 is slid out of the limiting groove 906, and then the limiting block 907 is set on one side of the semicircular plate 905. The limiting block 907 is squeezed away from the limiting groove 906 by the third spring 909, so that the limiting block 907 is set on one side of the semicircular plate 905, so that the semicircular plate 905 can be well limited to the top of the storage box 1, so that the storage box 1 can be well limited to the top of the mixing barrel 5, and the reverse operation can separate the storage box 1 and the mixing barrel 5, so as to facilitate cleaning of the storage box 1.

Claims

1. An integrated fully automatic dosing device, comprising a storage box (1), characterized in that: A sliding rod (2) is inserted and slidably penetrated on one side of the storage box (1); an end of the sliding rod (2) close to the storage box (1) is fixedly connected to a baffle (3); a first spring (4) is sleeved on the surface of the sliding rod (2); one end of the first spring (4) is fixedly connected to an end of the sliding rod (2) away from the storage box (1); an end of the first spring (4) close to the sliding rod (2) is fixedly connected to one side of the storage box (1); a stirring barrel (5) is provided at the bottom of the storage box (1); a motor (6) is fixedly connected to the top of the stirring barrel (5); The output end of the motor (6) is fixedly connected to a stirring rod (10), the surface of the stirring rod (10) is fixedly connected to a cam (7), the stirring rod (10) is rotatably inserted into the top of the stirring barrel (5), a stirring device (8) is arranged inside the storage box (1), a limiting device (9) is arranged on one side of the storage box (1), the stirring device (8) comprises a rotating rod (801), the rotating rod (801) is rotatably inserted into the inner wall of the storage box (1), and the surface of the rotating rod (801) is evenly fixedly connected to a connecting rod (802).

2. The integrated fully automatic dosing device according to claim 1 is characterized in that: A gear (806) is fixedly connected to the surface of the rotating rod (801).

3. The integrated fully automatic dosing device according to claim 1 is characterized in that: The bottom of the storage box (1) is fixedly connected to a connection frame (803), the inner wall of the connection frame (803) is slidably connected to a connection plate (804), one side of the connection plate (804) is fixedly connected to one side of the baffle (3), and one end of the connection plate (804) away from the baffle (3) is fixedly connected to a rack (805), and the rack (805) and the gear (806) are meshed with each other.

4. The integrated fully automatic dosing device according to claim 1 is characterized in that: The surface sliding sleeve of the connecting rod (802) is provided with a connecting tube (807), one side of the inner wall of the connecting tube (807) is fixedly connected with a second spring (808), and one end of the second spring (808) close to the connecting tube (807) is fixedly connected to one end of the connecting rod (802).

5. The integrated fully automatic dosing device according to claim 1 is characterized in that: The limiting device (9) comprises a rectangular block (902), the bottom of the storage box (1) is evenly provided with rectangular grooves (901), the inner wall of the rectangular groove (901) is slidably connected to the rectangular block (902), and the bottom of the rectangular block (902) is fixedly connected to the top of the mixing barrel (5).

6. The integrated fully automatic dosing device according to claim 1, characterized in that: A support frame (903) is fixedly connected to one side of the mixing barrel (5), a round rod (904) is rotatably inserted at the top of the support frame (903), and a semicircular plate (905) is fixedly connected to the top of the round rod (904).

7. The integrated fully automatic dosing device according to claim 6, characterized in that: A limiting groove (906) is provided on the top of the support frame (903), and the inner wall of the limiting groove (906) is slidably connected to a limiting block (907).

8. The integrated fully automatic dosing device according to claim 7, characterized in that: A damping rod (908) is fixedly connected to the bottom of the inner wall of the limiting groove (906), the top of the damping rod (908) is fixedly connected to the bottom of the limiting block (907), a third spring (909) is sleeved on the surface of the damping rod (908), one end of the third spring (909) is fixedly connected to the bottom of the inner wall of the limiting groove (906), and one end of the third spring (909) close to the damping rod (908) is fixedly connected to the bottom of the limiting block (907).