Vibrating disc capable of discharging stably

By combining buffering and vibration mechanisms, the problems of intense vibration energy and limited amplitude adjustment range of traditional vibratory feeders are solved, thereby improving the stability of material output and the degree of automation, making it suitable for high-precision material conveying.

CN223851429UActive Publication Date: 2026-01-30SHENZHEN AOKE LAISI AUTOMATION EQUIP CO LTD
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Patent Information

Application Number
CN202520610277.X
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-04-02
Publication Date
2026-01-30
Estimated Expiration
2035-04-02

AI Technical Summary

Technical Problem

Traditional vibratory feeders suffer from intense vibration energy due to their rigid connection structure, which can lead to equipment resonance, high noise, and rapid mechanical wear. They also have limited range of vibration amplitude and frequency adjustment, making it difficult to adapt to the conveying needs of different materials. Furthermore, they require additional sorting equipment, which affects production efficiency and automation smoothness.

Method used

The design combines a buffer mechanism and a vibration mechanism. The buffer mechanism absorbs vibration energy through a buffer support plate and a buffer plate, while the vibration mechanism achieves controllable vibration through the linkage of pulleys, belts, motors, and rotating shafts. An integrated roller feeder and sorter enables automatic sorting and directional conveying of materials.

Benefits of technology

It reduces equipment noise and vibration, extends service life, improves the continuity and stability of material output, adapts to the conveying needs of different materials, and improves the automation level and yield of the production line.

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Abstract

The utility model relates to the field of vibration discs, and discloses a vibration disc capable of discharging stably, which comprises a vibration base I and a classifier base, the vibration base I is provided with a buffer mechanism and a vibration mechanism, and the classifier base is provided with a roller feeding classifier. Vibration energy is effectively absorbed and noise and vibration are reduced through rotating connection, the vibration mechanism is linked through a belt wheel, a belt, a motor and a rotating shaft and is matched with a limiting column, a spring and a roller to form a vibration system, the periodic contact of a rotating shaft protruding block and the roller is combined with the reset function of the spring, the vibration amplitude and frequency are flexibly adjusted, and energy consumption is reduced. According to the integrated roller feeding sorter, automatic sorting and conveying are achieved through the sliding rail, the separating structure and the sorting track, the sorter is flush with the vibration base to ensure smooth transition of materials, deviation and collision are prevented through the limiting plate and the rubber pad, and the conveying stability, the automation degree and the yield are remarkably improved.
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Description

TECHNICAL FIELD

[0001] The utility model relates to the field of vibration disc, concretely is a vibration disc with stable discharge. BACKGROUND

[0002] The vibration disc is a feeding device widely used in the automatic production line, and is mainly used for orderly arranging and directional conveying unordered materials (such as parts, electronic components and the like) to the designated station, the vibration disc with stable discharge refers to the continuity and uniformity of material flow during conveying, avoiding the problems such as material blockage, accumulation or splashing, in the precision manufacturing, electronic assembly, pharmaceutical packaging and the like, stable discharge is very important - any unstable conveying may lead to production interruption, decreased yield, and even damage to precision parts.

[0003] The traditional vibration disc usually adopts a rigid connection structure, and the vibration motor directly drives the material disc, so that the vibration energy transmission is intense, which may easily cause equipment resonance, not only generates large noise, but also accelerates mechanical wear and shortens the service life, in addition, the vibration amplitude and frequency adjustment range of the traditional design is limited, and it is difficult to adapt to the conveying requirements of different materials, so that part of the materials may splash due to excessive vibration, or accumulate due to insufficient vibration, in the sorting link, the traditional vibration disc often needs to be additionally configured with a sorting device, not only occupies space, but also increases the risk of material blockage in the material transfer process, and affects the smoothness of automatic production, these problems not only reduce the production efficiency, but also increase the maintenance cost, especially in the conveying scene of high-precision materials, which is more prominent, therefore, the utility model provides a vibration disc with stable discharge. UTILITY MODEL CONTENT

[0004] TECHNICAL PROBLEM

[0005] In view of the defects in the prior art, the utility model provides a vibration disc with stable discharge, which solves the above problems.

[0006] (Two) Technical Scheme

[0007] In order to achieve the above purpose, the utility model provides the following technical scheme: a vibration disc with stable discharge, comprising a vibration base one and a sorter base, the sorter base is fixedly installed on the side of the vibration base one, support legs are fixedly installed at the bottom surface of the four corners of the sorter base, and the support legs on the sorter base and the bottom surface of the vibration base one are flush, a buffer mechanism is arranged on the vibration base one, a vibration mechanism is arranged on the buffer mechanism, and a roller feeding and sorting device is arranged on the sorter base.

[0008] Preferably, the buffer mechanism comprises buffer support plates, buffer plates, vibration bases two, the upper surface of the vibration base one is symmetrically fixed with buffer support plates near the two side shaft edges, the buffer support plates are rotatably connected with buffer plates, the bottom surface of the vibration base two is symmetrically fixed with another set of buffer support plates near the two side shaft edges, and the other end of the buffer plates is rotatably connected with the buffer support plates fixed on the vibration base two.

[0009] Preferably, the vibration mechanism comprises pulleys, belts, motors, rotating shafts, the upper surface of the vibration base two is symmetrically fixed with two vertical plates deviating from the middle, the two vertical plates are both provided with rotating holes, and the two vertical plates are both rotatably connected with pulleys, the two pulleys are transmissionally connected with belts, the back surface of one of the vertical plates on the vibration base two is rotatably connected with a rotating shaft, the rotating shaft is coaxially fixed with one of the pulleys, the outer circular surface of the rotating shaft is circumferentially provided with a plurality of protrusions, the back surface of the other vertical plate on the vibration base two is fixed with a motor, and the output shaft of the motor is fixed with the other pulley.

[0010] Preferably, the vibration mechanism further comprises limiting columns, support connecting plates, springs and rollers, the upper surface of the vibration base two is fixed with four limiting columns corresponding to the rotating shaft, the upper surface of the vibration base two is fixed with springs corresponding to the middle of two adjacent limiting columns, the four corners of the support connecting plate are provided with connecting holes, the connecting holes of the support connecting plate are coaxially slidably connected with the limiting columns, the other end of the spring is fixed with the bottom surface of the support connecting plate, the bottom surface of the support connecting plate is fixed with a connecting seat in the middle, the connecting seat of the support connecting plate is coaxially rotatably connected with a roller, and the roller is tangent to and rotatably connected with the rotating shaft.

[0011] Preferably, the upper surface of the support connecting plate is fixed with a vibrating discharge disc, and the inner middle of the vibrating discharge disc is fixed with a rubber pad.

[0012] Preferably, the roller feeding separator comprises sliding rails, product separation structures, product sorting tracks and a feeding machine shell, the upper surface of the separator base is fixed with the feeding machine shell near one side shaft edge, the feeding machine shell is rotatably provided with a motor-driven feeding structure, the upper surface of the separator base is fixed with a support corresponding to the front of the feeding machine shell, the support is fixed with a product sorting track, one end of the product sorting track is located in the feeding machine shell, the other end of the product sorting track on the support of the separator base is fixed with a product separation structure, the product separation structure is fixed with a sliding rail at the outlet end, the two sides of the sliding rail are symmetrically fixed with limiting plates, and the outlet end of the sliding rail is located above the vibrating discharge disc.

[0013] (Three) beneficial effects

[0014] Compared with the prior art, the utility model provides a vibrating disc with stable discharge has the following beneficial effects:

[0015] 1、 this vibrating disc with stable discharge adopts buffer mechanism, is two by buffer support plate, buffer plate and vibration base, realizes multistage buffer through rotation connection, when vibration mechanism works, buffer plate can effectively absorb and disperse vibration energy, reduces direct impact to support connecting plate, compared with traditional design, this structure not only greatly reduces the noise and vibration of equipment operation time, prolongs the service life of key components, in addition, the synergies of buffer mechanism and vibration base ensure the stable operation of vibrating discharge tray, thereby significantly improve the continuity and stability of discharge, especially suitable for high-precision material conveying scene sensitive to vibration.

[0016] 2、 this vibrating disc with stable discharge, vibration mechanism passes through the combination of pulley, belt, motor and rotating shaft, cooperates with the linkage of limiting column, spring and roller, realizes efficient and controllable vibration output, traditional vibrating disc adopts single motor drive, and the vibration amplitude and frequency adjustment range is limited, and in the utility model, the rolling contact of the protrusion on the outer circumference of the rotating shaft and the roller can produce periodic vibration, combined with the elastic reset function of the spring, the movement of the vibrating discharge tray is more uniform and adjustable, this design not only reduces the motor load and energy consumption, but also can flexibly adapt to the conveying requirements of different materials by adjusting the number of protrusions or spring stiffness.

[0017] 3、 this vibrating disc with stable discharge, integrates the roller feeding separator, realizes automatic sorting and directional conveying of materials through the cooperation of slide rail, product separation structure and sorting track, the flush design of the separator base and the vibration base ensures the seamless transition of the materials to the vibrating discharge tray, and the limiting plate at the outlet end of the slide rail further prevents the materials from deviating, the addition of rubber pads reduces the damage of material collision, this integrated design not only saves space, but also avoids manual intervention in the traditional sorting process, significantly improves the automation degree and yield of the production line, especially suitable for industries such as electronic components that require high-precision sorting. BRIEF DESCRIPTION OF DRAWINGS

[0018] Figure 1 It is the structure schematic diagram of the utility model;

[0019] Figure 2 It is the vibrating mechanism schematic diagram of the utility model;

[0020] Figure 3 It is the vibrating mechanism cross section schematic diagram of the utility model;

[0021] Figure 4 It is the roller feeding separator schematic diagram of the utility model;

[0022] Figure 5 It is a cross section schematic view of the drum feeding and sorting device of the utility model.

[0023] In the figure: 1, vibration base one; 2, buffer support plate; 3, buffer plate; 4, vibration base two; 5, pulley; 6, belt; 7, slide rail; 8, motor; 9, limit column; 10, support connecting plate; 11, vibration discharge tray; 12, spring; 13, rotating shaft; 14, sorter base; 15, product separation structure; 16, product sorting track; 17, feeding machine shell; 18, roller; 19, rubber pad. DETAILED DESCRIPTION

[0024] 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. Obviously, the described embodiments are only part of the embodiments of the utility model, not all the embodiments. Based on the embodiments in the utility model, all other embodiments obtained by those skilled in the art without creative labor fall within the protection scope of the utility model.

[0025] Please refer to Figures 1-5 A vibration disc with stable discharge, comprising vibration base one 1, sorter base 14, the vibration base one 1 is fixedly installed with the sorter base 14 on the side, the support leg is fixedly installed at the bottom surface four corners of the sorter base 14, and the support leg on the sorter base 14 is flush with the bottom surface of the vibration base one 1, the buffer mechanism is arranged on the vibration base one 1, the vibration mechanism is arranged on the buffer mechanism, and the drum feeding and sorting device is arranged on the sorter base 14.

[0026] Further, the buffer mechanism comprises buffer support plate 2, buffer plate 3 and vibration base two 4, the buffer support plate 2 is fixedly installed on the upper surface of the vibration base one 1 near the two side shaft edges symmetrically, the buffer plate 3 is rotatably connected to the buffer support plate 2, another set of buffer support plates 2 are fixedly installed on the bottom surface of the vibration base two 4 near the two side shaft edges symmetrically, and the other end of the buffer plate 3 is rotatably connected to the buffer support plate 2 installed on the vibration base two 4.

[0027] Further, the vibrating mechanism comprises the pulley 5, the belt 6, the motor 8, the rotating shaft 13, two vertical plates are symmetrically and fixedly installed on the upper surface of the vibrating base two 4, the rotating holes are formed in the two vertical plates, the pulley 5 is rotatably connected to the two vertical plates, the belt 6 is in transmission connection between the two pulleys 5, the rotating shaft 13 is rotatably connected to the back of one of the vertical plates on the vibrating base two 4, the rotating shaft 13 is coaxially and fixedly connected with one of the pulleys 5, a plurality of groups of protrusions are circumferentially arranged on the outer arc surface of the rotating shaft 13, the motor 8 is fixedly installed on the back of the other vertical plate on the vibrating base two 4, the output shaft of the motor 8 is fixedly connected with the other pulley 5, and the motor 8 is fixed to the back of the vertical plate on the vibrating base two 4, which not only guarantees the stability of the motor operation, but also saves space, the pulley 5 is installed in the rotating hole of the vertical plate on the upper surface of the vibrating base two 4, so that the pulley rotates stably and provides reliable support for the transmission of the belt 6, the power transmission of the motor 8 is stable and efficient to the rotating shaft 13 through the belt 6, so as to drive the whole vibrating mechanism to operate.

[0028] Further, the vibrating mechanism further comprises the limiting column 9, the support connecting plate 10, the spring 12 and the roller 18, four limiting columns 9 are fixedly installed on the upper surface of the vibrating base two 4 corresponding to the periphery of the rotating shaft 13, the spring 12 is fixedly installed on the upper surface of the vibrating base two 4 corresponding to the middle of two adjacent limiting columns 9, the connecting holes are formed at the four corners of the support connecting plate 10, the connecting holes on the support connecting plate 10 are coaxially and slidably connected with the limiting columns 9, the other end of the spring 12 is fixedly connected with the bottom surface of the support connecting plate 10, the connecting seat is fixedly installed on the middle of the bottom surface of the support connecting plate 10, the roller 18 is coaxially and rotatably connected in the connecting seat on the support connecting plate 10, and the roller 18 is tangent to and rotatably connected with the rotating shaft 13, the limiting columns 9 are fixedly installed on the upper surface of the vibrating base two 4 around the rotating shaft 13, and are coaxially and slidably connected with the connecting holes at the four corners of the support connecting plate 10, so as to strictly limit the vibration direction of the support connecting plate 10 and ensure the accuracy and stability of the vibration, meanwhile, the roller 18 installed on the middle of the bottom surface of the support connecting plate 10 is responsible for converting the rotation of the rotating shaft 13 into the rolling of itself, and cleverly pushes the support connecting plate 10 to move up and down by cooperating with the protrusions of the rotating shaft 13, so as to drive the vibrating discharge tray 11 to vibrate.

[0029] Further, the vibrating mechanism further comprises the limiting column 9, the support connecting plate 10, the spring 12 and the roller 18, four limiting columns 9 are fixedly installed on the upper surface of the vibrating base two 4 corresponding to the periphery of the rotating shaft 13, the spring 12 is fixedly installed on the upper surface of the vibrating base two 4 corresponding to the middle of two adjacent limiting columns 9, the connecting holes are formed at the four corners of the support connecting plate 10, the connecting holes on the support connecting plate 10 are coaxially and slidably connected with the limiting columns 9, the other end of the spring 12 is fixedly connected with the bottom surface of the support connecting plate 10, the connecting seat is fixedly installed on the middle of the bottom surface of the support connecting plate 10, the roller 18 is coaxially and rotatably connected in the connecting seat on the support connecting plate 10, and the roller 18 is tangent to and rotatably connected with the rotating shaft 13, the limiting columns 9 are fixedly installed on the upper surface of the vibrating base two 4 around the rotating shaft 13, and are coaxially and slidably connected with the connecting holes at the four corners of the support connecting plate 10, so as to strictly limit the vibration direction of the support connecting plate 10 and ensure the accuracy and stability of the vibration, meanwhile, the roller 18 installed on the middle of the bottom surface of the support connecting plate 10 is responsible for converting the rotation of the rotating shaft 13 into the rolling of itself, and cleverly pushes the support connecting plate 10 to move up and down by cooperating with the protrusions of the rotating shaft 13, so as to drive the vibrating discharge tray 11 to vibrate.

[0030] Further, the roller feeding and sorting device comprises a slide rail 7, a product separation structure 15, a product sorting track 16, and a feeding machine shell 17. The upper surface of the sorting device base 14 is fixedly installed with the feeding machine shell 17 near one side shaft edge. The feeding machine shell 17 is rotatably installed with a motor-driven feeding structure. The upper surface of the sorting device base 14 is fixedly installed with a support corresponding to the front of the feeding machine shell 17. The support is fixedly installed with the product sorting track 16. One end of the product sorting track 16 is located in the interior of the feeding machine shell 17. The support on the sorting device base 14 is fixedly installed with the product separation structure 15 corresponding to the other end of the product sorting track 16. The product separation structure 15 is fixedly installed with the slide rail 7 at the outlet end. Limiting plates are symmetrically fixedly installed on both sides of the slide rail 7. The outlet end of the slide rail 7 is located above the vibrating discharge tray 11.

[0031] Structural description:

[0032] Vibrating base one 1: The vibrating base one is the basic support structure of the whole device, is fixed to the bottom, is connected with the sorting device base 14 on one side, provides a stable installation plane for the buffer mechanism and subsequent components, bears the acting force from each component, ensures the overall stability of the vibrating tray during operation, maintains the stability of the equipment, and is the root of the normal work of the whole vibrating tray;

[0033] Buffer support plate 2: symmetrically distributed on the upper surface of the vibrating base one 1 and the bottom surface of the vibrating base two 4, mainly functions to connect the buffer plate 3, so that the buffer plate 3 can rotate flexibly relative to the buffer support plate 2, assists the buffer plate 3 in dispersing and buffering vibration energy in the vibration transmission process, and is a key connecting component for realizing the buffering function of the buffer mechanism;

[0034] Buffer plate 3: rotatably connected with the buffer support plates 2 on the vibrating base one 1 and the vibrating base two 4 at both ends, effectively absorbs and disperses vibration energy by rotating when the vibrating mechanism works, greatly reduces the direct impact of vibration on the support connecting plate 10, and further ensures the stable operation of the vibrating discharge tray 11, which plays an important role in the discharge stability;

[0035] Vibrating base two 4: located above the buffer mechanism, is an installation carrier for many components of the vibrating mechanism, receives the buffering effect transmitted by the buffer plate 3, and provides installation positions for the vibrating mechanism components such as the belt pulley 5 and the motor 8, plays a key transitional role in the vibration transmission and buffering process;

[0036] Belt pulley 5: installed in the rotating hole of the vertical plate on the upper surface of the vibrating base two 4, two belt pulleys 5 are drivingly connected by the belt 6, rotates and drives the belt 6 to rotate under the driving of the motor 8, is a core component of power transmission of the vibrating mechanism, stably transmits the power of the motor 8 to the rotating shaft 13, and promotes the operation of the whole vibrating mechanism;

[0037] Belt 6: connecting two pulleys 5, synchronous movement when the pulley 5 rotates, reliable transmission of power, through the transmission of the belt 6, ensure that the two pulleys 5 rotate synchronously, so that the shaft 13 can obtain the power of the motor 8 stably, provide stable vibration source for the vibrating discharge tray 11;

[0038] Slide rail 7: installed at the outlet end of the product separation structure 15, two sides are symmetrically provided with limiting plates, the main function is to convey the material screened by the product separation structure to the upper side of the vibrating discharge tray 11, the limiting plate can effectively prevent the material from deviating during the conveying process, ensure that the material falls into the vibrating discharge tray 11 accurately, it is the key channel of the material conveying link;

[0039] Motor 8: fixedly installed on the back of a vertical plate of the vibrating base 2, the output shaft is fixedly connected with one of the pulleys 5, which serves as the power source of the vibrating mechanism, the motor 8 provides power for the entire vibrating system, drives the pulley 5 to rotate, and then makes the vibrating mechanism run, drives the vibrating discharge tray 11 to work;

[0040] Limiting column 9: fixedly installed around the shaft 13 on the upper surface of the vibrating base 2, coaxially slidingly connected with the connecting holes at the four corners of the support connecting plate 10, accurately limits the movement of the support connecting plate 10, makes it vibrate up and down within the specified range, ensures the stability of the vibrating direction of the vibrating discharge tray 11, and improves the stability of the discharge;

[0041] Support connecting plate 10: slidingly connected with the limiting column 9 at the four corners, connected with the spring 12 at the bottom surface, and installed with the roller 18 in the middle of the bottom surface, which bears the vibrating discharge tray 11, under the cooperation of the spring 12 and the roller 18, converts the rotation of the shaft 13 into up and down vibration, drives the vibrating discharge tray 11 to vibrate, is the key component of vibrating transmission to the discharge tray;

[0042] Vibrating discharge tray 11: installed on the upper surface of the support connecting plate 10, is the carrier of material output, the rubber pad 19 installed in the middle of the inside can reduce the collision damage of the material during the vibration process, and the material is orderly sent out through the vibration, which is the core component of the vibrating disc discharge function;

[0043] Spring 12: installed in the middle of two adjacent limiting columns 9 on the vibrating base 2, and fixedly connected with the bottom surface of the support connecting plate 10, during the vibration process, the spring 12 plays a role of elastic return, when the support connecting plate 10 moves upward due to the action of the protrusion of the shaft 13 and the roller 18, the spring 12 pulls it back, makes the vibration of the vibrating discharge tray 11 more uniform and stable, and enhances the continuity of the discharge;

[0044] Rotating shaft 13: rotatingly connected to the vertical plate of the vibration base 2, coaxially fixed with one of the pulleys 5, with a circumferential array of protrusions on the outer arc surface, rotating under the drive of the pulley 5, and cooperating with the roller 18 to make the support connecting plate 10 vibrate up and down, which is the key rotating component of the vibration mechanism;

[0045] Sorter base 14: the bottom surface of the four corners is installed with support legs, which are flush with the bottom surface of the vibration base 1 and are connected to each other, and it provides a stable installation foundation for the drum feeding sorter, ensures the stability of the feeding sorter during operation, and keeps the material running on a stable track during feeding, sorting and conveying;

[0046] Product separation structure 15: installed on the bracket of the sorter base 14, located at the other end of the product sorting track 16, can screen the material, separate the qualified material, and convey it to the vibration discharge tray 11 through the sliding rail 7 at the outlet end, realize automatic sorting of the material, and effectively improve the product quality;

[0047] Product sorting track 16: one end is located inside the feeding machine housing 17, and the other end is connected to the product separation structure 15, which is a channel for conveying materials between the feeding machine housing 17 and the product separation structure 15. The material moves along the track under the drive of the feeding machine, and is screened by the product separation structure to realize directional conveying of the material;

[0048] Feeding machine housing 17: installed on one side of the upper surface of the sorter base 14, with a motor-driven feeding structure inside, mainly to protect the internal feeding structure and provide initial conveying power for the material, conveying the material to the product sorting track 16, which is an important part of the entire feeding link;

[0049] Roller 18: installed in the connecting seat on the bottom surface of the support connecting plate 10, tangent to and rolling with the rotating shaft 13, rolling with the rotating shaft 13, and making the support connecting plate 10 move up and down under the action of the rotating shaft protrusion, thereby converting the rotation of the rotating shaft 13 into the vibration of the vibration discharge tray 11, which is a key connecting component in the vibration transmission process;

[0050] Rubber pad 19: installed in the middle of the vibration discharge tray 11, which can buffer the impact force between the material and the vibration discharge tray 11 during the vibration of the material, reduce the damage of the material caused by collision, ensure the integrity of the material during the discharging process, and improve the product quality.

[0051] Working principle: start the motor 8, the output shaft of the motor 8 drives the belt pulley 5 fixedly connected with it to rotate, which drives another belt pulley 5 to rotate synchronously through the belt 6, so that the rotating shaft 13 fixedly connected with the belt pulley 5 coaxially starts to rotate. At this time, the electric energy of the motor 8 is converted into mechanical energy to provide power source for the whole vibration system. The convex blocks on the outer circular arc surface of the rotating shaft 13 are tangent to the rollers 18 and push the rollers 18 during rotation. Since the rollers 18 are installed in the connecting seat on the bottom surface of the support connecting plate 10 and are in rolling connection with the rotating shaft 13, the support connecting plate 10 will move upward under the pushing of the convex blocks, and the spring 12 will be stretched at the same time. When the convex blocks move away from the rollers 18, the elastic restoring force of the spring 12 makes the support connecting plate 10 move downward, and so on. The support connecting plate 10 reciprocates up and down along the limiting column 9 under the limiting action of the limiting column 9. This vibration is transmitted to the vibrating discharge tray 11 installed above the support connecting plate 10, so that the vibrating discharge tray 11 produces stable vibration. In the process of vibration transmission, the buffer support plate 2 on the vibrating base 1 is in rotary connection with the buffer plate 3, and the other end of the buffer plate 3 is in rotary connection with the buffer support plate 2 on the vibrating base 2 4. When the vibrating mechanism works, the buffer plate 3 can rotate flexibly to absorb and disperse vibration energy, reducing the direct impact on the support connecting plate 10. This not only reduces the noise and vibration during equipment operation, but also prolongs the service life of the key components, ensuring the stable operation of the vibrating discharge tray 11, so that the materials can be uniformly distributed in the vibrating discharge tray 11, realizing stable discharge, avoiding problems such as jamming, accumulation or splashing, and being especially suitable for high-precision material conveying scenes sensitive to vibration.

[0052] The motor in the feeding machine shell 17 drives the feeding structure to start, conveying the disordered materials to the product sorting track 16. The materials move along the product sorting track 16 to the product separation structure 15, which screens the materials and separates the qualified materials. The materials are conveyed out through the outlet end slide rail 7. The limiting plates symmetrically installed on both sides of the slide rail 7 prevent the materials from deviating during conveying, ensuring that the materials accurately fall into the vibrating discharge tray 11 below. This integrated drum feeding and sorting device realizes automatic sorting and directional conveying of materials, avoiding manual intervention in the traditional sorting process. The rubber pad 19 installed in the middle of the vibrating discharge tray 11 plays a buffering role during material vibration, reducing the impact force between the materials and the vibrating discharge tray 11, avoiding damage to the materials due to collision, ensuring the integrity of the materials during discharge, and further improving product quality.

[0053] Although the embodiments of the present application have been shown and described, it is to be understood that various changes, modifications, substitutions and alterations can be made to these embodiments without departing from the principles and spirit of the present application, the scope of which is defined by the appended claims and their equivalents.

Claims

1. A stable discharge vibrating disc, comprising a vibrating base one (1), a separator base (14), the separator base (14) is fixedly installed beside the vibrating base one (1), support legs are fixedly installed at the bottom surface of four corners of the separator base (14), and the support legs on the separator base (14) and the bottom surface of the vibrating base one (1) are flush, characterized in that: The buffer mechanism is provided on the vibration base one (1), the vibration mechanism is provided on the buffer mechanism, and the roller feeding sorter is provided on the sorter base (14). ​ 2. A dishing stable vibratory bowl in accordance with claim 1, wherein: The buffer mechanism comprises buffer support plates (2), buffer plates (3) and a vibration base two (4), the buffer support plates (2) are symmetrically and fixedly installed on the upper surface of the vibration base one (1) near the two side shaft edges, the buffer plates (3) are rotatably connected to the buffer support plates (2), another set of buffer support plates (2) are symmetrically and fixedly installed on the bottom surface of the vibration base two (4) near the two side shaft edges, and the other end of the buffer plate (3) is rotatably connected to the buffer support plate (2) installed on the vibration base two (4).

3. A dishing stable vibratory bowl in accordance with claim 2, wherein: The vibration mechanism comprises pulleys (5), belts (6), motors (8) and rotating shafts (13), two vertical plates are symmetrically and fixedly installed on the upper surface of the vibration base two (4) away from the middle, rotating holes are formed in the two vertical plates, the pulleys (5) are rotatably connected to the two vertical plates, the belts (6) are transmissionally connected between the two pulleys (5), the rotating shaft (13) is rotatably connected to the back surface of one of the vertical plates on the vibration base two (4), the rotating shaft (13) is coaxially and fixedly connected with one of the pulleys (5), a plurality of groups of protrusions are arranged in a circumferential array on the outer arc surface of the rotating shaft (13), the motor (8) is fixedly installed on the back surface of the other vertical plate on the vibration base two (4), and the output shaft of the motor (8) is fixedly connected with the other pulley (5).

4. A dishing stable vibratory bowl in accordance with claim 3, wherein: The vibration mechanism further comprises limiting columns (9), support connecting plates (10), springs (12) and rollers (18), four limiting columns (9) are fixedly installed on the upper surface of the vibration base two (4) corresponding to the rotating shaft (13), the springs (12) are fixedly installed on the upper surface of the vibration base two (4) corresponding to the middle of two adjacent limiting columns (9), the connecting holes are formed in the four corners of the support connecting plate (10), the connecting holes on the support connecting plate (10) are coaxially and slidingly connected with the limiting columns (9), the other end of the spring (12) is fixedly connected with the bottom surface of the support connecting plate (10), the connecting seat is fixedly installed on the bottom surface of the support connecting plate (10), the roller (18) is coaxially and rotatably connected to the connecting seat on the support connecting plate (10), and the roller (18) is tangent to and rotatably connected with the rotating shaft (13).

5. A dishing stable vibratory bowl in accordance with claim 4 wherein: The vibration discharge disc (11) is fixedly installed on the upper surface of the support connecting plate (10), and the rubber pad (19) is fixedly installed in the middle of the vibration discharge disc (11).

6. A dishing stable vibratory bowl in accordance with claim 5 wherein: The roller feeding separator comprises a slide rail (7), a product separation structure (15), a product sorting track (16), a feeding machine shell (17), the upper surface of the separator base (14) is fixedly installed with the feeding machine shell (17) near the side shaft edge, the feeding machine shell (17) is rotatably installed with a motor-driven feeding structure, the upper surface of the separator base (14) is fixedly installed with a support corresponding to the front of the feeding machine shell (17), the support is fixedly installed with the product sorting track (16), one end of the product sorting track (16) is located in the feeding machine shell (17), the other end of the product sorting track (16) is fixedly installed with the product separation structure (15) on the support of the separator base (14), the outlet end of the product separation structure (15) is fixedly installed with the slide rail (7), the two sides of the slide rail (7) are symmetrically fixedly installed with limit plates, and the outlet end of the slide rail (7) is located above the vibrating discharge disc (11).

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