High-purity quartz sand processing device with dust removal function

By designing a high-purity quartz sand processing device with dust removal function, the combination of screen plate, division rack, screen mesh and impurity removal components is used to solve the problem of dust rising during quartz sand processing, and efficient dust removal and screening are achieved, and processing efficiency and product purity are improved.

CN222999297UActive Publication Date: 2025-06-20HENAN FUSHENG QUARTZ CO LTD
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Patent Information

Application Number
CN202421690175.5
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-07-16
Publication Date
2025-06-20
Estimated Expiration
2034-07-16

AI Technical Summary

Technical Problem

During the processing of high-purity quartz sand, the humid environment causes the quartz sand to adhere. After it is dispersed, the internal dust rises, affecting the health of the staff. The floating dust is mixed with the quartz sand, which requires secondary screening.

Method used

A high-purity quartz sand processing device with dust removal function is designed, including installation box, screen plate, division rack, screen mesh and impurity removal components. Through the vertical direction of the screen plate and the reciprocating movement of the electric telescopic column, the dispersion and screening of quartz sand are realized; the screen and filter are set up, combined with the docking of the adsorption bucket and the vacuum cleaner equipment, the centralized collection and dust removal of dust are realized.

Benefits of technology

It effectively solves the dust problem raised by quartz sand during the dispersion process, reduces the impact on staff health, reduces the need for secondary screening, and improves the efficiency and purity of the quartz sand processing process.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses a high-purity quartz sand processing device with a dust removal function, which comprises a mounting box, a dust removal device and a dust removal device, and the sieve plates are arranged in the mounting box at equal intervals in the vertical direction, and the sieve plates are used for screening impurities in the high-purity quartz sand. According to the high-purity quartz sand processing device with the dust removal function, the filter screens are symmetrically located on the two sides of the mounting box, dust suction equipment is connected with a butt joint pipe of an adsorption hopper, a sieve plate arranged in a partition frame sucks raised dust produced in the scattering treatment process of adhered quartz sand, and the raised dust is sieved through the sieve plate arranged in the vertical direction; flying dust penetrates through the screen and the filter screen along with wind power of the dust collection equipment to enter the adsorption hopper, is intercepted through the connection position, located at the butt joint position of the dust collection equipment, of the adsorption hopper, and provides a concentrated discharge environment for floating dust along with an opening in the bottom end of the adsorption hopper, so that dust produced during quartz sand processing is concentrated conveniently.
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Description

Technical Field

[0001] The utility model relates to the technical field of high-purity quartz sand processing, in particular to a high-purity quartz sand processing device with a dust removal function. Background Technique

[0002] High-purity quartz sand is made from natural crystal stones or high-quality natural quartz stones through careful selection and fine processing. Quartz sand is an important industrial mineral raw material and is not a chemical dangerous good. It is widely used in the preparation of industries such as glass, casting, ceramics and fireproof materials, metallurgy, construction, and chemical industry. During the preliminary crushing and processing of quartz sand preparation, a large amount of debris and dust are easily produced. The existing treatment method is to spray liquid during the crushing process to reduce dust, making the crushed quartz sand adhere together with the slag.

[0003] In order to obtain high-purity quartz sand, a dispersing device is needed to disperse the quartz sand adhered due to the humid environment. After the quartz sand is further dispersed, the dust adhered inside is raised, affecting the health of the surrounding workers. Moreover, after the floating dust and quartz sand are mixed together after being dispersed, secondary processing and screening are required. Content of the Utility Model

[0004] The purpose of the utility model is to provide a high-purity quartz sand processing device with a dust removal function to solve the problems raised in the above background technique that the quartz sand adhered due to the humid environment is dispersed, and after the quartz sand is further dispersed, the dust adhered inside is raised, affecting the health of the surrounding workers, and after the floating dust and quartz sand are mixed together after being dispersed, secondary processing and screening are required.

[0005] To achieve the above purpose, the utility model provides the following technical solution: A high-purity quartz sand processing device with a dust removal function, including an installation box, which is set as a rectangular box structure, and the installation box is the outer shell device of the high-purity quartz sand processing equipment;

[0006] Sieve plates, which are arranged vertically at equal intervals inside the installation box, and the sieve plates are used for screening impurities of high-purity quartz sand;

[0007] The upper end opening of the installation box is snap-connected with a positioning cover, and a round hole penetrated by the bottom end of a support cylinder is arranged inside the positioning cover. The support cylinder is a rectangular horn-shaped structure, and a telescopic feeding cylinder is installed at the top end of the support cylinder. The output end of the telescopic feeding cylinder is provided with a docking ring, and a threaded structure is arranged on the outer layer of the docking ring. The inner layer of the support cylinder is provided with a sub-sieving frame at equal intervals;

[0008] A dividing frame, which is installed inside the installation box. Sieve meshes are symmetrically arranged on both sides of the dividing frame, and a convex structure penetrating the side wall surface of the installation box is arranged on the dividing frame at the bottom end of the sieve mesh. The inside of the dividing frame is provided with;

[0009] The impurity removal component shakes the high-purity quartz sand received by the docking ring to facilitate the rapid separation of impurities in the quartz sand.

[0010] Adopting the above technical solution facilitates providing dust removal assistance during the processing of high-purity quartz sand.

[0011] Preferably, the bottom end of the inner wall surface of the installation box abuts against the bottom end of the partition frame, and a guiding bottom plate is snap-connected to the bottom end of the partition frame.

[0012] Adopting the above technical solution, the installation box and the partition frame are stably installed and limited.

[0013] Preferably, a strip-shaped opening is provided on the side wall surface of the installation box penetrating through the partition frame, and the partition frame is arranged in a well-shaped structure.

[0014] Adopting the above technical solution, through the cooperative docking of the installation box and the partition frame, it is convenient to discharge the processed quartz sand.

[0015] Preferably, an L-shaped dust suction cavity is formed between the screen and the convex structure of the partition frame, and the bottom end surface of the convex structure provided on the side wall surface of the partition frame is flush with the bottom end of the inclined surface of the guiding bottom plate.

[0016] Adopting the above technical solution, the dust suction cavity provided on one side of the screen and the partition frame facilitates concentrating the dust generated during processing.

[0017] Preferably, the impurity removal component includes:

[0018] Electric telescopic columns, the output ends of which are equidistantly arranged on both sides of the screen plate;

[0019] Filter screens, which are symmetrically arranged on the side wall surface of the installation box provided with strip-shaped openings;

[0020] Adsorption hoppers, which are installed on the surface of the filter screens, and the adsorption hoppers are in a funnel-shaped structure, and an opening structure is provided at the bottom end of the adsorption hopper pipeline;

[0021] Intercepting nets, which are installed on one side of the opening of the adsorption hopper.

[0022] Adopting the above technical solution, the impurity removal component facilitates recycling the slag generated during the processing of quartz sand.

[0023] Preferably, the filter screens and the screen are arranged in a parallel manner, and the filter screens are uniformly provided with hole structures.

[0024] Adopting the above technical solution, the filter screens and the screen cooperate to intercept high-purity quartz sand from falling into the dust collection equipment.

[0025] Preferably, a pipeline for docking with the dust collection equipment is provided on one side of the adsorption hopper, and a through hole is provided at the bottom end of the docking pipeline provided on the adsorption hopper.

[0026] With the above technical solution, by docking and cooperating the adsorption hopper with the dust collection device, it is convenient to provide dust collection treatment for quartz sand processing.

[0027] Compared with the prior art, the beneficial effects of the present utility model are: the high-purity quartz sand processing device with a dust removal function:

[0028] 1. When in use, the filter screens are symmetrically located on both sides of the installation box. As the connecting pipe between the dust collection device and the adsorption hopper is connected, the dust generated during the process of the sieve plate arranged in the partition frame dispersing the adhered quartz sand is extracted. Through the vertical setting of the sieve plate for screening, the dust passes through the sieve mesh and the filter screen with the wind force of the dust collection device and enters the interior of the adsorption hopper. It is intercepted through the connection part arranged at the interface position of the adsorption hopper with the dust collection device. With the opening at the bottom end of the adsorption hopper providing a centralized discharge environment for the floating dust, it is convenient to centrally collect and process the dust generated during quartz sand processing;

[0029] 2. The adsorption hoppers symmetrically arranged on the side wall of the installation box cooperate with the dust collection device, so that part of the wet quartz sand entering the partition frame is dried under the strong wind, and the agglomerated blocks of quartz sand adhered together due to moisture are separated through the reciprocating screening of the sieve plate, which is convenient to realize the screening treatment of quartz sand. BRIEF DESCRIPTION OF THE DRAWINGS

[0030] Figure 1 It is a schematic external three-dimensional structure diagram of the whole of the present utility model;

[0031] Figure 2 It is a schematic internal side-sectional three-dimensional structure diagram of the whole of the present utility model;

[0032] Figure 3 It is a schematic three-dimensional installation structure diagram of the installation box and the partition frame of the present utility model;

[0033] Figure 4 It is a schematic three-dimensional installation structure diagram of the support cylinder and the telescopic material receiving cylinder of the present utility model;

[0034] Figure 5 It is a schematic three-dimensional installation structure diagram of the partition frame and the sieve plate of the present utility model;

[0035] Figure 6 For the present utility model Figure 2 The enlarged structure diagram at A in.

[0036] In the figure: 1. Installation box; 2. Positioning cover; 3. Support cylinder; 4. Telescopic material receiving cylinder; 5. Docking ring; 6. Sub-screening frame; 7. Partition frame; 8. Sieve mesh; 9. Dust collection cavity; 10. Guide bottom plate; 11. Sieve plate; 12. Electric telescopic column; 13. Filter screen; 14. Adsorption hopper; 15. Intercepting net. DETAILED DESCRIPTION OF THE EMBODIMENTS

[0037] Next, in combination with the accompanying drawings in the embodiments of the present invention, the technical solutions in the embodiments of the present invention will be clearly and completely described. Obviously, the described embodiments are only a part of the embodiments of the present invention, rather than all the embodiments. Based on the embodiments of the present invention, all other embodiments obtained by those of ordinary skill in the art without making creative efforts shall fall within the protection scope of the present invention.

[0038] Please refer to Figures 1-6 , the present invention provides a technical solution: a high-purity quartz sand processing device with a dust removal function, including an installation box 1, a positioning cover 2, a support cylinder 3, a telescopic material receiving cylinder 4, a docking ring 5, a screening frame 6, a dividing frame 7, a screen 8, a dust suction cavity 9, a guiding bottom plate 10, a sieve plate 11, an electric telescopic column 12, a filter screen 13, an adsorption hopper 14 and an intercepting net 15;

[0039] Among them, the installation box 1 is set as a rectangular box structure, and the installation box 1 is the outer shell device of the high-purity quartz sand processing equipment;

[0040] The sieve plate 11 is vertically and equidistantly arranged inside the installation box 1, and the sieve plate 11 is used for screening impurities in the high-purity quartz sand;

[0041] The upper end opening of the installation box 1 is snap-connected with a positioning cover 2, and a circular hole penetrated by the bottom end of the support cylinder 3 is arranged inside the positioning cover 2. The support cylinder 3 is a rectangular horn-shaped structure, and a telescopic material receiving cylinder 4 is installed at the top end of the support cylinder 3. A docking ring 5 is provided at the output end of the telescopic material receiving cylinder 4, and a threaded structure is arranged on the outer layer of the docking ring 5. The inner layer of the support cylinder 3 is equidistantly provided with a screening frame 6. The bottom end of the inner wall surface of the installation box 1 abuts against the bottom end of the dividing frame 7, and the bottom end of the dividing frame 7 is snap-connected with a guiding bottom plate 10;

[0042] The dividing frame 7 is installed inside the installation box 1. Screens 8 are symmetrically arranged on both sides of the dividing frame 7, and a convex structure penetrating the side wall surface of the installation box 1 is provided at the bottom end of the screen 8. An impurity removal component is arranged inside the dividing frame 7 to shake and disperse the high-purity quartz sand received by the docking ring 5, so as to facilitate the rapid separation of impurities in the quartz sand. A strip-shaped opening is provided on the side wall surface of the installation box 1 penetrated by the dividing frame 7, and the dividing frame 7 is set as a well-shaped structure. An L-shaped dust suction cavity 9 is formed between the screen 8 and the convex structure of the dividing frame 7, and the bottom end surface of the convex structure arranged on the side wall surface of the dividing frame 7 is flush with the bottom end of the inclined surface of the guiding bottom plate 10;

[0043] Combined with the Figures 1-6 shown in the accompanying drawings of the specification, when in use, pull the docking ring 5 to dock with one side of the high-purity quartz sand crushing equipment or the feeding pipeline. As the docking ring 5 is pulled, the telescopic material receiving cylinder 4 deforms, so that the telescopic material receiving cylinder 4 can send the collected quartz sand into the support cylinder 3. The screening frames 6 equidistantly arranged on the inner wall surface of the support cylinder 3, such asFigure 2 As shown, it is convenient to separate slightly adhered and caked quartz sand by dropping it from a height. As the support cylinder 3 is pushed into the installation box 1, the installation box 1 is docked with the positioning cover 2, as Figures 1-3 shown, a dividing frame 7 is arranged inside the installation box 1, as Figure 2 shown, the dividing frame 7 is arranged in a well-like structure, and a convex structure is arranged on the side wall of the dividing frame 7 and penetrates through the side wall of the installation box 1. A guiding bottom plate 10 is installed at the bottom end of the dividing frame 7 on the inner wall surface of the installation box 1, as Figure 2 shown, both sides of the guiding bottom plate 10 are inclined plane structures, which is convenient for the screened and dried quartz sand to pass through one side of the convex structure of the dividing frame 7 and be discharged. The quartz sand falling from the support cylinder 3 into the installation box 1 remains between the sieve plates 11 arranged in the dividing frame 7. The impurity removal component arranged inside the dividing frame 7 separates the caked quartz sand. The sieve mesh 8 arranged on the side wall of the dividing frame 7 is stably installed. Among them, a dust suction cavity 9 formed by the convex structure of the dividing frame 7 and the sieve mesh 8, as Figure 2 and Figure 6 shown, the sieve mesh 8 arranged inside the dividing frame 7 intercepts the finished quartz sand, which is convenient for recycling the floating dust produced by breaking up the quartz sand;

[0044] The impurity removal component includes:

[0045] Electric telescopic columns 12, the output ends of which are equidistantly arranged on both sides of the sieve plate 11;

[0046] Filter meshes 13, which are symmetrically arranged on the side wall of the installation box 1 provided with strip-shaped openings. The filter meshes 13 are arranged in parallel with the sieve mesh 8, and the filter meshes 13 are uniformly provided with hole structures inside;

[0047] Adsorption hoppers 14, which are installed on the surface of the filter meshes 13, and the adsorption hoppers 14 are in a funnel-shaped structure. An opening structure is arranged at the bottom end of the pipeline of the adsorption hoppers 14. A pipeline for docking with a dust suction device is arranged on one side of the adsorption hoppers 14, and a through-type hole is arranged at the bottom end of the docking pipeline arranged on the adsorption hoppers 14;

[0048] Intercepting nets 15, which are installed on one side of the opening of the adsorption hoppers 14;

[0049] Combined with the Figures 1-6 shown in the attached drawings of the specification, the sieve plate 11 vertically arranged inside the dividing frame 7, as Figure 2 shown, the hole plates arranged inside the sieve plate 11 are adjusted according to the diameter of the quartz sand. The electric telescopic columns 12 arranged on both sides of the sieve plate 11 are installed on the inner wall surface of the installation box 1, as Figures 2-3 and Figure 5As shown, the electric telescopic column 12 reciprocates with the power-driven push of the sieve plate 11, causing the wet and caked quartz sand to roll on the surface of the sieve plate 11. The filter screen 13 provided on the side wall of the installation box 1 is docked with the adsorption hopper 14, and then the adsorption hopper 14 is docked with a dust collection device or a blower. When the adsorption hopper 14 is docked with the blower, the interception net 15 is installed in the pipeline docked with the adsorption hopper 14. The filter screen 13 at the port of the adsorption hopper 14 prevents quartz sand from entering the interior of the adsorption hopper 14, as Figure 2 and Figure 6 shown, the opening at the bottom end of the pipeline docked with the adsorption hopper 14 facilitates the collection and cleaning of the dust remaining inside. With the cooperation of the blower and the adsorption hopper 14 to adsorb the wet quartz sand inside the partition frame 7, it is convenient to assist in drying the quartz sand, thereby achieving the screening process of the quartz sand.

[0050] Working principle: When using the high-purity quartz sand processing device with a dust removal function, the partition frame 7 is arranged at equal intervals inside and docked with the sieve plate 11. During use, the docking ring 5 is pulled to be docked with the high-purity quartz sand feeding pipeline, and the telescopic material receiving cylinder 4 provided at the bottom end of the docking ring 5 is directly docked with the support cylinder 3. After the high-purity quartz sand enters the support cylinder 3, it is screened and dispersed by the sieve frame 6, which is convenient for quickly separating the impurities attached to the surface of the high-purity quartz sand. With the rapid push-pull and shaking of the electric telescopic column 12 docked on both sides of the sieve plate 11, the screening of the quartz sand is realized, so that the quartz sand is quickly separated inside the partition frame 7. The sieve meshes 8 provided on both sides of the partition frame 7 are communicated with the adsorption hopper 14, and the connecting pipeline provided on one side of the adsorption hopper 14 is docked with the dust collection device. With the rapid extraction of the floating dust and impurities inside the partition frame 7 by the adsorption device, the impurities are lifted with the screening of the sieve plate 11 and are sucked by the wind through the sieve meshes 8 and the filter screen 13 into the interior of the adsorption hopper 14. After entering the interior of the adsorption hopper 14, they are intercepted by the interception net 15 on the surface of the adsorption device, and finally concentrated downward through the opening at the bottom end of the connecting pipeline of the adsorption hopper 14 and enter the dust collection income device, realizing the screening and dust removal operations of the high-purity quartz sand and increasing the overall practicability.

[0051] Although the embodiments of the present invention have been shown and described, for those of ordinary skill in the art, it can be understood that various changes, modifications, substitutions, and variations can be made to these embodiments without departing from the principles and spirit of the present invention. The scope of the present invention is defined by the appended claims and their equivalents.

Claims

1. A high-purity quartz sand processing device with dust removal function, comprising: The installation box (1) is configured as a rectangular box structure, and the installation box (1) is a shell device of high-purity quartz sand processing equipment; The sieve plates (11) are arranged in a vertical direction at equal intervals inside the installation box (1), and the sieve plates (11) are used for screening high-purity quartz sand to remove impurities; The invention is characterized in that: the upper opening of the installation box (1) is snap-fitted with a positioning cover (2), and a circular hole is provided inside the positioning cover (2) and penetrated by the bottom end of the support tube (3), the support tube (3) is a rectangular trumpet-shaped structure, and a telescopic material receiving tube (4) is installed on the top of the support tube (3), a docking ring (5) is provided at the output end of the telescopic material receiving tube (4), and the outer layer of the docking ring (5) is provided with a threaded structure, and the inner layer of the support tube (3) is equidistantly provided with sub-screening frames (6); A partition frame (7) is installed inside the installation box (1), and screens (8) are symmetrically arranged on both sides of the partition frame (7), and the partition frame (7) at the bottom end of the screen (8) is provided with a protruding structure that penetrates the side wall surface of the installation box (1), and the partition frame (7) is provided with; The impurity removal component is used to shake out the high-purity quartz sand received by the docking ring (5) so as to facilitate the rapid separation of impurities in the quartz sand.

2. The high-purity quartz sand processing device with dust removal function according to claim 1 is characterized in that: The bottom end of the inner wall surface of the installation box (1) abuts against the bottom end of the partition frame (7), and the bottom end of the partition frame (7) is snap-connected with a guide bottom plate (10).

3. The high-purity quartz sand processing device with dust removal function according to claim 1 is characterized in that: The side wall surface through which the installation box (1) and the partition frame (7) penetrate is provided with a strip opening, and the partition frame (7) is provided as a well-shaped structure.

4. The high-purity quartz sand processing device with dust removal function according to claim 1, characterized in that: An L-shaped dust suction chamber (9) is formed between the screen (8) and the raised structure of the partition frame (7), and the bottom end surface of the raised structure arranged on the side wall of the partition frame (7) is flush with the bottom end of the inclined surface of the guide bottom plate (10).

5. The high-purity quartz sand processing device with dust removal function according to claim 1, characterized in that: The impurity removal component comprises: An electric telescopic column (12), the output ends of which are equidistantly arranged on both sides of the sieve plate (11); A filter screen (13) is symmetrically arranged on a side wall surface of the installation box (1) provided with a strip-shaped opening; An adsorption hopper (14) is installed on the surface of the filter screen (13), and the adsorption hopper (14) is a funnel-shaped structure, and an opening structure is provided at the bottom end of the adsorption hopper (14) pipeline; An interception net (15) is installed on one side of the opening of the adsorption bucket (14).

6. The high-purity quartz sand processing device with dust removal function according to claim 5, characterized in that: The filter screen (13) and the screen screen (8) are arranged in parallel, and a hole structure is evenly arranged in the filter screen (13).

7. The high-purity quartz sand processing device with dust removal function according to claim 5, characterized in that: A pipe connected to the dust collection device is provided on one side of the adsorption bucket (14), and a through hole is provided at the bottom end of the connecting pipe provided on the adsorption bucket (14).