Vibration shunting feeding device

By setting V-shaped diverting blocks and figure-eight diverting plates in the vibrating feeder, combined with limiting plates, the problems of poor diversion effect and material agglomeration are solved, and uniform material conveying and stable operation of subsequent processes are achieved.

CN223632379UActive Publication Date: 2025-12-05JIN GUANHONG (TAIAN) BIOTECHNOLOGY CO LTD
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Patent Information

Application Number
CN202423168960.7
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-12-23
Publication Date
2025-12-05
Estimated Expiration
2034-12-23

AI Technical Summary

Technical Problem

Existing vibrating feeders have poor diversion effects, and materials are prone to caking and accumulating, affecting subsequent processing steps.

Method used

A V-shaped diverter block and a figure-eight diverter plate are set inside the vibratory feeder. Combined with a limiting plate, the material is diverted and dispersed multiple times by the vibration of the vibrator to prevent accumulation and agglomeration.

Benefits of technology

It effectively avoids material accumulation and clumping, ensures the normal operation of subsequent processes, and improves the diversion effect and the uniformity of material conveying.

✦ Generated by Eureka AI based on patent content.

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Abstract

A vibration shunting feeding device comprises a supporting base, a vibrator and a vibration disc connected with the vibrator, an opening is formed in one side of the vibration disc, and a shunting assembly is further arranged in the vibration disc; the flow dividing assembly comprises a V-shaped flow dividing block arranged in the middle of the vibration disc, and an opening of the flow dividing block faces an opening of the vibration disc. The flow dividing assembly further comprises two strip-shaped flow dividing plates arranged on the two sides of the flow dividing block, and the two flow dividing plates are arranged in a splayed shape with openings facing the opening of the vibration disc. Materials in the vibration disc are linearly conveyed through the vibration effect of the vibrator, the flow dividing blocks scatter the stacked or caked materials, the scattered materials are preliminarily divided along the two sides of the flow dividing blocks, and in the subsequent continuous moving process, the flow dividing plates in the vibration disc further distribute and scatter the materials. The materials are scattered for multiple times, so that material accumulation and caking are avoided, and normal proceeding of subsequent procedures is guaranteed.
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Description

TECHNICAL FIELD

[0001] The utility model relates to material conveying technical field, concretely is a kind of vibration shunting feeding device. BACKGROUND

[0002] Vibration feeder refers to the block, granular material from the storage bin evenly, regularly, continuously to the material receiving device go to a kind of equipment.Patent No. The utility model discloses a kind of vibration feeding device, front sharp rear high shunting component is arranged in the middle position of the side close to vibrating disc material outlet, shunting component is set, to solve the problem that large particle or large block material is caked in vibrating disc, causes material blockage, but its shunting component is only arranged in the middle position of the side of vibrating disc material outlet, shunting range is small, effect is poor, and if material is accumulated too much too high, shunting component cannot function when, the material that is accumulated or caked will affect feeding effect, even affect subsequent processing procedure of material. UTILITY MODEL CONTENTS

[0003] To solve the technical problems of poor shunting effect of vibrating disc and easy caking and accumulation of material in the above background art, the utility model provides a kind of vibration shunting feeding device.

[0004] The utility model technical scheme is as follows:

[0005] A kind of vibration shunting feeding device, including support seat, vibrator and vibrating disc connected with vibrator, the side of the vibrating disc is equipped with opening, shunting component is further equipped in the vibrating disc;The shunting component includes V-shaped shunting block in the middle of vibrating disc, and the opening of the shunting block is towards the opening of vibrating disc setting;The shunting component further includes two strip-shaped shunting plates on the two sides of shunting block, and two the shunting plate is arranged in "eight" type with opening towards vibrating disc opening.

[0006] Material in vibrating disc is linearly conveyed by the vibration effect of vibrator, when material reaches shunting block position, its V-shaped sharp part first disperses the material that is accumulated or caked, and the material after dispersing is primarily shunted along the two sides of shunting block, in the subsequent continue to move process, vibrating disc is further shunted and dispersed to material by the shunting plate arranged in "eight" type, material is dispersed for many times, avoid material accumulation and caking, ensure the normal progress of subsequent procedure.

[0007] Further, the shunting block is arranged with multiple along the midline of vibrating disc feeding direction, enhances the shunting effect of shunting fast, simultaneously avoids that single shunting block cannot shunt material when being damaged.

[0008] Specifically, the flow distribution block comprises a strip-shaped platform with one end closed and the other end open, and the height of the closed end is greater than that of the open end. When the material moves towards the flow distribution block, the closed end of the flow distribution block scatters the material, breaking the accumulation and clumping of the material, and the different heights of the two ends of the strip-shaped platform ensure that the material moves along the strip-shaped platform to the lower open end.

[0009] To ensure the scattering effect of the flow distribution assembly on the material and increase the action range of the flow distribution block and the flow distribution plate on the material, at least one flow distribution block is located between two flow distribution plates, and at least one flow distribution block is located between two flow distribution plates close to the end away from the opening of the vibration disc, so that the material can continuously contact the flow distribution assembly during forward movement.

[0010] Preferably, the two flow distribution plates are symmetrically arranged with respect to the center line of the vibration disc in the feeding direction, so as to avoid the situation that the material in the vibration disc deviates to one side or the scattering effect is uneven.

[0011] As a preferred embodiment, a strip-shaped limiting plate is arranged above the opening of the vibration disc, and the two ends of the limiting plate are respectively connected to the two side walls opposite to each other. When the material in the vibration disc is placed too fast and too much, and the effect of the flow distribution block and the flow distribution plate is not obvious, the limiting plate at the opening can intercept the material accumulated too high, so as to avoid a large amount of material entering the subsequent process at once.

[0012] Further, the height of the limiting plate is not less than the depth of the vibration disc, so as to ensure the intercepting effect of the limiting plate on the material and avoid the situation that the normal material cannot pass through the opening due to the too low limiting plate.

[0013] Further preferably, the vibrator is arranged at least two in number perpendicular to the feeding direction of the vibration disc, so as to increase the uniformity of vibration during feeding and avoid the situation that the material in the middle of the vibration disc has a large vibration amplitude, while the material on both sides has a small vibration amplitude.

[0014] As a preferred embodiment, the flow distribution assembly further comprises a protruding strip arranged in the vibration disc, the protruding strip is perpendicular to the feeding direction of the vibration disc, and the two ends of the protruding strip are respectively connected to the two side walls opposite to each other. The protruding strip increases the friction force of the disc surface of the vibration disc, and reduces the phenomenon that the material sticks to the disc surface.

[0015] Through the above design, the utility model disculate the material in vibration disc through the vibration effect of vibrator and carry out linear transmission, when material reaches the position of the flow splitter, its closed end first carries out the scattering of material, and the material after scattering carries out the preliminary distribution along the two sides of the flow splitter, then the flow splitter of " eight " type arrangement in vibration disc carries out the further distribution and scattering of material, and the flow splitter between two flow splitters can scatter and distribute the material avoiding the flow splitter, finally, through the limiting plate of opening, can intercept the material of overhigh accumulation, avoid the instantaneous mass of material to enter the subsequent process, and the material is scattered for many times, avoids the accumulation and caking of material, guarantees the normal operation of subsequent process. BRIEF DESCRIPTION OF DRAWINGS

[0016] In the drawings:

[0017] Fig. 1 It is structure schematic diagram of vibration distribution feeding device in the embodiment;

[0018] Fig. 2 It is top view of vibration distribution feeding device in the embodiment;

[0019] Fig. 3 It is structure diagram of flow splitter in the embodiment;

[0020] The components represented by the reference numerals in the drawings are:

[0021] 1, support seat;2, vibrator;3, flow splitter assembly;31, flow splitter;32, flow splitter plate;33, limiting plate;34, vertical plate;35, protruding strip. DETAILED DESCRIPTION

[0022] Exemplary embodiments of the present disclosure will be described in greater detail below with reference to the accompanying drawings.

[0023] Embodiment

[0024] In combination Figs. 1 to 3 The embodiment provides a vibration distribution feeding device, which comprises a support seat 1, a vibrator 2 and a vibration disc connected with the vibrator 2.

[0025] Further preferably, the vibrator 2 is provided with at least two along the feeding direction perpendicular to the vibration disc, so as to increase the uniformity of vibration in the feeding process and avoid the situation that the vibration amplitude of the material in the middle of the vibration disc is large and the vibration amplitude of the material on both sides is small.

[0026] In the embodiment, one side of the vibration disc is provided with an opening, and the vibration disc is further provided with a flow splitter assembly 3.

[0027] As a preferred embodiment, the strip-shaped limiting plate 33 is arranged above the opening of the vibrating disc, and the two ends of the limiting plate 33 are connected with the opposite side walls of the vibrating disc. When the materials in the vibrating disc are placed too fast and too much, and the effect of the shunting assembly 3 is not obvious, the limiting plate 33 arranged at the opening can intercept the materials accumulated too high, so as to avoid that a large amount of materials enter the subsequent process at a time.

[0028] Further, the height of the limiting plate 33 is not less than the depth of the vibrating disc, so as to ensure the intercepting effect of the limiting plate 33 on the materials, and avoid that the normal materials cannot pass through the opening due to the limiting plate 33 arranged too low.

[0029] In the embodiment, the lower side of the limiting plate 33 is provided with a plurality of vertical plates 34 connected with the vibrating disc along the length direction of the limiting plate 33, and the vertical plates 34 are symmetrically arranged along the center line of the feeding direction of the vibrating disc. The vertical plates 34 can further shunt the materials passing through the opening, so as to further reduce the caking or accumulation phenomenon.

[0030] In order to increase the stability of the structure, the shunting assembly 3 is connected with the vibrating disc by welding, so as to avoid that the shunting assembly 3 deviates in the process of conveying materials, and affects the shunting effect.

[0031] In the embodiment, the shunting assembly 3 comprises a V-shaped shunting block 31 arranged in the middle of the vibrating disc, and the opening of the shunting block 31 is arranged towards the opening of the vibrating disc.

[0032] Further, a plurality of shunting blocks 31 are arranged along the center line of the feeding direction of the vibrating disc, so as to enhance the shunting effect of the shunting block 31, and avoid that the shunting block 31 cannot shunt the materials when damaged.

[0033] Specifically, in combination with Fig. 3 , the shunting block 31 comprises a strip-shaped table with one end closed and the other end open, and the height of the closed end of the two strip-shaped tables is greater than the height of the open end. When the materials move towards the shunting block 31, the closed end of the shunting block 31 can scatter the materials, so as to destroy the accumulation and caking of the materials. Meanwhile, the different heights of the two ends of the strip-shaped table can ensure that the materials can move along the strip-shaped table to the lower open end.

[0034] In the embodiment, the shunting assembly 3 further comprises two strip-shaped shunting plates 32 arranged on both sides of the shunting block 31, and the two shunting plates 32 are arranged in an “eight” shape with the openings towards the opening of the vibrating disc.

[0035] Preferably, the two shunting plates 32 are symmetrically arranged along the center line of the feeding direction of the vibrating disc, so as to avoid that the materials in the vibrating disc deviate to one side or the scattering effect is uneven.

[0036] To ensure the scattering effect of the material by the shunt assembly 3, the shunt blocks 31 and the shunt plates 32 increase the range of action on the material, at least one shunt block 31 is located between two shunt plates 32, and at least one shunt block 31 is located between two shunt plates 32 close to the side away from the opening of the vibration disc, so that the material can continuously contact the shunt assembly 3 during forward movement.

[0037] Specifically, the height of the shunt plate 32 is greater than the height of the closed end of the shunt block 31, and less than the depth of the vibration disc, so that the material that cannot be scattered by the shunt block 31 can be further operated, and different heights of the shunt assembly 3 can be used for different intensities of material accumulation or caking, so that missing can be avoided.

[0038] As a preferred embodiment, the shunt assembly 3 further comprises a protruding strip 35 arranged in the vibration disc, the protruding strip 35 is perpendicular to the feeding direction of the vibration disc, and the two ends are respectively connected with the two side walls opposite to the vibration disc. The protruding strip 35 is located between the limiting plate 33 and the shunt plate 32, by arranging the protruding strip 35, the blocking effect on the material is increased to a certain extent, the material passing through the limiting plate 33 is prevented from being too much, and the friction force of the vibration disc surface is increased, and the phenomenon of material sticking to the disc surface is reduced.

[0039] The height of the protruding strip 35 is not greater than the height of the closed end of the shunt block, so as to avoid affecting the conveying effect of the material due to the protrusion being too high. The cross section of the protruding strip 35 is Λ-shaped, and the opening end is connected with the vibration disc, and the closed end is arranged upward, the inclined surfaces on both sides can ensure that the material passes smoothly, and the obstruction is reduced, and the upward pointed part can damage the caked material passing through.

[0040] The vibration shunt feeding device of the utility model, through the vibration of vibrator 2, the material in the vibration disc is linearly conveyed, when the material reaches the position of shunt block 31, the closed end of the shunt block 31 first scatters the material, the scattered material is preliminarily shunted along the two sides of the shunt block 31, then the shunt plate 32 arranged in the vibration disc in the shape of "eight" further shunts and scatters the material, the shunt block 31 located between the two shunt plates 32 can scatter and shunt the material avoiding the shunt plate 32, finally, the limiting plate 33 at the opening can intercept the material accumulated too high, avoid the material from entering the subsequent process in a large amount at a moment, the material is scattered for many times, avoid the material from accumulating and caking, ensure the normal operation of the subsequent process.

Claims

1. A vibrating diverter feeding device comprising a support seat (1), a vibrator (2) and a vibrating tray connected to the vibrator (2), one side of the vibrating tray being provided with an opening, characterized in that, The vibration disc is also provided with a shunting assembly (3); The shunting assembly (3) comprises a V-shaped shunting block (31) arranged in the middle of the vibration disc, and the opening of the shunting block (31) is arranged towards the opening of the vibration disc; The shunting assembly (3) further comprises two strip-shaped shunting plates (32) arranged on both sides of the shunting block (31), and the two shunting plates (32) are arranged in an "eight" shape with the openings facing the opening of the vibration disc.

2. A vibratory diverging feed apparatus according to claim 1, wherein A plurality of shunting blocks (31) are arranged along the center line of the vibration disc in the feeding direction.

3. A vibratory flow dividing feeder according to claim 2, wherein The shunting block (31) comprises a strip-shaped platform with one end closed and the other end open, and the height of the closed end of the two strip-shaped platforms is greater than the height of the open end.

4. A vibratory flow dividing feeder according to claim 2, wherein At least one shunting block (31) is located between the two shunting plates (32), and at least one shunting block (31) is located on the side of the two shunting plates (32) away from the opening of the vibration disc.

5. A vibratory flow dividing feeder according to claim 1 wherein, The two shunting plates (32) are symmetrically arranged relative to the center line of the vibration disc in the feeding direction.

6. A vibratory flow dividing feeder according to claim 1 wherein, A strip-shaped limiting plate (33) is arranged above the opening of the vibration disc, and the two ends of the limiting plate (33) are respectively connected with the two side walls of the vibration disc.

7. A vibratory flow dividing feeder according to claim 6, wherein The height of the limiting plate (33) is not less than the depth of the vibration disc.

8. A vibratory flow dividing feeder according to claim 1 wherein, The vibrator (2) is arranged at least two along the direction perpendicular to the feeding direction of the vibration disc.

9. A vibratory flow dividing feeder according to claim 1 wherein, The shunting assembly (3) further comprises a protruding strip (35) arranged in the vibration disc, and the protruding strip (35) is perpendicular to the feeding direction of the vibration disc, and the two ends of the protruding strip (35) are respectively connected with the two side walls of the vibration disc.

Citation Information

Patent Citations

  • Vibratory feeding device

    CN208022264U