Vibrating powder screening filter
By introducing components such as a support sliding ring, gear assembly, and brush rod into the vibrating screen powder filter, the problems of material blockage and low screening efficiency are solved, achieving efficient screening and stable operation, and improving the overall performance of the equipment.
Patent Information
- Application Number
- CN202520003953.7
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-01-02
- Publication Date
- 2026-01-02
- Estimated Expiration
- 2035-01-02
AI Technical Summary
Existing vibrating screen filter machines have a single screening method, and uneven material distribution easily clogs the screen holes, reducing screening accuracy and speed. Furthermore, they lack effective maintenance methods, resulting in a decrease in overall efficiency.
The system employs components such as a supporting sliding ring, gear assembly, brush rod, and damping spring. The brush rod moves regularly by a rotating motor-driven gear system, preventing material from clogging the screen holes. Simultaneously, a shock absorption component absorbs vibrations, ensuring stable operation of the equipment. Efficient screening and separation are achieved through the screen plate and vibrating motor.
It effectively prevents material blockage, improves screening accuracy and efficiency, ensures stable equipment operation, extends service life, and reduces maintenance costs.
Smart Images

Figure CN223748017U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model relates to the technical field of vibrating screen, especially to a vibrating screen powder filter. BACKGROUND
[0002] The vibrating screen powder filter realizes the screening and filtering of materials through a vibrating screen, is widely applied to the separation and purification of powder, granule or liquid, and its working principle is that materials are uniformly distributed on the surface of the screen through vibration, the materials are screened according to size by using screen apertures of different particle sizes, so that impurities are removed or different particle size materials are separated, the equipment has the characteristics of high efficiency, energy saving, simple operation and the like, is suitable for chemical industry, pharmacy, food industry and the like, and ensures the purity and quality of products.
[0003] However, the existing vibrating screen powder filter has single screening mode, lacks auxiliary components to optimize the material processing process, is prone to uneven distribution of materials on the screen plate, large particles are prone to accumulate and block the screen holes, the screening precision and speed are reduced, the screen plate cannot be effectively maintained, performance is seriously degraded after long-time use, and the overall working efficiency is greatly reduced.
[0004] Therefore, the vibrating screen powder filter is provided to meet the needs. UTILITY MODEL CONTENTS
[0005] The utility model aims at solving the shortcomings in the prior art and provides a vibrating screen powder filter.
[0006] In order to achieve the above-mentioned purpose, the utility model adopts the following technical scheme: a vibrating screen powder filter includes:
[0007] The fixed base is provided with a support leg at the top, the top of the support leg is provided with a support base, the top of the support base is provided with a damping assembly, the top of the damping assembly is provided with a first collecting box, the top of the first collecting box is provided with a discharging assembly, and the top of the discharging assembly is provided with a shell.
[0008] The powder brushing assembly is arranged in the shell, and the powder brushing assembly includes a support sliding ring fixed in the shell.
[0009] The rotating assembly is arranged on the top of the painting assembly, the painting assembly comprises a first supporting rod fixed on the dustproof groove, a fixing box is fixed on the outer side of the first supporting rod, a second supporting rod is arranged on the top of the first supporting rod, and a rotating motor is fixed on the other end of the second supporting rod.
[0010] As a preferred embodiment, the discharging assembly comprises a second collecting box, a screening plate is arranged in the second collecting box, a discharging slot is formed in the second collecting box, a discharging pipe is arranged on the second collecting box away from the discharging slot, and a discharging port is arranged on the other end of the discharging pipe.
[0011] The beneficial effect of the above further scheme is that the discharging assembly is mainly composed of the second collecting box, the screening plate in the second collecting box can screen and separate the material, the material meeting the requirements is discharged through the discharging slot after treatment, and the remaining part is finally output through the discharging port by means of the discharging pipe connected to the second collecting box and away from the discharging slot, so that precise discharging is realized.
[0012] As a preferred embodiment, the damping assembly comprises a first supporting box, a first damping spring is arranged in the first supporting box, and the top of the first damping spring is connected with the first collecting box.
[0013] The beneficial effect of the above further scheme is that the first supporting box and the first damping spring in the first supporting box play a damping role, when the equipment runs and vibrates, the first damping spring can effectively absorb and buffer the vibration energy due to being connected with the first collecting box, the influence of vibration on the overall stability of the equipment and other components is reduced, and the stable operation of the equipment is ensured.
[0014] As a preferred embodiment, a vibration motor is arranged in the first collecting box, a connecting rod is arranged on the top of the vibration motor, and the vibration motor is connected with the screening plate through the connecting rod.
[0015] The beneficial effect of the above further scheme is that the vibration motor in the first collecting box is connected with the screening plate through the connecting rod, when the vibration motor works, the screening plate is driven to vibrate through the connecting rod, so that the material continuously jumps and rolls on the screening plate, and efficient screening and separation of the material are realized.
[0016] As a preferred embodiment, a second damping spring is arranged on the bottom of the rotating motor, and the other end of the second damping spring is fixedly connected with the first supporting rod.
[0017] The beneficial effect of the above further scheme is that the second damping spring on the bottom of the rotating motor is connected with the first supporting rod, when the rotating motor operates, the second damping spring can buffer the vibration and shaking generated by the rotating motor, the working state of the motor is stabilized, and the stable operation of the components connected with the motor is ensured.
[0018] Compared with the prior art, the utility model has the advantages and positive effects that:
[0019] 1、 support sliding ring and its inside sliding groove, support groove are gear and other components provide stable framework, first gear and four groups of second gear mutually cooperate, when rotating motor drive first gear rotates, drive second gear synchronous operation, the rotating shaft of second gear bottom makes the powder brush rod regular movement by transmission belt, in the process of screening powder, the powder brush rod carries out even powdering to the screen plate, prevents material from blocking sieve hole, ensures the air permeability and screening accuracy of screen plate, thereby lets different particle size material to be better separated, promotes the efficiency and quality of whole screening powder filtration.
[0020] 2、 fixed box and first support rod are stably connected, provide support base for whole, second support rod connects first support rod and rotating motor, when rotating motor starts, the power generated is transmitted through second support rod, drives the powdering assembly and other components connected with it to rotate, makes the powder brush rod can multidirectional powdering operation to the screen plate, guarantees the efficient cleaning and material separation effect of screen plate. BRIEF DESCRIPTION OF DRAWINGS
[0021] Figure 1 It is the front view of the utility model of vibrating screening powder filter;
[0022] Figure 2 It is the sectional view of the utility model of vibrating screening powder filter;
[0023] Figure 3 It is the structure diagram of rotating assembly in the utility model of vibrating screening powder filter;
[0024] Figure 4 It is the structure diagram of powdering assembly in the utility model of vibrating screening powder filter.
[0025] REFERENCE NUMERALS
[0026] 1, fixed base; 2, support leg; 3, support base;
[0027] 4, damping assembly; 41, first support box; 42, first damping spring;
[0028] 5, first collection box;
[0029] 6, discharge assembly; 61, second collection box; 62, discharge slot; 63, screen plate; 64, discharge pipe; 65, discharge port;
[0030] 7, shell; 8, inlet; 9, vibration motor;
[0031] 10. Rotating assembly; 101. Fixed box; 102. First support rod; 103. Second damping spring; 104. Second support rod; 105. Rotating motor;
[0032] 11. Painting assembly; 111. Support sliding ring; 112. Sliding groove; 113. Support groove; 114. Dustproof groove; 115. First gear; 116. Second gear; 117. Rotating shaft; 118. Transmission belt; 119. Painting rod. Detailed Implementation
[0033] The technical solutions of the present utility model will be clearly and completely described below with reference to the accompanying drawings of the embodiments. Obviously, the described embodiments are only some embodiments of the present utility model, and not all embodiments. Based on the embodiments of the present utility model, all other embodiments obtained by those of ordinary skill in the art without creative effort are within the protection scope of the present utility model.
[0034] Example 1
[0035] like Figures 1-4 As shown, this utility model provides a technical solution: a vibration includes:
[0036] The vibrating screen filter consists of a fixed base 1, a support leg 2 on top of the fixed base 1, a support base 3 on top of the support leg 2, a shock-absorbing component 4 on top of the support base 3, a first collection box 5 on top of the shock-absorbing component 4, a discharge component 6 on top of the first collection box 5, and a housing 7 on top of the discharge component 6. The fixed base 1, support leg 2, and support base 3 form a stable basic structure. The shock-absorbing component 4 is located between the support base 3 and the first collection box 5. Its special structure effectively absorbs the vibration generated during the operation of the equipment, reducing the impact on the overall structure. The discharge component 6 is responsible for collecting and discharging the screened material, ensuring the smooth operation of the material processing flow.
[0037] The painting assembly 11 is arranged in the inside of the shell 7, the painting assembly 11 comprises a support sliding ring 111 fixed in the inside of the shell 7, the inside of the support sliding ring 111 is provided with a sliding groove 112, the sliding groove 112 is provided with a support groove 113, the middle part of the support groove 113 is provided with a first gear 115, the outside of the first gear 115 is provided with four groups of second gears 116, the top of the first gear 115 is provided with a dustproof groove 114, the bottom of the second gear 116 is provided with a rotating shaft 117, the outside of the rotating shaft 117 is provided with a transmission belt 118, the bottom of the transmission belt 118 is provided with a painting rod 119, the support sliding ring 111 and the sliding groove 112 and the support groove 113 in the inside thereof provide stable structure for the gears and other components, the first gear 115 cooperates with the four groups of second gears 116, when the rotating motor 105 drives the first gear 115 to rotate, the second gear 116 is driven to rotate synchronously, the rotating shaft 117 at the bottom of the second gear 116 drives the painting rod 119 to move regularly through the transmission belt 118, in the process of screening powder, the painting rod 119 uniformly paints the screen plate, prevents the material from blocking the screen hole, ensures the air permeability and screening precision of the screen plate, so that the materials with different particle sizes can be better separated, and the efficiency and quality of the overall screening and filtering are improved.
[0038] The rotating assembly 10 is arranged at the top of the painting assembly 11, the painting assembly 11 comprises a first support rod 102 fixed on the dustproof groove 114, the outside of the first support rod 102 is fixed with a fixed box 101, the top of the first support rod 102 is provided with a second support rod 104, the other end of the second support rod 104 is fixed with a rotating motor 105, the bottom of the rotating motor 105 is provided with a second damping spring 103, the other end of the second damping spring 103 is fixedly connected with the first support rod 102, the fixed box 101 is stably connected with the first support rod 102, and a support base is provided for the whole, the second support rod 104 connects the first support rod 102 and the rotating motor 105, when the rotating motor 105 is started, the power generated by the rotating motor 105 is transmitted through the second support rod 104, drives the components such as the painting assembly 11 connected therewith to rotate, so that the painting rod 119 can perform painting work on the screen plate in multiple directions, ensures the efficient cleaning of the screen plate and the material separation effect, the second damping spring 103 at the bottom of the rotating motor 105 is connected with the first support rod 102, when the rotating motor 105 operates, the second damping spring 103 can buffer the vibration and shaking generated thereby, stabilizes the working state of the motor, and ensures the stable operation of the components connected therewith.
[0039] Further, as Figure 1 - Figure 4As shown: the discharge assembly 6 includes a second collection box 61, the inside of the second collection box 61 is provided with a screening plate 63, the second collection box 61 is provided with a discharge slot 62, the second collection box 61 is provided with a discharge pipe 64 away from the discharge slot 62, the other end of the discharge pipe 64 is provided with a discharge port 65, the discharge assembly 6 is mainly composed of the second collection box 61, the screening plate 63 in the inside can screen and separate the materials, after treatment, the materials meeting the requirements are discharged through the discharge slot 62, and the remaining part is finally output by the discharge port 65 through the discharge pipe 64 connected with the second collection box 61 and away from the discharge slot 62, realizing accurate discharging.
[0040] The above scheme also has the problem that the equipment is affected by vibration, such as Figure 2 As shown: in this scheme, the damping assembly 4 includes a first support box 41, the inside of the first support box 41 is provided with a first damping spring 42, the top of the first damping spring 42 is connected with the first collection box 5, the first support box 41 and the first damping spring 42 in the inside play the role of damping, when the equipment runs and generates vibration, the first damping spring 42 can effectively absorb and buffer the vibration energy due to being connected with the first collection box 5, reducing the influence of vibration on the overall stability of the equipment and other components, and guaranteeing the smooth operation of the equipment.
[0041] The above scheme also has the problem that the material classification is slow, such as Figure 1 Figure 2 As shown: in this scheme, the inside of the first collection box 5 is provided with a vibration motor 9, the top of the vibration motor 9 is provided with a connecting rod, the vibration motor 9 is connected with the screening plate 63 through the connecting rod, the vibration motor 9 in the first collection box 5 is connected with the screening plate 63 through the connecting rod, when the vibration motor 9 works, the screening plate 63 is driven to vibrate through the connecting rod, so that the materials continuously jump and roll on the screening plate 63, thereby realizing efficient screening and separation of the materials.
[0042] Working principle: as shown Figure 1 Figure 4 As shown, the materials can be sent into the equipment through the feeding port 8, the stable frame is formed by the support sliding ring 111 and the sliding groove 112 and the support groove 113 on the inside, providing support for the gear system, the rotating motor 105 drives the first gear 115 to rotate, driving four groups of second gears 116 to run synchronously, making the powdering rod 119 move regularly through the rotating shaft 117 and the transmission belt 118, uniformly powdering the screen plate, avoiding material blockage of the screen hole, maintaining the air permeability and screening accuracy of the screen plate, guaranteeing accurate separation of materials with different particle sizes, improving the overall efficiency and quality, the fixed box 101 and the first support rod 102 are stably connected, laying the foundation, the second support rod 104 transmits the power of the rotating motor 105, driving the powdering assembly 11 to rotate, realizing multi-directional powdering operation, and guaranteeing the cleaning and separation effect of the screen plate.
[0043] The second collecting box 61 in the discharging assembly 6 is the core, the inner sieve plate 63 sieves the material, the qualified material is discharged from the discharging slot 62, and the rest is output from the discharging port 65 through the discharging pipe 64, so that the accurate discharging purpose is achieved.
[0044] In the damping assembly 4, the first damping spring 42 in the first supporting box 41 is connected with the first collecting box 5, when the equipment runs, the first damping spring 42 absorbs and buffers the vibration energy, reduces the influence on the overall stability and components, ensures the smooth operation, the vibration motor 9 in the first collecting box 5 drives the sieve plate 63 to vibrate through the connecting rod, promotes the material to jump and roll on the sieve plate, realizes efficient screening and separation, the second damping spring 103 at the bottom of the rotating motor 105 is connected with the first supporting rod 102, buffers the vibration and shaking when the motor runs, stabilizes the working state of the motor, guarantees the stable operation of the connected components, so that the whole equipment stably and efficiently completes the screening and filtering work under the close cooperation of each assembly, meets the needs of industrial production for the fine screening and processing of the material, effectively improves the production quality and efficiency, prolongs the service life of the equipment, reduces the maintenance cost and the failure rate.
[0045] The above is only a preferred embodiment of the present application, and is not intended to limit the present application in other forms, any skilled person in the art can change or modify the above disclosed technical content to equivalent embodiments applied to other fields, but any simple modification, equivalent change and modification of the above embodiments according to the technical essence of the present application still belongs to the protection scope of the technical scheme of the present application.
Claims
1. A vibrating screen powder filter, characterized in that, The utility model relates to a fixed base (1), the support leg (2) of fixed base (1) top arrangement, the top of support leg (2) is provided with support base (3), the top of support base (3) is provided with damping assembly (4), the top of damping assembly (4) is provided with first collection box (5), the top of first collection box (5) is provided with discharge assembly (6), the top of discharge assembly (6) is provided with shell (7). The utility model relates to a fixed base (1), the support leg (2) of fixed base (1) top arrangement, the top of support leg (2) is provided with support base (3), the top of support base (3) is provided with damping assembly (4), the top of damping assembly (4) is provided with first collection box (5), the top of first collection box (5) is provided with discharge assembly (6), the top of discharge assembly (6) is provided with shell (7). The utility model relates to a fixed base (1), the support leg (2) of fixed base (1) top arrangement, the top of support leg (2) is provided with support base (3), the top of support base (3) is provided with damping assembly (4), the top of damping assembly (4) is provided with first collection box (5), the top of first collection box (5) is provided with discharge assembly (6), the top of discharge assembly (6) is provided with shell (7). The utility model relates to a fixed base (1), the support leg (2) of fixed base (1) top arrangement, the top of support leg (2) is provided with support base (3), the top of support base (3) is provided with damping assembly (4), the top of damping assembly (4) is provided with first collection box (5), the top of first collection box (5) is provided with discharge assembly (6), the top of discharge assembly (6) is provided with shell (7).
2. A vibratory screen duster according to claim 1, wherein, The utility model relates to a fixed base (1), the support leg (2) of fixed base (1) top arrangement, the top of support leg (2) is provided with support base (3), the top of support base (3) is provided with damping assembly (4), the top of damping assembly (4) is provided with first collection box (5), the top of first collection box (5) is provided with discharge assembly (6), the top of discharge assembly (6) is provided with shell (7).
3. A vibratory screen duster according to claim 1 wherein, The utility model relates to a fixed base (1), the support leg (2) of fixed base (1) top arrangement, the top of support leg (2) is provided with support base (3), the top of support base (3) is provided with damping assembly (4), the top of damping assembly (4) is provided with first collection box (5), the top of first collection box (5) is provided with discharge assembly (6), the top of discharge assembly (6) is provided with shell (7).
4. A vibratory screen duster according to claim 1 wherein, The utility model relates to a fixed base (1), the support leg (2) of fixed base (1) top arrangement, the top of support leg (2) is provided with support base (3), the top of support base (3) is provided with damping assembly (4), the top of damping assembly (4) is provided with first collection box (5), the top of first collection box (5) is provided with discharge assembly (6), the top of discharge assembly (6) is provided with shell (7).
5. A vibratory screen duster according to claim 1 wherein, The utility model relates to a fixed base (1), the support leg (2) of fixed base (1) top arrangement, the top of support leg (2) is provided with support base (3), the top of support base (3) is provided with damping assembly (4), the top of damping assembly (4) is provided with first collection box (5), the top of first collection box (5) is provided with discharge assembly (6), the top of discharge assembly (6) is provided with shell (7).
6. A vibratory screen duster according to claim 1 wherein, The utility model relates to a fixed base (1), the support leg (2) of fixed base (1) top arrangement, the top of support leg (2) is provided with support base (3), the top of support base (3) is provided with damping assembly (4), the top of damping assembly (4) is provided with first collection box (5), the top of first collection box (5) is provided with discharge assembly (6), the top of discharge assembly (6) is provided with shell (7).
7. A vibrating screen filter according to claim 1, wherein,