Ball material subpackaging equipment

By combining a turntable structure with an electrostatic elimination module, the problem of inaccurate quantity control in the packaging of spherical materials is solved, achieving efficient and precise material packaging.

CN223949545UActive Publication Date: 2026-02-27GUANGDONG BAWEI BIOLOGICAL TECH CO LTD
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Patent Information

Application Number
CN202520618844.6
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-04-02
Publication Date
2026-02-27
Estimated Expiration
2035-04-02

AI Technical Summary

Technical Problem

Existing ball material packaging technology cannot accurately control the quantity. Relying on weight for packaging introduces errors, and manual counting is inefficient and has a high error rate.

Method used

The turntable structure allows for precise material distribution by accommodating materials one by one through grooves on the turntable and controlling the number of rotations. Combined with an electrostatic elimination module, it ensures accurate material conveying.

Benefits of technology

It enables precise packaging of spherical materials, reduces quantity errors, and improves packaging efficiency and accuracy.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses ball material subpackaging equipment, which aims to accurately control the subpackaging quantity, and adopts the technical scheme that the ball material subpackaging equipment comprises a machine base, and a feeding module, a subpackaging module and a material receiving module are arranged on the machine base; the feeding module comprises a plurality of feeding funnels which are arranged at intervals in the first direction; the split charging module comprises a plurality of discharging hoppers arranged at intervals in the first direction, the discharging hoppers correspond to the feeding hoppers in a one-to-one mode, a rotating disc is arranged between the feeding hoppers and the discharging hoppers, the rotating axis of the rotating disc is parallel to the first direction, the outer edge of the rotating disc is provided with a plurality of grooves, and the grooves are communicated with the discharging hoppers. The groove can only contain one material, and the turntable rotates to enable the groove to receive the material output by the feeding hopper and put the material into the blanking hopper; the material receiving module comprises a bottle placing seat used for placing a material bottle, and the material bottle is used for receiving particles of the blanking hopper.
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Description

TECHNICAL FIELD

[0001] The utility model belongs to the technical field of split charging, more particularly, relate to a kind of ball material split charging equipment. BACKGROUND

[0002] Currently, ball material, granular material is basically judged by weight when split charging, valve is controlled according to weight feedback, output material is weighed in real time, reach preset weight requirement, then close valve, stop discharging, to achieve split charging in this way;

[0003] But in practice, not all materials are split charging by weight, some materials need to be accurately controlled quantity, cannot only look at weight, sometimes weight is in line with, but there is difference in quantity, rely on manual counting selection, efficiency is very low, and split charging structure error rate is also high. UTILITY MODEL CONTENTS

[0004] The utility model is mainly aimed at providing a kind of ball material split charging equipment, to accurately control split charging quantity.

[0005] According to the first aspect of the utility model, a kind of ball material split charging equipment is provided, including base, the base is equipped with feeding module, split charging module and receiving module;

[0006] The feeding module includes a plurality of feeding hoppers arranged along a first direction at intervals;

[0007] The split charging module includes a plurality of drop hoppers arranged along a first direction at intervals, the drop hoppers correspond one by one with the feeding hoppers, a turntable is provided between the feeding hoppers and the drop hoppers, the rotation axis of the turntable is parallel to the first direction, the outer edge of the turntable is provided with a plurality of grooves, the groove can only accommodate a material, the turntable rotates to let the groove receive the material output by the feeding hoppers and put into the drop hoppers;

[0008] The receiving module includes a bottle seat for placing a bottle, and the bottle is used to receive the granular material from the drop hoppers.

[0009] In the above ball material split charging equipment, the turntable is a plurality of and corresponds one by one with the feeding hoppers, a rotating shaft is rotatably arranged on the base, and a plurality of the turntables are arranged on the rotating shaft at intervals along the axial direction of the rotating shaft, and the rotating shaft rotates under the drive of a power assembly.

[0010] In the above ball material split charging equipment, a support is arranged on the base, and a mounting seat is arranged on the support, and the feeding hoppers are arranged on the mounting seat.

[0011] In the above ball material split charging equipment, a vibration motor is arranged on the mounting seat.

[0012] In the ball material dispensing device, the bottle placing seat is slidably arranged on the machine base, and can slide towards or away from the material falling hopper.

[0013] In the ball material dispensing device, two guide columns are arranged on the machine base at intervals, and the bottle placing seat is arranged on the two sliding blocks.

[0014] In the ball material dispensing device, the machine base is provided with an electrostatic elimination module.

[0015] In the ball material dispensing device, the electrostatic elimination module comprises an electrostatic eliminator and a material placing table, the material placing table is used for placing materials, and the electrostatic eliminator is used for eliminating static electricity of the materials placed in the material placing table.

[0016] In the ball material dispensing device, the material placing table comprises a box body and a box cover arranged on the box body, and the box cover is provided with a ventilation hole.

[0017] The above technical solution of the ball material dispensing device has at least one of the following advantages or beneficial effects:

[0018] In the ball material dispensing device, the material is dispensed by the rotating disc, when the groove on the rotating disc is connected to the feeding funnel, the material is fed into the groove from the feeding funnel, the groove can only accommodate one material, then the rotating disc continues to rotate, when the groove is connected to the material falling hopper, the material in the groove is fed into the material falling hopper, and the material falling hopper further feeds the material into the material bottle, based on this, the number of rotations of the rotating disc can be controlled to control the output number of the material, so as to accurately dispense the material. BRIEF DESCRIPTION OF DRAWINGS

[0019] The utility model will be further described in connection with the drawings and examples;

[0020] Fig. 1 is the structural schematic diagram of the first embodiment of the utility model;

[0021] Fig. 2 is the structural schematic diagram of the feeding module of the first embodiment of the utility model;

[0022] Fig. 3 is the structural schematic diagram of the dispensing module of the first embodiment of the utility model.

[0023] In the drawings, the reference signs of each drawing are as follows:

[0024] 1, base; 2, feeding module; 21, feeding hopper; 22, support; 23, mounting seat; 24, vibration motor; 3, sub-packaging module; 31, material drop hopper; 32, rotary disc; 321, groove; 33, rotary shaft; 34, power assembly; 4, material receiving module; 41, bottle placing seat; 42, guide column; 43, sliding block; 5, static electricity elimination module; 51, static electricity eliminator; 52, placing table. DETAILED DESCRIPTION

[0025] The embodiments of the present application are described in detail below, examples of which are shown in the drawings, wherein the same or similar reference numerals represent the same or similar elements or elements having the same or similar functions throughout. The embodiments described below by referring to the drawings are exemplary and are only used to explain the present application, and cannot be understood as a limitation of the present application.

[0026] The following disclosure provides many different embodiments or examples for implementing different aspects of the present application.

[0027] Referring to Figs. 1 to 3 As shown in the drawings, a ball material sub-packaging device comprises a base 1, the base 1 is provided with a feeding module 2, a sub-packaging module 3 and a material receiving module 4;

[0028] The feeding module 2 comprises a plurality of feeding hoppers 21 arranged at intervals along a first direction;

[0029] The sub-packaging module 3 comprises a plurality of material drop hoppers 31 arranged at intervals along the first direction, the material drop hoppers 31 correspond to the feeding hoppers 21 one by one, the feeding hoppers 21 and the material drop hoppers 31 are provided with a rotary disc 32, the rotary axis of the rotary disc 32 is parallel to the first direction, the outer edge of the rotary disc 32 is provided with a plurality of grooves 321, the groove 321 can only accommodate one material, the rotary disc 32 rotates to allow the groove 321 to receive the material output by the feeding hopper 21 and drop into the material drop hopper 31;

[0030] The material receiving module 4 comprises a bottle placing seat 41 for placing a material bottle, the material bottle is used to receive the material from the material drop hopper 31;

[0031] In use, the material is dropped into the feeding hopper 21, when the groove 321 on the rotary disc 32 is aligned with the feeding hopper 21, the material enters the groove 321 from the feeding hopper 21, the groove 321 can only accommodate one material, then the rotary disc 32 continues to rotate, when the groove 321 is aligned with the material drop hopper 31, the material in the groove 321 enters the material drop hopper 31, the material drop hopper 31 further delivers the material to the material bottle, in this way, through the continuous rotation of the rotary disc 32, the material can be delivered to the material bottle one by one; by controlling the number of rotations of the rotary disc 32, combined with the number of grooves 321 on the rotary disc 32, the output quantity of the material can be controlled, so as to accurately sub-packaging the material.

[0032] In the embodiment, the grooves 321 are uniformly distributed along the axis of the rotating disc 32.

[0033] In the embodiment, the distance between the outer edge of the rotating disc 32 and the outlet of the feeding hopper 21 and the distance between the outer edge of the rotating disc 32 and the inlet of the dropping hopper 31 are both less than the outer diameter of the spherical material, and even can be fitted, so that the material will not fall from the gap during conveying.

[0034] In the embodiment, the rotating disc 32 is multiple and corresponds to the feeding hopper 21 one by one, a rotating shaft 33 is rotatably arranged on the base 1, and the multiple rotating discs 32 are arranged on the rotating shaft 33 along the axial direction of the rotating shaft 33, and the rotating shaft 33 rotates under the driving of the power assembly 34.

[0035] The feeding hopper 21, the rotating disc 32 and the dropping hopper 31 are a conveying chain, and each conveying chain independently conveys the material, and only drives all the rotating discs 32 to rotate synchronously through the rotating shaft 33.

[0036] Therefore, different conveying chains can convey different materials, and only the size of the feeding hopper 21, the groove 321 and the dropping hopper 31 needs to be controlled to ensure that the material is conveyed one by one.

[0037] In the embodiment, the power assembly 34 is a servo motor, a stepping motor or a reduction motor.

[0038] In the embodiment, the base 1 is provided with a support 22, the support 22 is provided with a mounting seat 23, and the feeding hopper 21 is arranged on the mounting seat 23.

[0039] Specifically, the mounting seat 23 is provided with a hole position corresponding to the feeding hopper 21 one by one, and the feeding hopper 21 only needs to be placed in the hole position and can be disassembled and replaced at any time.

[0040] Preferably, the mounting seat 23 is provided with a vibration motor 24, the vibration motor 24 vibrates the mounting seat 23, so that the feeding hopper 21 vibrates, which can assist the feeding hopper 21 to output the particles.

[0041] In the embodiment, the bottle placing seat 41 is slidably arranged on the base 1, and a person can pull the bottle placing seat 41 to slide, and the bottle placing seat 41 can slide towards the dropping hopper 31 or away from the dropping hopper 31, that is, the bottle placing seat 41 can be pushed below the dropping hopper 31 or pulled out from below the dropping hopper 31.

[0042] The bottle placing seat 41 is provided with a recess matched with the material bottle, and the material bottle is directly placed in the recess and can be taken out at any time.

[0043] Specifically, two guide columns 42 are arranged on the base 1 at intervals, and a sliding block 43 is arranged on each guide column 42, and the bottle placing seat 41 is arranged on the two sliding blocks 43, so that the bottle placing seat 41 can slide with the aid of the sliding blocks 43.

[0044] In the embodiment, the base 1 is provided with an electrostatic elimination module 5, and the material needs to pass through the electrostatic elimination module 5 to eliminate static electricity before being placed into the feeding hopper 21, so as to ensure that the material is not adhered to the feeding hopper 21 or the discharging hopper 31 due to static electricity.

[0045] Specifically, the electrostatic elimination module 5 comprises an electrostatic elimination instrument 51 and a material placing table 52, the material placing table 52 is used for placing the material, and the electrostatic elimination instrument 51 blows ionized wind to eliminate static electricity of the material placed in the material placing table 52.

[0046] In the embodiment, the material placing table 52 comprises a box body and a box cover arranged on the box body, the box cover is provided with a ventilation hole, the material is placed in the box body, and the ionized wind enters the box body through the ventilation hole to eliminate static electricity of the material.

[0047] In the embodiment, the box body is directly placed on the base 1, and after the static electricity is eliminated, the box body can be taken to pour the material into the feeding hopper 21.

[0048] In some other embodiments, the box body can be fixed on the base 1, and the material in the box body is scooped out by a shovel and poured into the feeding hopper 21.

[0049] Although the embodiments of the utility model have been shown and described, those skilled in the art can understand that various changes, modifications, replacements and variations can be made to the embodiments without departing from the principles and purposes of the utility model, and the scope of the utility model is defined by the claims and their equivalents.

Claims

1. A ball material dispensing apparatus, characterized by, The application relates to a material feeding device, which comprises a base, a feeding module, a sub-packaging module and a receiving module. The feeding module comprises a plurality of feeding funnels arranged at intervals along a first direction. The sub-packaging module comprises a plurality of dropping hoppers arranged at intervals along the first direction, and the feeding funnels and the dropping hoppers are in one-to-one correspondence. The receiving module comprises a bottle placing seat for placing a bottle for receiving the material dropped by the dropping hoppers.

2. The ball material dispensing apparatus according to claim 1, wherein The base is provided with a plurality of rotating discs corresponding to the feeding funnels, and the rotating discs are arranged at intervals along the axial direction of a rotating shaft and are rotatable under the drive of a power assembly.

3. The ball material dispensing apparatus according to claim 1, wherein The base is provided with a support, and the support is provided with a mounting seat.

4. The ball material dispensing apparatus according to claim 3, wherein The mounting seat is provided with a vibration motor.

5. The ball material dispensing apparatus according to claim 1, wherein The bottle placing seat is slidably arranged on the base and can slide towards or away from the dropping hoppers.

6. The ball material dispensing apparatus according to claim 5, wherein The base is provided with two guide columns arranged at intervals, and the guide columns are provided with sliding blocks, and the bottle placing seat is arranged on the sliding blocks.

7. The ball material dispensing apparatus according to claim 1, wherein The base is provided with an electrostatic elimination module.

8. The ball material dispensing apparatus according to claim 7, wherein The electrostatic elimination module comprises an electrostatic eliminator and a placing table, the placing table is used for placing material, and the electrostatic eliminator is used for eliminating static electricity of the material placed on the placing table.

9. The ball material dispensing apparatus according to claim 8, wherein The placing table comprises a box body and a box cover arranged on the box body, and the box cover is provided with ventilation holes.