Particulate matter blending equipment

By designing a particulate matter mixing equipment that includes a conveying system, a storage system, and a metering system, and using a conveyor belt with discs and a variable frequency geared motor for drive, the problem of low efficiency in existing automated mixing equipment is solved, achieving efficient conveying and accurate metering, and improving production efficiency.

CN223687416UActive Publication Date: 2025-12-19SHANGHAI YAMATO SCALE
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Patent Information

Application Number
CN202423262705.9
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-12-30
Publication Date
2025-12-19
Estimated Expiration
2034-12-30

AI Technical Summary

Technical Problem

In the current technology, the design of automated assembly equipment has not yet achieved efficient conveying and accurate measurement, resulting in low production efficiency.

Method used

The system adopts a closed-loop conveying structure design. The conveying system includes a conveying system, a storage system, a material storage system, and a metering system. It uses a conveyor belt with discs for conveying, combined with a variable frequency geared motor drive and cylinder tension adjustment to achieve accurate metering and efficient conveying of materials.

Benefits of technology

It achieves efficient material conveying and accurate metering. The equipment has a compact structure, runs smoothly, reduces material breakage and loss, and improves production efficiency.

✦ Generated by Eureka AI based on patent content.

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    Figure CN223687416U_ABST
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Abstract

The utility model discloses particulate matter blending equipment. The device comprises a conveying system, a storage system and a metering system, wherein the conveying system comprises a closed-loop conveying pipeline, and the conveying pipeline comprises a pipeline and a conveying belt which walks in the pipeline and is provided with discs; the conveying pipeline is provided with a feeding port for feeding materials into the pipeline, a driving mechanism for driving the conveying belt with the disc to move in the pipeline, and a tensioning mechanism for adjusting the tensioning degree of the conveying belt; at least one section of the conveying pipeline is provided with a plurality of blanking mechanisms for outputting the particulate matters conveyed to the section; the material storage system comprises a plurality of material storage bins, and each material storage bin corresponds to a material falling opening of each material falling mechanism; the metering system comprises metering mechanisms located below the storage bins, and discharging openings are formed in the lower portions of the metering mechanisms. The conveying device is compact in structure and stable in conveying movement, and is automatic equipment integrating efficient conveying and accurate metering.
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Description

TECHNICAL FIELD

[0001] The utility model relates to packing equipment technical field, especially a granule material blending equipment. BACKGROUND

[0002] There is a big market demand for blending different materials in food industry, and the current blending work mainly depends on manual operation. With the continuous improvement of mechanical automation level, the pursuit of automation and integration has become a development trend. The automatic blending equipment is an important means to realize large-scale and standardized production. CONTENT

[0003] The utility model discloses a granule material blending equipment, mainly solves the technical problem of the prior art, and its structure is compact, conveying movement is stable, and it is an automatic equipment integrating efficient conveying and accurate metering.

[0004] In order to realize the above-mentioned purpose, the utility model adopts the following technical scheme:

[0005] A granule material blending equipment is characterized in that it comprises a conveying system, a storage system and a metering system, wherein:

[0006] The conveying system comprises a conveying pipeline in a closed loop, and the conveying pipeline comprises a pipeline and a conveying belt with disc pieces walking in the pipeline; the conveying pipeline is provided with a feeding port for feeding into the pipeline, a driving mechanism for driving the conveying belt with disc pieces to move in the pipeline, and a tensioning mechanism for adjusting the tension of the conveying belt; at least a section of the conveying pipeline is provided with a plurality of discharging mechanisms for discharging the granule material conveyed thereto;

[0007] The storage system comprises a plurality of storage bins, and each storage bin corresponds to the discharging port of each discharging mechanism.

[0008] The metering system comprises a plurality of metering mechanisms arranged below each storage bin, and each metering mechanism is provided with a discharge port below.

[0009] The granule material blending equipment is characterized in that the conveying belt with disc pieces comprises a conveying belt and a plurality of disc pieces arranged at equal intervals on the conveying belt.

[0010] The granule material blending equipment is characterized in that one side surface of the conveying belt is provided with a plurality of equally arranged notches, and the plurality of disc pieces are connected at equal intervals between two notches through the fixed perforations arranged thereon.

[0011] The particle material assembling equipment, characterized in that the driving mechanism comprises a variable frequency speed reducer motor, a driving shaft, a driving wheel, and a driving box body with a discharging port; the driving wheel is arranged in the driving box body and is driven to rotate by the driving shaft connected with the variable frequency speed reducer motor; the periphery of the driving wheel is provided with a plurality of disc driving grooves.

[0012] The particle material assembling equipment, characterized in that the tensioning mechanism comprises a cylinder, a driven wheel, a guide rod, a tensioning sliding seat, and a tensioning box body; the tensioning box body is provided with the guide rod and the tensioning sliding seat which can slide on the guide rod; the driven wheel is rotationally connected to the tensioning sliding seat; the tensioning sliding seat is connected with the telescopic rod of the cylinder; the periphery of the driven wheel is provided with a plurality of disc grooves.

[0013] The particle material assembling equipment, characterized in that the feeding port is connected to a pipeline, and the pipeline is provided with quick connectors at both ends, so that the feeding port is connected to the pipeline of the conveying pipeline through the quick connectors.

[0014] The particle material assembling equipment, characterized in that the metering mechanism comprises a straight vibrator arranged on a rack, a chute, and a hopper provided with a metering driving unit; the chute is connected to the straight vibrator, the input end of the chute is located below the outlet of the storage bin, and the hopper provided with the metering driving unit is arranged below the output end of the chute.

[0015] The particle material assembling equipment, characterized in that the discharging mechanism comprises a discharging box body and a pipeline valve provided with a discharging port and penetrating through the discharging box body; the pipeline valve is connected to the pipeline of the conveying pipeline to become a part of the conveying pipeline and also drives the conveying belt with the disc; the discharging port of the pipeline valve is driven downward by the pipeline valve driving mechanism to discharge the material.

[0016] The particle material assembling equipment, characterized in that the pipeline valve is arranged in the discharging box body through a pipeline valve seat.

[0017] The particle material assembling equipment, characterized in that the pipeline is made of a food-grade stainless steel pipe or a visible organic glass pipe.

[0018] Compared with the prior art, the particle material assembling equipment has the following beneficial effects:

[0019] 1. When the particle material assembling equipment is used, the particle material is conveyed by the conveying belt with the disc in the pipeline of the conveying system, different materials can be conveyed to the corresponding storage system according to requirements, and then the materials are discharged and assembled after being accurately metered according to the set proportioning weight by the metering system.

[0020] 2. The particle material assembling equipment has compact equipment structure and stable conveying movement, and is an automatic equipment integrating efficient conveying and accurate metering. BRIEF DESCRIPTION OF DRAWINGS

[0021] Figure 1 is the structural schematic diagram of the utility model.

[0022] Figure 2 is the structural schematic diagram of the belt of the utility model.

[0023] Figure 3 is the structural schematic diagram of the driving mechanism of the utility model.

[0024] Figure 4 is the sectional view of the driving mechanism of the utility model.

[0025] Figure 5 is the driving state schematic diagram of the driving wheel and the disc combination of the driving mechanism of the utility model.

[0026] Figure 6 is the structural schematic diagram of the tensioning mechanism of the utility model.

[0027] Figure 7 is the structural schematic diagram of the feeding port of the utility model.

[0028] Figure 8 is the front structure schematic diagram of the metering mechanism of the utility model.

[0029] Figure 9 is the side structure schematic diagram of the metering mechanism of the utility model.

[0030] Figure 10 is the structural schematic diagram of the blanking mechanism of the utility model (the pipeline valve is in the closed state).

[0031] Figure 11 is the structural schematic diagram of the blanking mechanism of the utility model (the pipeline valve is in the open state). DETAILED DESCRIPTION

[0032] The technical solutions in the embodiments of the utility model will be clearly and completely described below with reference to the drawings in the embodiments of the utility model.

[0033] Please refer to Figure 1The utility model discloses a kind of granular material splicing equipment, it includes conveying system, storage system and metering system.As shown in the figure:Wherein: the conveying system includes the conveying pipeline of closed loop, the conveying pipeline includes pipeline 3 and the conveying belt of disc piece walking in pipeline 3;The conveying pipeline has the feeding opening 7 to the feeding of pipeline 3, the drive mechanism 1 of driving disc piece conveying belt movement in pipeline 3, the tensioning mechanism 8 of adjusting conveying belt tensioning degree;At least certain section on the conveying pipeline has several blanking mechanisms 2 for conveying granular material output here;The storage system is several storage bins 4, and each storage bin 4 corresponds to the blanking port 25 of each blanking mechanism 2;The metering system includes each metering mechanism 5 below each storage bin 4, and discharge port 6 is arranged below metering mechanism 5.

[0034] The utility model uses, granular material is conveyed by the disc piece conveying belt in the pipeline 3 of conveying system, according to requirement can different material be conveyed to corresponding storage system respectively, then can be precisely according to the set proportion weight respectively metered after discharging splicing after.

[0035] As Figure 2 Shown: the disc piece conveying belt includes conveying belt 31 and the equidistantly connected arrangement of several disc pieces 32 on conveying belt 31. Through disc piece conveying belt to transport material, so that material keeps relatively stationary and stable state in the conveying process, to reduce the breakage and loss of material.

[0036] As an implementation, the side surface of the conveying belt 31 has equidistantly arranged gear teeth 311, and the several disc pieces 32 are equidistantly connected between two gear teeth 311 by the fixed perforations arranged thereon. This structure is conducive to fixing the disc pieces 32 and setting the distance between adjacent disc pieces according to the needs of the user.

[0037] As Figures 3-5 Shown: the drive mechanism 1 includes a variable frequency reduction motor 11, a drive shaft 12, a drive wheel 13, and a drive box 14 with a discharge port 15; the drive wheel 13 is arranged in the drive box 14 and is driven to rotate by the drive shaft 12 connected to the variable frequency reduction motor 11; the peripheral edge of the drive wheel 13 is distributed with several disc piece driving grooves 131.

[0038] The variable frequency reduction motor 11 is adopted for driving, which can adjust the conveying speed according to the actual situation and save energy consumption. The drive wheel 13 adopts lightweight design and has high wear resistance. The disc piece driving grooves 131 designed for the disc piece conveying belt prevent slipping. The drive box 14 is designed with a discharge port 15, so that the material can be discharged through this passage if an operation error occurs.

[0039] As Figure 6As shown: the tensioning mechanism 8 includes a cylinder 81, a driven wheel 82, a guide rod 83, a tensioning slide 84, a tensioning box 85; the tensioning box 85 is provided with the guide rod 83 and the tensioning slide 84 which can slide on the guide rod 83, the driven wheel 82 is rotatably connected to the tensioning slide 84; the tensioning slide 84 is connected to the telescopic rod of the cylinder 81; the periphery of the driven wheel 82 is provided with a plurality of disc grooves.

[0040] In use, the driven wheel 82 provided on the tensioning slide 84 is driven by the telescopic rod of the cylinder 81, so as to adjust the tension of the conveying belt in the conveying system.

[0041] As shown in Figure 7 : the feeding port 7 is connected to a pipe, both ends of the pipe are provided with quick connectors 30, the feeding port 7 is connected to the pipe 3 of the conveying pipeline through the quick connectors 30. The pipe 3 adopts a food-grade stainless steel pipe or a visible organic glass pipe. The material enters the sealed sanitary pipe through the feeding port 7, which can effectively prevent dust flying and reduce pollution, and the visible pipe can observe the running state of the material in real time. The pipe butt joint adopts the quick connector 30, which is firm in connection, improves the sealing performance of the interface and the convenience of disassembly and assembly.

[0042] As shown in Figure 8 , 9 : the metering mechanism 5 includes a straight vibrator 51 provided on a rack 55, a chute 52, and a hopper 54 provided with a metering drive unit 53; the chute 52 is connected to the straight vibrator 51, the input end of the chute 52 is located below the outlet of the storage bin 4, and the hopper 54 provided with the metering drive unit 53 is arranged below the output end of the chute 52.

[0043] As shown in Figure 10 , 11 : the discharging mechanism 2 includes a discharging box 24 and a pipe valve 22 with a discharge port penetrating through the discharging box 24, the pipe valve 22 is connected to the pipe 3 of the conveying pipeline to become a part of the conveying pipeline and also passes through the driven belt disc to convey the belt; the discharge port of the pipe valve 22 is downward and discharges the material by the pipe valve drive mechanism 21. The drive mechanism 21 can be a swing cylinder, which can drive the pipe valve 22 to rotate and reset through gear transmission. Of course, a motor driven mode can also be used.

[0044] Among them: the pipe valve 22 is arranged in the discharging box 24 through the pipe valve seat 23.

[0045] In order to further ensure that the discharging is thorough and residue-free, a blowing channel can also be arranged on the pipe valve seat 23 for blowing when the discharge port of the pipe valve 22 is downward.

[0046] The above merely describes a preferred embodiment of the present application, and the protection scope of the present application is not limited thereto, and any skilled person in the art, according to the technical scheme and the inventive concept of the present application, makes equivalent replacement or change within the technical range disclosed by the present application, which should be covered within the protection scope of the present application.

Claims

1. A particulate matter compounding apparatus, characterized by: It includes conveying system, storage system and metering system; wherein: The conveying system includes conveying pipeline in closed loop, the conveying pipeline includes pipeline (3) and conveying belt with disc piece walking in pipeline (3); The conveying pipeline has feeding port (7) feeding into pipeline (3), driving mechanism (1) driving conveying belt with disc piece moving in pipeline (3), tensioning mechanism (8) adjusting tensioning degree of conveying belt; At least a section of the conveying pipeline has several blanking mechanisms (2) for outputting particles conveyed to here; The storage system is several storage bins (4), each storage bin (4) corresponds to blanking port (25) of each blanking mechanism (2); The metering system includes each metering mechanism (5) below each storage bin (4), and the metering mechanism (5) is provided with discharge port (6) below.

2. The particulate blending apparatus of claim 1, wherein: The conveying belt with disc piece includes conveying belt (31) and several disc pieces (32) arranged equidistantly on conveying belt (31).

3. The particulate blending apparatus of claim 2, wherein: One side surface of the conveying belt (31) has equidistantly arranged gear teeth (311), and the several disc pieces (32) are equidistantly connected between two gear teeth (311) by fixed perforations arranged thereon.

4. A particulate compounding apparatus according to claim 2 or 3, characterised in that: The driving mechanism (1) includes variable frequency speed reduction motor (11), driving shaft (12), driving wheel (13), driving box (14) with discharge port (15); The driving wheel (13) is arranged in the driving box (14) and is driven to rotate by the driving shaft (12) connected with the variable frequency speed reduction motor (11); The periphery of the driving wheel (13) is distributed with several disc piece driving grooves (131).

5. A particulate blending apparatus according to claim 2 or 3, wherein: The tensioning mechanism (8) includes cylinder (81), driven wheel (82), guide rod (83), tensioning slide (84), tensioning box (85); The tensioning box (85) is provided with guide rod (83) and tensioning slide (84) which can slide on the guide rod (83), and the driven wheel (82) is rotationally connected on the tensioning slide (84); The tensioning slide (84) is connected with the telescopic rod of the cylinder (81); The periphery of the driven wheel (82) is distributed with several disc piece grooves.

6. The particulate blending apparatus of claim 1, wherein: The feeding port (7) is connected on a section of pipeline, and the pipeline has quick connector (30) at both ends, and the feeding port (7) is connected into the pipeline (3) of the conveying pipeline through the quick connector (30).

7. The particulate blending apparatus of claim 1, wherein: The metering mechanism (5) includes straight vibrator (51) arranged on frame (55), chute (52), hopper (54) with metering driving unit (53); The chute (52) is connected on the straight vibrator (51), the input end of the chute (52) is below the outlet of the storage bin (4), and the hopper (54) with the metering driving unit (53) is arranged below the output end of the chute (52).

8. The particulate blending apparatus of claim 1, wherein: The blanking mechanism (2) includes blanking box (24) and pipeline valve (22) with discharge port passing through the blanking box (24), the pipeline valve (22) is connected into the pipeline (3) of the conveying pipeline to become a part of the conveying pipeline and also drives the conveying belt with disc piece; The discharge port of the pipeline valve (22) is downward and discharges material by pipeline valve driving mechanism (21).

9. The particulate matter compounding apparatus of claim 8, wherein: The pipeline valve (22) is provided in the blanking box (24) through the pipeline valve seat (23).

10. The particulate matter compounding apparatus of claim 1, wherein: The pipeline (3) is made of food-grade stainless steel pipe or visible organic glass pipe.