Waste treatment device for environment-friendly metallurgical engineering
By designing an environmentally friendly waste treatment device for metallurgical engineering, the problems of fixed particle size and dust mixing in existing equipment screening were solved, and the flexible adjustment of particle size and effective dust removal were achieved, thereby improving the efficiency of waste treatment.
Patent Information
- Application Number
- CN202423118571.3
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-12-17
- Publication Date
- 2025-12-16
- Estimated Expiration
- 2034-12-17
AI Technical Summary
Existing metallurgical waste screening equipment has a fixed particle size that cannot be adjusted according to requirements. Furthermore, the metal dust contained in the dust mixes with small metal waste particles, affecting the screening effect and making separation difficult during use.
An environmentally friendly waste treatment device for metallurgical engineering has been designed, which solves the problems of existing metal waste treatment devices, such as the inconvenience of adjusting the size of the screened particles and removing dust as needed.
It enables the adjustment of particle size during screening and effective dust removal as needed, thereby improving the efficiency and effectiveness of waste treatment.
Smart Images

Figure CN223669615U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model belongs to metallurgical waste treatment technical field, concretely relates to a waste treatment device for environmental protection metallurgical engineering. BACKGROUND
[0002] The metallurgical waste can be classified into different levels according to particle size by screening, so that subsequent targeted treatment can be carried out. For example, the waste with larger particle size can be crushed, and the waste with smaller particle size can be directly treated by magnetic separation, flotation and other processes. However, the existing waste screening device has fixed particle size, which cannot meet the actual needs and screen the waste into the required particle size range. Moreover, when small particles are screened and used, the metal dust contained in the small particles is easily mixed with the small particle metal waste, affecting the direct use. UTILITY MODEL CONTENT
[0003] The waste treatment device for environmental protection metallurgical engineering has the characteristics of conveniently adjusting the particle size of the screening and removing dust according to the needs.
[0004] The utility model provides the following technical scheme: including screening box body, fixedly connected with fixed plate on the screening box body, install motor on the fixed plate, fixedly connected with fixed link on the motor drive end, a plurality of equidistance distribution's fixed ring is fixedly connected on the fixed link outer wall, the fixed ring outside fixedly connected with support ring, the support ring is opened with the corresponding butt joint hole on, the support ring is connected with the slide bar of sliding, the fixed ring one side is connected with the rotating ring of rotation, the rotating ring outside fixedly connected with the limit ring, the limit ring is opened with the perforation for the slide bar is let go of on, the screening box body one end is opened with the discharge hole, the screening box body bottom is opened with the screening hole, the filter plate is connected with the sliding of the screening hole inner wall, the screening box body bottom is installed with the receiving box that screening box body is linked together.
[0005] Among them, the screening box body is installed with the feed bin, the feed bin top is opened with the feeding hole, the feed bin bottom is opened with the feeding hole corresponding with the support ring.
[0006] Among them, the fixed ring and the support ring are connected through a plurality of fixed frames, and the rotating ring is sleeved on the outside of the fixed rod.
[0007] Among them, the fixed ring and the rotating ring are opened with the corresponding connecting hole, and the connecting hole is connected through the connecting rod.
[0008] Among them, the rotating ring and the limit ring are connected through a plurality of support frames, and one side of the limit ring is attached to one side of the support ring.
[0009] The sliding chute is in sliding connection with the filter plate, and the inner wall of the screening hole is fixedly connected with a sliding plate in abutment with the filter plate.
[0010] The installation hole is provided with a sealing plate in clamping connection with the inner wall, and the filter plate is fixedly connected with a pull plate at one end.
[0011] The beneficial effect of the utility model is: sliding in the butt joint hole of the supporting ring through the slide rod, cooperating with the limiting ring and the perforated position can be adjusted, so that it can be conveniently installed and removed, the number of slide rods is installed to control the spacing between the slide rods, so that waste materials can be separated according to the required size, and at the same time, dust waste can be removed under the action of the screening hole and the filter plate.
[0012] The parts not involved in the device are the same as or can be realized by the prior art. BRIEF DESCRIPTION OF DRAWINGS
[0013] Figure 1 It is a three-dimensional structure schematic diagram of the utility model;
[0014] Figure 2 It is a three-dimensional structure schematic diagram of the screening box in the utility model;
[0015] Figure 3 It is a sectional structure schematic diagram of the screening box in the utility model;
[0016] Figure 4 It is the utility model Figure 1 A enlarged schematic diagram.
[0017] In the drawing: 1, screening box; 11, feeding box; 12, feeding hole; 13, feeding hole; 2, fixed plate; 21, motor; 22, fixed rod; 23, fixed ring; 24, fixed frame; 25, supporting ring; 251, butt joint hole; 26, slide rod; 27, rotating ring; 271, connecting hole; 272, connecting rod; 273, supporting frame; 28, limiting ring; 281, perforation; 3, discharge hole; 31, screening hole; 311, sliding chute; 312, sliding plate; 32, filter plate; 321, pull plate; 33, collecting box; 34, installation hole; 35, sealing plate. DETAILED DESCRIPTION
[0018] Please refer to Figures 1-4The utility model provides following technical scheme: Including screening box 1, fixedly connected with fixed plate 2 on screening box 1, install motor 21 on fixed plate 2, fixedly connected with fixed link 22 at motor 21 drive end, fixedly connected with a plurality of equidistance distribution fixed ring 23 of fixed link 22 outer wall, fixedly connected with support ring 25 on fixed ring 23 outside, the corresponding docking hole 251 of being set up on support ring 25, the sliding connection of slide bar 26 has in support ring 25, one side rotationally connected with rotary ring 27 of fixed ring 23, fixedly connected with limit ring 28 on rotary ring 27 outside, the perforation 281 for giving room to slide bar 26 of being set up on limit ring 28, screening box 1 one end is equipped with discharge hole 3, screening box 1 bottom is equipped with screening hole 31, the sliding connection of filter plate 32 has in screening hole 31 inner wall, screening box 1 bottom is equipped with with the screening box 1 intercommunication receiving material box 33.
[0019] In the embodiment: the screening box 1 is the carrier of the bearing device, corresponding to the plurality of equidistantly distributed support rings 25 arranged in the screening box 1, the fixed plate 2 mounted on the screening box 1 is used for mounting and fixing the motor 21, so that the motor 21 can drive the fixed rod 22 to rotate, and the fixed ring 23 fixedly connected to the outer wall of the fixed rod 22 corresponds to the support ring 25, so that the support ring 25 and the fixed ring 23 can be simultaneously driven to rotate by the motor 21 after being connected and fixed by the fixed frame 24, the butt joint holes 251 arranged on the support ring 25 are used for mounting the sliding rods 26, the butt joint holes 251 are equidistantly distributed, and each of the butt joint holes 251 arranged on the support ring 25 corresponds to the other, so that the butt joint holes 251 can be connected by the sliding rods 26, the spacing between every two adjacent sliding rods 26 can be controlled according to the number and distribution of the installed sliding rods 26, the spacing between the sliding rods 26 is controlled, the screening device of the metallurgical waste is adjusted, the spacing between the sliding rods 26 corresponds to the size of the separated waste according to the needs of the recovered waste, the waste smaller than the spacing between the sliding rods 26 can pass through the spacing between the sliding rods 26 and fall down between the support ring 25 and the inner wall of the screening box 1, and the discharge hole 3 arranged on the screening box 1 corresponds to the spacing between the support ring 25 and the screening box 1, so that the waste screened from the sliding rods 26 can be discharged through the discharge hole 3, thereby separating and screening the large and small particles in the waste, and the size of the screened large and small particles can be controlled according to actual needs, when the number of the sliding rods 26 is adjusted, the sliding rods 26 can pass through the perforations 281 of the limiting ring 28, the perforations 281 correspond to the butt joint holes 251, the sliding rods 26 can be conveniently mounted and removed, and after the sliding rods 26 are installed, the limiting ring 28 can be rotated to adjust the misalignment between the perforations 281 and the butt joint holes 251, so that the sliding rods 26 are limited in the support ring 25 and cannot be separated, and after the metallurgical waste is screened between the screening box 1 and the support ring 25, the waste is directly received in the filter plate 32 which slides on the inner wall of the screening hole 31, is supported by the screening hole 31, and the screening hole 31 can filter the dust in the metallurgical waste and collect the dust in the collecting box 33, so that the waste can be separated according to the size and the dust in the waste can be removed, thereby the device can conveniently screen the metallurgical waste.
[0020] The screening box 1 is provided with the feeding box 11, the feeding box 11 is provided with the feeding hole 12 on the top and the feeding hole 13 corresponding to the support ring 25 on the bottom; the feeding box 11 mounted on the screening box 1 is used for feeding the waste, the waste is fed through the feeding hole 12 of the feeding box 11, and then enters the support ring 25 and the sliding rod 26 through the feeding hole 13, so that the waste is screened.
[0021] The fixed ring 23 is connected with the support ring 25 through several fixed frames 24, and the rotating ring 27 is sleeved outside the fixed rod 22; the fixed ring 23 and the support ring 25 are connected through the fixed frame 24, so that the support ring 25 can be supported by the fixed ring 23 and the fixed frame 24, and can rotate synchronously with the fixed rod 22; the rotating ring 27 is sleeved outside the fixed rod 22, so that when it is connected with the fixed ring 23, it can prevent the connection from being limited by the fixed rod 22.
[0022] The fixed ring 23 and the rotating ring 27 are provided with corresponding connecting holes 271, and the connecting holes 271 are connected through connecting rods 272; the connecting holes 271 are used to connect the connecting rods 272 to the connecting holes 271 when the perforations 281 need to be misaligned with the butt joint holes 251, so that the limiting ring 28 is limited, and the slide rod 26 is ensured to be in the butt joint hole 251 to prevent it from being separated.
[0023] The rotating ring 27 and the limiting ring 28 are connected through several support frames 273, and one side of the limiting ring 28 is attached to one side of the support ring 25; the rotating ring 27 and the limiting ring 28 are connected through the support frame 273, so that the limiting ring 28 is fixed by the connection, and the limiting ring 28 is ensured to correspond to the support ring 25, so that after the limiting ring 28 is attached to one side of the support ring 25, the limiting ring 28 can effectively limit the slide rod 26.
[0024] The screening box 1 is provided with a slide 311 communicating with the screening hole 31, the slide 311 is slidably connected with the filter plate 32, and the inner wall of the screening hole 31 is fixedly connected with a sliding plate 312 attached to the filter plate 32; the slide 311 can accommodate the forward and backward sliding of the filter plate 32, so that when the filter plate 32 is pulled to slide and attach to the sliding plate 312, it is extruded to clean the dust waste blocked on the filter plate 32, preventing blockage and affecting the separate discharge of the dust waste after a long time of screening.
[0025] The receiving box 33 is provided with a mounting hole 34 on one side, the mounting hole 34 is hingedly connected with a sealing plate 35, and one end of the filter plate 32 is fixedly connected with a pulling plate 321; the mounting hole 34 on one side of the receiving box 33 can install the sealing plate 35, so that after the sealing plate 35 is opened, the dust waste collected in the receiving box 33 can be conveniently discharged and treated, and the pulling plate 321 is used to conveniently pull the filter plate 32.
[0026] The utility model discloses a working principle and use flow: through feeding box 11 with the metallurgical waste that needs screening is put to support ring 25 and slide bar 26, can according to the number of installed slide bar 26, make it even distribution in butt joint hole 251, make the spacing between slide bar 26 with the size of the waste that needs to separate, and the waste can pass through the spacing between slide bar 26, and fall down between support ring 25 and screening box body 1 inner wall, and the spacing between the discharge hole 3 that screening box body 1 is set up on and support ring 25 and screening box body 1, at this moment can make the waste that is screened out from slide bar 26 can be discharged through discharge hole 3, thereby the size particle in waste is separated and screened work, and the metallurgical waste after screening is in between screening box body 1 and support ring 25, at this moment directly in the filter plate 32 that is received in the inner wall sliding of screening hole 31, is supported by screening hole 31, and screening hole 31 can filter the dust waste in metallurgical waste, and make it enter to the collection of material box 33 and collect, make the waste can be separated according to the size particle required, and remove the dust in waste, thereby the device can conveniently screen the work of metallurgical waste.
Claims
1. An environmentally friendly metallurgical engineering waste treatment device comprising a screening box (1), characterized by: The fixed plate (2) is fixedly connected to the screening box (1), a motor (21) is installed on the fixed plate (2), a fixed rod (22) is fixedly connected to the driving end of the motor (21), a plurality of equidistantly distributed fixed rings (23) are fixedly connected to the outer wall of the fixed rod (22), a support ring (25) is fixedly connected to the outer side of the fixed ring (23), a corresponding butt joint hole (251) is formed in the support ring (25), a sliding rod (26) is slidably connected to the support ring (25), a rotating ring (27) is rotatably connected to one side of the fixed ring (23), a limiting ring (28) is fixedly connected to the outer side of the rotating ring (27), a perforation (281) for allowing the sliding rod (26) to pass through is formed in the limiting ring (28), a discharge hole (3) is formed in one end of the screening box (1), a screening hole (31) is formed in the bottom of the screening box (1), a filter plate (32) is slidably connected to the inner wall of the screening hole (31), and a material collecting box (33) in communication with the screening box (1) is installed on the bottom of the screening box (1).
2. An environmentally friendly metallurgical engineering waste material processing device according to claim 1, characterized in that: The screening box (1) is provided with a feeding box (11), the top of the feeding box (11) is provided with an inlet hole (12), and the bottom of the feeding box (11) is provided with an inlet hole (13) corresponding to the support ring (25).
3. An environment-friendly metallurgical engineering waste treatment device according to claim 1, characterized in that: The fixed ring (23) and the support ring (25) are connected through a plurality of fixing frames (24), and the rotating ring (27) is sleeved on the outer side of the fixed rod (22).
4. An environment-friendly metallurgical engineering waste treatment device according to claim 1, characterized in that: Corresponding connecting holes (271) are formed in the fixed ring (23) and the rotating ring (27), and the connecting holes (271) are connected through connecting rods (272).
5. An environment-friendly metallurgical engineering waste treatment device according to claim 1, characterized in that: The rotating ring (27) and the limiting ring (28) are connected through a plurality of support frames (273), and one side of the limiting ring (28) is attached to one side of the support ring (25).
6. An environment-friendly metallurgical engineering waste treatment device according to claim 1, characterized in that: A chute (311) in communication with the screening hole (31) is formed in the screening box (1), the chute (311) is slidably connected to the filter plate (32), and a sliding plate (312) attached to the filter plate (32) is fixedly connected to the inner wall of the screening hole (31).
7. An environment-friendly metallurgical engineering waste treatment device according to claim 1, characterized in that: An installation hole (34) is formed in one side of the material collecting box (33), a sealing plate (35) is clamped and connected to the inner wall of the installation hole (34), and one end of the filter plate (32) is fixedly connected to a pull plate (321).