Iron removal equipment for ore screening
By designing an automated rotary motor drive system, the automatic removal and screening of iron filings on magnets in ore screening equipment is achieved, solving the problem of low production efficiency caused by manual removal of iron filings in the existing technology, and improving production efficiency.
Patent Information
- Application Number
- CN202422120716.7
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-08-29
- Publication Date
- 2025-08-08
- Estimated Expiration
- 2034-08-29
AI Technical Summary
The existing iron removal equipment for ore screening needs to be turned off when the magnet is full of iron and manually removed iron filings, which is time-consuming and labor-intensive and affects production efficiency.
An iron removal equipment for ore screening is designed. The rotating motor drives the lead screw and the synchronous pulley system to drive the magnet and scraper movement to automatically remove iron filings on the magnet, and the rotating motor drives the screen filter plate movement to perform screening.
It realizes automatic iron removal, reduces equipment downtime, improves production efficiency, and saves time and effort.
Smart Images

Figure CN223197176U_ABST
Abstract
Description
Technical Field
[0001] The utility model belongs to the technical field of iron removal devices for ore screening, in particular to iron removal equipment for ore screening. Background Art
[0002] Existing iron removal equipment for ore screening usually includes a box set on the ground, with a screw and a guide rod provided inside the box. The rotation of the screw drives the magnet to move, thereby removing iron from the ore inside the screening mechanism set at the bottom of the box, and then the scraper is moved manually to remove the iron on the magnet. In actual use, when the magnet is full of iron, the staff needs to close the screening mechanism and then slide the scraper to remove the iron on the magnet. This method of shutting down the screening machine to remove the iron on the magnet is time-consuming and labor-intensive, and requires shutting down the screening device, affecting production efficiency.
[0003] For example, the utility model with announcement number CN220311028U discloses a screening and iron removal equipment for silica sand production. In the technical solution of this patent, after the magnet adsorbs the iron in the material, the staff needs to shut down the screening device and then manually move the scraper to remove the iron material on the magnet. However, when removing the iron, the screening device needs to be shut down and the iron on the magnet needs to be manually removed, which is time-consuming and labor-intensive, and affects the overall production efficiency. Therefore, a kind of iron removal equipment for ore screening is proposed. Utility Model Content
[0004] In view of this, the utility model addresses the deficiencies of the existing technology and provides an iron removal equipment for ore screening, which can not only perform basic screening requirements on materials, but also drive the scraper to move through a moving mechanism, so that the scraper can automatically remove the iron on the magnet, avoiding the need to shut down the machine and then manually remove the iron on the magnet, saving time and effort and improving overall production efficiency.
[0005] In order to solve the above technical problems, the technical solution adopted by the utility model is: a de-ironing equipment for ore screening, comprising a box body, an adsorption box is arranged on the top of the box body, an adsorption mechanism is arranged inside the adsorption box, the adsorption mechanism comprises a screw arranged on the right side inside the adsorption box, a guide rod is arranged on the left side inside the adsorption box, a guide sleeve 1 is arranged on the guide rod, a guide sleeve 2 is arranged on the screw, a magnet is arranged between the two guide sleeves, a scraper is arranged on the magnet, a guide block is arranged on the top of the scraper, a first rotating motor connected to the screw is arranged on the front side of the adsorption box, the first rotating motor and the screw are connected by a coupling, and a horizontal moving mechanism is arranged near the top of the adsorption box.
[0006] As a further improvement of the present invention, the transverse moving mechanism includes a rotating shaft 1 arranged on the left side of the front and rear ends of the adsorption box, the outer ends of the two rotating shafts 1 are respectively provided with synchronous pulleys 1, and a rotating shaft 2 is respectively provided on the right side of the front and rear ends of the adsorption box, and the outer ends of the two rotating shafts 2 are respectively provided with synchronous pulleys 2, and a transmission belt is commonly provided between the synchronous pulley 1 and the synchronous pulley 2, and an L-shaped plate is respectively provided on the left ends of the front and rear ends of the adsorption box, and the inner ends of the two L-shaped plates are respectively provided with a second rotating motor connected to the synchronous pulley 1, and the second rotating motor is connected to the synchronous pulley 1 through a coupling, and slides are respectively provided on the front and rear sides of the adsorption box, and sliding bodies are respectively provided inside the two slides, and moving blocks connected to the transmission belt are respectively provided at the outer ends of the two sliding bodies, and a horizontal plate is commonly provided between the two sliding bodies, and a square hole corresponding to the guide block is provided in the middle of the horizontal plate, and a screening mechanism is provided inside the box body.
[0007] As a further improvement of the present invention, the screening mechanism includes a square frame arranged inside the box body, multiple springs are respectively arranged on the left and right sides of the top of the square frame, a screen plate is commonly arranged on the top of the multiple springs, a rotating shaft is arranged on the front side of the box body, a cam corresponding to the screen plate is arranged on the rear side of the rotating shaft, a third rotating motor is arranged on the front side of the rotating shaft, and the third rotating motor and the rotating shaft are connected by a coupling.
[0008] As a further improvement of the present invention, a discharge port is provided at the bottom of the box body, a discharge hole is provided at the bottom rear side of the adsorption box, a discharge port corresponding to the filter plate is provided on the left side of the box body, a discharge plate corresponding to the discharge port is provided on the left side of the box body, a top plate is provided on the top of the adsorption plate, a hopper is provided in the middle of the top of the top plate, an observation window is provided on the top of the top plate, a switch is provided on the front side of the box body, the switch is electrically connected to the first rotating motor, the second rotating motor and the third rotating motor, support legs are respectively provided at the four corners of the bottom of the box body, and anti-slip pads are respectively provided at the bottoms of the four support legs.
[0009] Compared with the prior art, the beneficial effects of the present invention are as follows:
[0010] First, this design scheme is provided with a first rotating motor. The rotation of the first rotating motor drives the screw to rotate, and the rotation of the screw drives the guide sleeve 2 to move, thereby moving the magnet connected to the guide sleeve 2. At this time, the magnet moves at the top of the screening mechanism, thereby removing the iron filings well.
[0011] Secondly, this design is provided with a second rotating motor. The rotation of the second rotating motor drives the synchronous pulley 1 to rotate, and the rotation of the synchronous pulley 1 drives the transmission belt to move. The movement of the transmission belt causes the moving block to move, and the moving block drives the sliding body set inside the slide to move. At this time, the cross plate drives the guide block to move, thereby driving the scraper to move on the magnet, thereby removing the iron filings well.
[0012] Thirdly, the present design is provided with a third rotary motor, the rotation of the third rotary motor drives the cam to rotate, and the cam then drives the screen plate to move, thereby better screening the material.
[0013] Fourthly, the setting of the discharge hole facilitates the discharge of iron chips. BRIEF DESCRIPTION OF THE DRAWINGS
[0014] The present invention will be further described in detail below with reference to the accompanying drawings and specific implementation methods.
[0015] Figure 1 It is a structural diagram of the utility model;
[0016] Figure 2 This is a schematic diagram of the internal structure of the utility model;
[0017] Figure 3 This is a schematic structural diagram of the screening mechanism of the present invention;
[0018] Figure 4 It is a partial enlarged structural diagram of output A of the present utility model.
[0019] In the figure: 101, box body; 102, adsorption box; 103, screw; 104, guide rod; 105, guide sleeve 1; 106, guide sleeve 2; 107, magnet; 108, scraper; 109, guide block; 110, first rotating motor; 111, synchronous pulley 1; 112, synchronous pulley 2; 113, transmission belt; 114, L-shaped plate; 115, second rotating motor; 116, slideway; 117, slide body; 118, moving block; 119, horizontal plate; 120, square hole; 201, square frame; 202, spring; 203, screen plate; 204, cam; 205, third rotating motor; 206, observation window; 207, hopper; 208, discharge port; 209, discharge plate; 210, switch. DETAILED DESCRIPTION
[0020] To better understand the present invention, the following examples further illustrate the present invention. However, the present invention is not limited to the following examples. In the following description, numerous specific details are provided to provide a more thorough understanding of the present invention. However, it is obvious to those skilled in the art that the present invention can be practiced without one or more of these details.
[0021] like Figure 1 、 2 As shown, an iron removal equipment for ore screening includes a box body 101, an adsorption box 102 is provided on the top of the box body 101, an adsorption mechanism is provided inside the adsorption box 102, the adsorption mechanism includes a screw 103 arranged on the right side of the adsorption box 102, a guide rod 104 is provided on the left side of the adsorption box 102, a guide sleeve 105 is provided on the guide rod 104, a guide sleeve 2 106 is provided on the screw 103, a magnet 107 is provided between the two guide sleeves, a scraper 108 is provided on the magnet 107, a guide block 109 is provided on the top of the scraper 108, a first rotating motor 110 connected to the screw 103 is provided on the front side of the adsorption box 102, the first rotating motor 110 and the screw 103 are connected by a coupling, and a horizontal moving mechanism is provided near the top of the adsorption box 102.
[0022] like Figure 1 、 2 As shown in FIG4 , the lateral movement mechanism includes a rotating shaft 1 provided on the left side of the front and rear ends of the adsorption box 102, and the outer ends of the two rotating shafts 1 are respectively provided with a synchronous pulley 111, and the right side of the front and rear ends of the adsorption box 102 is respectively provided with a rotating shaft 2, and the outer ends of the two rotating shafts 2 are respectively provided with a synchronous pulley 2 112, and a transmission belt 113 is commonly provided between the synchronous pulley 111 and the synchronous pulley 2 112, and the left ends of the front and rear ends of the adsorption box 102 are respectively provided with an L-shaped plate 114, and the inner ends of the two L-shaped plates 114 are respectively provided with a synchronous pulley 113. 11 is connected to the second rotating motor 115, the second rotating motor 115 is connected to the synchronous pulley 111 through a coupling, the front and rear sides of the adsorption box 102 are respectively provided with slides 116, the interiors of the two slides 116 are respectively provided with sliding bodies 117, the outer ends of the two sliding bodies 117 are respectively provided with moving blocks 118 connected to the transmission belt 113, a cross plate 119 is commonly provided between the two sliding bodies 117, the middle part of the cross plate 119 is provided with a square hole 120 corresponding to the guide block 109, and a screening mechanism is provided inside the box body 101.
[0023] like Figure 1 、 3As shown, the screening mechanism includes a square frame 201 arranged inside the box body 101, and multiple springs 202 are respectively arranged on the left and right sides of the top of the square frame 201, and a screening plate 203 is commonly arranged on the top of the multiple springs 202. A rotating shaft is provided on the front side of the box body 101, and a cam 204 corresponding to the screening plate 203 is provided on the rear side of the rotating shaft. A third rotating motor 205 is provided on the front side of the rotating shaft, and the third rotating motor 205 is connected to the rotating shaft through a coupling.
[0024] like Figure 1 As shown, a discharge port 211 is provided at the bottom of the box body 101, a discharge hole 212 is provided at the bottom of the rear side of the adsorption box 102, a discharge port 208 corresponding to the sieve plate 203 is provided on the left side of the box body 101, a discharge plate 209 corresponding to the discharge port 208 is provided on the left side of the box body 101, a top plate is provided on the top of the adsorption plate, a hopper 207 is provided in the middle of the top of the top plate, an observation window 206 is provided on the top of the top plate, a switch 210 is provided on the front side of the box body 101, and the switch 210 is electrically connected to the first rotating motor 110, the second rotating motor 115, and the third rotating motor 205, and support legs are respectively provided at the four corners of the bottom of the box body 101, and anti-slip pads are respectively provided at the bottoms of the four support legs.
[0025] The user first adds ore to the inside of the mesh hopper 207, and then starts the first rotating motor 110. The rotation of the first rotating motor 110 drives the screw 103 to rotate, and the rotation of the screw 103 drives the guide sleeve 2 106 to move, thereby moving the magnet 107 connected to the guide sleeve 2 106. At this time, the magnet 107 moves on the top of the screening mechanism, thereby removing the iron filings. The rotation of the second rotating motor 115 drives the synchronous pulley 111 to rotate, and the rotation of the synchronous pulley 111 drives the transmission belt 113 to move. The movement of the transmission belt 113 causes the moving block 118 to move, and the moving block 118 drives the sliding body 117 set inside the slide 116 to move. At this time, the cross plate 119 drives the guide block to move, thereby driving the scraper 108 to move on the magnet 107, thereby removing the iron filings.
[0026] The rotation of the third rotary motor 205 drives the cam 204 to rotate, and the cam 204 drives the screening plate 203 to move. The spring 202 is extended and retracted up and down, thereby screening the material.
[0027] Finally, it should be noted that the above embodiments are only used to illustrate the technical solution of the utility model and are not limiting. Other modifications or equivalent substitutions made to the technical solution of the utility model by ordinary technicians in this field should be included in the scope of the claims of the utility model as long as they do not depart from the spirit and scope of the technical solution of the utility model.
Claims
1. An iron removal device for ore screening, comprising a housing (101), characterized in that: An adsorption box (102) is provided on the top of the box body (101), and an adsorption mechanism is provided inside the adsorption box (102), the adsorption mechanism comprising a lead screw (103) provided on the right side inside the adsorption box (102), a guide rod (104) is provided on the left side inside the adsorption box (102), a guide sleeve 1 (105) is provided on the guide rod (104), a guide sleeve 2 (106) is provided on the lead screw (103), a magnet (107) is provided between the two guide sleeves, a scraper (108) is provided on the magnet (107), and a guide block (109) is provided on the top of the scraper (108), a first rotating motor (110) connected to the lead screw (103) is provided on the front side of the adsorption box (102), and a lateral moving mechanism is provided near the top of the adsorption box (102).
2. The iron removal equipment for ore screening according to claim 1, characterized in that: The transverse moving mechanism comprises a rotating shaft 1 provided on the left side of the front and rear ends of the adsorption box (102), the outer ends of the two rotating shafts 1 are respectively provided with synchronous pulleys 1 (111), the right sides of the front and rear ends of the adsorption box (102) are respectively provided with rotating shafts 2, the outer ends of the two rotating shafts 2 are respectively provided with synchronous pulleys 2 (112), a transmission belt (113) is commonly provided between the synchronous pulleys 1 (111) and the synchronous pulleys 2 (112), the left ends of the front and rear ends of the adsorption box (102) are respectively provided with L-shaped plates (114), the inner ends of the two L-shaped plates (114) are respectively provided with a drive belt connected to the synchronous pulley 1 (111). The second rotating motor (115) is connected to the first rotating motor (110) and the lead screw (103) via a coupling. Slideways (116) are respectively provided on the front and rear sides of the adsorption box (102). Sliders (117) are respectively provided inside the two slideways (116). The outer ends of the two sliders (117) are respectively provided with moving blocks (118) connected to the transmission belt (113). A transverse plate (119) is commonly provided between the two sliders (117). A square hole (120) corresponding to the guide block (109) is provided in the middle of the transverse plate (119). A screening mechanism is provided inside the box body (101).
3. The iron removal equipment for ore screening according to claim 2, characterized in that: The screening mechanism comprises a square frame (201) arranged inside a box (101), a plurality of springs (202) are respectively arranged on the left and right sides of the top of the square frame (201), a screening plate (203) is commonly arranged on the tops of the plurality of springs (202), a rotating shaft is arranged on the front side of the box (101), a cam (204) corresponding to the screening plate (203) is arranged on the rear side of the rotating shaft, and a third rotating motor (205) is arranged on the front side of the rotating shaft.
4. The iron removal equipment for ore screening according to claim 3, characterized in that: The first rotating motor (110) and the lead screw (103) are connected via a coupling.
5. The iron removal equipment for ore screening according to claim 4, characterized in that: The bottom of the box body (101) is provided with a feed opening (211), and the rear bottom of the adsorption box (102) is provided with a discharge hole (212).
6. The iron removal equipment for ore screening according to claim 5, characterized in that: A discharge port (208) corresponding to the sieve plate (203) is provided on the left side of the body, and a discharge plate (209) corresponding to the discharge port (208) is provided on the left side of the box body (101).
7. The iron removal equipment for ore screening according to claim 6, characterized in that: The adsorption box (102) is provided with a top plate on the top, a hopper (207) is provided in the middle of the top of the top plate, an observation window (206) is provided on the top of the top plate, a switch (210) is provided on the front side of the box body (101), and support legs are respectively provided at the four corners of the bottom of the box body (101), and anti-slip pads are respectively provided at the bottoms of the four support legs.
Citation Information
Patent Citations
Screening and iron removing equipment for silica sand production
CN220311028U