Continuous vibration polishing device for iron chain

By designing a continuous vibration polishing device for iron chains, a hydraulic cylinder drives a rotating pressure bar to automatically feed the iron chain, and a filter plate separates the rust. This solves the problems of cumbersome operation and rust pollution of existing devices, and achieves efficient automatic polishing and cleaning.

CN224088743UActive Publication Date: 2026-04-07HAIAN COUNTY WUMA IRON CHAIN

Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-02-20
Publication Date
2026-04-07

AI Technical Summary

Technical Problem

Existing iron chain polishing devices lack auxiliary chain feeding and conveying structures, resulting in cumbersome operation and low efficiency. Furthermore, rust in the polishing medium easily contaminates the chain, affecting the polishing effect.

Method used

A continuous vibration polishing device for iron chains was designed, comprising components such as a vibration frame, a base frame, a vertical plate, a hydraulic cylinder, a lifting rod, a rotating pressure rod, and a filter plate. The hydraulic cylinder drives the rotating pressure rod to press the iron chain into the vibration frame, the vibrator drives the abrasive to polish, and the filter plate separates the rust and abrasive.

Benefits of technology

It enables automatic feeding and moving polishing of the iron chain, reducing manpower consumption, improving efficiency, and effectively reducing rust contamination in the polishing medium while maintaining the polishing effect.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses an iron chain continuous vibration polishing device which relates to the technical field of iron chain polishing and comprises a vibration frame, a bottom frame and a vertical plate, the bottom frame is installed on the outer side of the vibration frame, a plurality of partition plates are installed in the vibration frame at equal intervals, and vibrator components are symmetrically installed on the front face and the back face of the vibration frame. A vertical plate is installed on the front face of the bottom frame, a controller component is installed on the front face of the vertical plate, a plurality of hydraulic cylinder components are symmetrically installed on the two sides of the vibration frame, the hydraulic cylinder components are in electric signal connection with the controller component, lifting rods are installed at the output ends of the hydraulic cylinder components, and downward pressing mechanisms are arranged on the inner sides of the lifting rods. The pressing mechanism is arranged, the iron chain is moved to the position below the rotary pressing rod, then the hydraulic cylinder component drives the rotary pressing rod to move downwards to press the iron chain into the vibration frame, the iron chain placing mode is simple, a worker does not need to press part of the iron chain into grinding materials manually, labor is saved when the iron chain is placed, and efficiency is high.
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Description

TECHNICAL FIELD

[0001] The utility model relates to iron chain polishing technical field, concretely is a kind of iron chain continuous vibration polishing device. BACKGROUND

[0002] There are many methods for iron chain polishing, some use brushes to remove rust from iron chains, and some use abrasive vibration to remove rust from iron chains. Placing iron chains in vibrating abrasive can make abrasive remove rust from iron chains without dead angles. When continuously polishing long iron chains, the iron chains are generally fed into the polishing device by moving, and then the iron chains are extracted from the polishing device. Manually feeding the iron chains into the device is low in efficiency.

[0003] The existing iron chain polishing device has the following defects:

[0004] 1. The existing technology JP2009166189A discloses a vibrating polisher for chain links. This technology does not have a structure to assist in feeding the chain into the vibrating container. When the chain end is fed into the vibrating container and then moved for polishing, personnel are needed to feed the chain into the container. The operation process is troublesome, so an iron chain continuous vibration polishing device with an auxiliary structure to facilitate feeding the chain into the container is needed to solve this problem.

[0005] 2. The existing technology KR101573784B1 discloses a vibrating polisher. This technology does not have a structure to transport and install the chain. When the chain is fed into the device, it needs to be manually moved and installed. The installation process is labor-intensive and low in efficiency, so an iron chain continuous vibration polishing device that can assist in moving and installing the chain is needed to solve this problem.

[0006] 3. The existing technology KR101845133B1 discloses a vibrating polisher. When polishing the chain with polishing medium, the rust on the chain will fall into the polishing medium, and the rust in the polishing medium will easily contaminate the chain, so an iron chain continuous vibration polishing device that can reduce the possibility of rust in the polishing medium contaminating the iron chain is needed to solve this problem.

[0007] 4. The existing technology CN103192314A discloses a chain polisher. This technology does not have a structure to clean the rust in the polishing medium. Rust in the polishing medium can affect the polishing effect of the chain, so an iron chain continuous vibration polishing device that can clean the rust in the polishing medium is needed to solve this problem. Utility model content

[0008] One purpose of the present application is to provide an iron chain continuous vibration polishing device that can solve the technical problems in the prior art.

[0009] To achieve the above objectives, this utility model provides the following technical solution: a continuous vibration polishing device for iron chains, comprising a vibration frame, a bottom frame, and a vertical plate. The bottom frame is installed on the outer side of the vibration frame, and multiple shock absorber assemblies are installed on the bottom inner wall of the bottom of the bottom frame. The top input end of the shock absorber assembly is connected to the bottom of the vibration frame. Multiple partitions are installed at equal intervals inside the vibration frame. Vibrator components are symmetrically installed on the front and back of the vibration frame, and the vibrator components are electrically connected to the controller component.

[0010] A vertical plate is mounted on the front of the base frame, and a controller component is mounted on the front of the vertical plate. Multiple hydraulic cylinder components are symmetrically mounted on both sides of the vibration frame, and the hydraulic cylinder components are electrically connected to the controller component. A lifting rod is mounted on the output end of the hydraulic cylinder component, and a pressing mechanism is provided on the inner side of the lifting rod.

[0011] Preferably, a rubber pad is installed on the inner wall of the bottom frame, and multiple rotating top rods are movably installed through the inner side of the vibration frame, with the rotating top rods located above the partition plate. Multiple threaded rods are installed on one side of the vibration frame, and a limit rod is installed at one end of each threaded rod.

[0012] Preferably, the pressing mechanism includes a rotating pressure rod, which is movably mounted inside the left and right lifting rods.

[0013] Preferably, a rod body is installed at the bottom of the lifting rod, and multiple rotating rods are movably installed through one side of the rod body. A top plate is installed on the back of the rotating rod, and the top plate is located on the right side of the rod body. A bolt is installed on the top of the rotating rod, and the bolt is located on the left side of the rod body. A limit rod is installed on one side of the rod body, and the limit rod is located below the top plate.

[0014] Preferably, a plate is mounted on the front of the vibration frame, a motor component is mounted on the top of the plate, and the motor component is electrically connected to the controller component. A lead screw is mounted on the output end of the motor component. A support block is mounted on the top of the vibration frame and is located outside the lead screw. A stop bar is mounted on the top of the vibration frame and is located on one side of the lead screw. A movable frame component is mounted on the outside of the lead screw. An electric telescopic rod component is mounted on the top of the movable frame component and is electrically connected to the controller component. A pressure plate is mounted on the output end of the electric telescopic rod component and is located inside the movable frame component.

[0015] Preferably, a second plate is mounted on the back of the vibration frame, a second motor component is mounted on the top of the second plate, and the second motor component is electrically connected to the controller component. A winding wheel component is mounted on the output end of the second motor component.

[0016] Preferably, a plurality of collection frame components are movably installed through one side of the vibration frame, and one side of the collection frame components is located inside the vibration frame. A handle is installed on one side of the collection frame components. Support rods are symmetrically installed on the front and back of the partition, and the support rods are located below the collection frame components. A plurality of filter plate components are movably installed through one side of the vibration frame. A handle is installed on one side of the filter plate components. Support rods are symmetrically installed on the front and back of the partition, and the support rods are located below the filter plate components.

[0017] Preferably, a plurality of guide frames are installed on one side of the vibration frame, a plurality of baffle components are movably installed through one side of the guide frames, and one side of the baffle components penetrates the inner wall of one side of the vibration frame. At the same time, the baffle components are located above the filter plate components, a handle three is installed on one side of the baffle components, and a bolt two is installed through the top of the guide frames.

[0018] Preferably, the vibration method of the continuous vibration polishing device for the iron chain is as follows:

[0019] S1. Place the abrasive inside the vibrating frame, place one end of the iron chain inside the moving frame component, then press the iron chain with the pressure plate, and then the motor component drives the moving frame component to move backward, thereby driving the iron chain to move backward.

[0020] S2. Then, the personnel move the iron chain under the rotating pressure bar, and the hydraulic cylinder component drives the rotating pressure bar to move down and press the iron chain into the vibrating frame.

[0021] S3. Then the vibrator component is turned on, which drives the vibrating frame and the abrasive inside to vibrate. When the abrasive vibrates, it polishes the iron chain. The debris and rust that fall off the iron chain enter the abrasive and move downward as the abrasive vibrates.

[0022] S4. After the iron chain moves backward for polishing, the lifting rod and rotating pressure rod move upward again. The top plate lifts up part of the abrasive in front of the rotating pressure rod, which in turn fills the bottom of the top plate with other abrasives containing a large amount of rust, so that the abrasives with less rust content fall on top of the other abrasives.

[0023] Preferably, step S3 further includes the following steps:

[0024] S31. When the vibrating frame vibrates, the rust in the abrasive enters the collection frame component through the filter plate component. Then, the baffle component is moved to the left and below the filter plate component. Finally, the collection frame component is removed to discharge the rust and debris.

[0025] Compared with the prior art, the beneficial effects of this utility model are:

[0026] 1. This utility model is equipped with a pressing mechanism that moves the iron chain under the rotating pressure bar. Then, the hydraulic cylinder component drives the rotating pressure bar to move down and press the iron chain into the vibrating frame. The method of placing the iron chain is simple and does not require manual pressing of part of the iron chain into the abrasive. Placing the iron chain saves physical effort and is highly efficient.

[0027] 2. This utility model inserts one end of the iron chain into the interior of the moving frame component, then the pressure plate presses the iron chain tightly. Subsequently, the motor component drives the moving frame component to move backward, thereby driving the iron chain to move backward. There is no need for personnel to manually transport the iron chain to the back of the vibrating frame, resulting in high transportation efficiency.

[0028] 3. After the iron chain of this utility model has been polished by moving backward, the lifting rod and the rotating pressure rod move upward again. The top plate lifts up part of the abrasive in front of the rotating pressure rod, so that other abrasives mixed with a large amount of rust fill the area below the top plate. This allows the abrasives with less rust to fall on top of the other abrasives, making it easier for the rust to fall downward into the collection box, reducing the rust content in the abrasives and preventing excessive rust from re-contaminating the iron chain.

[0029] 4. When the vibrating frame of this utility model vibrates, the rust in the abrasive enters the collection frame component through the filter plate component. Then, the baffle component is moved to the left and below the filter plate component. Next, the collection frame component is taken out to discharge the rust and debris, which facilitates cleaning of the collection frame and replacement of the filter plate. Attached Figure Description

[0030] Figure 1 This is a perspective view of the present utility model;

[0031] Figure 2 This is a front sectional view of the vibration frame of this utility model;

[0032] Figure 3 This is a schematic diagram of the hydraulic cylinder component structure of this utility model;

[0033] Figure 4 This is a schematic diagram of the rod structure of this utility model;

[0034] Figure 5 This is a schematic diagram of the vibration frame structure of this utility model;

[0035] Figure 6 This is a schematic diagram of the movable frame component structure of this utility model;

[0036] Figure 7 This is a schematic diagram of the structure of the collection frame component of this utility model;

[0037] Figure 8 This is a schematic diagram of the filter plate component structure of this utility model;

[0038] Figure 9This is a schematic diagram of the partition structure of this utility model;

[0039] Figure 10 This is a flowchart illustrating the usage method of this utility model.

[0040] In the diagram: 1. Vibration frame; 2. Base frame; 3. Vertical plate; 4. Controller assembly; 5. Rubber pad; 6. Shock absorber assembly; 7. Partition plate; 8. Rotating top rod; 9. Hydraulic cylinder assembly; 10. Lifting rod; 11. Rotating pressure rod; 12. Rod body; 13. Rotating rod; 14. Top plate; 15. Bolt 1; 16. Limiting rod 1; 17. Vibrator assembly; 18. Plate 1; 19. Motor assembly 1; 20. Lead screw; 21. Support block 22. Stop bar; 23. Moving frame component; 24. Electric telescopic rod component; 25. Pressure plate; 26. Plate body two; 27. Motor component two; 28. Rewinding wheel component; 29. ​​Collection frame component; 30. Handle one; 31. Support rod one; 32. Filter plate component; 33. Handle two; 34. Support rod two; 35. Guide frame; 36. Baffle component; 37. Handle three; 38. Threaded rod; 39. Limiting rod two; 40. Bolt two. Detailed Implementation

[0041] The technical solutions of the present utility model will be clearly and completely described below with reference to the accompanying drawings of the embodiments. Obviously, the described embodiments are only some embodiments of the present utility model, and not all embodiments. Based on the embodiments of the present utility model, all other embodiments obtained by those of ordinary skill in the art without creative effort are within the protection scope of the present utility model.

[0042] In the description of this utility model, it should be noted that the terms "upper," "lower," "inner," "outer," "front end," "rear end," "both ends," "one end," and "the other end," etc., indicate the orientation or positional relationship based on the orientation or positional relationship shown in the accompanying drawings. They are used only for the convenience of describing this utility model and simplifying the description, and do not indicate or imply that the device or element referred to must have a specific orientation, or be constructed and operated in a specific orientation. Therefore, they should not be construed as limitations on this utility model. In addition, the terms "first" and "second" are used for descriptive purposes only and should not be construed as indicating or implying relative importance.

[0043] In the description of this utility model, it should be noted that, unless otherwise explicitly specified and limited, the terms "installed," "equipped with," "connected," etc., should be interpreted broadly. For example, "connection" can be a fixed connection, a detachable connection, or an integral connection; it can be a mechanical connection or an electrical connection; it can be a direct connection or an indirect connection through an intermediate medium; it can be a connection within two components. Those skilled in the art can understand the specific meaning of the above terms in this utility model according to the specific circumstances.

[0044] Please see Figure 1 , Figure 2 , Figure 3 , Figure 5 and Figure 9 One embodiment of this utility model is a continuous vibration polishing device for iron chains.

[0045] The system includes a vibration frame 1, a base frame 2, and a vertical plate 3. The base frame 2 is installed on the outer side of the vibration frame 1. Multiple shock absorber assemblies 6 are installed on the inner bottom wall of the base frame 2, and the top input end of the shock absorber assembly 6 is connected to the bottom of the vibration frame 1. Multiple partitions 7 are installed at equal intervals inside the vibration frame 1. Vibrator components 17 are symmetrically installed on the front and back of the vibration frame 1, and the vibrator components 17 are electrically connected to the controller component 4. The vertical plate 3 is installed on the front of the base frame 2, and rubber pads 5 are installed on the inner wall of the base frame 2. Multiple rotating push rods 8 are movably installed through the inner side of the vibration frame 1, and the rotating push rods 8 are located at... Above the partition plate 7, multiple threaded rods 38 are installed on one side of the vibration frame 1. A limit rod 39 is installed at one end of each threaded rod 38. A controller component 4 is installed on the front of the upright plate 3. Multiple hydraulic cylinder components 9 are symmetrically installed on both sides of the vibration frame 1, and the hydraulic cylinder components 9 are electrically connected to the controller component 4. A lifting rod 10 is installed at the output end of the hydraulic cylinder component 9. A pressing mechanism is provided inside the lifting rod 10, including a rotating pressing rod 11. The rotating pressing rod 11 is movably installed inside the left and right lifting rods 10. The vibration frame 1 can provide space for placing the abrasive, thereby providing a throwing force for the chain. The light space and the base frame 2 provide a mounting position for the shock absorber assembly 6, which reduces the impact of the vibration of the vibration frame 1 on the base frame 2. The partition 7 separates the internal space of the vibration frame 1. The vibrator component 17 converts electrical energy into kinetic energy, thereby driving the vibration frame 1 and the abrasive inside the vibration frame 1 to vibrate. The upright plate 3 provides a mounting position for the controller component 4, which controls the hydraulic cylinder component 9, the vibrator component 17, the first motor component 19, the electric telescopic rod component 24, and the second motor component 27. The rubber pad 5 acts as a buffer, reducing the impact of vibration. The vibration of the vibrating frame 1 affects the bottom frame 2, reducing the vibration of the bottom frame 2. The rotating top rod 8 can provide support for the iron chain. The threaded rod 38 can provide an installation position for the second limiting rod 39. The second limiting rod 39 is located on the left side of the filter plate component 32 and the collection frame component 29, respectively, and plays a limiting role to prevent the filter plate component 32 and the collection frame component 29 from falling off. The hydraulic cylinder component 9 can convert hydraulic energy into kinetic energy, thereby driving the lifting rod 10 to move up and down. The lifting rod 10 can drive the rotating pressure rod 11 to move up and down by moving up and down. The rotating pressure rod 11 can press the iron chain into the vibrating frame 1 by moving down.

[0046] Please see Figure 1 , Figure 3 and Figure 4 One embodiment of this utility model is a continuous vibration polishing device for iron chains.

[0047] The system includes a rod body 12, which is installed at the bottom of the lifting rod 10. Multiple rotating rods 13 are movably installed through one side of the rod body 12. A top plate 14 is installed on the back of the rotating rod 13, located on the right side of the rod body 12. A bolt 15 is installed on the top of the rotating rod 13, located on the left side of the rod body 12. A limit rod 16 is installed on one side of the rod body 12, located below the top plate 14. The rod body 12 provides an installation position for the rotating rods 13. The rod body 12 can drive the rotating rods 13 and the top plate 14 to move up and down as the lifting rod 10 moves up and down. The rotating rods 13 can rotate, allowing the top plate 14 to rotate. When the top plate 14 moves upward, it can push the abrasive material with less rust inside the vibrating frame 1 to the top of the abrasive material, making it easier for the rust in the abrasive material to fall downward onto the filter plate component 32. The bolt 15 can prevent the rotating rod 13 from sliding to the left, and the limit rod 16 can prevent the top plate 14 from rotating downward.

[0048] Please see Figure 1 , Figure 5 and Figure 6 One embodiment of this utility model is a continuous vibration polishing device for iron chains.

[0049] The vibration frame 1 includes a plate 18, a stop bar 22, and a support block 21. The plate 18 is mounted on the front of the vibration frame 1. A motor component 19 is mounted on the top of the plate 18 and is electrically connected to the controller component 4. A lead screw 20 is mounted on the output end of the motor component 19. The support block 21 is mounted on the top of the vibration frame 1 and is located outside the lead screw 20. A stop bar 22 is mounted on the top of the vibration frame 1 and is located to one side of the lead screw 20. A movable frame component 23 is mounted on the outside of the lead screw 20. An electric telescopic rod component 24 is mounted on the top of the movable frame component 23 and is electrically connected to the controller component 4. A lead screw 20 is mounted on the output end of the electric telescopic rod component 24. The pressure plate 25 is located inside the movable frame component 23. The plate body 18 can provide an installation position for the motor component 19. The motor component 19 can convert electrical energy into kinetic energy, thereby driving the lead screw 20 to rotate. The lead screw 20 can drive the movable frame component 23 to move back and forth by rotating. The support block 21 can provide support for one end of the lead screw 20. The stop bar 22 can prevent the movable frame component 23 from rotating. The movable frame component 23 can pull one end of the iron chain located inside the movable frame component 23 backward by moving back and forth. The electric telescopic rod component 24 can convert electrical energy into kinetic energy, thereby driving the pressure plate 25 to move up and down. The pressure plate 25 can press and fix the iron chain located inside the movable frame component 23.

[0050] Please see Figure 1 and Figure 5 One embodiment of this utility model is a continuous vibration polishing device for iron chains.

[0051] The device includes a second plate 26, which is mounted on the back of the vibration frame 1. A second motor component 27 is mounted on the top of the second plate 26 and is electrically connected to the controller component 4. A winding wheel component 28 is mounted on the output end of the second motor component 27. The second plate 26 provides a mounting position for the second motor component 27. The second motor component 27 can convert electrical energy into kinetic energy, thereby driving the winding wheel component 28 to rotate. The winding wheel component 28 can wind up the chain.

[0052] Please see Figure 1 , Figure 2 , Figure 5 , Figure 7 , Figure 8 and Figure 9 One embodiment of this utility model is a continuous vibration polishing device for iron chains.

[0053] The system includes a collection frame component 29 and a filter plate component 32. Multiple collection frame components 29 are movably mounted through one side of the vibrating frame 1, and one side of each collection frame component 29 is located inside the vibrating frame 1. A handle 30 is mounted on one side of each collection frame component 29. Support rods 31 are symmetrically mounted on the front and back of the partition 7, and are located below the collection frame components 29. Multiple filter plate components 32 are movably mounted through one side of the vibrating frame 1. A handle 33 is mounted on one side of each filter plate component 32. Support rods 34 are symmetrically mounted on the front and back of the partition 7. The second handle 34 is located below the filter plate component 32. The collection frame component 29 functions to collect rust. The first handle 30 provides a handhold for personnel to pull out the collection frame component 29. The first support rod 31 provides support for the collection frame component 29. The filter plate component 32 performs a filtering function, filtering the abrasive inside the vibrating frame 1, allowing the rust to fall into the collection frame component 29 through the filter plate component 32, thus separating the rust from the abrasive. The second handle 33 provides a handhold for personnel to pull out the filter plate component 32. The second support rod 34 provides support for the filter plate component 32.

[0054] Please see Figure 1 , Figure 2 and Figure 5 One embodiment of this utility model is a continuous vibration polishing device for iron chains.

[0055] The vibrating frame 1 includes a guide frame 35. Multiple guide frames 35 are installed on one side of the vibrating frame 1. Multiple baffle components 36 are movably installed through one side of the guide frame 35, and one side of the baffle component 36 penetrates the inner wall of one side of the vibrating frame 1. The baffle component 36 is located above the filter plate component 32. A handle 37 is installed on one side of the baffle component 36. A bolt 40 is installed through the top of the guide frame 35. The guide frame 35 can guide the baffle component 36, allowing the baffle component 36 to move left and right. By moving the baffle component 36 to the left and entering the vibrating frame 1, the baffle component 36 can prevent the abrasive from falling when the filter plate component 32 is pulled out. The handle 37 can provide a handhold for personnel to pull out the baffle component 36. The bolt 40 can press and fix the baffle component 36 by rotation.

[0056] The vibration method of the continuous vibration polishing device for iron chains is as follows:

[0057] S1. Place the abrasive into the vibrating frame 1, place one end of the iron chain into the moving frame component 23, then press the iron chain with the pressure plate 25, and then the motor component 19 drives the moving frame component 23 to move backward, thereby driving the iron chain to move backward.

[0058] S2. Then, the personnel move the iron chain to the bottom of the rotating pressure bar 11, and the hydraulic cylinder component 9 drives the rotating pressure bar 11 to move down and press the iron chain into the vibrating frame 1.

[0059] S3. Then the vibrator component 17 is turned on to drive the vibration frame 1 and the abrasive inside to vibrate. When the abrasive vibrates, it polishes the iron chain. The debris and rust that fall off the iron chain enter the abrasive and move downward as the abrasive vibrates.

[0060] S4. After the iron chain moves backward for polishing, the lifting rod 10 and the rotating pressure rod 11 move upward again. The top plate 14 lifts up part of the abrasive in front of the rotating pressure rod 11, thereby filling the area below the top plate 14 with other abrasives containing a large amount of rust, so that the abrasives with less rust content fall on top of the other abrasives.

[0061] S3 also includes the following steps:

[0062] S31. When the vibrating frame 1 vibrates, the rust in the abrasive enters the collection frame component 29 through the filter plate component 32. Then, the baffle component 36 is moved to the left and below the filter plate component 32. Then, the collection frame component 29 is taken out to discharge the rust and debris.

[0063] Working Principle: Before using the continuous vibration polishing device for iron chains, check for any issues that might affect its use. Place the abrasive inside the vibrating frame 1, and place one end of the iron chain inside the moving frame component 23. Then, the pressure plate 25 presses the iron chain down. Subsequently, the motor component 19 drives the moving frame component 23 to move backward, thereby moving the iron chain backward. Then, the operator moves the iron chain below the rotating pressure rod 11. The hydraulic cylinder component 9 drives the rotating pressure rod 11 to move down, pressing the iron chain into the vibrating frame 1. Then, the vibrator component 17 is activated, causing the vibrating frame 1 and the abrasive inside to vibrate. The vibration of the abrasive beats the iron chain. During polishing, debris and rust falling from the chain enter the abrasive and move downwards as the abrasive vibrates. When the vibrating frame 1 vibrates, the rust in the abrasive enters the collection frame 29 through the filter plate component 32. Then, the baffle component 36 moves to the left below the filter plate component 32. Next, the collection frame 29 is removed to discharge the rust and debris. After the chain moves backward and polishing is completed, the lifting rod 10 and the rotating pressure rod 11 move upward again. The top plate 14 lifts up part of the abrasive in front of the rotating pressure rod 11, thereby filling the area below the top plate 14 with other abrasive containing a large amount of rust, so that the abrasive with less rust falls on top of the other abrasive.

[0064] It will be apparent to those skilled in the art that this invention is not limited to the details of the exemplary embodiments described above, and that it can be implemented in other specific forms without departing from the spirit or essential characteristics of this invention. Therefore, the embodiments should be considered exemplary and non-limiting in all respects, and the scope of this invention is defined by the appended claims rather than the foregoing description. Thus, all variations falling within the meaning and scope of equivalents of the claims are intended to be included within this invention, and no reference numerals in the claims should be construed as limiting the rights involved.

Claims

1. A continuous vibration polishing device for iron chains, characterized in that: The vibrating frame (1), the bottom frame (2) and the upright plate (3) are included. The bottom frame (2) is installed on the outside of the vibrating frame (1). Multiple shock absorber assembly components (6) are installed on the bottom inner wall of the bottom of the bottom frame (2). The top input end of the shock absorber assembly component (6) is connected to the bottom of the vibrating frame (1). Multiple partitions (7) are installed at equal intervals inside the vibrating frame (1). Vibrator components (17) are symmetrically installed on the front and back of the vibrating frame (1). The vibrator components (17) are electrically connected to the controller component (4). A vertical plate (3) is installed on the front of the bottom frame (2), and a controller component (4) is installed on the front of the vertical plate (3). Multiple hydraulic cylinder components (9) are symmetrically installed on both sides of the vibration frame (1), and the hydraulic cylinder components (9) are electrically connected to the controller component (4). A lifting rod (10) is installed at the output end of the hydraulic cylinder component (9), and a pressing mechanism is provided on the inner side of the lifting rod (10).

2. The continuous vibration polishing device for iron chains according to claim 1, characterized in that: A rubber pad (5) is installed on the inner wall of the bottom frame (2). Multiple rotating top rods (8) are movably installed through the inner side of the vibration frame (1), and the rotating top rods (8) are located above the partition plate (7). Multiple threaded rods (38) are installed on one side of the vibration frame (1), and a limit rod (39) is installed at one end of the threaded rod (38).

3. The continuous vibration polishing device for iron chains according to claim 1, characterized in that: The pressing mechanism includes a rotating pressure rod (11), which is movably installed inside the left and right lifting rods (10).

4. The continuous vibration polishing device for iron chains according to claim 1, characterized in that: The bottom of the lifting rod (10) is equipped with a rod body (12), and a plurality of rotating rods (13) are movably installed through one side of the rod body (12). A top plate (14) is installed on the back of the rotating rod (13), and the top plate (14) is located on the right side of the rod body (12). A bolt (15) is installed on the top of the rotating rod (13), and the bolt (15) is located on the left side of the rod body (12). A limit rod (16) is installed on one side of the rod body (12), and the limit rod (16) is located below the top plate (14).

5. The continuous vibration polishing device for iron chains according to claim 1, characterized in that: The front of the vibration frame (1) is equipped with a plate (18), the top of the plate (18) is equipped with a motor component (19), and the motor component (19) is electrically connected to the controller component (4). The output end of the motor component (19) is equipped with a lead screw (20). The top of the vibration frame (1) is equipped with a support block (21), and the support block (21) is located outside the lead screw (20). The top of the vibration frame (1) is equipped with a stop bar (22), and the stop bar (22) is located on one side of the lead screw (20). The outside of the lead screw (20) is equipped with a moving frame component (23). The top of the moving frame component (23) is equipped with an electric telescopic rod component (24), and the electric telescopic rod component (24) is electrically connected to the controller component (4). The output end of the electric telescopic rod component (24) is equipped with a pressure plate (25), and the pressure plate (25) is located inside the moving frame component (23).

6. The continuous vibration polishing device for iron chains according to claim 1, characterized in that: The back of the vibration frame (1) is equipped with a plate (26), and the top of the plate (26) is equipped with a motor component (27). The motor component (27) is electrically connected to the controller component (4), and the output end of the motor component (27) is equipped with a winding wheel component (28).

7. The continuous vibration polishing device for iron chains according to claim 1, characterized in that: Multiple collection frame components (29) are movably installed through one side of the vibration frame (1), and one side of the collection frame components (29) is located inside the vibration frame (1). A handle (30) is installed on one side of the collection frame components (29). A support rod (31) is symmetrically installed on the front and back of the partition (7), and the support rod (31) is located below the collection frame components (29). Multiple filter plate components (32) are movably installed through one side of the vibration frame (1). A handle (33) is installed on one side of the filter plate components (32). A support rod (34) is symmetrically installed on the front and back of the partition (7), and the support rod (34) is located below the filter plate components (32).

8. The continuous vibration polishing device for iron chains according to claim 7, characterized in that: Multiple guide frames (35) are installed on one side of the vibration frame (1). Multiple baffle components (36) are movably installed through one side of the guide frame (35), and one side of the baffle component (36) penetrates the inner wall of one side of the vibration frame (1). At the same time, the baffle component (36) is located above the filter plate component (32). A handle three (37) is installed on one side of the baffle component (36), and a bolt two (40) is installed through the top of the guide frame (35).

Citation Information

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