Soap grain screening machine

By designing a soap pellet screening machine containing dust removal components, the problem of dust pollution caused by existing vibration screening equipment during the screening process is solved, and effective dust removal and stable operation of the equipment is achieved.

CN223043095UActive Publication Date: 2025-07-01SHANTOU KAIQIA CHEM CO LTD
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Patent Information

Application Number
CN202520978964.7
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-05-19
Publication Date
2025-07-01
Estimated Expiration
2035-05-19

AI Technical Summary

Technical Problem

The existing vibration screening equipment will produce dust during the screening of soap particles, which will pollute the working environment and endanger the health of workers.

Method used

A soap pellet sieving machine including a screening machine body and a dust removal assembly is designed. The dust removal assembly includes a vacuum cleaner plate, a suction pipe holder, a fixing ring, a vacuum cleaner and a shock absorber. Through the cooperation of the vacuum cleaner and the suction pipe holder, dust can be adsorbed and dust removed to prevent dust from drifting away.

Benefits of technology

It effectively avoids the drift and pollution of dust, protects workers' health, and reduces equipment vibration and extends the service life of the vacuum cleaner.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model relates to the technical field of screening machines, in particular to a soap grain screening machine which comprises a screening machine body and a dust removal assembly, and the dust removal assembly comprises a dust collection plate, an air suction pipe frame, a fixing ring, a dust collector and a damping seat. The screening machine body and the dust collector are started through the controller, soap grains needing to be screened are fed through the feeding port of the screening machine body, the soap grains are screened by the screening machine body, the dust collector acts to generate suction force in the air suction pipe frame, then the dust collection plate communicated with the air suction pipe frame generates suction force, and dust in the screening machine body is absorbed; the air flow with dust is guided into the dust collector through the air suction pipe frame for dust removal, the purpose of soap grain screening and dust removal is achieved, the fixing ring is used for fixing the air suction pipe frame to the dust collection plate, the phenomenon that the air suction pipe frame shakes and falls off when dust is adsorbed is avoided, the damping seat is used for providing damping protection for the dust collector, and the service life of the dust collector is prolonged. When the screening machine body acts, vibration is prevented from being transmitted to the dust collector, and parts in the dust collector are prevented from loosening or being damaged.
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Description

Technical Field

[0001] The utility model relates to the technical field of screening machines, in particular to a soap granule screening machine. Background Art

[0002] Glycerol is an important product in the production process of soap granules. Appropriate amount of glycerol can make the texture of soap granules softer, solubility better, and help to produce rich and delicate foam. With the development of related industries such as soap and detergent, the production scale of soap granules is constantly expanding.

[0003] At present, most of the existing soap granule screening technologies are vibration screening technologies. An electric motor drives an eccentric block to impact a screen mesh to generate vibration, so that the soap granules make high-frequency vibrations on the screen mesh. The soap granules smaller than the screen hole size fall through the screen mesh, while the soap granules larger than the screen hole size are left on the screen mesh, thus achieving the screening purpose.

[0004] However, during the screening process of the above-mentioned existing vibration screening equipment for soap granules, dust will be generated, thus polluting the working environment and endangering the physical health of workers. Summary of the Utility Model

[0005] The purpose of the utility model is to provide a soap granule screening machine, aiming to solve the problems that the existing vibration screening equipment binds the soap granules, the dust pollutes the working environment, and endangers the physical health of workers.

[0006] To achieve the above purpose, the utility model provides a soap granule screening machine, which includes a screening machine body and a dust removal component. The dust removal component includes a dust suction plate, an air suction pipe rack, a fixing ring, a dust collector and a shock absorber seat; the dust suction plate is fixedly connected with the screening machine body and is located on both sides of the screening machine body, the shock absorber seat is fixedly connected with the screening machine body and is located on one side of the screening machine body, the dust collector is assembled on the top of the shock absorber seat, the air suction pipe rack is communicated with the dust suction plate and is communicated with the dust collector, and is located between the dust collector and the dust suction plate, and the fixing ring is sleeved outside the air suction pipe rack and is detachably connected with the dust suction plate.

[0007] Wherein, the air suction pipe rack includes an air suction main pipe and an air suction branch pipe. The air suction branch pipe is communicated with the dust suction plate and is located on one side of the dust suction plate. The air suction main pipe is communicated with the air suction branch pipe and is communicated with the dust collector, and is located between the dust collector and the air suction branch pipe.

[0008] Wherein, the dust collector includes a dust removal box, a filter screen plate, a magnetic attraction block and a suction fan. The dust removal box is assembled on the top of the shock absorber seat. The filter screen plate is slidably connected with the dust removal box and penetrates through the dust removal box. The magnetic attraction block is fixedly connected with the filter screen plate and is located on one side of the filter screen plate. The suction fan is communicated with the dust removal box and is located on one side of the dust removal box.

[0009] Among them, the shock-absorbing seat includes a damping bracket and a buffer pad. The damping bracket is fixedly connected to the screening machine body and is located on one side of the screening machine body. The buffer pad is fixedly connected to the damping bracket and is located on the top of the damping bracket.

[0010] Among them, the screening machine body includes a cabinet, a screen mesh, and a vibration motor. The cabinet is fixedly connected to the damping bracket and is located on one side of the damping bracket. The screen mesh is assembled inside the cabinet, and the vibration motor is assembled outside the cabinet, and the output end is connected to the screen mesh.

[0011] A soap granule screening machine of the present utility model, the screening machine body is used to screen the soap granules put into it. During the process of screening soap granules by the screening machine body, the generated dust is adsorbed by the dust removal assembly to avoid dust floating and polluting the environment. Specifically, the worker starts the screening machine body and the vacuum cleaner through the controller, and then puts the soap granules to be screened through the feeding port of the screening machine body, so that the soap granules are screened by the screening machine body. The vacuum cleaner operates to generate suction in the suction pipe rack, and then the suction plate connected to it generates suction, so as to absorb the dust in the screening machine body. The airflow with dust is then introduced into the vacuum cleaner through the suction pipe rack for dust removal, achieving the purpose of soap granule screening and dust removal. The setting of the fixing ring is used to fix the suction pipe rack on the suction plate to avoid the phenomenon that the suction pipe rack shakes and falls off when adsorbing dust. The setting of the shock-absorbing seat is used to provide shock-absorbing protection for the vacuum cleaner, avoiding the vibration transmitted to the vacuum cleaner when the screening machine body operates, and then causing the internal parts of the vacuum cleaner to loosen or be damaged, solving the problems of the existing vibration screening equipment binding soap granules, dust polluting the working environment, and endangering the physical health of workers. Description of the Drawings

[0012] In order to more clearly illustrate the technical solutions in the embodiments of the present application or the prior art, the following will briefly introduce the drawings required for use in the description of the embodiments or the prior art.

[0013] Figure 1 It is a schematic structural diagram of a soap granule screening machine of the present utility model.

[0014] Figure 2 It is a schematic structural diagram of another aspect of a soap granule screening machine of the present utility model.

[0015] Figure 3 It is a longitudinal sectional view of a soap granule screening machine of the present utility model along the direction of the dust removal box.

[0016] In the figure: 1 - Sieve machine body, 2 - Dust removal component, 3 - Dust suction plate, 4 - Suction pipe rack, 5 - Fixed ring, 6 - Vacuum cleaner, 7 - Shock absorber seat, 8 - Main suction pipe, 9 - Suction branch pipe, 10 - Dust removal box, 11 - Filter screen plate, 12 - Magnetic attraction block, 13 - Suction fan, 14 - Damping support, 15 - Buffer pad, 16 - Cabinet body, 17 - Screen mesh, 18 - Vibration motor. Detailed implementation mode

[0017] The embodiments of the present utility model will be described in detail below. The examples of the embodiments are shown in the drawings, in which the same or similar reference numerals represent the same or similar elements or elements with the same or similar functions from beginning to end. The embodiments described below by referring to the drawings are exemplary and are intended to explain the present utility model, and should not be construed as a limitation to the present utility model.

[0018] Please refer to Figures 1 to 3 , the present utility model provides a soap granule sieve machine, which includes a sieve machine body 1 and a dust removal component 2. The dust removal component 2 includes a dust suction plate 3, a suction pipe rack 4, a fixed ring 5, a vacuum cleaner 6 and a shock absorber seat 7; the dust suction plate 3 is fixedly connected to the sieve machine body 1 and is located on both sides of the sieve machine body 1. The shock absorber seat 7 is fixedly connected to the sieve machine body 1 and is located on one side of the sieve machine body 1. The vacuum cleaner 6 is assembled on the top of the shock absorber seat 7. The suction pipe rack 4 is communicated with the dust suction plate 3 and is communicated with the vacuum cleaner 6, and is located between the vacuum cleaner 6 and the dust suction plate 3. The fixed ring 5 is sleeved outside the suction pipe rack 4 and is detachably connected to the dust suction plate 3.

[0019] In this implementation scheme, the sieve machine body 1 is used to sieve the soap granules put into it. During the process of sieving the soap granules by the sieve machine body 1, the generated dust is adsorbed by the dust removal component 2 to avoid the dust from spreading and polluting the environment. Specifically, the worker starts the sieve machine body 1 and the vacuum cleaner 6 through the controller, and then puts the soap granules to be sieved through the feeding port of the sieve machine body 1, so that the soap granules are sieved by the sieve machine body 1. The vacuum cleaner 6 operates to generate suction force in the suction pipe rack 4, and then the dust suction plate 3 communicated with it generates suction force, so as to absorb the dust in the sieve machine body 1. The airflow with dust is then introduced into the vacuum cleaner 6 through the suction pipe rack 4 for dust removal, achieving the purpose of soap granule sieving and dust removal. The setting of the fixed ring 5 is used to fix the suction pipe rack 4 on the dust suction plate 3 to avoid the phenomenon that the suction pipe rack 4 shakes and falls off when adsorbing dust. The setting of the shock absorber seat 7 is used to provide shock absorption protection for the vacuum cleaner 6 to avoid the vibration transmitted to the vacuum cleaner 6 when the sieve machine body 1 operates, which may cause the internal parts of the vacuum cleaner 6 to loosen or be damaged, solving the problems of the existing vibration sieving equipment binding the soap granules, dust polluting the working environment and endangering the health of workers.

[0020] Further, the suction pipe rack 4 includes a main suction pipe 8 and suction branch pipes 9. The suction branch pipes 9 are communicated with the dust suction plate 3 and are located on one side of the dust suction plate 3. The main suction pipe 8 is communicated with the suction branch pipes 9, is communicated with the vacuum cleaner 6, and is located between the vacuum cleaner 6 and the suction branch pipes 9.

[0021] In this embodiment, the main suction pipe 8 is used to introduce the airflow with dust into the vacuum cleaner 6. The suction branch pipes 9 are evenly distributed on the dust suction plate 3, so that the suction force at each position of the dust suction plate 3 is the same, avoiding the phenomenon that the dust suction effect on the side far from the pipeline is poor in the traditional way, and strengthening the dust adsorption effect of the dust suction plate 3 on the dust in the screening machine body 1.

[0022] Further, the vacuum cleaner 6 includes a dust removal box 10, a filter screen plate 11, a magnetic attraction block 12, and a suction fan 13. The dust removal box 10 is assembled on the top of the shock absorption seat 7. The filter screen plate 11 is slidably connected with the dust removal box 10 and penetrates through the dust removal box 10. The magnetic attraction block 12 is fixedly connected with the filter screen plate 11 and is located on one side of the filter screen plate 11. The suction fan 13 is communicated with the dust removal box 10 and is located on one side of the dust removal box 10.

[0023] In this embodiment, the main suction pipe 8 introduces the airflow with dust into the dust removal box 10, and dust is removed through filtration by the filter screen plate 11, achieving the purpose of soap granule screening and dust removal. The operation of the suction fan 13 causes the dust suction plate 3 to generate suction force and suck dust. After the filter screen plate 11 is used for a period of time, it will be regularly taken out from the dust removal box 10 for replacement. With the setting of the magnetic attraction block 12, the magnetic attraction block 12 can be adsorbed and fixed on the dust removal box 10. When replacing the filter screen plate 11, the filter screen plate 11 can be quickly pulled off without using tools to disassemble bolts, making the replacement operation more convenient and improving the practicability.

[0024] Further, the shock absorption seat 7 includes a damping support 14 and a buffer pad 15. The damping support 14 is fixedly connected with the screening machine body 1 and is located on one side of the screening machine body 1. The buffer pad 15 is fixedly connected with the damping support 14 and is located on the top of the damping support 14.

[0025] In this embodiment, the damping support 14 is specially made. A damping plate is added to the traditional mounting bracket, and through the dual settings of the damping plate and the buffer pad 15, the vibration of the screening machine body 1 can be effectively buffered and consumed, and the vibration of the screening machine body 1 can be effectively prevented from being transmitted to the suction fan 13, thereby causing loosening or damage of the internal parts of the suction fan 13.

[0026] Further, the screening machine body 1 includes a cabinet 16, a screen 17 and a vibration motor 18. The cabinet 16 is fixedly connected to the damping bracket 14 and is located on one side of the damping bracket 14. The screen 17 is assembled in the cabinet 16. The vibration motor 18 is assembled outside the cabinet 16, and the output end is connected to the screen 17.

[0027] In this embodiment, the cabinet 16 has a feed inlet and a discharge outlet. The connection among the screen 17, the vibration motor 18 and the cabinet 16 is prior art. Soap grains are put into the cabinet 16 through the feed inlet. The vibration motor 18 operates to make the screen 17 vibrate at a high frequency, so as to screen the soap grains thereon. The soap grains smaller than the screen hole size fall through the screen 17, while the soap grains larger than the screen hole size are left on the screen 17 and discharged through the material outlet.

[0028] The above-disclosed is only a preferred embodiment of a soap grain screening machine of the present application, and it cannot be used to limit the scope of rights of the present application. Those of ordinary skill in the art can understand all or part of the processes of implementing the above embodiments, and the equivalent changes made according to the claims of the present application still fall within the scope covered by the present application.

Claims

1. A soap particle screening machine, characterized in that ; It includes a screening machine body and a dust removal component, wherein the dust removal component includes a dust suction plate, a suction pipe frame, a fixing ring, a dust collector and a shock absorbing seat; The dust collecting plate is fixedly connected to the screening machine body and is located on both sides of the screening machine body. The shock absorbing seat is fixedly connected to the screening machine body and is located on one side of the screening machine body. The dust collector is mounted on the top of the shock absorbing seat. The suction pipe rack is communicated with the dust collecting plate and the dust collector and is located between the dust collector and the dust collecting plate. The fixing ring is sleeved on the outside of the suction pipe rack and is detachably connected to the dust collecting plate.

2. The soap particle screening machine according to claim 1, characterized in that: The air suction pipe rack includes an air suction main pipe and an air suction branch pipe, the air suction branch pipe is connected to the dust suction plate and is located on one side of the dust suction plate, the air suction main pipe is connected to the air suction branch pipe and is connected to the dust collector, and is located between the dust collector and the air suction branch pipe.

3. The soap particle screening machine according to claim 1, characterized in that ; The vacuum cleaner includes a dust removal box, a filter screen, a magnetic block and a suction fan. The dust removal box is mounted on the top of the shock absorber seat. The filter screen is slidably connected to the dust removal box and passes through the dust removal box. The magnetic block is fixedly connected to the filter screen and is located on one side of the filter screen. The suction fan is connected to the dust removal box and is located on one side of the dust removal box.

4. The soap particle screening machine according to claim 1, characterized in that ; The shock-absorbing seat includes a damping bracket and a buffer pad. The damping bracket is fixedly connected to the screening machine body and is located on one side of the screening machine body. The buffer pad is fixedly connected to the damping bracket and is located on the top of the damping bracket.

5. The soap particle screening machine as claimed in claim 4, characterized in that ; The screening machine body includes a cabinet, a screen and a vibration motor. The cabinet is fixedly connected to the damping bracket and is located on one side of the damping bracket. The screen is installed in the cabinet. The vibration motor is installed outside the cabinet, and the output end is connected to the screen.