Sorting equipment for carburant processing

By combining vibration screening and guiding magnetic suction with wind screening, the problem of impurities mixing in the particle size screening of petroleum coke carbonizer has been solved, achieving efficient raw material separation and purification.

CN223875545UActive Publication Date: 2026-02-06ANSHAN SANUO NEW MATERIAL CO LTD
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Patent Information

Application Number
CN202520123602.X
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-01-20
Publication Date
2026-02-06
Estimated Expiration
2035-01-20

AI Technical Summary

Technical Problem

In the existing petroleum coke carbonizer particle size screening process, impurities mix with the raw materials, which increases the process and time required for subsequent purification and reduces processing efficiency.

Method used

A vibrating screening assembly is used for particle size screening, and combined with a purification assembly using a guiding magnetic suction component and a wind-powered screening assembly, the raw materials and impurities are separated.

Benefits of technology

It improves the accuracy and efficiency of screening, ensures the cleanliness of raw materials, reduces impurity content, and simplifies subsequent purification processes.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model provides separation equipment for processing carburant, and particularly relates to the technical field of separation equipment, the separation equipment comprises a vibration screening assembly for carrying out particle size screening on raw materials and a purification assembly for purifying the screened raw materials with the same particle size, the vibration screening assembly comprises a first cabinet body, and a second cabinet body is arranged on the first cabinet body; the first raw material injection opening is formed in the top of the first cabinet body, and the vibration screening pieces are arranged in the cabinet body; the arrangement of the vibration screening piece can conduct particle size screening on the crushed raw materials, the raw materials with the same particle size are located in the same interlayer, and the arrangement of the purification assembly can facilitate purification and screening work on the raw materials in the same interlayer by workers, so that the quality of the processed raw materials is guaranteed. The wind power screening assembly blows the fallen raw materials, and under the condition of the same specification, the raw materials and the impurities are different in mass, so that the raw materials and the impurities can do parabolic motion in different tracks after being subjected to wind power.
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Description

TECHNICAL FIELD

[0001] The utility model relates to sorting equipment technical field especially relates to a kind of sorting equipment for carbon additive processing. BACKGROUND

[0002] Petroleum coke carbon additive is an additive for increasing the carbon content of molten iron or molten steel. Its main component is carbon, and the carbon content can reach about 90%-99%. In addition to carbon, it also contains a small amount of hydrogen, oxygen, nitrogen, sulfur and other elements, as well as ash. The sulfur content is a key indicator because sulfur can have an adverse effect on the quality of steel during steelmaking. High-quality petroleum coke carbon additive has low sulfur content.

[0003] Petroleum coke carbon additive usually needs to be crushed, sized and purified during production. However, existing purification assemblies for petroleum coke carbon additive, such as the one disclosed in patent CN 209715710 U, use wind power to size the particles. However, during the sizing process, impurities in the raw material are also screened out. Without prior sizing, the use of wind power alone to screen the raw material after sizing will mix impurities of the same weight with the raw material. To address this issue, further purification of the screened raw material is required, which increases the process and time of raw material processing, thereby reducing the processing efficiency of the raw material.

[0004] Therefore, it is necessary to design a sorting equipment for carbon additive processing that has high screening accuracy and purifies the raw material during the screening process. UTILITY MODEL CONTENT

[0005] To solve the above problems, the utility model provides a sorting equipment for carbon additive processing to more accurately solve the above problems.

[0006] The utility model is implemented by the following technical solutions:

[0007] The utility model provides a kind of sorting equipment for carbon additive processing, including the vibration screening component for carrying out granularity screening to raw material, and the purification component for carrying out purification to the raw material of same granularity after screening, the vibration screening component includes first cabinet body, and the first raw material injection port of being set to the top of first cabinet body, and several vibration screening pieces being set in the first cabinet body, the vibration screening piece includes the several layer plates of being set to the inside two sides of first cabinet body, and the screening net of being set above layer plate and being movably connected with layer plate, and L frame being set to the bottom of layer plate and being connected with the inside of first cabinet body, the inside of L frame is provided with vibration piece, the output end of vibration piece passes through layer plate and is contacted with the bottom of screening net;

[0008] The purification component includes a second cabinet body, and a second raw material injection port is opened on one side of the top of the second cabinet body. A partition is arranged in the second cabinet body. The partition divides the inside of the second cabinet body and forms a first purification chamber and a second purification chamber. A plurality of guide magnetic attraction pieces are arranged in the first purification chamber in a staggered manner. A communication groove is opened on the partition to communicate the first purification chamber and the second purification chamber. A wind power screening assembly is arranged in the second purification chamber.

[0009] Further, the guide magnetic attraction piece includes a guide plate, and protruding portions arranged on both sides of the guide plate. A clamping groove is opened on the top of each protruding portion. A top plate is clamped in the clamping groove. A magnetic attraction piece is arranged on the bottom of the top.

[0010] Further, the end of the protruding portion on the top and the end of the guide plate are located above the protruding portion on the bottom.

[0011] Further, the wind power screening assembly 3 includes a wind power piece arranged below one side of the second cabinet body. The output end of the wind power piece passes through the second cabinet body and is located in the second purification chamber. A plurality of guide collection plates are arranged in the second purification chamber. A first collection piece is arranged on the inside of each guide collection plate. A second collection piece is arranged in the second purification chamber below the communication groove.

[0012] Further, a first movable door is hinged to the front end of the first cabinet body. A first connecting port is opened on the front end of the first movable door, and the number of the first connecting port is the same as that of the screening net. A hose is connected to one first connecting port. A second connecting port is connected to the other end of the hose. The second connecting port is located above the second raw material injection port.

[0013] Further, a second movable door is hinged to the front end of the second cabinet body, and is used to close the first purification chamber and the second purification chamber, respectively.

[0014] The utility model discloses an advantageous effect:

[0015] The setting of the vibrating screening component can carry out granularity screening on the crushed raw materials, and make the raw materials of the same granularity be in the same layer, and the setting of the purification assembly can facilitate the staff to carry out purification and screening work on the raw materials in the same layer, thereby guaranteeing the quality of the raw materials after processing, wherein the wind power screening assembly blows the falling raw materials, and under the condition of the same specification, the quality of the raw materials and impurities is different, so that the raw materials and impurities carry out parabolic motion of different trajectories after being subjected to the wind power, thereby completing the separation of the raw materials and impurities, and the content of impurities in the raw materials is maximized reduced, and the cleanliness of the raw materials is guaranteed. BRIEF DESCRIPTION OF DRAWINGS

[0016] Figure 1 It is the overall structure schematic diagram in the utility model;

[0017] Figure 2 It is the vibrating screening assembly structure schematic diagram in the utility model;

[0018] Figure 3 It is the vibrating screening component structure schematic diagram in the utility model;

[0019] Figure 4 It is the purification assembly and wind power screening assembly structure schematic diagram in the utility model;

[0020] Figure 5 It is the purification assembly cross section structure schematic diagram in the utility model;

[0021] Figure 6 It is the guide magnetic attraction piece structure schematic diagram in the utility model.

[0022] In the drawing, 1, vibrating screening assembly;11, first cabinet body;12, first raw material injection port;13, vibrating screening component;131, layer board;132, screening net;133, L frame;134, vibrating component;14, first movable door;141, first connecting port;142, hose;143, second connecting port;2, purification assembly;21, second cabinet body;22, second raw material injection port;23, partition;231, communication groove;24, first purification chamber;241, guide magnetic attraction piece;2411, guide plate;2412, protruding portion;2413, clamping groove;2414, top plate;2415, magnetic attraction piece;25, second movable door;3, wind power screening assembly;31, wind power component;32, second purification chamber;33, guide collection plate;34, first collection component;35, second collection component. DETAILED DESCRIPTION

[0023] In order to make the purpose, technical scheme and advantages of the embodiments of the utility model clearer, the technical scheme in the embodiments of the utility model will be described clearly and completely below. Obviously, the described embodiments are part of the embodiments of the utility model, not all. Based on the embodiments of the present application, all other embodiments obtained by those skilled in the art without creative labor belong to the protection scope of the utility model. Embodiments

[0024] Reference Figures 1-6 A kind of sorting equipment for carbonizer processing, including the vibration screening component 1 for carrying out particle size screening to raw material, and the purification component 2 for purifying the raw material of same particle size after screening, vibration screening component 1 includes first cabinet 11, and first raw material injection port 12 is arranged at the top of first cabinet 11, and a plurality of vibration screening pieces 13 are arranged in first cabinet 11, vibration screening piece 13 includes a plurality of layer plates 131 arranged at the two sides in first cabinet 11, and screening net 132 is arranged above layer plate 131 and movably connected with layer plate 131, and L bracket 133 is arranged at the bottom of layer plate 131 and connected with the inner side of first cabinet 11, the inner side of L bracket 133 is provided with vibration piece 134, the output end of vibration piece 134 passes through layer plate 131 and is in contact with the bottom of screening net 132;

[0025] The purification component 2 includes second cabinet 21, and second raw material injection port 22 is opened at the top of one side of second cabinet 21, and partition 23 is arranged in second cabinet 21, partition 23 divides the inside of second cabinet 21 and forms first purification chamber 24 and second purification chamber 32, a plurality of guide magnetic attraction pieces 241 are arranged in first purification chamber 24 in a staggered manner, and the communication groove 231 is opened in the partition 23, which communicates the first purification chamber 24 and the second purification chamber 32, and the wind power screening assembly 3 is arranged in the second purification chamber 32;

[0026] The vibration screening component 1 can screen the particle size of the crushed raw material, and the raw material of the same particle size is in the same layer, and the purification component 2 can facilitate the purification and screening of the raw material in the same layer by the worker, so as to ensure the quality of the raw material after processing.

[0027] Specifically, the staff takes out the raw materials after crushing and injects them into the first cabinet 11 through the first raw material injection port 12, and the vibration member 134 and the screening net 132 in the first cabinet 11 vibrate to screen the raw materials injected into the first cabinet 11; after the screening of the raw materials is completed, the staff can collect the raw materials on the screening net 132, and then inject the raw materials in the same layer into the second cabinet 21 through the second injection port, and after the raw materials are injected into the first cabinet 11, they move downward along the layout of the guide magnetic attraction members 241, and the guide magnetic attraction members 241 adsorb the magnetic impurities in the moving raw materials; secondly, the raw materials move to the second purification chamber 32 through the communication groove 231, and the air screening assembly 3 blows the falling raw materials, and in the same specification, the masses of the raw materials and impurities are different, so that after the raw materials and impurities are blown by the air, they move in different parabolic trajectories, so as to separate the raw materials and impurities and maximize the reduction of the content of impurities in the raw materials, thereby ensuring the cleanliness of the raw materials.

[0028] In the embodiment, the layer plate 131 can facilitate the staff to install the screening net 132 in the first cabinet 11, and the L-shaped bracket 133 can provide a basis for the installation of the vibration member 134, wherein the connection relationship between the vibration member 134 and the screening net 132 is that the output end of the vibration member 134 penetrates through the layer plate 131 and contacts the bottom of the screening net 132, and the screening net 132 is composed of a frame and a net body, and the inner groove matched with the output end of the vibration member 134 is formed in the bottom of the frame.

[0029] In the embodiment, the vibration member 134 can adopt an existing vibration structure, such as a vibration motor.

[0030] In the embodiment, considering the power supply of the vibration member 134, the staff can open a wire hole through which the power supply wire penetrates on both sides of the first cabinet 11, or use a built-in battery type vibration member 134.

[0031] In the embodiment, optionally, the communication groove 231 is fitted with a plug plate, wherein the staff can put the plug plate into the communication groove 231 when there is no raw material in the first purification chamber, at this time, the vibration screening assembly 1 continues to vibrate, and the vibration force is transmitted to the second cabinet 21, and the existence of the vibration force makes the magnetic impurities gradually fall onto the plug plate, thereby facilitating the staff to clean the magnetic impurities.

[0032] It should be noted that in this case, the magnetic force of the guide magnetic attraction member 241 is composed of an electromagnet, and of course it can also be a common magnet.

[0033] Preferably, referring to Figure 6The guiding magnetic attraction piece 241 comprises a guiding plate 2411 and protruding portions 2412 arranged on both sides of the guiding plate 2411, the top of each of the two protruding portions is provided with a clamping groove 2413, and a top plate 2414 is clamped in the clamping groove 2413, and the bottom of the top is provided with a magnetic attraction piece 2415;

[0034] The guiding plate 2411 can guide the movement direction of the raw materials and make the raw materials move downward along a preset track, and the magnetic attraction piece 2415 can adsorb the magnetic impurities in the moving raw materials, and the distance between the magnetic attraction piece 2415 and the guiding plate 2411 is greater than the diameter of the two raw materials;

[0035] In the embodiment, the protruding portions 2412 and the clamping grooves 2413 can facilitate the installation and disassembly of the top and the magnetic attraction piece 2415 by the workers, and the mounting structure of the top plate 2414 can adopt the existing clamping groove 2413 and clamping block structure.

[0036] In the embodiment, the magnetic attraction piece 2415 comprises an electromagnet or a magnet.

[0037] Preferably, the end of the upper protruding portion 2412 and the end of the guiding plate 2411 are located above the lower protruding portion 2412, and the end of the upper protruding portion 2412 and the end of the guiding plate 2411 are located above the lower protruding portion 2412 and exceed the lower protruding portion 2412 by one section, and the advantage of the arrangement is that it can ensure the movement of the work on the guiding plate 2411.

[0038] Preferably, referring to Figure 4 and Figure 5 The wind power screening assembly 3 comprises a wind power piece 31 arranged below one side of the second cabinet body 21, the output end of the wind power piece 31 penetrates through the second cabinet body 21 and is located in a second purification chamber 32, a plurality of guiding and collecting plates 33 are arranged in the second purification chamber 32, the inner side of each of the guiding and collecting plates 33 is provided with a first collecting piece 34, and a second collecting piece 35 is arranged in the second purification chamber 32 and below the communication groove 231;

[0039] The wind power piece 31 can blow the raw materials moving into the second purification chamber 32, and make the raw materials and the impurities in the raw materials move in different parabolic trajectories, and the raw materials moving in different trajectories will fall into the plurality of first collecting pieces 34 and the second collecting piece 35, respectively.

[0040] In the embodiment, the first collecting piece 34 and the second collecting piece 35 are arranged to collect and store the raw materials or the impurities.

[0041] In the embodiment, the wind power piece 31 can adopt an existing wind power structure, such as a fan for outputting gas.

[0042] Preferably, the front end of the first cabinet body 11 is hinged with a first movable door 14, the front end of the first movable door 14 is provided with a plurality of first connecting ports 141 which are equal in number to the screening nets, one of the first connecting ports 141 is connected with a hose 142, the other end of the hose 142 is connected with a second connecting port 143, the second connecting port 143 is located above the second raw material injection port 22, the first movable door 14 can be used to close and open the front end of the first cabinet body 11, so as to facilitate the installation and dismounting of the screening net 132 by the worker;

[0043] The first connecting port 141, the hose 142 and the second connecting port 143 can be used to inject the raw material on the screening net 132 into the first purification chamber 24, so as to ensure the further purification of the raw material; the first connecting port 141 is provided with a plurality of advantages, that is, the worker can use one of the first connecting ports 141 according to the actual use needs;

[0044] It should be noted that, in actual use, a fan with air extraction function is arranged between the first connecting port 141, the hose 142 and the second connecting port 143, that is, the fan extracts the raw material on the screening net 132 through the hose 142 and the first connecting port 141, and then outputs the extracted raw material into the second raw material injection port 22 through the second connecting port 143.

[0045] Preferably, referring to Figure 4 The front end of the second cabinet body 21 is hinged with a second movable door 25 which is used to close the first purification chamber 24 and the second purification chamber 32 respectively; the upper second movable door 25 can be used to control the closing and opening of the first purification chamber 24 by the worker, so as to facilitate the installation and dismounting of the top plate 2414 and the magnetic member 2415, and to complete the regular cleaning of the impurities adsorbed on the magnetic member 2415; the lower second movable door 25 can be used to control the closing and opening of the second purification chamber 32 by the worker, so as to facilitate the installation and dismounting of the first collecting member 34 and the second collecting member 35.

[0046] It should be noted that, the utility model only protects the mechanical part, and the function realized by the software control part is not within the protection range of the utility model.

[0047] Of course, the utility model also has other various implementation manners, based on the embodiment, the ordinary skilled in the art can obtain other implementation manners without any creative labor, which all belong to the protection range of the utility model.

Claims

1. A sorting apparatus for recarburizer processing, characterized by, Including the vibration screening assembly for the raw material particle size screening, and the purification assembly to the raw material of the same particle size after screening, the vibration screening assembly includes a first cabinet, and a first raw material injection port arranged at the top of the first cabinet, and a plurality of vibration screening elements arranged in the first cabinet, the vibration screening element includes a plurality of layers arranged at both sides of the first cabinet, and a screening net arranged above the layer and movably connected with the layer, and an L-shaped bracket arranged at the bottom of the layer and connected with the inner side of the first cabinet, the inner side of the L-shaped bracket is provided with a vibration element, the output end of the vibration element passes through the layer and contacts the bottom of the screening net; The purification assembly includes a second cabinet, and a second raw material injection port arranged at one side of the top of the second cabinet, the second cabinet is provided with a partition plate, the partition plate divides the inside of the second cabinet and forms a first purification chamber and a second purification chamber, a plurality of guide magnetic attraction elements are arranged in the first purification chamber, a communication groove is arranged on the partition plate and communicates the first purification chamber and the second purification chamber, and a wind power screening assembly is arranged in the second purification chamber.

2. A sorting apparatus for carburant processing according to claim 1, characterized in that, The guide magnetic attraction element includes a guide plate, and a protruding portion arranged at both sides of the guide plate, the top of the two protruding portions is provided with a clamping groove, the clamping groove is clamped with a top plate, and the bottom of the top portion is provided with a magnetic attraction element.

3. A sorting apparatus for the processing of carburant according to claim 2, characterized in that, The end of the upper protruding portion and the end of the guide plate are located above the lower protruding portion.

4. A sizing apparatus for carburant processing according to claim 1, characterized in that, The wind power screening assembly includes a wind power element arranged below one side of the second cabinet, the output end of the wind power element passes through the second cabinet and is located in the second purification chamber, a plurality of guide collection plates are arranged in the second purification chamber, the inner side of the guide collection plate is provided with a first collection element, and a second collection element is arranged in the second purification chamber and below the communication groove.

5. A sorting apparatus for carburant processing according to claim 1, characterized in that, The front end of the first cabinet is hinged with a plurality of first movable doors which are used for closing the vibration screening elements and the number of the first movable doors is same as that of the vibration screening elements, the front end of the first movable door is provided with a first connecting port which is same in number with the screening nets, a hose is connected to one of the first connecting ports, the other end of the hose is connected with a second connecting port, and the second connecting port is located above the second raw material injection port.

6. A sizing apparatus for carburant processing according to claim 1, characterized in that, The front end of the second cabinet is hinged with a second movable door which is used for closing the first purification chamber and the second purification chamber respectively.

Citation Information

Patent Citations

  • Carburant particle grading screening device

    CN209715710U