Magnesium slag recycling, collecting, loading and transporting device
By introducing screening and cooling mechanisms into the magnesium slag recycling device, the problems of magnesium slag accumulation and unscreened impurities are solved, achieving efficient screening and cooling of magnesium slag and improving recycling efficiency and utilization effect.
Patent Information
- Application Number
- CN202520259408.4
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-02-18
- Publication Date
- 2025-12-23
- Estimated Expiration
- 2035-02-18
AI Technical Summary
Magnesium slag is prone to accumulation in existing magnesium slag recycling devices, and insufficient cooling and failure to screen impurities in a timely manner affect subsequent recycling and utilization.
A magnesium slag recycling, collection, and transportation device was designed, which includes a screening mechanism and a cooling mechanism. The device uses a drive motor to drive the linkage rod and linkage cam to make the movable screen plate vibrate for screening, and combines a cooling air pump to deliver cold air for cooling.
This technology enables effective screening and rapid cooling of magnesium slag, thereby improving the recovery efficiency and utilization value of magnesium slag.
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Figure CN223698454U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model relates to the technical field of magnesium slag recovery, especially relates to a magnesium slag recovery collection and shipment device. BACKGROUND
[0002] In the production of magnesium alloy, magnesium slag will be produced, which needs to be transported to a magnesium slag treatment device for treatment. However, the freshly produced magnesium slag is high in temperature and needs a long cooling time before it can be transported by an operator, which will affect the production of magnesium alloy.
[0003] The patent document with the publication number CN215404423U discloses a high-temperature magnesium slag recovery device, which includes a base, a conveying device fixedly connected to the top of the base, a high-temperature-resistant surface layer arranged on the surface of the conveying device, a fixed rod fixedly connected to the top of the base, and a fixed clasp fixedly connected to one end of the fixed rod. The improved recovery device can precool high-temperature magnesium slag, which no longer needs to be naturally cooled for a period of time. The magnesium slag can immediately enter the recovery device after precooling, greatly improving the working efficiency of the recovery device and facilitating the recovery work.
[0004] The high-temperature magnesium slag recovery device proposed in the above patent document is prone to accumulate on the surface of the conveying belt during actual use, which causes the magnesium slag to be insufficiently cooled and cooled down. Moreover, the magnesium slag contains some impurity particles. If the impurities are not timely screened and separated, the subsequent recovery and utilization will be affected. SUMMARY
[0005] The purpose of the utility model is to provide a magnesium slag recovery collection and shipment device to solve the problems raised in the background art.
[0006] A magnesium slag recovery collection and shipment device includes a treatment box, an inner wall of the treatment box is fixedly provided with a partition plate, an upper portion of the partition plate is provided with an inlet conveying belt, a lower portion of the partition plate is provided with an outlet conveying belt and a sorting conveying belt, an inside of the treatment box is provided with a screening mechanism and a cooling mechanism.
[0007] The screening mechanism includes a movable sieve plate rotatably connected to the inner wall of the treatment box, the inner wall of the treatment box is rotatably connected with a linkage rod, the surface of the linkage rod is fixedly connected with a linkage cam, and the linkage cam is located below the movable sieve plate.
[0008] The cooling mechanism includes an air guide cover fixedly connected to the surface of the partition plate, a plurality of air outlet holes are formed in the right side of the air guide cover, and the position of the air guide cover corresponds to the movable sieve plate.
[0009] In a preferred scheme, the back of the processing box is fixedly provided with a first driving motor, the output shaft of the first driving motor extends to the inside of the processing box and is fixedly connected with one end of the linkage rod.
[0010] In a preferred scheme, the back of the processing box is fixedly provided with a cooling air pump, the output end of the cooling air pump extends to the inside of the processing box and is fixedly provided with an air guide pipe, one end of the air guide pipe extending to the inside of the air baffle away from the cooling air pump.
[0011] In a preferred scheme, the sorting conveying belt is located directly below the movable sieve plate, and the input end of the discharging conveying belt corresponds to the bottom of the movable sieve plate.
[0012] In a preferred scheme, the inner wall of the processing box is rotatably connected with a material distributing roller shaft, the surface of the material distributing roller shaft is fixedly connected with a plurality of annular baffles, the back of the processing box is fixedly provided with a second driving motor, the output shaft of the second driving motor is fixedly connected with one end of the material distributing roller shaft, the position of the material distributing roller shaft corresponds to the output end of the feeding conveying belt, and the material distributing roller shaft is located directly above the movable sieve plate.
[0013] In a preferred scheme, the upper surface of the processing box is fixedly provided with a feeding hopper, and the position of the feeding hopper corresponds to the feeding conveying belt.
[0014] Compared with the prior art, the utility model has the beneficial effects that:
[0015] Firstly, the inside of the processing box is provided with a screening mechanism, the linkage cam on the surface of the linkage rod can be driven to rotate by the first driving motor, the movable sieve plate can be driven to vibrate up and down, the magnesium slag can be screened by vibration, the waste slag particles in the magnesium slag can be conveniently screened to the sorting conveying belt below, and the magnesium slag can be conveniently recycled and utilized subsequently.
[0016] Secondly, the inside of the processing box is provided with a cooling mechanism, the cooling air pump can be utilized to convey cold air to the inside of the air baffle, the cold air can be conveyed to the surface of the movable sieve plate through the air outlet holes on the surface of the air baffle, the magnesium slag can be cooled by the cold air, the cold air cooling can be carried out during the vibration of the magnesium slag, and the cooling effect is improved. BRIEF DESCRIPTION OF DRAWINGS
[0017] Figure 1 It is a front view structural schematic diagram of one embodiment of the utility model;
[0018] Figure 2 It is a rear view structural schematic diagram of one embodiment of the utility model;
[0019] Figure 3 It is the inside structure schematic view of the processing box in an embodiment of the utility model;
[0020] Figure 4 It is the inside structure schematic view of the processing box in an embodiment of the utility model.
[0021] In the drawing: 1, processing box;2, partition;3, feed conveyor belt;4, sorting conveyor belt;5, screening mechanism;6, cooling mechanism;7, first drive motor;8, cooling air pump;9, material distribution roller shaft;10, annular baffle;11, feed hopper;12, discharge conveyor belt;13, second drive motor;501, movable sieve plate;502, linkage rod;503, linkage cam;601, wind scooper;602, air outlet hole;603, air duct. DETAILED DESCRIPTION
[0022] The specific embodiments and drawings will be described below. Figures 1-4 The technical scheme in the embodiment of the utility model is clearly and completely described.
[0023] Referring to Figure 1 and Figure 2 A magnesium slag recycling, collecting and shipping device, comprising a processing box 1, the inner wall of the processing box 1 is fixedly provided with a partition 2, the upper portion of the partition 2 is provided with a feed conveyor belt 3, the lower portion of the partition 2 is provided with a discharge conveyor belt 12 and a sorting conveyor belt 4, and the inside of the processing box 1 is provided with a screening mechanism 5 and a cooling mechanism 6.
[0024] It should be noted that the upper surface of the processing box 1 is fixedly provided with a feed hopper 11, the position of the feed hopper 11 corresponds to the feed conveyor belt 3, and the magnesium slag can be input to the surface of the feed conveyor belt 3 through the feed hopper 11, and then the magnesium slag can be conveyed to the surface of the screening mechanism 5 by the feed conveyor belt 3.
[0025] It should be further noted that the inner wall of the processing box 1 is rotatably connected with a material distribution roller shaft 9, the surface of the material distribution roller shaft 9 is fixedly connected with a plurality of annular baffles 10, the back surface of the processing box 1 is fixedly provided with a second drive motor 13, and the output shaft of the second drive motor 13 is fixedly connected with one end of the material distribution roller shaft 9.
[0026] It is worth mentioning that the material distribution roller shaft 9 and the annular baffles 10 can be used to flatten and distribute the magnesium slag by rotating the material distribution roller shaft 9, so that the magnesium slag can be evenly laid on the surface of the screening mechanism 5.
[0027] Referring to Figure 3 and Figure 4In a preferred embodiment, the screening mechanism 5 comprises a movable sieve plate 501 rotatably connected to the inner wall of the treatment box 1, the inner wall of the treatment box 1 is rotatably connected to a linkage rod 502, the surface of the linkage rod 502 is fixedly connected to a linkage cam 503, and the linkage cam 503 is located below the movable sieve plate 501.
[0028] It should be further explained that the back of the treatment box 1 is fixedly installed with a first driving motor 7, the output shaft of the first driving motor 7 extends into the interior of the treatment box 1 and is fixedly connected to one end of the linkage rod 502, the first driving motor 7 can drive the linkage rod 502 to rotate, the linkage rod 502 drives the linkage cam 503 to rotate, and the linkage cam 503 reciprocally pushes the movable sieve plate 501 upwards to produce a vibrating effect.
[0029] It is worth noting that by arranging the screening mechanism 5 in the interior of the treatment box 1, the first driving motor 7 can drive the linkage cam 503 on the surface of the linkage rod 502 to rotate, and in turn drive the movable sieve plate 501 to vibrate up and down, so as to vibrate screen the magnesium slag, facilitate the screening of waste slag particles in the magnesium slag to the surface of the sorting conveyor belt 4 below the movable sieve plate 501, and facilitate the subsequent recycling and utilization of the magnesium slag.
[0030] It should be noted that the position of the distribution roller shaft 9 corresponds to the output end of the feeding conveyor belt 3, and the distribution roller shaft 9 is located directly above the movable sieve plate 501.
[0031] It should be noted that the sorting conveyor belt 4 is located directly below the movable sieve plate 501, and the input end of the discharging conveyor belt 12 corresponds to the bottom of the movable sieve plate 501.
[0032] The sorting conveyor belt 4 can transport the screened impurities outside the treatment box 1 to achieve the impurity removal and screening of the magnesium slag.
[0033] In a preferred embodiment, the cooling mechanism 6 comprises a wind deflector 601 fixedly connected to the surface of the partition plate 2, a plurality of air outlet holes 602 are formed in the right side of the wind deflector 601, and the position of the wind deflector 601 corresponds to the movable sieve plate 501.
[0034] It should be further explained that the back of the treatment box 1 is fixedly installed with a cooling air pump 8, the output end of the cooling air pump 8 extends into the interior of the treatment box 1 and is fixedly connected to a gas guide pipe 603, and the end of the gas guide pipe 603 away from the cooling air pump 8 extends into the interior of the wind deflector 601.
[0035] It is worth mentioning that by setting the cooling mechanism 6 in the inside of the processing box 1, when the magnesium slag is screened and impurities are removed, the cooling air pump 8 and the air guide pipe 603 can be used to send cold air to the inside of the air baffle 601, and then the air outlet holes 602 on the surface of the air baffle 601 can be used to uniformly distribute the cold air to the surface of the movable sieve plate 501, so that the magnesium slag is cooled by the cold air, and the cooling effect is improved by cooling the magnesium slag during vibration.
[0036] Working principle: in use, first, the magnesium slag is put into the inside of the processing box 1 from the feeding hopper 11, and the magnesium slag is conveyed to the surface of the movable sieve plate 501 by the feeding conveyor belt 3, then the first driving motor 7 drives the linkage rod 502 to rotate, and then drives the linkage cam 503 to push the movable sieve plate 501, and the magnesium slag is vibrated and screened by the movable sieve plate 501, so that the impurity particles in the magnesium slag fall to the surface of the sorting conveyor belt 4, and the impurities are conveyed to the outside of the processing box 1 by the sorting conveyor belt 4, and the cooling air pump 8 can send cold air to the air baffle 601, and the magnesium slag is cooled by the cold air, then the magnesium slag is conveyed to the outside of the processing box 1 by the discharging conveyor belt 12, and the cooled and impurity-removed magnesium slag is conveniently transported and used subsequently.
[0037] In addition to the technical features described in the specification, they are known to those skilled in the art.
[0038] In the utility model, "upper", "lower", "left", "right", "front", "rear" are relative positions for the convenience of describing the positional relationship, and therefore cannot be understood as absolute positions for limiting the protection scope.
[0039] The above content is only an example and description of the structure of the utility model, and those skilled in the art can make various modifications or supplements or use similar ways to replace the described specific embodiments, as long as they do not deviate from the structure of the utility model or exceed the scope defined by the present claims, and they should belong to the protection scope of the utility model.
Claims
1. A magnesium slag recovery collection and shipping device comprising a processing box, characterized by, The inner wall of the processing box is fixedly provided with a partition plate, the upper portion of the partition plate is provided with an inlet conveying belt, the lower portion of the partition plate is provided with an outlet conveying belt and a sorting conveying belt, and the inside of the processing box is provided with a screening mechanism and a cooling mechanism. The screening mechanism comprises a movable sieve plate rotatably connected to the inner wall of the processing box, the inner wall of the processing box is rotatably connected with a linkage rod, and the surface of the linkage rod is fixedly connected with a linkage cam, which is located below the movable sieve plate. The cooling mechanism comprises an air guide cover fixedly connected to the surface of the partition plate, a plurality of air outlet holes are formed in the right side of the air guide cover, and the position of the air guide cover corresponds to the movable sieve plate.
2. A magnesium slag recovery collection and shipping device as claimed in claim 1, wherein, The back surface of the processing box is fixedly provided with a first driving motor, the output shaft of the first driving motor extends to the inside of the processing box and is fixedly connected with one end of the linkage rod.
3. A magnesium slag recovery collection and shipping device as claimed in claim 1, wherein, The back surface of the processing box is fixedly provided with a cooling air pump, the output end of the cooling air pump extends to the inside of the processing box and is fixedly provided with an air guide pipe, and one end of the air guide pipe away from the cooling air pump extends to the inside of the air guide cover.
4. A magnesium slag recovery collection and shipping device as claimed in claim 1, wherein, The sorting conveying belt is located directly below the movable sieve plate, and the input end of the outlet conveying belt corresponds to the bottom of the movable sieve plate.
5. A magnesium slag recovery collection and shipping device as claimed in claim 1, wherein, The inner wall of the processing box is rotatably connected with a material distribution roller shaft, the surface of the material distribution roller shaft is fixedly connected with a plurality of annular baffles, the back surface of the processing box is fixedly provided with a second driving motor, and the output shaft of the second driving motor is fixedly connected with one end of the material distribution roller shaft.
6. A magnesium slag recovery collection and shipping device as claimed in claim 5, wherein, The position of the material distribution roller shaft corresponds to the output end of the inlet conveying belt, and the material distribution roller shaft is located directly above the movable sieve plate.
7. A magnesium slag recovery collection and shipping device as claimed in claim 1, wherein, The upper surface of the processing box is fixedly provided with an inlet hopper, and the position of the inlet hopper corresponds to the inlet conveying belt.
Citation Information
Patent Citations
Device convenient for recovering high-temperature magnesium slag
CN215404423U