A vibrating filter shaker
By introducing an adjustable elastic mechanism into the vibrating filter shaker, the problem of low efficiency in screening different materials is solved, the shaking amplitude and angle of the bed can be adjusted, and the screening efficiency is improved.
Patent Information
- Application Number
- CN202411111489.X
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2024-08-14
- Publication Date
- 2025-09-23
- Estimated Expiration
- 2044-08-14
AI Technical Summary
When screening different materials, existing vibrating filter shakers are difficult to effectively adjust according to the size and gravity differences of the materials, resulting in low screening efficiency.
The bed is supported by an adjustable elastic mechanism, and rapid screening of different raw materials can be achieved by adjusting the rocking amplitude and swing angle of the bed.
The screening efficiency of the vibrating filter shaker is improved, which can adapt to the screening requirements of different materials and achieve fast and efficient material separation.
Smart Images

Figure CN118751388B_ABST
Abstract
Description
Technical Field
[0001] The invention relates to a vibration filtering technology, in particular to a vibration filtering shaking table. Background Art
[0002] During post-processing, waste film sheets need to be crushed and then vibrated and screened. The screening device can be a vibrating filter shaker, which can precipitate heavier metals while allowing plastic materials to float and collect. Screening is generally done from top to bottom, but due to the different particle sizes and gravity of different materials, it is not easy to discharge them. Therefore, the vibration frequency and swing amplitude of the shaker need to be adjusted. Therefore, a vibrating filter shaker that can be adjusted according to different situations is needed. Summary of the Invention
[0003] In order to solve the defects of the above-mentioned prior art, the present invention proposes a vibrating filtering shaker.
[0004] The technical solution of the present invention is achieved as follows:
[0005] A vibrating filter shaker, characterized by comprising:
[0006] The base is provided with a driving mechanism, and the driving mechanism is provided with a lifting seat, a motor, a driving disc and a driving rod. The motor is provided on the lifting seat, and the driving disc is installed on the motor. The driving disc and one end of the driving rod are eccentrically hinged through a first hinge rod. After the motor is started, the driving disc is driven to rotate to keep the driving rod in position.
[0007] The bed is arranged at the upper end of the base, and is provided with a discharge trough, a baffle and a collection trough. The discharge trough is provided with a notch, and the bed is provided with multiple raised strips. Symmetrical blocks are provided in the collection trough, and a separation area is formed between the blocks.
[0008] An elastic member is symmetrically arranged at one end of the bed body, wherein the upper end of the elastic member contacts the bed body and the lower end contacts the base.
[0009] and an elastic mechanism symmetrically arranged at the other end of the bed body, the elastic mechanism comprising:
[0010] A fixing member is provided on the base, and a hinge block is provided at the upper end of the fixing member.
[0011] A pressure member cooperates with the fixing member, wherein the upper end of the pressure member is hingedly connected to the hinge block through a second hinge rod, and a movable area is formed between the pressure member and the fixing member.
[0012] A positioning piece mounted on the fixing piece is provided on the positioning piece, wherein the positioning piece is provided with an arc portion cooperating with the fixing piece, an arc opening is formed in the middle of the arc portion, and the positioning piece is also provided with a positioning ring and a symmetrically arranged dovetail block.
[0013] A mounting piece that cooperates with the positioning piece, wherein the mounting piece is provided with a dovetail groove that cooperates with the dovetail block,
[0014] and a first adjustment component, a second adjustment component and a third adjustment component,
[0015] The first adjustment component is arranged between the second adjustment component and the third adjustment component, one end of the first adjustment component remains connected to the mounting member, and the other end remains in contact with the pressure member, one end of the second adjustment component remains connected to the mounting member, and the other end remains connected to the fixing ring, and one end of the third adjustment component remains connected to the mounting member, and the other end remains connected to the positioning member.
[0016] In the present invention, the fixing member is composed of an installation section, a curved section, a vertical section and a first inclined section from bottom to top. The installation section and the vertical section are arranged in parallel. A distance difference is generated between the installation section and the vertical section through the curved section. The hinge block is arranged on the first inclined section.
[0017] In the present invention, the pressure member is composed of a pushing section and a second inclined section, the first inclined section and the second inclined section are arranged in parallel, and the pushing section and the vertical section are arranged in parallel.
[0018] In the present invention, a protrusion is provided on the second inclined section, and the protrusion is placed on the vertical section.
[0019] In the present invention, the mounting member consists of a mounting plate and a sliding plate, the sliding plate and the mounting plate are arranged vertically, the mounting plate is provided with a first threaded hole, a second threaded hole and a third threaded hole, the dovetail groove is arranged on the side of the sliding plate, and the sliding plate is also provided with a strip groove.
[0020] In the present invention, a frame is further provided on the sliding plate, a through area is formed in the middle of the frame, the positioning member is arranged in the through area, and a positioning pin is provided on the frame.
[0021] In the present invention, the first adjustment component is provided with a first spring, a first adjustment member and a pushing seat, the first spring is arranged between the first adjustment seat and the pushing seat, the first adjustment member is provided with a first threaded portion that cooperates with the first threaded hole, the pushing seat is provided with a pushing port, the pushing member is arranged in the pushing port, the pushing seat is provided with parallel retaining plates, a sliding area is formed between the retaining plates, the sliding plate is arranged in the sliding area, and the retaining plate is provided with a strip block that cooperates with the strip groove.
[0022] In the present invention, a cylindrical groove is provided on the inner wall of the pushing port, a cylindrical body is provided in the cylindrical groove, and the cylindrical body is in contact with the pressure member.
[0023] In the present invention, the second adjustment component is provided with a second adjustment member and a second spring, one end of the second spring is connected to the fixing ring, and the other end is connected to the second adjustment member, and the second adjustment member is provided with a second threaded portion that cooperates with the second threaded hole.
[0024] In the present invention, the third adjustment component is provided with a third adjustment member, a third spring and a chain. The third adjustment member is provided with a third threaded portion that cooperates with the third threaded hole. The third spring connects the third adjustment member and the chain. The positioning member is provided with a hook. One end of the chain is connected to the hook, and the other end is connected to the third spring.
[0025] The implementation of the vibrating filter shaker of the present invention has the following beneficial effects: the vibrating filter shaker adopts an adjustable elastic mechanism to support the bed body, and the amplitude of the bed body shaking force can be adjusted according to different raw materials, thereby changing the swing angle of the bed body, realizing rapid screening and filtration for different raw materials, and improving the vibration filtration efficiency. BRIEF DESCRIPTION OF THE DRAWINGS
[0026] Figure 1 This is a schematic structural diagram of a vibrating filter shaker of the present invention;
[0027] Figure 2 for Figure 1 A schematic diagram of the structure in another direction;
[0028] Figure 3 for Figure 1 The main view;
[0029] Figure 4 for Figure 1 Schematic diagram of the elastic mechanism structure;
[0030] Figure 5 for Figure 4 A schematic diagram of the structure in another direction;
[0031] Figure 6 for Figure 4 A top view of
[0032] Figure 7 for Figure 4 Exploded diagram;
[0033] Figure 8 for Figure 7 Schematic diagram of the fixing structure in FIG;
[0034] Figure 9 for Figure 7 A schematic structural diagram of the second regulating component in FIG.
[0035] Figure 10 for Figure 7 Schematic diagram of the mounting structure;
[0036] Figure 11 for Figure 7 Schematic diagram of the positioning member structure in FIG;
[0037] Figure 12 for Figure 7 A schematic structural diagram of the third regulating component in FIG.
[0038] Figure 13 for Figure 7 A schematic structural diagram of the first regulating component in FIG;
[0039] Figure 14 for Figure 4 main view.
[0040] In the figure: base 1, bed 2, elastic member 3, elastic mechanism 4, driving mechanism 5, lifting seat 6, motor 7, driving disk 8, driving rod 9, first hinged rod 10, hinged seat 11, discharge trough 12, baffle 13, collecting trough 14, notch 15, strip rod 16, partition 17, fixing member 18, pressure member 19, positioning member 20, mounting member 21, first adjusting component 22, second adjusting component 23, third adjusting component 24, hinge block 25, mounting section 26, bending section 27, vertical section 28, first inclined section 29, second hinged rod 30, active area 31, pushing section 32, second inclined section 33, pushing member 34, protrusion 35, pushing seat 36, arc portion 37, arc-shaped mouth 38, positioning ring 39, dovetail block 40, transverse plate 41, vertical plate 42, Annular member 43, mounting plate 44, sliding plate 45, first threaded hole 46, second threaded hole 47, third threaded hole 48, strip groove 49, frame 50, through area 51, positioning pin 52, fixing ring 53, first adjusting member 54, first square block 55, first positioning column 56, pushing plate 57, second positioning column 58, first spring 59, stopper 60, first threaded portion 61, pushing mouth 62, retaining plate 63, sliding area 64, strip block 65, cylindrical groove 66, cylinder 67, second adjusting member 68, second spring 69, second threaded portion 70, second square block 71, fixing block 72, sleeve 73, third adjusting member 74, third spring 75, chain 76, third threaded portion 77, hook 78, third square block 79, connecting block 80, ring body 81. DETAILED DESCRIPTION
[0041] The technical solutions in the embodiments of the present invention will be described clearly and completely below with reference to the accompanying drawings in the embodiments of the present invention.
[0042] like Figures 1 to 14As shown, the vibrating filtering shaker of the present invention includes a base 1 , a bed body 2 , an elastic member 3 and an elastic mechanism 4 .
[0043] A driving mechanism 5 is provided on the base 1, and the driving mechanism 5 is provided with a lifting seat 6, a motor 7, a driving disk 8 and a driving rod 9. The motor 7 is arranged on the lifting seat 6, and the driving disk 8 is installed on the motor 7. The driving disk 8 is eccentrically hinged to one end of the driving rod 9 through a first hinge rod 10. A hinge seat 11 is provided on the bed 2, and the other end of the driving rod 9 is hingedly connected to the hinge seat 11. After the motor 7 is started, it drives the driving disk 8 to rotate and keeps the position of the driving rod 9 moving. After the driving rod 9 moves, the bed 2 can be pushed to achieve vibration of the bed 2, and the raw materials on the bed 2 can be vibrated and screened.
[0044] The bed 2 is disposed at the upper end of the base 1 and is provided with a discharge trough 12, a baffle 13, and a collection trough 14. The discharge trough 12 has a notch 15, and the bed 2 is provided with multiple raised strips 16. Symmetrical blocks 60 are provided within the collection trough 14, forming a partition 17 between the blocks 60. The discharge trough 12 is used to place raw materials, which are then flushed with water to enter the bed 2 through the notch 15. The multiple strips 16 are used to block heavier materials and flush lighter materials into the collection trough 14.
[0045] The elastic member 3 is symmetrically arranged at one end of the bed body 2, with the upper end of the elastic member 3 in contact with the bed body 2 and the lower end in contact with the base 1. The elastic member 3 is a spring, which is used to cooperate with the elastic mechanism 4 to achieve a shaking buffer for the bed body 2.
[0046] Elastic mechanism 4 is symmetrically positioned at the other end of bed 2. It includes a fixing member 18, a pressure member 19, a positioning member 20, a mounting member 21, and a first adjustment assembly 22, a second adjustment assembly 23, and a third adjustment assembly 24. Fixing member 18 is mounted on base 1, while pressure member 19 is mounted on fixing member 18. Positioning member 20 and mounting member 21 are mounted on fixing member 18 and pressure member 19, while first adjustment assembly 22, second adjustment assembly 23, and third adjustment assembly 24 are mounted on positioning member 20 and mounting member 21. Bed 2 is mounted on mounting member 21 via baffle 13.
[0047] The fixing member 18 is mounted on the base 1, with a hinge block 25 at its upper end. From bottom to top, the fixing member 18 consists of a mounting section 26, a curved section 27, a vertical section 28, and a first inclined section 29. The mounting section 26 and the vertical section 28 are arranged in parallel, with a distance difference between them created by the curved section 27. The hinge block 25 is mounted on the first inclined section 29. This distance difference between the mounting section 26 and the vertical section 28 created by the curved section 27 allows the first inclined section 29 to be pushed and deformed, generating elasticity.
[0048] The fixing member 18 cooperates with the pressure member 19, and the upper end of the pressure member 19 is hingedly connected to the hinge block 25 via the second hinge rod 30, forming a movable area 31 between the pressure member 19 and the fixing member 18. The pressure member 19 is composed of a pushing section 32 and a second inclined section 33. The first inclined section 29 and the second inclined section 33 are arranged in parallel, and the pushing section 32 and the vertical section 28 are arranged in parallel. Since the movable area 31 is generated between the pushing section 32 and the mounting section 26, when the driving rod 9 pushes the bed body 2, the movable area 31 can be reduced by the pushing member 34 moving toward the mounting section 26. In addition, an elastic buffer is generated in conjunction with the second inclined section 33.
[0049] A protrusion 35 is provided on the second inclined section 33, and the protrusion 35 is placed on the vertical section 28. The protrusion 35 contacts the fixing member 18, so that after the pressure member 19 is pushed by the pushing seat 36, the protrusion 35 can be used as a fulcrum to achieve elastic buffering of the fixing member 18 and the pressure member 19.
[0050] Positioning member 20 is mounted on fixing member 18. Positioning member 20 is provided with an arcuate portion 37 that cooperates with fixing member 18. An arcuate opening 38 is formed in the middle of arcuate portion 37. Positioning member 20 is also provided with a positioning ring 39 and symmetrically arranged dovetail blocks 40. Positioning member 20 is composed of a horizontal plate 41 and a vertical plate 42. Arcuate portion 37 is mounted on vertical plate 42, and dovetail blocks 40 are mounted on horizontal plate 41.
[0051] The mounting member 21 cooperates with the positioning member 20 and is provided with a dovetail groove that cooperates with the dovetail block 40. The mounting member 21 is composed of a mounting plate 44 and a sliding plate 45. The sliding plate 45 and the mounting plate 44 are arranged perpendicularly. The mounting plate 44 is provided with a first threaded hole 46, a second threaded hole 47, and a third threaded hole 48. The dovetail groove is provided on the side of the sliding plate 45, and the sliding plate 45 is also provided with a strip groove 49.
[0052] A frame 50 is further provided on the sliding plate 45 , and a through area 51 is formed in the middle of the frame 50 . The positioning member 20 is arranged in the through area 51 . A positioning pin 52 is provided on the frame 50 to limit the position of the fixing ring 53 .
[0053] The first adjusting component 22 is arranged between the second adjusting component 23 and the third adjusting component 24. One end of the first adjusting component 22 remains connected to the mounting member 21, and the other end remains in contact with the pressure member 19. One end of the second adjusting component 23 remains connected to the mounting member 21, and the other end remains connected to the fixing ring 53. One end of the third adjusting component 24 remains connected to the mounting member 21, and the other end remains connected to the positioning member 20.
[0054] One end of the first adjusting member 54 is provided with a first square block 55 to facilitate rotation of the first adjusting member 54, and the other end is provided with a push plate 57 and a first positioning post 56, and a first spring 59 is sleeved on the first positioning post 56. The push seat 36 is provided with a second positioning post 58 that cooperates with the first positioning post 56, and the first spring 59 is sleeved on the second positioning post 58.
[0055] The first adjusting assembly 22 is provided with a first spring 59, a first adjusting member 54 and a pushing seat 36. The first spring 59 is arranged between the first adjusting member 54 and the pushing seat 36. The first adjusting member 54 is provided with a first threaded portion 61 that cooperates with the first threaded hole 46. The pushing seat 36 is provided with a pushing port 62. The pushing member 34 is arranged in the pushing port 62. The pushing seat 36 is provided with parallel retaining plates 63. A sliding area 64 is formed between the retaining plates 63. The sliding plate 45 is arranged in the sliding area 64. The retaining plate 63 is provided with a strip block 65 that cooperates with the strip groove 49.
[0056] A cylindrical groove 66 is provided on the inner wall of the pushing opening 62 . A cylindrical body 67 is provided in the cylindrical groove 66 . The cylindrical body 67 contacts the pressure member 19 .
[0057] The second adjusting assembly 23 is provided with a second adjusting member 68 and a second spring 69 . One end of the second spring 69 is connected to the fixing ring 53 , and the other end is connected to the second adjusting member 68 . The second adjusting member 68 is provided with a second threaded portion 70 that cooperates with the second threaded hole 47 .
[0058] The second adjusting member 68 is provided with a second square block 71 to facilitate the rotation of the second adjusting member 68 . The second adjusting member 68 is also provided with a fixing block 72 . The fixing block 72 is provided with a sleeve 73 . The sleeve 73 is connected to the second spring 69 .
[0059] The third adjusting component 24 is provided with a third adjusting member 74, a third spring 75 and a chain 76. The third adjusting member 74 is provided with a third threaded portion 77 that cooperates with the third threaded hole 48. The third spring 75 connects the third adjusting member 74 and the chain 76. The positioning member 20 is provided with a hook 78. One end of the chain 76 is connected to the hook 78, and the other end is connected to the third spring 75.
[0060] The third adjusting member 74 is provided with a third rectangular block 79 for rotating the third adjusting member 74. The third adjusting member 74 is also provided with a connecting block 80, which is provided with a ring body 81 connected to the third spring 75. The chain 76 is composed of multiple ring members 43, which are connected to the third spring 75 and the hook 78. During adjustment, different ring members 43 are connected to the third spring 75 and the hook 78. Both the second spring 69 and the third spring 75 are tension springs.
[0061] When the first spring 59 is in a natural state, the second spring 69 and the third spring 75 are in a stretched state. When the first spring 59 is in a compressed state, the second spring 69 and the third spring 75 are also in a compressed state.
[0062] like Figure 4 As shown, after the driving rod 9 pushes the bed body 2, it keeps the pressure member 19 moving in the direction close to the fixing member 18. The first spring 59 is compressed, while the second spring 69 and the third spring 75 are already in a compressed state at this time and cannot be compressed further. When the driving rod 9 moves in the opposite direction, it keeps the pressure member 19 moving in the direction away from the fixing member 18, so that the first spring 59 is reset to a natural state, while the second spring 69 and the third spring 75 remain stretched. At the same time, with the elastic buffering of the fixing member 18 and the pressure member 19, vibration of the bed body 2 can be achieved. When the elastic force needs to be adjusted, the first adjustment member 54, the second adjustment member 68 and the third adjustment member 74 can be rotated.
[0063] The above description is only a preferred embodiment of the present invention and is not intended to limit the present invention. Any modifications, equivalent replacements and improvements made within the spirit and principles of the present invention should be included in the scope of protection of the present invention.
Claims
1. A vibrating filter shaker, characterized in that: include: The base is provided with a driving mechanism, and the driving mechanism is provided with a lifting seat, a motor, a driving disc and a driving rod. The motor is provided on the lifting seat, and the driving disc is installed on the motor. The driving disc and one end of the driving rod are eccentrically hinged through a first hinge rod. After the motor is started, the driving disc is driven to rotate to keep the driving rod in position. The bed is arranged at the upper end of the base, and is provided with a discharge trough and a collection trough. The discharge trough is provided with a notch, and the bed is provided with multiple raised strips. Symmetrical blocks are provided in the collection trough, and a separation area is formed between the blocks. An elastic member is symmetrically arranged at one end of the bed body, wherein the upper end of the elastic member contacts the bed body and the lower end contacts the base. and an elastic mechanism symmetrically arranged at the other end of the bed body, the elastic mechanism comprising: A fixing member is provided on the base, and a hinge block is provided at the upper end of the fixing member. A pressure member cooperates with the fixing member, wherein the upper end of the pressure member is hingedly connected to the hinge block through a second hinge rod, and a movable area is formed between the pressure member and the fixing member. A positioning piece mounted on the fixing piece is provided on the positioning piece, wherein the positioning piece is provided with an arc portion cooperating with the fixing piece, an arc opening is formed in the middle of the arc portion, and the positioning piece is also provided with a positioning ring and a symmetrically arranged dovetail block. A mounting piece that cooperates with the positioning piece, wherein the mounting piece is provided with a dovetail groove that cooperates with the dovetail block, and a first adjustment component, a second adjustment component and a third adjustment component, The first adjustment component is arranged between the second adjustment component and the third adjustment component, one end of the first adjustment component remains connected to the mounting member, and the other end remains in contact with the pressure member, one end of the second adjustment component remains connected to the mounting member, and the other end remains connected to the fixing ring, and one end of the third adjustment component remains connected to the mounting member, and the other end remains connected to the positioning member.
2. The vibrating filter shaker according to claim 1, characterized in that The fixing member is composed of an installation section, a curved section, a vertical section and a first inclined section from bottom to top. The installation section and the vertical section are arranged in parallel. A distance difference is generated between the installation section and the vertical section through the curved section. The hinge block is arranged on the first inclined section.
3. The vibrating filter shaker according to claim 2, characterized in that: The pressure member consists of a pushing section and a second inclined section, the first inclined section and the second inclined section are arranged in parallel, and the pushing section and the vertical section are arranged in parallel.
4. The vibrating filter shaker according to claim 3, characterized in that: The second inclined section is provided with a protrusion, and the protrusion is placed on the vertical section.
5. The vibrating filter shaker according to claim 3, characterized in that: The mounting member consists of a mounting plate and a sliding plate, the sliding plate and the mounting plate are arranged vertically, the mounting plate is provided with a first threaded hole, a second threaded hole and a third threaded hole, the dovetail groove is arranged on the side of the sliding plate, and the sliding plate is also provided with a strip groove.
6. The vibrating filter shaker according to claim 5, characterized in that: The sliding plate is further provided with a frame, a through area is formed in the middle of the frame, the positioning member is arranged in the through area, and a positioning pin is provided on the frame.
7. The vibrating filter shaker according to claim 6, characterized in that: The first adjusting component is provided with a first spring, a first adjusting member and a pushing seat, the first spring is arranged between the first adjusting member and the pushing seat, the first adjusting member is provided with a first threaded portion that cooperates with the first threaded hole, the pushing seat is provided with a pushing opening, the pushing section is arranged in the pushing opening, the pushing seat is provided with parallel retaining plates, a sliding area is formed between the retaining plates, the sliding plate is arranged in the sliding area, and the retaining plate is provided with a strip block that cooperates with the strip groove.
8. The vibrating filter shaker according to claim 7, characterized in that: A cylindrical groove is provided on the inner wall of the pushing port, a cylindrical body is provided in the cylindrical groove, and the cylindrical body is in contact with the pressure member.
9. The vibrating filter shaker according to claim 7, characterized in that: The second adjusting component is provided with a second adjusting member and a second spring. One end of the second spring is connected to the fixing ring, and the other end is connected to the second adjusting member. The second adjusting member is provided with a second threaded portion that cooperates with the second threaded hole.
10. The vibrating filter shaker according to claim 9, characterized in that: The third adjustment component is provided with a third adjustment member, a third spring and a chain. The third adjustment member is provided with a third threaded portion that cooperates with the third threaded hole. The third spring connects the third adjustment member and the chain. The positioning member is provided with a hook. One end of the chain is connected to the hook, and the other end is connected to the third spring.
Citation Information
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