Automatic feeding and discharging structure of plasma cleaning machine

By designing an automatic loading and unloading structure and using components such as an outer frame, buffer rubber pads, drive rollers, and U-shaped drag chains, the problem of low material conveying efficiency in traditional plasma cleaning machines has been solved, and automated material unloading and conveying has been achieved.

CN224542616UActive Publication Date: 2026-07-24TIKROKI IND INTELLIGENT TECH (SUZHOU) CO LTD
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
TIKROKI IND INTELLIGENT TECH (SUZHOU) CO LTD
Filing Date
2025-06-06
Publication Date
2026-07-24

AI Technical Summary

Technical Problem

Traditional plasma cleaners have low efficiency in subsequent material delivery, and the automatic loading and unloading process is simplistic, requiring manual intervention and affecting cleaning efficiency.

Method used

An automatic loading and unloading structure including a unloading mechanism was designed. It adopts components such as an outer frame, buffer rubber pads, drive rollers, transmission tracks, articulated pressure cylinders and U-shaped drag chains to realize the automatic unloading and conveying of cleaning machine materials.

Benefits of technology

It improves the material conveying efficiency of plasma cleaners, reduces manual intervention, and realizes automated loading and unloading processes.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses an automatic feeding and discharging structure of plasma cleaning machine, including unloading mechanism, and unloading mechanism includes with ground support's outer frame, and the bottom four corners of outer frame all are corresponded to be equipped with buffer rubber pad, and the bottom of buffer rubber pad is placed with ground support, and the top middle part of outer frame is equipped with buffer pad, and the top middle part of buffer pad is equipped with square support plate, and the top high middle part of square support plate is equipped with conical discharge cover, and the middle part of conical discharge cover is equipped with the bearing bottom plate, and the top side of bearing bottom plate is equipped with trapezoidal support mechanism, and the surface of square support plate of top is realized support through the outer frame and buffer rubber pad that adopt, and the surface of bearing bottom plate that adopts carries out transmission displacement, and under the electrified rotation state of the driving roll shaft that is received, the linear displacement of dispatching drive track is adjusted, and the slot side of transmission slot that adopts carries out the discharge, and the surface of guide rail is realized unloading.
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Description

Technical Field

[0001] This utility model relates to the field of plasma high-pressure cleaning, specifically to an automatic loading and unloading structure for a plasma cleaner. Background Technology

[0002] Plasma cleaners, also known as plasma surface treatment machines or plasma cleaning systems, are a new high-tech technology that uses plasma to achieve effects that conventional cleaning methods cannot. Plasma is a state of matter, also called the fourth state of matter, and does not belong to the common solid, liquid, and gas states. Applying sufficient energy to a gas to ionize it creates a plasma state. The "active" components of plasma include: ions, electrons, atoms, active groups, excited-state nuclides (metastable states), photons, etc. Plasma cleaning machines utilize the properties of these active components to treat sample surfaces, thereby achieving cleaning, coating, and other purposes. The "Solar Panel Plasma Cleaning Machine" disclosed in application number "CN201821994704.5" is also an increasingly mature technology. This utility model discloses a solar panel plasma cleaning machine, including a frame assembly, a cleaning assembly, and a vacuum assembly. The frame assembly includes a plasma cleaning machine, a running indicator light, a display screen, and a maintenance cabinet. The running indicator light is located on the top left end of the plasma cleaning machine and is fixedly connected to it. The display screen is located on the upper right side of the front surface of the plasma cleaning machine and is fixedly connected to it. The maintenance cabinet is located below the display screen, and a hinge is provided at the connection between the maintenance cabinet and the plasma cleaning machine. The maintenance cabinet and the plasma cleaning machine are rotatably connected via the hinge. The easily accessible maintenance cabinet on the plasma cleaning machine, opened and closed via the hinge, reduces the cumbersome steps of disassembling bolts to open the plasma cleaning machine, bringing convenience to maintenance.

[0003] Traditional plasma cleaners typically rinse and press the cleaned parts. Furthermore, the efficiency of conveying subsequent materials in the plasma cleaner is low, making the automatic loading and unloading process of the cleaned materials relatively simple. Manual handling is generally required, which seriously affects the subsequent transfer of materials after plasma cleaning. Utility Model Content

[0004] The present invention provides an automatic loading and unloading structure for a plasma cleaner, which aims to solve the problems of traditional plasma cleaners. Traditional plasma cleaners typically rinse and press the cleaned parts, and the subsequent material conveying efficiency of the plasma cleaner is low, which makes the automatic loading and unloading process of the cleaned materials in the plasma cleaner relatively simple.

[0005] To achieve the above objectives, this utility model provides an automatic loading and unloading structure for a plasma cleaner, including an unloading mechanism. The unloading mechanism includes an outer frame supported by the ground, and buffer rubber pads are provided at the four corners of the bottom of the outer frame. The bottom of the buffer rubber pads is supported by the ground.

[0006] The outer frame has a buffer pad at the top center, a square support plate at the top center of the buffer pad, a conical material discharge cover at the top center of the square support plate, a bearing base plate at the center of the conical material discharge cover, and a trapezoidal support mechanism on the top side of the bearing base plate.

[0007] As a preferred embodiment of the present invention: the surface of the trapezoidal support mechanism is provided with an L-shaped frame, and the surface of the L-shaped frame is provided with a plurality of adjustment slots in sequence. An inclined conveying frame is horizontally installed in the middle of the plurality of adjustment slots. The top center of the inclined conveying frame is provided with a drive roller shaft and a transmission track is provided on the surface. The bottom of the transmission track is connected to the lower end of the roller for transmission.

[0008] As a preferred embodiment of this utility model: a transmission mechanism is installed on the side wall of the inclined conveying frame;

[0009] The transmission mechanism includes a transmission slot installed on the side wall of the inclined conveying frame. The side of the transmission slot is provided with a guide rail, and the end of the guide rail is provided with a square sleeve.

[0010] As a preferred embodiment of this utility model: the surface of the square sleeve is fitted onto the surface of the corresponding conical feeding hood, the end of the guide rail corresponds to the side position of the corresponding transmission slot, the end of the transmission slot is provided with a conveying base, and the structural position of one end of the conveying base is corresponding.

[0011] As a preferred embodiment of this utility model: a material conveying mechanism is provided on the top edge of the buffer pad;

[0012] The material conveying mechanism includes an access base installed on the side of a buffer pad, a drive motor located at the top center of the access base, a drive frame located at the top center of the drive motor, and a hinged pressure cylinder located on the side of the drive frame.

[0013] As a preferred embodiment of the present invention: the top of the articulated cylinder is provided with a displacement base, the side of the displacement base is provided with a connecting frame, the side wall of the displacement base is provided with an outer frame, the side of the outer frame is provided with an assembly frame, the side of the assembly frame is provided with a frame, and the side of the frame is provided with a lifting frame.

[0014] As a preferred embodiment of the present invention: the surface of the assembly frame is provided with an adjustment frame, the top center of the adjustment frame is provided with a U-shaped frame, the side of the U-shaped frame is provided with a U-shaped drag chain, the bottom center of the U-shaped drag chain is provided with a clamping clamp, and the inside of the clamping clamp is provided with a clamping head.

[0015] Compared with the prior art, the beneficial effects of this utility model are:

[0016] 1) The outer frame and buffer rubber pads are used to support the surface of the square support plate at the top. The surface of the bearing base plate is used to transfer displacement. When the drive roller is energized and rotated, the linear displacement of the transmission track is regulated. The material is discharged from the side of the groove of the transmission slot and unloaded by the surface of the guide rail.

[0017] 2) The articulated pressure cylinder, when energized to trigger the specific displacement base, realizes the lifting and lowering of the corresponding outer frame. Supported by the outer frame, it lifts and lowers the surface of the specific U-shaped drag chain. The clamping holder connected to the U-shaped drag chain is used for specific lowering, and the plasma structure needs to be cleaned. Attached Figure Description

[0018] Figure 1 This is a schematic diagram of the structure of this utility model;

[0019] Figure 2 This is a structural diagram of the unloading mechanism of this utility model;

[0020] Figure 3 This is a schematic diagram of the drive motor structure of this utility model;

[0021] Figure 4 This is a schematic diagram of the transmission mechanism structure of this utility model;

[0022] Figure 5 This is a schematic diagram of the outer frame structure of this utility model.

[0023] In the diagram: 1. Unloading mechanism; 11. Outer frame; 12. Buffer rubber pad; 13. Buffer pad plate; 14. Square support plate; 15. Conical discharge hood; 16. Bearing base plate;

[0024] 2. Trapezoidal support mechanism; 21. L-shaped frame; 22. Adjustable slot; 23. Inclined conveyor frame; 24. Drive roller; 25. Transmission track;

[0025] 3. Transmission mechanism; 31. Transmission slot; 32. Guide rail; 33. Square sleeve; 34. Conveying base;

[0026] 4. Material conveying mechanism; 41. Access base; 42. Drive motor; 43. Drive frame; 44. Articulated pressure cylinder; 45. Displacement base; 46. Adapter frame; 47. Assembly frame; 48. Frame; 49. Lifting frame; 491. Adjusting frame; 492. U-shaped frame; 493. U-shaped drag chain; 494. Clamping device. Detailed Implementation

[0027] 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.

[0028] Please see Figure 1 - Figure 5 This utility model provides an automatic loading and unloading structure for a plasma cleaner, including an unloading mechanism 1. The unloading mechanism 1 includes an outer frame 11 supported by the ground. Buffer rubber pads 12 are provided at the four corners of the bottom of the outer frame 11, and the bottom of the buffer rubber pads 12 is placed on the ground support.

[0029] The outer frame 11 has a buffer pad 13 at the top center, a square support plate 14 at the top center of the buffer pad 13, a conical discharge hood 15 at the top center of the square support plate 14, a bearing base plate 16 at the center of the conical discharge hood 15, and a trapezoidal support mechanism 2 on the top side of the bearing base plate 16.

[0030] In this embodiment: the surface of the trapezoidal support mechanism 2 is provided with an L-shaped frame 21, and the surface of the L-shaped frame 21 is provided with a plurality of adjustment slots 22 in sequence. An inclined conveying frame 23 is horizontally installed in the middle of the plurality of adjustment slots 22. The top center of the inclined conveying frame 23 is provided with a drive roller 24 and a transmission track 25 is provided on the surface. The bottom of the transmission track 25 is connected to the lower end of the roller transmission.

[0031] By using a transmission track 25 driven by a drive roller 24, the forward and backward displacement of the track structure is controlled, thus better realizing the specific pushing and moving of materials on the plasma cleaner.

[0032] In this embodiment: a transmission mechanism 3 is installed on the side wall of the inclined conveying frame 23;

[0033] The transmission mechanism 3 includes a transmission slot 31 installed on the side wall of the inclined conveying frame 23. The side of the transmission slot 31 is provided with a guide rail 32, and the end of the guide rail 32 is provided with a square sleeve 33.

[0034] One end of the guide rail 32 is used to achieve the corresponding surface transfer of the guide rail 32.

[0035] In this embodiment: the surface of the square sleeve 33 is covered with the surface of the corresponding conical feeding cover 15, the end of the guide rail 32 corresponds to the side position of the corresponding transmission slot 31, the end of the transmission slot 31 is provided with a conveying base 34, and the structural position of one end of the conveying base 34 is corresponding.

[0036] The surface of the conveyor base 34 is used to achieve positioning of the corresponding square sleeve 33.

[0037] In this embodiment: a material conveying mechanism 4 is provided on the top edge of the buffer pad 13;

[0038] The material conveying mechanism 4 includes an access base 41 installed on the side of the buffer pad 13, a drive motor 42 at the top center of the access base 41, a drive frame 43 at the top center of the drive motor 42, and a hinged pressure cylinder 44 on the side of the drive frame 43.

[0039] The change of the articulated cylinder 44 is controlled by energizing the drive frame 43 and the drive motor 42.

[0040] In this embodiment: the top of the hinged cylinder 44 is provided with a displacement base 45, the side of the displacement base 45 is provided with a connecting frame, the side wall of the displacement base 45 is provided with an adapter frame 46, the side of the adapter frame 46 is provided with an assembly frame 47, the side of the assembly frame 47 is provided with a frame 48, and the side of the frame 48 is provided with a lifting frame 49.

[0041] The specific displacement base 45 is pushed by the lifting frame 49.

[0042] In this embodiment: the surface of the assembly frame 47 is provided with an adjustment frame 491, the top center of the adjustment frame 491 is provided with a U-shaped frame 492, the side of the U-shaped frame 492 is provided with a U-shaped drag chain 493, the bottom center of the U-shaped drag chain 493 is provided with a clamping clamp 494, and the inside of the clamping clamp 494 is provided with a clamping head.

[0043] One end of the U-shaped drag chain 493 is used to move the surface of the clamping device 494 to perform material displacement.

[0044] In practical use, the first step is to discharge the cleaned material.

[0045] At this time, the personnel use the outer frame 11 and the cushioning rubber pads 12 at the four corners of its bottom to support it, and place it on the corresponding square support plate 14 and its supporting base plate 16. The cleaned material is then transferred according to the cover end of the conical discharge hood 15.

[0046] The material is transferred and unloaded by the axial direction of the drive roller shaft 24 supported by the L-shaped frame 21. The material of the plasma cleaner is moved by the transmission action of the transmission track 25. The material is driven by the drive roller shaft 24, which causes the surface of the transmission track 25 to roll up and down. The material is transferred from the cavity position to the surface of the guide track 32 by the groove direction of the inclined conveying frame 23 and the transmission slot 31, and then slides back and forth.

[0047] Step 2: Loading the components;

[0048] After the drive motor 42 is powered on, it drives the drive frame 43 to change direction. The vertical displacement is achieved through the surface of the specific adapter frame 46. The vertical displacement is achieved through the surface of the U-shaped frame 492. The vertical movement of the U-shaped drag chain 493 is used to clamp the device through the surface of the specific U-shaped frame 492. The vertical movement of the U-shaped drag chain 493 is achieved by moving it downwards towards the surface of the clamping holder 494.

[0049] Complete the unified unloading and transfer of materials.

[0050] It should be noted that, in this document, relational terms such as "first" and "second" are used only to distinguish one entity or operation from another, and do not necessarily require or imply any such actual relationship or order between these entities or operations. Furthermore, the terms "comprising," "including," or any other variations thereof are intended to cover non-exclusive inclusion, such that a process, method, article, or apparatus that comprises a list of elements includes not only those elements but also other elements not expressly listed, or elements inherent to such process, method, article, or apparatus.

[0051] Although embodiments of the present invention have been shown and described, it will be understood by those skilled in the art that various changes, modifications, substitutions and alterations can be made to these embodiments without departing from the principles and spirit of the present invention, the scope of which is defined by the appended claims and their equivalents.

Claims

1. An automatic loading and unloading structure for a plasma cleaner, comprising an unloading mechanism (1), characterized in that, The unloading mechanism (1) includes an outer frame (11) supported by the ground. The four corners of the bottom of the outer frame (11) are provided with buffer rubber pads (12), and the bottom of the buffer rubber pads (12) is supported by the ground. The outer frame (11) has a buffer pad (13) at the top center, a square support plate (14) at the top center of the buffer pad (13), a conical feeding hood (15) at the top center of the square support plate (14), a bearing base plate (16) at the center of the conical feeding hood (15), and a trapezoidal support mechanism (2) at the top side of the bearing base plate (16). The trapezoidal support mechanism (2) has an L-shaped frame (21) on its surface. The L-shaped frame (21) has several adjustment slots (22) sequentially opened on its surface. An inclined conveying frame (23) is installed horizontally in the middle of the several adjustment slots (22). The inclined conveying frame (23) has a drive roller (24) at the top center and a transmission track (25) on its surface. The bottom of the transmission track (25) is connected to the lower end of the roller.

2. The automatic loading and unloading structure of a plasma cleaner according to claim 1, characterized in that: The side wall of the inclined conveying frame (23) is equipped with a transmission mechanism (3). The transmission mechanism (3) includes a transmission slot (31) installed on the side wall of the inclined conveying frame (23). The side of the transmission slot (31) is provided with a guide rail (32), and the end of the guide rail (32) is provided with a square sleeve (33).

3. The automatic loading and unloading structure of a plasma cleaner according to claim 2, characterized in that: The surface of the square sleeve (33) is fitted onto the surface of the corresponding conical feeding hood (15). The end of the guide rail (32) corresponds to the side position of the corresponding transmission slot (31). The end of the transmission slot (31) is provided with a conveying base (34), and the structural position of one end of the conveying base (34) corresponds.

4. The automatic loading and unloading structure of a plasma cleaner according to claim 1, characterized in that: The top edge of the buffer pad (13) is provided with a material conveying mechanism (4). The material conveying mechanism (4) includes an access base (41) installed on the side of the buffer pad (13), a drive motor (42) at the top center of the access base (41), a drive frame (43) at the top center of the drive motor (42), and a hinged pressure cylinder (44) on the side of the drive frame (43).

5. The automatic loading and unloading structure of a plasma cleaner according to claim 4, characterized in that: The top of the articulated cylinder (44) is provided with a displacement base (45), the side of the displacement base (45) is provided with a connecting frame, the side wall of the displacement base (45) is provided with an adapter (46), the side of the adapter (46) is provided with an assembly frame (47), the side of the assembly frame (47) is provided with a frame (48), and the side of the frame (48) is provided with a lifting frame (49).

6. The automatic loading and unloading structure of a plasma cleaner according to claim 5, characterized in that: The surface of the assembly frame (47) is provided with an adjustment frame (491), the top center of the adjustment frame (491) is provided with a U-shaped frame (492), the side of the U-shaped frame (492) is provided with a U-shaped drag chain (493), the bottom center of the U-shaped drag chain (493) is provided with a clamping clamp (494), and the inside of the clamping clamp (494) is provided with a clamping head.