Charging bucket feeding device

By introducing a rotating structure and a dispersing component into the material tank feeding device, the problem of powder blockage was solved, enabling smooth material conveying and reducing waste, thus improving the continuity and efficiency of feeding.

CN223467943UActive Publication Date: 2025-10-24DALIAN JIURI NEW MATERIAL TECH CO LTD
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Patent Information

Application Number
CN202423082286.0
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-12-13
Publication Date
2025-10-24
Estimated Expiration
2034-12-13

AI Technical Summary

Technical Problem

Traditional material tank feeding devices are prone to clogging due to powder or poorly flowing materials, affecting the continuity and efficiency of feeding.

Method used

A material tank feeding device including a rotating structure and a dispersing component was designed. The rotating ring driven by the motor drives the dispersing blades to disperse the material to prevent blockage, and a flared baffle is used at the discharge port to prevent the material from scattering.

Benefits of technology

It effectively prevents powder blockage, ensures smooth material entry into the hopper, reduces waste and environmental pollution, and improves the continuity and efficiency of feeding.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model relates to the field of charging bucket feeding, and discloses a charging bucket feeding device which comprises a connecting pipe used for being in butt joint with a material storage tank and a bottom discharging pipe used for feeding to the charging bucket, a connecting flange is fixedly installed at the position, corresponding to an outlet pipe of the material storage pipe, of the connecting pipe, and a rotating structure is arranged at the other end of the connecting pipe. A bottom discharging pipe is arranged on the side, away from the connecting pipe, of the rotating structure, a scattering assembly is arranged on the inner side of the rotating structure, and the scattering assembly extends into the bottom discharging pipe. And then the material storage pipe is opened, the materials fall downwards, then the rotating structure rotates to drive the scattering assembly to rotate, powder entering the bottom discharging pipe is scattered, and the situation that normal feeding is affected due to the fact that the powder blocks or accumulates in the bottom discharging pipe is prevented.
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Description

TECHNICAL FIELD

[0001] The utility model relates to the field of material tank feeding, in particular to a material tank feeding device. BACKGROUND

[0002] In the field of industrial production and material storage and conveying, the material tank feeding device plays a vital role. The traditional material tank feeding method is often relatively simple and direct, for example, by simply connecting the pipeline, the material is conveyed from the storage container or the transmission equipment to the material tank, and the material flows into the material tank from the high storage container by using its own gravity. When in use, its structure is relatively simple, the cost is low, and the automatic feeding of the material can be realized to a certain extent. However, the above only solves the basic material conveying problem, and does not consider the influence of different material characteristics on the feeding process, for example, the powder or other materials with poor flowability are prone to block the pipeline, resulting in interruption of feeding. Therefore, we provide a material tank feeding device. UTILITY MODEL CONTENTS

[0003] (I) Technical problem solved

[0004] In view of the deficiencies of the prior art, the utility model provides a material tank feeding device, which solves the above problems.

[0005] (II) Technical scheme

[0006] In order to achieve the above purpose, the utility model provides the following technical scheme: a material tank feeding device, which comprises a connecting pipe for connecting a material storage tank and a bottom discharge pipe for feeding the material tank, a connecting flange is fixedly installed at the position corresponding to the outlet pipe of the material storage pipe of the connecting pipe, the other end of the connecting pipe is provided with a rotating structure, the bottom discharge pipe is arranged on the side of the rotating structure away from the connecting pipe, a scattering assembly is arranged on the inner side of the rotating structure, and the scattering assembly extends to the inside of the bottom discharge pipe.

[0007] Preferably, the rotating structure comprises a motor assembly, a rotating ring and teeth, a plurality of sets of teeth are equidistantly installed on the outer side of the rotating ring, end recesses are formed in the side end portions of the connecting pipe and the bottom discharge pipe corresponding to the rotating ring, and the end portion of the rotating ring is rotatably clamped in the inside of the end recess.

[0008] Preferably, an annular inner wall groove is formed in the inner wall of the end recess, an annular protrusion is integrally formed on the end portion of the rotating ring corresponding to the position of the annular inner wall groove, and the annular protrusion and the annular inner wall groove are rotatably clamped together.

[0009] Preferably, the motor assembly comprises a mounting bracket, a motor and a gear, the mounting bracket is fixedly installed on the side surface of the connecting pipe, the motor is fixedly installed on the bottom of the mounting bracket, the output shaft of the motor is fixedly installed with the gear, and the gear is engaged with the teeth.

[0010] Preferably, the scattering assembly comprises a transverse connecting rod, a rotating rod and a plurality of scattering leaves, the transverse connecting rod is transversely arranged on the inner side of the rotating ring, the bottom of the transverse connecting rod is vertically arranged with the rotating rod, a plurality of scattering leaves are disorderly arranged on the outer side wall surface of the rotating rod, and the rotating rod extends to the inside of the bottom discharge pipe.

[0011] Preferably, the bottom discharge pipe is fixedly arranged with a flared block at the lower end, the flared block is flared, and when the material is inputted.

[0012] (Three) beneficial effects

[0013] Compared with the prior art, the utility model provides a material tank feeding device, has the following beneficial effects:

[0014] 1、the material tank feeding device, when feeding, the connecting flange is connected with the material storage pipe outlet pipe, the position of the bottom discharge pipe is aligned with the feeding port position of the material tank, then the material storage pipe is opened, the material falls down, then the rotating structure is rotated, drives the scattering assembly to rotate, scatters the powder entering the inside of the bottom discharge pipe, prevents the powder from being blocked or accumulated in the inside, and affects the normal feeding.

[0015] 2、the material tank feeding device, the flared block is pressed on the feeding port position of the material tank by hand, and the flared block can prevent the powder from being scattered when being injected. BRIEF DESCRIPTION OF DRAWINGS

[0016] Figure 1 It is a structural schematic view of the utility model;

[0017] Figure 2 It is a side view schematic view of the utility model;

[0018] Figure 3 It is Figure 2 A-A sectional view schematic view in the;

[0019] Figure 4 B in Figure 3 The local enlarged schematic view.

[0020] In the drawing: 1, connecting pipe; 2, connecting flange; 3, mounting frame; 4, motor; 5, gear; 6, bottom discharge pipe; 7, flared block; 8, transverse connecting rod; 9, rotating rod; 10, scattering leaf; 11, rotating ring; 12, gear teeth; 13, end recess; 14, annular inner wall groove; 15, annular protrusion. DETAILED DESCRIPTION

[0021] With reference to the drawings of the embodiments of the present application, the technical solutions in the embodiments of the present application will be clearly and completely described, obviously, the described embodiments are only part of the embodiments of the present application, rather than all the embodiments. Based on the embodiments of the present application, all other embodiments obtained by those skilled in the art without creative labor fall within the scope of the present application.

[0022] Please refer to Figures 1-4 The application discloses a kind of material tank feeding devices, including the connecting pipe 1 for docking material storage tank and the bottom discharge pipe 6 for feeding material tank, connecting pipe 1 is fixedly installed with connecting flange 2 at the position corresponding to material storage pipe outlet pipe, the other end of connecting pipe 1 is provided with rotating structure, the bottom discharge pipe 6 is arranged on the side of rotating structure away from connecting pipe 1, the inside of rotating structure is provided with scattering component, scattering component extends to the inside of bottom discharge pipe 6, when feeding, connecting flange 2 is connected material storage pipe outlet pipe, the position of bottom discharge pipe 6 is aligned with the feed inlet position of material tank, then open material storage pipe, material falls down, then rotating structure rotates, drives scattering component to rotate, scatters powder entering the inside of bottom discharge pipe 6, prevents powder from being blocked or accumulated inside, affects normal feeding.

[0023] Further, rotating structure includes motor assembly, rotating ring 11 and gear teeth 12, a plurality of gear teeth 12 are equidistantly installed on the outside of rotating ring 11, end recess 13 is formed in the side end of connecting pipe 1 and bottom discharge pipe 6 corresponding to rotating ring 11, and the end of rotating ring 11 is rotatably clamped in the inside of end recess 13.

[0024] Further, annular inner wall groove 14 is formed in the inner wall of end recess 13, and annular protrusion 15 is integrally formed on the end of rotating ring 11 corresponding to the position of annular inner wall groove 14, and annular protrusion 15 is rotatably clamped with annular inner wall groove 14.

[0025] Further, motor assembly includes mounting bracket 3, motor 4 and gear 5, mounting bracket 3 is fixedly installed on the side of connecting pipe 1, motor 4 is fixedly installed on the bottom of mounting bracket 3, gear 5 is fixedly installed on the output shaft of motor 4, and gear 5 is engaged with gear teeth 12, when scattering powder is needed, motor 4 is started at this time, drives gear 5 to rotate, engages rotating ring 11 to rotate, so as to drive the inside scattering component to rotate, and scatters powder.

[0026] Further, the scattering assembly comprises a transverse connecting rod 8, a rotating rod 9 and a plurality of scattering leaves 10. The transverse connecting rod 8 is transversely arranged on the inner side of the rotating ring 11, and the bottom of the transverse connecting rod 8 is vertically arranged with the rotating rod 9. A plurality of scattering leaves 10 are arranged on the outer wall surface of the rotating rod 9 in disorder. The rotating rod 9 extends to the inside of the bottom discharge pipe 6. When the rotating ring 11 rotates, the rotating rod 9 rotates. When the material continuously falls into the bottom discharge pipe 6, the scattering leaves 10 scatter the material.

[0027] Further, the bottom end of the bottom discharge pipe 6 is fixedly arranged with an expanded block 7. The expanded block 7 is in the shape of an expansion. When the material is input, the expanded block 7 is pressed on the material inlet of the tank by hand. The expanded block 7 can prevent the powder from scattering when it is injected.

[0028] Structure description:

[0029] The connecting pipe 1 is used to connect the material storage tank. One end of the connecting pipe 1 is fixedly arranged with a connecting flange 2 corresponding to the outlet pipe of the material storage pipe. The connecting flange 2 can realize reliable connection with the outlet pipe of the material storage pipe, so as to ensure the sealing and stability of the material transmission path. The other end of the connecting pipe 1 is connected with a rotating structure. An installation frame 3 is fixedly arranged on the side of the connecting pipe 1. The installation frame 3 provides a mounting base for the motor 4, so that the motor 4 can be stably mounted on the connecting pipe 1 and be in a suitable position to drive the subsequent rotating structure to work.

[0030] The rotating structure mainly comprises a motor assembly, a rotating ring 11 and a gear 12.

[0031] The rotating ring 11 is arranged with a plurality of gears 12 at equal intervals on the outer side. The end of the rotating ring 11 is designed with a structure matched with the connecting pipe 1 and the bottom discharge pipe 6. Specifically, the connecting pipe 1 and the bottom discharge pipe 6 are both provided with an end recess 13 corresponding to one side end of the rotating ring 11. The end of the rotating ring 11 is rotatably connected in the end recess 13. An annular inner wall groove 14 is arranged on the inner wall of the end recess 13. An annular protrusion 15 is integrally formed on the end of the rotating ring 11 corresponding to the position of the annular inner wall groove 14. The annular protrusion 15 and the annular inner wall groove 14 are rotatably connected together. This structure design enables the rotating ring 11 to stably rotate in the end recess 13, and ensures the concentricity and sealing of the rotation, preventing material leakage.

[0032] The motor assembly comprises an installation frame 3, a motor 4 and a gear 5. The motor 4 is fixedly arranged on the bottom of the installation frame 3. The output shaft of the motor 4 is fixedly arranged with the gear 5. The gear 5 is engaged with the gears 12 on the outer side of the rotating ring 11. When the motor 4 is started, the output shaft of the motor 4 drives the gear 5 to rotate. Since the gear 5 is engaged with the gears 12, the rotating ring 11 is driven to rotate around its axis in the end recess 13, providing power source for the subsequent scattering assembly to work.

[0033] Scattering assembly

[0034] The scattering assembly comprises a transverse connecting rod 8, a rotating rod 9 and a plurality of scattering leaves 10. The transverse connecting rod 8 is transversely mounted on the inner side of a rotating ring 11, the bottom of which is vertically mounted with the rotating rod 9, the outer wall surface of which is randomly mounted with a plurality of scattering leaves 10, and the rotating rod 9 extends to the inside of the bottom discharge pipe 6. When the rotating ring 11 rotates under the drive of the motor assembly, it will drive the transverse connecting rod 8 to rotate synchronously, and then make the rotating rod 9 rotate in the bottom discharge pipe 6. At this time, the material continuously falls into the bottom discharge pipe 6, and the rotating scattering leaves 10 will scatter the material, effectively preventing the powder from being blocked or accumulated in the bottom discharge pipe 6, and ensuring that the material can smoothly pass through the bottom discharge pipe 6 into the tank.

[0035] Bottom discharge pipe part

[0036] The bottom discharge pipe 6 is the final channel for the material to enter the tank, and the lower end is fixedly mounted with a flared block 7. The flared block 7 is flared, and when the material is input, the flared block 7 is pressed by hand at the material inlet position of the tank. It can play a blocking role to prevent the powder from scattering when injecting the material inlet of the tank, so that the material can be more accurately entered into the tank, reducing the waste of the material and the pollution of the surrounding environment

[0037] Working principle: Connect the connecting flange 2 to the material storage pipe outlet pipe, align the position of the bottom discharge pipe 6 with the material inlet position of the tank, press the flared block 7 with your hand at the material inlet position of the tank, then open the material storage pipe, the material falls down, the motor 4 is started, the gear 5 is rotated, the meshing drives the rotating ring 11 to rotate, and the rotating rod 9 is rotated. When the material continuously falls into the bottom discharge pipe 6, the scattering leaves 10 will scatter the material.

[0038] Although the embodiments of the present application have been shown and described, it can be understood by those skilled in the art that various changes, modifications, replacements and modifications can be made to these embodiments without departing from the principles and spirits of the present application, and the scope of the present application is defined by the appended claims and their equivalents.

Claims

1. A drum infeed apparatus characterized by, The utility model provides a kind of bottom discharge pipe (6) for the connecting pipe (1) for the interface material storage tank and the material tank feeding, the connecting pipe (1) is fixedly installed with connection flange (2) at the position corresponding material storage pipe outlet pipe, the other end of connecting pipe (1) is provided with rotating structure, bottom discharge pipe (6) is provided on the side away from connecting pipe (1) of rotating structure, the inside of rotating structure is provided with scattering component, and scattering component extends to the inside of bottom discharge pipe (6).

2. A vessel feed arrangement according to claim 1, characterised in that: The rotating structure includes motor assembly, rotating ring (11) and gear teeth (12), a plurality of gear teeth (12) are equidistantly installed on the outside of rotating ring (11), and the end of connecting pipe (1) and bottom discharge pipe (6) is provided with end recess (13) corresponding to one side end of rotating ring (11). The end of rotating ring (11) is rotatably clamped in the inside of end recess (13).

3. A vessel feed arrangement according to claim 2, characterised in that: The inside wall of end recess (13) is provided with annular inner wall groove (14), and the end of rotating ring (11) is integrally formed with annular protrusion (15) corresponding to the position of annular inner wall groove (14). The annular protrusion (15) is rotatably clamped with annular inner wall groove (14).

4. A vessel feed arrangement according to claim 2, characterised in that: The motor assembly includes mounting bracket (3), motor (4) and gear (5), and the side of connecting pipe (1) is fixedly installed with mounting bracket (3). The bottom of mounting bracket (3) is fixedly installed with motor (4), and the output shaft of motor (4) is fixedly installed with gear (5). The gear (5) is engaged with gear teeth (12).

5. A vessel feed arrangement according to claim 2, wherein: The scattering component includes transverse connecting rod (8), rotating rod (9) and a plurality of scattering leaves (10). The inside of rotating ring (11) is transversely installed with transverse connecting rod (8). The bottom of transverse connecting rod (8) is vertically installed with rotating rod (9). The outer side wall surface of rotating rod (9) is disorderly installed with a plurality of scattering leaves (10), and rotating rod (9) extends to the inside of bottom discharge pipe (6).

6. A vessel feed arrangement according to claim 1, characterized in that: The lower end of bottom discharge pipe (6) is fixedly installed with flared stop block (7), and the flared stop block (7) is flared.