Screening device for aluminum particle production and processing
By installing a vibrating screening component and a separating component in the screening device for aluminum particle production and processing, the efficient separation of aluminum particles from impurities is achieved by using a vibrating spring and an inclined screening screen, which solves the problem of poor screening effect in existing devices and improves screening efficiency and classification and recycling effect.
Patent Information
- Application Number
- CN202423288427.4
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-12-30
- Publication Date
- 2026-02-06
- Estimated Expiration
- 2034-12-30
AI Technical Summary
Existing aluminum particle screening devices have poor screening performance, cannot effectively classify and recycle them, require multiple screenings, are inefficient, and are inconvenient to use.
A screening device for aluminum particle production and processing was designed, including a support frame, a crushing mechanism, a vibrating screening component, and a screening component. By setting vibrating springs and inclined screening screens at the four corners of the screening plate, and cooperating with the vibrator to vibrate, the aluminum particles are separated from impurities, and the particles are classified and filtered through multiple screening screens.
It improves screening efficiency, reduces the screening process for operators, achieves efficient classification and recycling of aluminum particles, and enhances screening effect.
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Figure CN223875484U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model relates to screening technical field especially relates to a screening device is used in aluminium particle production and processing. BACKGROUND
[0002] Aluminium is a light metal, chemical symbol is Al, atomic number: 13, aluminium element is in the content of the earth's crust only next to oxygen and silicon, is in the third position, is the most abundant metal element in the earth's crust, its reserves are in the second place in the metal, in the metal variety, only next to steel, for the second largest metal, in the recycling process of aluminium, need to screen.
[0003] The aluminium particle after recycling treatment is doped with more impurities (diaphragm, plastic etc.), needs to carry out screening, and the existing traditional screening device has poor screening effect, cannot effectively classify and recycle, is inconvenient for the use of staff, needs to carry out screening many times, and the screening is complicated, and the screening efficiency is low. UTILITY MODEL CONTENT
[0004] (1) technical problem to be solved
[0005] In order to solve the problem of poor screening effect of screening device, cannot effectively classify and recycle, is inconvenient for the use of staff, needs to carry out screening many times, and the screening is complicated, and the screening efficiency is low.
[0006] (2) technical scheme
[0007] The utility model discloses a screening device is used in aluminium particle production and processing, including production device main part, including support frame, crushing mechanism, discharge gate, vibration screening subassembly and screen subassembly, support frame sets up at production device main part lower position department, and the upper portion of support frame is installed with crushing mechanism, and the lower surface of crushing mechanism is installed with discharge gate, and support frame lower portion is provided with vibration screening subassembly, and screen subassembly sets up at the surface of vibration screening subassembly, and through setting up vibration screening subassembly, sets up vibration spring at the position of four corners of screening board, under the vibration of vibrator, aluminium particle falls to the position of discharge gate, and the impurity in cooperation screening net aluminium particle can carry out screening, and the aluminium particle after screening is collected through discharge gate, and the impurity slides on the screening board, and the screening effect is good, adds screen subassembly, can filter the impurity through installing first screening net in the sorting frame, and the impurity is screened out through discharge chute through the first screening net of inclination setting, to realize screening to the impurity doped in aluminium particle, convenient classification and recycling, reduce the screening procedure of operating personnel, improve screening efficiency.
[0008] Further, the vibrating screening assembly comprises a screening plate, a vibrator, a discharge port, a screening mesh, a mounting seat, a fixed plate, a connecting frame, a sliding rod, a limiting plate and a spring. The screening plate is arranged below the discharge port of the crushing mechanism. The vibrator is mounted below the screening plate. The screening plate is arranged obliquely. The discharge port is formed in the surface of the screening plate. The screening mesh is mounted on the surface of the screening plate at the position of the discharge port. The mounting seat is mounted at each corner of the supporting frame. The sliding rod is hingedly connected to the surface of the mounting seat. One end of the sliding rod is inserted into the insertion hole formed in the surface of the fixed plate arranged below the mounting seat. The connecting frame is mounted on the surface of the fixed plate. One end of the connecting frame is hingedly connected to the screening plate. The limiting plate is mounted on one end of the sliding rod. The spring is sleeved on the surface of the sliding rod. One end of the spring is connected to the limiting plate. The other end of the spring is connected to the fixed plate. The vibrating screening assembly is arranged. The vibrating spring is arranged at each corner of the screening plate. Under the vibration of the vibrator, the aluminum particles fall into the discharge port. The impurities in the aluminum particles can be screened in cooperation with the screening mesh. The screened aluminum particles are collected through the discharge port. The impurities slide off the screening plate. The screening effect is good.
[0009] Further, the screening assembly comprises a sorting frame, a discharge slot and a first screening mesh. The sorting frame is mounted on the surface of the screening plate below the discharge port. The first screening mesh is mounted in the sorting frame. The discharge slot is mounted at the screening port formed in the surface of the sorting frame on one side. The discharge slot abuts against one side of the first screening mesh. The screening assembly is arranged. The first screening mesh is arranged in the sorting frame. The impurities can be filtered. The impurities are screened out through the discharge slot through the obliquely arranged first screening mesh. The impurities mixed in the aluminum particles are screened. The classification recovery is facilitated. The screening procedure of the operation personnel is reduced. The screening efficiency is improved.
[0010] Further, the second screening mesh is mounted below the first screening mesh in the sorting frame. The discharge slot is also mounted at the position where the second screening mesh contacts the sorting frame on one side. The second screening mesh is arranged. The aluminum particles are filtered again. The impurities are screened again. The screening effect is good. The purity of the aluminum particles is further improved.
[0011] Further, the second screening mesh and the first screening mesh are arranged in inclined structures. The second screening mesh and the first screening mesh are arranged in opposite inclined structures. The larger impurities are screened and rolled to a lower position. The screening effect is good. The classification collection is realized.
[0012] Further, two baffle plates are symmetrically mounted on the surfaces of the second screening mesh and the first screening mesh. The two baffle plates are connected to the feed port of the discharge slot. The baffle plates are arranged. The screened impurities are aggregated. The screened impurities are discharged through the discharge slot.
[0013] Further, the screen hole of the first screening net is larger than the screen hole of the second screening net arranged below the first screening net, by arranging the screen holes of the first screening net and the second screening net into different sizes, different sizes of impurities can be screened and uniformly treated, and the screening effect is good.
[0014] (3)Beneficial effects
[0015] Compared with the prior art, the beneficial effects of the utility model lie in: the design uses the vibration screening assembly, sets the vibration spring at the four corner positions of the screening plate, under the vibration of the vibrator, the aluminum particles fall to the discharge port position, and the impurities in the aluminum particles can be screened in cooperation with the screening net, the screened aluminum particles are collected through the discharge port, and the impurities slide off the screening plate, the screening effect is good, the screening assembly is added, the impurities can be filtered by installing the first screening net in the sorting frame, the impurities are screened out through the discharge chute through the first screening net arranged obliquely, so that the impurities mixed in the aluminum particles are screened, classification recovery is facilitated, the screening procedure of the operation personnel is reduced, and the screening efficiency is improved. BRIEF DESCRIPTION OF DRAWINGS
[0016] Figure 1 The overall structure schematic view of the utility model is shown;
[0017] Figure 2 The structure installation view of the screening assembly in the utility model is shown;
[0018] Figure 3 The structure installation view of the screening assembly in the utility model is shown; Figure 2 The enlarged view of the structure A in the utility model is shown;
[0019] Figure 4 The rear view of the overall structure in the utility model is shown;
[0020] Figure 5 The side view of the overall structure in the utility model is shown;
[0021] Figure 6 The structure installation view of the screening assembly in the utility model is shown.
[0022] Mark 1 - support frame, 11 - crushing mechanism, 12 - discharge port, 2 - vibration screening assembly, 21 - screening plate, 22 - vibrator, 23 - discharge port, 24 - screening net, 25 - mounting seat, 26 - fixed plate, 27 - connecting frame, 28 - sliding rod, 29 - limiting plate, 210 - spring, 3 - screening assembly, 31 - sorting frame, 32 - discharge chute, 33 - first screening net, 34 - second screening net, 35 - baffle plate. DETAILED DESCRIPTION
[0023] The utility model will be further explained in combination with the drawings and examples.
[0024] Embodiment 1:
[0025] Referring to Figures 1-6 The utility model provides a kind of screening device for aluminium particle production and processing: a kind of production device main body, including support frame 1, crushing mechanism 11, discharge port 12, vibrating screening assembly 2 and sieve assembly 3, support frame 1 is arranged at the position below production device main body, crushing mechanism 11 is installed above support frame 1, discharge port 12 is installed on the lower surface of crushing mechanism 11, vibrating screening assembly 2 is provided below support frame 1, sieve assembly 3 is arranged on the surface of vibrating screening assembly 2, by setting vibrating screening assembly 2, vibrating spring is set in the position of four corners of screening plate 21, under the vibration of vibrator 22, aluminium particle falls into the position of discharge port 23, and the impurities in aluminium particle can be screened by cooperating with screening net 24, and aluminium particle is collected by discharge port 23 after screening, and impurities slide on screening plate 21, screening effect is good, sieve assembly 3 is added, impurities can be filtered by installing first screening net 33 in sorting frame 31, and impurities are screened out by discharge chute 32 by the first screening net 33 arranged obliquely, so as to realize the screening of impurities mixed in aluminium particle, facilitate classification recovery, reduce the screening procedure of operating personnel, improve screening efficiency.
[0026] Vibrating screening assembly 2 includes screening plate 21, vibrator 22, discharge port 23, screening net 24, mounting seat 25, fixed plate 26, connecting frame 27, sliding rod 28, limiting plate 29 and spring 210, screening plate 21 is provided below the discharge port position of crushing mechanism 11, vibrator 22 is installed below screening plate 21, screening plate 21 is arranged obliquely, discharge port 23 is formed in the surface of screening plate 21, screening net 24 is installed on the surface of screening plate 21 at the position of discharge port 23, mounting seat 25 is installed at the position of four corners of support frame 1, sliding rod 28 is hinged on the surface of mounting seat 25, one end of sliding rod 28 is inserted into the insertion hole formed in the surface of fixed plate 26, which is arranged below mounting seat 25, connecting frame 27 is installed on the surface of fixed plate 26, one end of connecting frame 27 is hinged with screening plate 21, limiting plate 29 is installed on one end of sliding rod 28, spring 210 is sleeved on the surface of sliding rod 28, one end of spring 210 is connected with limiting plate 29, and the other end of spring 210 is connected with fixed plate 26, by setting vibrating screening assembly 2, vibrating spring is set in the position of four corners of screening plate 21, under the vibration of vibrator 22, aluminium particle falls into the position of discharge port 23, and the impurities in aluminium particle can be screened by cooperating with screening net 24, and aluminium particle is collected by discharge port 23 after screening, and impurities slide on screening plate 21, screening effect is good.
[0027] Embodiment 2:
[0028] Referring to Figures 1-6In the embodiment, the screening assembly 3 includes a sorting frame 31, a discharge chute 32, and a first screening net 33. The sorting frame 31 is installed below the surface of the screening plate 21 at the discharge port 12. The first screening net 33 is installed inside the sorting frame 31. The discharge chute 32 is installed at the screening opening on one side surface of the sorting frame 31 and abuts against one side of the first screening net 33. By setting the screening assembly 3, the first screening net 33 installed in the sorting frame 31 can filter impurities. The impurities are screened out through the discharge chute 32 by the first screening net 33 arranged in an inclined manner, so as to screen the impurities mixed in the aluminum particles, facilitate classification and recycling, reduce the screening procedures of the operating personnel, and improve the screening efficiency.
[0029] The second screening net 34 is installed inside the sorting frame 31 below the first screening net 33. The discharge chute 32 is also installed at the position where one side of the second screening net 34 abuts against the sorting frame 31. By installing the second screening net 34, the aluminum particles can be filtered again, and the impurities can be screened again. The screening effect is good, and the purity of the aluminum particles is further improved.
[0030] The second screening net 34 and the first screening net 33 are both arranged in an inclined structure. The second screening net 34 and the first screening net 33 are arranged in opposite inclined structures, so as to conveniently screen the larger impurities and roll them to a lower position. The screening effect is good, and the classification and collection are realized.
[0031] Two material blocking plates 35 are symmetrically installed on the surfaces of the second screening net 34 and the first screening net 33. The two material blocking plates 35 are connected to the feeding ports of the discharge chute 32. By installing the material blocking plates 35, the screened impurities can be conveniently gathered and discharged through the discharge chute 32.
[0032] The screen holes of the first screening net 33 are larger than those of the second screening net 34 arranged below the first screening net 33. By setting the screen holes of the first screening net 33 and the second screening net 34 to be different in size, different sizes of impurities can be screened and uniformly treated. The screening effect is good.
[0033] Through the above steps, when in use, the vibration screening assembly 2 is set. The vibration springs are arranged at the four corner positions of the screening plate 21. Under the vibration of the vibrator 22, the aluminum particles fall to the discharge port 23 position. The impurities in the aluminum particles can be screened by the screening net 24. The screened aluminum particles are collected through the discharge port 23, and the impurities slide on the screening plate 21. The screening effect is good. The screening assembly 3 is added. The first screening net 33 is installed in the sorting frame 31 to filter the impurities. The impurities are screened out through the discharge chute 32 by the first screening net 33 arranged in an inclined manner, so as to screen the impurities mixed in the aluminum particles, facilitate classification and recycling, reduce the screening procedures of the operating personnel, and improve the screening efficiency.
[0034] The embodiment of the utility model is explained in detail above in combination with the drawings, but the utility model is not limited to the above-mentioned embodiment, and various changes can be made within the knowledge range possessed by the person skilled in the art without departing from the purpose of the utility model.
Claims
1. A screening device for processing of aluminum particles, comprising a production device body, characterized in that: The utility model provides a kind of production device, including support frame (1), crushing mechanism (11), discharge port (12), vibrating screening assembly (2) and screen assembly (3), the support frame (1) is arranged at the position below production device main body, the upper portion of the support frame (1) is equipped with crushing mechanism (11), the lower surface of the crushing mechanism (11) is equipped with discharge port (12), the support frame (1) below is equipped with vibrating screening assembly (2), and the screen assembly (3) is arranged at the surface of vibrating screening assembly (2); The vibrating screening assembly (2) includes screening plate (21), vibrator (22), discharge port (23), screening mesh (24), mounting seat (25), fixed plate (26), connecting frame (27), sliding rod (28), limiting plate (29) and spring (210), the discharge port position of the crushing mechanism (11) is equipped with screening plate (21), the lower portion of the screening plate (21) is equipped with vibrator (22), the screening plate (21) is arranged obliquely, the surface of the screening plate (21) is equipped with discharge port (23), the surface of the screening plate (21) is equipped with screening mesh (24) at the discharge port (23) position, the four corner positions of the support frame (1) are equipped with mounting seat (25), the surface of the mounting seat (25) is hinged with sliding rod (28), one end of the sliding rod (28) is inserted into the insertion hole on the surface of the fixed plate (26) arranged below the mounting seat (25), the surface of the fixed plate (26) is equipped with connecting frame (27), one end of the connecting frame (27) is hinged with the screening plate (21), one end of the sliding rod (28) is equipped with limiting plate (29), the surface of the sliding rod (28) is sleeved with spring (210), one end of the spring (210) is connected with the limiting plate (29), the other end of the spring (210) is connected with the fixed plate (26).
2. The screening device for aluminum particle production and processing according to claim 1, characterized in that: The screen assembly (3) includes sorting frame (31), discharge chute (32) and first screening mesh (33), the surface of the screening plate (21) is equipped with sorting frame (31) below the discharge port (12), the first screening mesh (33) is installed in the sorting frame (31), and the discharge chute (32) is installed at the screening port position of one side surface of the sorting frame (31), and the discharge chute (32) is in abutment with one side of the first screening mesh (33).
3. The screening device for aluminum particle production and processing according to claim 2, characterized in that: The second screening mesh (34) is installed below the first screening mesh (33) in the sorting frame (31), and the discharge chute (32) is also installed at the position where the second screening mesh (34) is in contact with the sorting frame (31) on one side.
4. The screening device for aluminum particle production and processing according to claim 3, characterized in that: The second screening mesh (34) and the first screening mesh (33) are both arranged in inclined structure, and the second screening mesh (34) and the first screening mesh (33) are arranged in opposite direction inclined structure.
5. The screening device for aluminum particle production processing according to claim 3, characterized in that: Two baffle plates (35) are symmetrically installed on the surfaces of the second screening mesh (34) and the first screening mesh (33), and the two baffle plates (35) are connected with the feeding port of the discharge chute (32).
6. The screening device for aluminum particle production processing according to claim 2, characterized in that: The first screen (33) has a larger mesh size than a second screen (34) disposed below the first screen (33). The first screen (33) has a larger mesh size than a second screen (34) disposed below the first screen (33).