Raw material impurity removing device

By designing the left and right and up and down shaking of the multi-stage filter in the raw material decomposition device, the problem of decreasing filtration effect caused by raw material accumulation is solved, and the rapid and efficient removal of raw materials is achieved, which improves the filtration effect and reduces waste.

CN223113549UActive Publication Date: 2025-07-18HENAN RUNYUAN ENVIRONMENTAL PROTECTION MATERIAL CO LTD
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Patent Information

Application Number
CN202421871688.6
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-08-02
Publication Date
2025-07-18
Estimated Expiration
2034-08-02

AI Technical Summary

Technical Problem

During the use of existing raw material removal devices, the raw materials may accumulate on the filter net when they fall, resulting in a decrease in filtration effect and waste of raw materials.

Method used

By driving the multi-stage filter to shake in the left and right and up and down directions, the sliding seat and slide column in the degreasing box is driven by the electronic control module to shake the filter, and combined with the design of telescopic hose and chute plate, multi-stage filtering is achieved.

Benefits of technology

It achieves rapid and efficient removal of raw materials, improves filtration effect, and reduces waste of raw materials.

✦ Generated by Eureka AI based on patent content.

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  • Figure CN223113549U_ABST
    Figure CN223113549U_ABST
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Abstract

The utility model provides a raw material impurity removing device which comprises a machine frame, an installation base is arranged on the lower surface of the machine frame, four evenly-distributed installation holes are formed in the lower surface of the installation base, a machine box is arranged on the upper side of the interior of the machine frame, a feeding pipe is arranged at the position of a feeding port formed in the upper surface of the machine box, and a plurality of evenly-distributed discharging ports are formed in the front side of the machine box. Two impurity boxes evenly distributed up and down are slidably arranged at the upper end of the front side of the rack, a raw material box is slidably arranged at the lower end of the front side of the rack, two guide rails symmetrically distributed front and back are arranged at the bottom end of the interior of the rack, a sliding seat is slidably arranged between the two guide rails, and four sliding columns evenly distributed are slidably arranged on the upper surface of the sliding seat; an impurity removing box, a filtering impurity removing module and an electric control module are arranged between the top ends of the sliding columns. According to the raw material impurity removing device disclosed by the utility model, the multi-stage filter screen is driven to shake in the left-right and up-down directions, so that impurities of raw materials can be quickly and efficiently removed.
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Description

Technical Field

[0001] The utility model belongs to the technical field of environmental protection material production, and particularly relates to a raw material impurity removal device. Background Art

[0002] Environmental protection materials, also known as green materials or ecological materials, refer to materials that have less impact on the environment during the production, use, and waste treatment processes, can save resources and energy, and are harmless or have minimal harm to human health.

[0003] In the existing raw material impurity removal device, the raw materials of environmental protection materials are added into the raw material impurity removal device, and the raw materials are filtered in multiple stages through multiple filter meshes in the raw material impurity removal device to achieve impurity removal of the raw materials. However, in the actual use process, since the raw materials may accumulate on the filter meshes during the falling process, the filtering effect of the raw materials decreases, resulting in waste of raw materials. Content of the Utility Model

[0004] In view of this, aiming at the deficiencies of the prior art, the utility model provides a raw material impurity removal device, which can quickly and efficiently remove impurities from raw materials by driving the multi-stage filter meshes to shake in the left-right and up-down directions.

[0005] To solve the above technical problems, the technical solution adopted by the utility model is: a raw material impurity removal device, including a frame, an installation seat is arranged on the lower surface of the frame, four uniformly distributed installation holes are opened on the lower surface of the installation seat, a chassis is arranged on the upper side inside the frame, a feed pipe is arranged at the feed inlet opened on the upper surface of the chassis, a plurality of uniformly distributed discharge ports are opened on the front side of the chassis, two uniformly distributed impurity boxes are slidably arranged at the upper end of the front side of the frame, a raw material box is slidably arranged at the lower end of the front side of the frame, two symmetrically distributed guide rails are arranged at the bottom end inside the frame, a sliding seat is slidably arranged between the two guide rails, four uniformly distributed sliding columns are slidably arranged on the upper surface of the sliding seat, a de-impurity box is arranged between the tops of the sliding columns, the de-impurity box is communicated with the feed pipe through a telescopic hose, and a filter and impurity removal module for filtering and removing impurities from raw materials is further arranged on the de-impurity box, and an electric control module for driving the de-impurity box to shake is arranged on the chassis; the filter and impurity removal module includes a first filter mesh arranged on the upper side inside the de-impurity box, a second filter mesh is arranged in the middle of the inside of the de-impurity box, a chute plate is arranged on the lower side inside the de-impurity box, and a plurality of uniformly distributed discharge pipes are arranged on the front side of the de-impurity box, and the first filter mesh, the second filter mesh and the chute plate are respectively installed in cooperation with the adjacent discharge pipes.

[0006] As a further improvement of the present utility model, the electronic control module includes four uniformly distributed reset springs evenly arranged between the impurity removal box and the sliding seat. The reset springs are respectively sleeved on the outer side surfaces of the sliding columns. A rotating rod is rotatably arranged between the bottom ends of two adjacent sliding columns. Roller sleeves are fixedly sleeved on the front and rear ends of the outer arc surface of the rotating rod. Two symmetrically distributed adjusting rails are arranged at the bottom end inside the chassis, and the adjusting rails are respectively installed in cooperation with the adjacent rollers. An electric drive unit for driving the impurity removal box to move is further arranged on the chassis; the electric drive unit includes an adjusting screw rod rotatably arranged at the lower side inside the chassis, and a threaded groove opened inside the sliding seat is in threaded connection with the adjusting screw rod. A drive assembly for driving the adjusting screw rod to rotate is further arranged on the chassis.

[0007] As a further improvement of the present utility model, the drive assembly includes a motor arranged on the left side of the chassis, and the output shaft of the motor is fixedly connected to the adjusting screw rod through a coupling; a control panel is arranged on the left side of the frame, and the motor is electrically connected to the control panel.

[0008] As a further improvement of the present utility model, handles are arranged on the front sides of the impurity box and the raw material box, and rubber sleeves are sleeved on the middle parts of the handles.

[0009] Compared with the prior art, the beneficial effects of the present utility model are as follows:

[0010] First, the raw materials to be decontaminated are added into the chassis through the feed pipe, so that the first filter screen and the second filter screen perform multi-stage filtering on the impurities between the raw materials. The filtered impurities enter the impurity box through the two discharge pipes on the upper side. The raw materials after being filtered by the first filter screen and the second filter screen enter the raw material box through the lower discharge pipe under the action of the chute plate, realizing the decontamination of the raw materials.

[0011] Second, the operation of the motor is controlled through the control panel, so that the sliding seat drives the impurity removal box connected thereto to slide left and right reciprocally, causing the first filter screen, the second filter screen and the chute plate inside the impurity removal box to shake left and right.

[0012] Third, during the left and right reciprocating movement of the impurity removal box, the rollers at the bottom ends of the sliding columns move on the adjacent adjusting rails respectively, causing the first filter screen, the second filter screen and the chute plate inside the impurity removal box to shake up and down during the left and right shaking process. By driving the first filter screen, the second filter screen and the chute plate to shake in the left and right and up and down directions, the raw materials can be decontaminated quickly and efficiently.

[0013] Fourth, the rubber sleeves sleeved on the middle parts of the handles can increase the holding experience of personnel and prevent slipping when collecting and processing the filtered impurities. Description of the Drawings

[0014] The present utility model will be further described in detail below in conjunction with the drawings and specific embodiments.

[0015] Figure 1 is a schematic structural diagram of the present utility model;

[0016] Figure 2 is a schematic internal sectional structural diagram of the present utility model;

[0017] Figure 3 is a schematic enlarged structural diagram at position A of the present utility model;

[0018] Figure 4 is a schematic internal planar structural diagram of the present utility model.

[0019] In the figure: 101, frame; 102, mounting seat; 103, mounting hole; 104, chassis; 105, feed pipe; 106, discharge port; 107, miscellaneous material box; 108, raw material box; 109, telescopic hose; 110, handle; 111, rubber sleeve; 201, guide rail; 202, sliding seat; 203, impurity removal box; 204, first filter screen; 205, second filter screen; 206, chute plate; 207, discharge pipe; 208, sliding column; 209, return spring; 210, adjusting rail; 211, roller; 212, adjusting lead screw; 213, motor; 301, control panel. Specific embodiments

[0020] To better understand the present utility model, the content of the present utility model will be further clearly elaborated below in conjunction with embodiments. However, the protected content of the present utility model is not limited to the following embodiments. In the following description, a large number of specific details are given to provide a more thorough understanding of the present utility model. However, it is obvious to those skilled in the art that the present utility model can be implemented without one or more of these details.

[0021] Such as Figure 1 、 2, as shown in Figures 4, it includes a frame 101. An installation base 102 is provided on the lower surface of the frame 101. Four uniformly distributed installation holes 103 are opened on the lower surface of the installation base 102. It is characterized in that: a chassis 104 is provided on the upper side inside the frame 101. A feed pipe 105 is provided at the feed inlet opened on the upper surface of the chassis 104. A plurality of uniformly distributed discharge ports 106 are opened on the front side of the chassis 104. Two uniformly distributed miscellaneous material boxes 107 are slidably arranged at the upper end of the front side of the frame 101. A raw material box 108 is slidably arranged at the lower end of the front side of the frame 101. Two symmetrically distributed guide rails 201 are arranged at the bottom end inside the frame 101. A sliding seat 202 is slidably arranged between the two guide rails 201. Four uniformly distributed sliding columns 208 are slidably arranged on the upper surface of the sliding seat 202. A decontamination box 203 is arranged between the tops of the sliding columns 208. The decontamination box 203 is communicated with the feed pipe 105 through a telescopic hose 109. A filtering and decontamination module for filtering and removing impurities from the raw materials is also provided on the decontamination box 203. An electric control module for driving the decontamination box 203 to shake is also provided on the chassis 104.

[0022] As Figure 2 , 3 , as shown in Figures 4, the filtering and decontamination module includes a first filter screen 204 arranged on the upper side inside the decontamination box 203. A second filter screen 205 is arranged in the middle inside the decontamination box 203. A chute plate 206 is arranged on the lower side inside the decontamination box 203. A plurality of uniformly distributed discharge pipes 207 are arranged on the front side of the decontamination box 203. The first filter screen 204, the second filter screen 205 and the chute plate 206 are respectively installed in cooperation with the adjacent discharge pipes 207.

[0023] As Figure 2 , 3 , as shown in Figures 4, the electric control module includes four uniformly distributed return springs 209 evenly arranged between the decontamination box 203 and the sliding seat 202. The return springs 209 are respectively sleeved on the outer side surfaces of the sliding columns 208. A rotating rod is rotatably arranged between the bottom ends of two adjacent sliding columns 208. Roller wheels 211 are fixedly sleeved on the front and rear ends of the outer arc surface of the rotating rod. Two symmetrically distributed adjusting rails 210 are arranged at the bottom end inside the chassis 104. The adjusting rails 210 are respectively installed in cooperation with the adjacent roller wheels 211. An electric driving unit for driving the decontamination box 203 to move is also provided on the chassis 104; The electric driving unit includes an adjusting screw rod 212 rotatably arranged on the lower side inside the chassis 104. A threaded groove opened inside the sliding seat 202 is threadedly connected with the adjusting screw rod 212. A driving assembly for driving the adjusting screw rod 212 to rotate is also provided on the chassis 104; The driving assembly includes a motor 213 arranged on the left side of the chassis 104. The output shaft of the motor 213 is fixedly connected with the adjusting screw rod 212 through a coupling.

[0024] As Figure 1 ,2 As shown in FIGS. 1 and 4, a control panel 301 is provided on the left side of the frame 101, and the motor 213 is electrically connected to the control panel 301.

[0025] During the production of environmentally friendly materials, when it is necessary to remove impurities from the raw materials, the operator adjusts the operation of the motor 213 through the control panel 301, so that the output shaft of the motor 213 drives the adjusting screw rod 212 connected thereto to rotate forward and backward in a cycle, and then the adjusting screw rod 212 drives the sliding seat 202 threadedly connected thereto to slide back and forth left and right between the two guide rails 201, so that the sliding seat 202 drives the impurity removal box 203 connected thereto to slide back and forth left and right, so that the first filter screen 204, the second filter screen 205 and the chute plate 206 inside the impurity removal box 203 shake left and right; during the process of the impurity removal box 203 moving back and forth left and right, the rollers 211 at the bottom ends of the sliding columns 208 respectively move on the adjacent adjusting rails 210, and the cooperation relationship between the adjusting rails 210 and the rollers 211 drives the four sliding columns 208 to slide up and down reciprocally between the sliding seat 202, and then drives the impurity removal box 203 at the top ends of the four sliding columns 208 to shake up and down, so that the first filter screen 204, the second filter screen 205 and the chute plate 206 inside the impurity removal box 203 shake up and down during the process of shaking left and right; the raw materials to be removed of impurities are added into the machine box 104 from the feed pipe 105, so that the raw materials enter the inside of the impurity removal box 203 through the telescopic hose 109, and the impurity removal box 203 drives the first filter screen 204 and the second filter screen 205 inside it to continuously shake left and right and up and down, so that the first filter screen 204 and the second filter screen 205 perform multi-stage filtration on the impurities between the raw materials, and the filtered impurities enter the miscellaneous material box 107 through the two discharge pipes 207 on the upper side, and the raw materials after being filtered by the first filter screen 204 and the second filter screen 205 enter the raw material box 108 through the lower discharge pipe 207 under the action of the chute plate 206, realizing the impurity removal of the raw materials.

[0026] According to another embodiment of the present invention, as Figure 1 、 2 、4 shown, handles 110 are provided on the front sides of both the miscellaneous material box 107 and the raw material box 108, and rubber sleeves 111 are sleeved on the middle parts of the handles 110. When it is necessary to collect and process the filtered impurities and residues, the operator can pull out the miscellaneous material box 107 and the raw material box 108 through the handles 110, and the rubber sleeves 111 sleeved on the middle parts of the handles 110 can increase the holding experience of the operator and prevent slipping at the same time.

[0027] Finally, it should be noted that the above embodiments are only used to illustrate the technical solutions of the present invention and not to limit them. Any other modifications or equivalent replacements made by those of ordinary skill in the art to the technical solutions of the present invention shall be covered within the scope of the claims of the present invention as long as they do not depart from the spirit and scope of the technical solutions of the present invention.

Claims

1. A raw material impurity removal device, comprising a frame (101), wherein a mounting seat (102) is arranged on the lower surface of the frame (101), and four uniformly distributed mounting holes (103) are formed in the lower surface of the mounting seat (102), and it is characterized in that: Inside the upper side of the frame (101), a chassis (104) is provided. At the feeding port opened on the upper surface of the chassis (104), a feeding pipe (105) is provided. On the front side of the chassis (104), a plurality of uniformly distributed discharging ports (106) are opened. On the upper front side of the frame (101), two uniformly distributed miscellaneous material boxes (107) are slidably arranged up and down. On the lower front side of the frame (101), a raw material box (108) is slidably arranged. At the bottom end inside the frame (101), two symmetrically distributed guide rails (201) are arranged front and back. Between the two guide rails (201), a sliding seat (202) is slidably arranged. On the upper surface of the sliding seat (202), four uniformly distributed sliding columns (208) are slidably arranged. Between the top ends of the sliding columns (208), a impurity removing box (203) is arranged. The impurity removing box (203) is communicated with the feeding pipe (105) through a telescopic hose (109). On the impurity removing box (203), a filtering and impurity removing module for filtering and removing impurities from the raw material is further provided. On the chassis (104), an electric control module for driving the impurity removing box (203) to shake is further provided.

2. The raw material impurity removal device according to claim 1, characterized in that: The filtering and impurity removing module includes a first filter screen (204) arranged on the upper side inside the impurity removing box (203), a second filter screen (205) arranged in the middle inside the impurity removing box (203), a chute plate (206) arranged on the lower side inside the impurity removing box (203), and a plurality of uniformly distributed discharging pipes (207) arranged on the front side of the impurity removing box (203). The first filter screen (204), the second filter screen (205) and the chute plate (206) are respectively installed in cooperation with the adjacent discharging pipes (207).

3. The raw material impurity removal device according to claim 1, wherein: The electric control module includes four uniformly distributed reset springs (209) evenly arranged between the impurity removing box (203) and the sliding seat (202). The reset springs (209) are respectively sleeved on the outer side surfaces of the sliding columns (208). Between the bottom ends of two adjacent sliding columns (208) front and back, a rotating rod is rotatably arranged. At the front and back ends of the outer arc surface of the rotating rod, rollers (211) are fixedly sleeved. At the bottom end inside the chassis (104), two symmetrically distributed adjusting rails (210) are arranged front and back. The adjusting rails (210) are respectively installed in cooperation with the adjacent rollers (211). On the chassis (104), an electric driving unit for driving the impurity removing box (203) to move is further provided.

4. The raw material impurity removal device according to claim 3, characterized in that: The electric driving unit includes an adjusting screw rod (212) rotatably arranged on the lower side inside the chassis (104). A threaded groove opened inside the sliding seat (202) is threadedly connected with the adjusting screw rod (212). On the chassis (104), a driving assembly for driving the adjusting screw rod (212) to rotate is further provided.

5. The raw material impurity removal device according to claim 4, wherein: The driving assembly includes a motor (213) arranged on the left side of the chassis (104). The output shaft of the motor (213) is fixedly connected with the adjusting screw rod (212) through a coupling.

6. The raw material impurity removal device according to claim 5, wherein: A control panel (301) is arranged on the left side of the frame (101). The motor (213) is electrically connected with the control panel (301).

7. The raw material impurity removal device according to claim 1, characterized in that: A handle (110) is provided on the front sides of both the miscellaneous material box (107) and the raw material box (108), and a rubber sleeve (111) is sleeved on the middle part of the handle (110).