Efficient, energy-saving, anti-splashing and easy-to-clean type tailing recycling machine

By introducing adjustment and cleaning components into the tailings recovery machine, the problem of unadjustable disk gaps was solved, enabling efficient separation and cleaning of magnetic minerals.

CN223732942UActive Publication Date: 2025-12-30TANGSHAN ZHIHE HONGEN MECHANICAL & ELECTRICAL EQUIP CO LTD +1
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Patent Information

Application Number
CN202423215564.5
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-12-25
Publication Date
2025-12-30
Estimated Expiration
2034-12-25

AI Technical Summary

Technical Problem

Existing tailings recovery machines cannot adjust the disk spacing when dealing with tailings slurries of different concentrations and flow rates, resulting in incomplete separation of magnetic minerals.

Method used

An adjustment assembly, including a bidirectional motor-driven threaded rod and bevel gear system, is used to adjust the disk spacing, and a scraper cleaning assembly is used to achieve efficient separation and cleaning of magnetic minerals.

Benefits of technology

It enables automatic adjustment of disk gaps based on tailings slurry concentration and flow rate, improving the separation efficiency of magnetic minerals and simplifying the cleaning process.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model relates to the technical field of tailing recycling, and provides an efficient energy-saving anti-splashing easy-to-clean tailing recycling machine which comprises a recycling machine body, an adjusting assembly is fixed at the top of the recycling machine body, a waterproof cover is fixed at the top of the adjusting assembly, and a cleaning assembly is fixed in the recycling machine body. A discharging port is formed in the left side of the recycling machine body, a feeding port is formed in the right side of the recycling machine body, and a concentrate port is fixed to the front face of the recycling machine body. By means of the technical scheme, the problems that when an efficient energy-saving anti-splashing easy-to-clean tailing recycling machine in the prior art is used, due to the fact that the concentration and the flow speed of tailing slurry are different, gaps between the fixed magnetic discs cannot be changed according to the concentration and the flow speed of the tailing slurry; therefore, the problem that the magnetic disk cannot completely separate the magnetic minerals in the tailing slurry is solved.
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Description

TECHNICAL FIELD

[0001] The utility model relates to tailing recovery technical field, specifically, efficient energy -conserving anti -splash easy clean type tailing recovery machine. BACKGROUND

[0002] Tailing recovery machine it can effectively reduce the loss of tailings, and reduce the content of effective component in tail water, and the pollution problem of tailings to the environment is solved, and the discharge standard of environmental protection requirement is reached. Tailing recovery machine is widely used in metallurgy, mine, water conservancy, hydropower, sandstone factory, glass factory, coal preparation plant coarse coal recovery, and environmental protection engineering, shield machine (mud purification) and other engineering projects.

[0003] Chinese patent CN219003368U provides an efficient energy-saving anti-splashing easy-to-clean tailing recovery machine, characterized by including a rack, a rotating shaft, a tailing bucket, a plurality of discs arranged along the axial direction of the rotating shaft, a plurality of chutes respectively arranged between adjacent two discs, a water spraying assembly located above the discs, a protective cover above the front of the disc, an air jet on the inner wall of the protective cover, a magnetic disc and a magnetic block inside each disc. The utility model utilizes the disc with the magnetic disc to adsorb the magnetic ore in the tailing bucket, the water spraying assembly sprays the side wall of the disc to make the magnetic ore fall into the chute, the protective cover avoids the spraying water from splashing outward, and the air jet sprays into the gap between the adjacent two discs. The magnetic ore on the disc can be unloaded by air flow, and the splashing of water can be avoided. The water spraying assembly can be driven to rotate by the rotary drive member, so that the water spraying assembly rotates and swings forward to move away from the disc, facilitating cleaning or replacement.

[0004] The above-mentioned efficient energy-saving anti-splashing easy-to-clean tailing recovery machine has the problems that the fixed magnetic disc cannot change the gap between the magnetic discs according to the concentration and flow rate of the tailing slurry, and the magnetic disc cannot completely separate the magnetic minerals in the tailing slurry. Utility model content

[0005] The utility model provides efficient energy-saving anti-splashing easy-to-clean tailing recovery machine, solved the problem in related art that the fixed magnetic disc cannot change the gap between the magnetic discs according to the concentration and flow rate of the tailing slurry, and the magnetic disc cannot completely separate the magnetic minerals in the tailing slurry.

[0006] The technical scheme of the utility model is as follows: efficient energy-saving anti-splashing easy-to-clean tailing recovery machine, including the recovery machine body, the recovery machine body top is fixed with adjusting assembly, the adjusting assembly top is fixed with waterproof cover, the recovery machine body inside is fixed with cleaning assembly, the recovery machine body left side is set with discharge gate, the recovery machine body right side is set with feeding port, the recovery machine body front is fixed with fine material port;

[0007] The adjusting assembly comprises a rotating column, an adjusting groove is formed in the rotating column, a bidirectional motor is fixed in the middle of the adjusting groove, threaded rods are fixed at the output ends of the bidirectional motor, driving bevel gears are fixed at the other ends of the threaded rods, connecting gears are meshingly connected to the side surfaces of the driving bevel gears, first driven bevel gears are meshingly connected to the other side surfaces of the connecting gears, threaded blocks are threadedly connected in the threaded rods, and magnetic discs are fixed at the top of the threaded blocks.

[0008] Preferably, a partition plate is fixed in the adjusting groove, a connecting opening is formed in the partition plate, a connecting gear is rotatably connected in the connecting opening, an adjusting opening is formed at the top of the adjusting groove, and a baffle is fixed at the side surface of the threaded block.

[0009] Preferably, connecting gears are meshingly connected to the left and right ends of the first driven bevel gear, and a second driven bevel gear is meshingly connected to the side of the connecting gear away from the first driven bevel gear.

[0010] Preferably, the baffle is provided with six groups, the six groups of baffles are symmetrically distributed on the two sides of the bidirectional motor, and the lengths of the adjusting openings on the two sides of the bidirectional motor gradually increase.

[0011] Preferably, the diameter of the driving bevel gear is greater than the diameter of the first driven bevel gear, the diameter of the first driven bevel gear is greater than the diameter of the second driven bevel gear, the thread direction of the threaded rod on the side surface of the driving bevel gear is opposite to that of the threaded rod in the middle of the first driven bevel gear, and the thread direction of the threaded rod on the side surface of the driving bevel gear is the same as that of the threaded rod on the side surface of the second driven bevel gear.

[0012] Preferably, a moving groove is formed at the top of the recycling machine body, a sliding rod is fixed in the moving groove, a sliding ring is slidably connected in the sliding rod, and a scraper is fixed at the top of the sliding ring.

[0013] Preferably, the cleaning assembly comprises a flow chute, a sliding groove is formed in the inner wall of the flow chute, an electric motor is fixed at the outer side of the recycling machine body, a transmission screw rod is fixed at the output end of the electric motor, a sliding block is threadedly connected in the transmission screw rod, a connecting block is fixed at the side surface of the sliding block, an extension rod is fixed at the bottom of the connecting block, and a cleaning plate is fixed at the bottom of the extension rod.

[0014] Preferably, the sliding groove is formed at the horizontal center of the feeding port and the discharging port.

[0015] The working principle and beneficial effects of the recycling machine are as follows:

[0016] 1. The utility model discloses a adjusting assembly is set up through, two -way motor drives screw rod rotation, with connecting gear meshing of screw rod side driven bevel gear, to drive first driven bevel gear rotation, and first driven bevel gear drives second driven bevel gear rotation through connecting gear, with adjusting opening of screw block moves in screw rod of magnetic disk and carries out the adjustment of interval, simultaneously, and make the scraper move in the slide pole through the sliding ring, and adjust, the existing high -efficient energy -conserving anti -spray easy cleaning type tailing recovery machine when using, due to the concentration and flow rate of tailing pulp are different, lead to fixed magnetic disk and cannot change the clearance between the magnetic disk according to the concentration and flow rate of tailing pulp, lead to the problem that the magnetic disk cannot completely separate the magnetic mineral in tailing pulp, reach through adjusting assembly, with the concentration and flow rate of slurry adjust the interval of disc, to reach the effect of high -efficient magnetic mineral separation. BRIEF DESCRIPTION OF DRAWINGS

[0017] The utility model will be further explained in detail below in combination with the drawings and specific embodiment.

[0018] Fig. 1 It is external structure schematic diagram of the utility model;

[0019] Fig. 2 It is adjusting assembly side sectional view structure drawing of the utility model;

[0020] Fig. 3 It is adjusting scraper side sectional view structure drawing of the utility model;

[0021] Fig. 4 It is external structure rear view of the utility model;

[0022] Fig. 5 It is cleaning assembly internal structure schematic diagram of the utility model.

[0023] In the drawing: 1, recovery machine body;2, adjusting assembly;21, rotation column;22, adjusting groove;23, two -way motor;24, screw rod;25, driving bevel gear;26, connecting gear;27, first driven bevel gear;28, second driven bevel gear;29, screw block;210, adjusting opening;211, baffle;212, partition;213, connecting port;214, moving groove;215, slide pole;216, sliding ring;217, scraper;218, magnetic disk;3, cleaning assembly;31, flow ore groove;32, electric motor;33, sliding groove;34, transmission screw;35, sliding block;36, connecting block;37, telescopic link;38, cleaning plate;4, waterproof cover;5, feed inlet;6, discharge port;7, concentrate port. SPECIFIC EMBODIMENT

[0024] The technical solutions in the embodiments of the utility model will be clearly and completely described below in combination with the embodiments of the utility model. Obviously, the described embodiments are only part of the embodiments of the utility model, rather than all the embodiments. Based on the embodiments of the utility model, all other embodiments obtained by those skilled in the art without creative labor are involved in the protection scope of the utility model.

[0025] Embodiment 1

[0026] As Figs. 1-3 shown, the embodiment proposes a high-efficiency energy-saving splash-proof easy-to-clean tailing recycling machine, which comprises a recycling machine body 1, an adjusting assembly 2 is fixed on the top of the recycling machine body 1, a waterproof cover 4 is fixed on the top of the adjusting assembly 2, a cleaning assembly 3 is fixed inside the recycling machine body 1, a discharge port 6 is formed on the left side of the recycling machine body 1, a feeding port 5 is formed on the right side of the recycling machine body 1, and a fine material port 7 is fixed on the front of the recycling machine body 1.

[0027] The adjusting assembly 2 comprises a rotating column 21, an adjusting groove 22 is formed in the rotating column 21, a bidirectional motor 23 is fixed in the middle of the adjusting groove 22, threaded rods 24 are fixed at the output ends of the bidirectional motor 23, driving bevel gears 25 are fixed at the other ends of the threaded rods 24, connecting gears 26 are meshingly connected to the sides of the driving bevel gears 25, first driven bevel gears 27 are meshingly connected to the other sides of the connecting gears 26, threaded blocks 29 are threadedly connected in the threaded rods 24, and magnetic discs 218 are fixed on the top of the threaded blocks 29.

[0028] A partition plate 212 is fixed inside the adjusting groove 22, a connecting port 213 is formed in the partition plate 212, the connecting gears 26 are rotatably connected in the connecting port 213, an adjusting port 210 is formed on the top of the adjusting groove 22, baffle plates 211 are fixed on the sides of the threaded blocks 29, the threaded rods 24 between the partition plates 212 are independent, the baffle plates 211 can shield the adjusting port 210 when the magnetic discs 218 are adjusted in distance, and water stains are prevented from entering the inside of the adjusting groove 22.

[0029] The first driven bevel gears 27 are meshingly connected with the connecting gears 26 at both ends, the connecting gears 26 are meshingly connected with second driven bevel gears 28 on the sides away from the first driven bevel gears 27, and the first driven bevel gears 27 and the second driven bevel gears 28 are connected through the connecting gears 26.

[0030] The baffle plates 211 are provided in six groups, the six groups of baffle plates 211 are symmetrically distributed on the two sides of the bidirectional motor 23, the lengths of the adjusting ports 210 on the two sides of the bidirectional motor 23 increase in sequence, and the adjusting ports 210 outward from the bidirectional motor 23 increase in sequence, so as to adapt to distance adjustment and prevent the distances between the adjacent magnetic discs 218 after adjustment from being unequal.

[0031] The diameter of the driving bevel gear 25 is greater than the diameter of the first driven bevel gear 27, and the diameter of the first driven bevel gear 27 is greater than the diameter of the second driven bevel gear 28. The thread direction of the thread rod 24 on the side of the driving bevel gear 25 is opposite to the thread direction of the thread rod 24 in the middle of the first driven bevel gear 27, and the thread direction of the thread rod 24 on the side of the driving bevel gear 25 is the same as the thread direction of the thread rod 24 on the side of the second driven bevel gear 28. The diameter of the driving bevel gear 25 is greater than the diameter of the first driven bevel gear 27 and the diameter of the second driven bevel gear 28, so that the magnetic disks 218 close to the bidirectional motor 23 move at a faster speed when moving, thereby keeping the spacing of the magnetic disks 218 uniform. The thread rods 24 with different thread directions ensure that the moving direction of the thread block 29 on the thread rod 24 is consistent when driven by the connecting gear 26.

[0032] The top of the recycling machine body 1 is provided with a moving groove 214, and a sliding rod 215 is fixed in the moving groove 214. A sliding ring 216 is slidably connected in the sliding rod 215, and a scraper 217 is fixed to the top of the sliding ring 216. The sliding rod 215 and the sliding ring 216 can make the scraper 217 move correspondingly according to the spacing adjustment of the magnetic disks 218.

[0033] In this embodiment, when treating mineral slurry with different concentrations and flow rates, the thread rods 24 at both ends are driven to rotate in the partition plate 212 by the bidirectional motor 23. The driving bevel gear 25 at the end away from the bidirectional motor 23 is meshed and connected with the connecting gear 26, so that the connecting gear 26 can drive the first driven bevel gear 27 on the other side to rotate. Since the diameter of the driving bevel gear 25 is greater than the diameter of the first driven bevel gear 27, the rotation speed of the thread rod 24 in the first driven bevel gear 27 is faster. The other end of the first driven bevel gear 27 is driven by the connecting gear 26 to rotate the second driven bevel gear 28 in the partition plate 212. The rotation speed of the thread rod 24 in the second driven bevel gear 28 is faster than the rotation speed of the thread rod 24 in the first driven bevel gear 27, so that the thread block 29 on the thread rod 24 drives the magnetic disks 218 to move in the adjusting port 210 according to different rotation speeds. When the spacing of the magnetic disks 218 is adjusted to an appropriate distance, the bidirectional motor 23 stops working, and the baffle 211 on the side of the thread block 29 seals and blocks the adjusting port 210, preventing mineral slurry or water from entering the adjusting groove 22. While the magnetic disks 218 are being adjusted, the scraper 217 on the side of the magnetic disks 218 slides in the sliding rod 215 through the sliding ring 216, so as to be adjusted to facilitate scraping the side of the magnetic disks 218. The scraped magnetic minerals are collected through the fine material port 7, and the remaining wastewater in the recycling machine body 1 is discharged through the discharge port 6.

[0034] Embodiment 2

[0035] As Figs. 4-5As shown, based on the same concept as the above embodiment 1, the embodiment also proposes that the cleaning assembly 3 comprises a flow chute 31, a sliding groove 33 is arranged on the inner wall of the flow chute 31, an electric motor 32 is fixed outside the recycling machine body 1, a transmission screw 34 is fixed at the output end of the electric motor 32, a sliding block 35 is threadedly connected in the transmission screw 34, a connecting block 36 is fixed on the side surface of the sliding block 35, an extension rod 37 is fixed at the bottom of the connecting block 36, and a cleaning plate 38 is fixed at the bottom of the extension rod 37.

[0036] The sliding groove 33 is arranged at the horizontal center of the feeding port 5 and the discharging port 6, so as to prevent the feeding port 5 and the discharging port 6 from being blocked.

[0037] In the embodiment, after the ore slurry to be treated is treated by the adjusting assembly 2, dirt and sundries are still left on the bottom of the flow chute 31, the electric motor 32 drives the sliding block 35 to move in the transmission screw 34, so that the cleaning plate 38 at the bottom of the connecting block 36 on the side surface of the sliding block 35 scrapes the bottom of the flow chute 31, the scraped dirt flows into the discharging port 6 and is discharged through the discharging port 6, when the dirt is not cleaned completely, the extension rod 37 lifts the cleaning plate 38 upward and moves to the side away from the discharging port 6, and then the dirt on the bottom of the flow chute 31 is cleaned again.

[0038] The above is only a preferred embodiment of the present application, and is not used to limit the present application, any modification, equivalent replacement, improvement, etc. within the spirit and principle of the present application should be included in the protection scope of the present application.

Claims

1. A high efficiency energy saving anti-splashing easy-to-clean type tailings recovery machine, characterized in that, Including the recycling machine body (1), the recycling machine body (1) top is fixed with the adjusting assembly (2), the adjusting assembly (2) top is fixed with waterproof cover (4), the recycling machine body (1) inside is fixed with cleaning assembly (3), the recycling machine body (1) left side is equipped with discharge gate (6), the recycling machine body (1) right side is equipped with feeding port (5), the recycling machine body (1) front is fixed with fine material port (7); The adjusting assembly (2) includes a rotating column (21), the rotating column (21) is provided with an adjusting groove (22), the adjusting groove (22) is fixed with a bidirectional motor (23), the bidirectional motor (23) is fixed with a threaded rod (24), the threaded rod (24) is fixed with a driving bevel gear (25), the driving bevel gear (25) is meshed with a connecting gear (26), the connecting gear (26) is meshed with a first driven bevel gear (27), the threaded rod (24) is fixed with a threaded block (29), and the threaded block (29) is fixed with a magnetic disk (218).

2. The high efficiency, energy efficient, anti-splash, easy clean tailings recovery machine of claim 1, wherein, The adjusting groove (22) is fixed with a partition (212), the partition (212) is provided with a connecting port (213), the connecting port (213) is rotatably connected with a connecting gear (26), and the adjusting groove (22) is provided with an adjusting port (210).

3. The high efficiency, energy efficient, anti-splash, easy clean tailings recovery machine of claim 1, wherein, The first driven bevel gear (27) is meshed with a connecting gear (26) on both ends, and the connecting gear (26) is meshed with a second driven bevel gear (28) away from the first driven bevel gear (27).

4. The high efficiency, energy efficient, anti-splash, easy clean tailings recovery machine of claim 2, wherein, The baffle (211) is provided with six groups, and the six groups of baffles (211) are symmetrically distributed on both sides of the bidirectional motor (23), and the lengths of the adjusting ports (210) on both sides of the bidirectional motor (23) increase gradually.

5. The energy efficient splash proof easy clean tailings recovery machine of claim 3, wherein, The diameter of the driving bevel gear (25) is greater than that of the first driven bevel gear (27), the diameter of the first driven bevel gear (27) is greater than that of the second driven bevel gear (28), the screw thread direction of the threaded rod (24) on the side of the driving bevel gear (25) is opposite to that of the threaded rod (24) in the middle of the first driven bevel gear (27), and the screw thread direction of the threaded rod (24) on the side of the driving bevel gear (25) is the same as that of the threaded rod (24) on the side of the second driven bevel gear (28).

6. The energy efficient splash proof easy clean tailings reclaimer as claimed in claim 1 wherein, The recycling machine body (1) is provided with a moving groove (214) on the top, the moving groove (214) is fixed with a sliding rod (215), the sliding rod (215) is slidably connected with a sliding ring (216), and the sliding ring (216) is fixed with a scraper (217).

7. The energy efficient splash proof easy clean tailings reclaimer as claimed in claim 1 wherein, The cleaning assembly (3) comprises a flow chute (31), a sliding groove (33) is arranged on the inner wall of the flow chute (31), an electric motor (32) is fixed on the outer side of the recycling machine body (1), a transmission screw rod (34) is fixed on the output end of the electric motor (32), a sliding block (35) is threadedly connected in the transmission screw rod (34), a connecting block (36) is fixed on the side surface of the sliding block (35), a telescopic rod (37) is fixed on the bottom of the connecting block (36), and a cleaning plate (38) is fixed on the bottom of the telescopic rod (37).

8. The high efficiency, energy efficient, anti-splash, easy clean tailings recovery machine of claim 7, wherein, The sliding groove (33) is arranged at the horizontal center of the feeding port (5) and the discharging port (6).

Citation Information

Patent Citations

  • Efficient, energy-saving, anti-splashing and easy-to-clean type tailing recycling machine

    CN219003368U