Code spraying device for disc type friction plate

By designing a disc friction plate injection device with automatic push and guidance, the problem of manual operation in the prior art is solved, the operation efficiency is improved and the impact on human health is reduced.

CN222921269UActive Publication Date: 2025-05-30NANTONG LINTEX NEW MATERIAL TECH CO LTD
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Patent Information

Application Number
CN202421854991.5
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-08-02
Publication Date
2025-05-30
Estimated Expiration
2034-08-02

AI Technical Summary

Technical Problem

Existing disc friction plate injection devices require manual placement, which are inefficient and may have an impact on human health.

Method used

A disc type friction sheet injection coding device is designed, including a workbench and a printing coding mechanism, which automatically pushes and guides the friction sheet through the pushing component and the guiding component to avoid manual operation.

Benefits of technology

The automatic operation of the friction plate is realized, the operation efficiency is improved, the impact on human health is reduced, and the discharge of the friction plate after injection is facilitated.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses a disc type friction plate code spraying device, and relates to the technical field of friction plate code spraying. The code spraying device comprises a working table and a code spraying mechanism, the code spraying mechanism is fixedly installed at the top end of the working table, a material pushing assembly is arranged at the top end of the working table, and a material guiding assembly is arranged at the top end of the working table. A second rotating shaft drives a rotating rod to rotate, the rotating rod drives a fixing shaft to rotate, the fixing shaft drives a push rod to move, the push rod drives a push plate to move, the push plate pushes one friction plate to move, the friction plates are moved out of a discharging port and moved to a material guide plate, and therefore the situation of manual operation efficiency can be avoided, and the purpose of convenient operation is achieved. The threaded rod drives the sliding block to move, the sliding block drives the supporting rod to move, the supporting rod drives the material guiding plate to rotate along the first rotating shaft, the material guiding plate slides to the material guiding slope, in this way, code-sprayed friction plates can be conveniently discharged, and therefore the purpose of convenient discharging is achieved.
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Description

Technical Field

[0001] The utility model relates to the technical field of friction plate inkjet coding, in particular to a disc friction plate inkjet coding device. Background Art

[0002] The disc friction plate is a modern friction plate, which generates frictional force to brake the vehicle by using the friction between the metal disc and the friction plate. In the last process of packaging, the disc friction plate needs to be inkjet coded on its surface to facilitate product identification, quality certification and increase its market traceability;

[0003] Most of the existing inkjet coding devices need to be manually placed under the inkjet coding mechanism for inkjet coding. This not only has low operation efficiency, but also the raw materials for inkjet coding are harmful to human health. Content of the Utility Model

[0004] In order to solve the problem of low operation efficiency caused by manual placement; the purpose of the utility model is to provide a disc friction plate inkjet coding device.

[0005] To solve the above technical problems, the utility model adopts the following technical scheme: a disc friction plate inkjet coding device, including a workbench and an inkjet coding mechanism, the inkjet coding mechanism is fixedly installed at the top of the workbench, a material pushing component is arranged at the top of the workbench, and a material guiding component is arranged at the top of the workbench; the material pushing component includes a feeding cylinder, the feeding cylinder is fixedly installed on the workbench, a through groove is opened on one side of the feeding cylinder, a push plate is slidably clamped inside the through groove, a push rod is hinged to one side of the push plate, a discharge port is opened on the side of the feeding cylinder away from the through groove, the discharge port is aligned with the push plate, the push rod drives the push plate to move, and the push plate pushes a friction plate to move, so that the friction plate moves out from the discharge port and moves onto the material guiding plate, which can avoid the situation of low manual operation efficiency. One end of the workbench is fixedly provided with a fixing plate, a second rotating shaft is rotatably installed at the top of the fixing plate, a rotating rod is fixedly sleeved outside the second rotating shaft, a fixing shaft is fixedly arranged at one end of the rotating rod, and the top of the fixing shaft is rotatably installed at one end of the push rod. The second rotating shaft drives the rotating rod to rotate, the rotating rod drives the fixing shaft to rotate, and the fixing shaft drives the push rod to move. A first motor is fixedly installed at the bottom of the fixing plate, and the end of the output shaft of the first motor movably penetrates through the fixing plate and is fixedly connected to the bottom end of the second rotating shaft. The first motor can provide power for the rotation of the second rotating shaft. The bottom of the workbench is fixedly provided with support legs distributed in an annular array, and the stability of the device can be improved through the support legs.

[0006] Preferably, the material guiding assembly includes a material guiding plate. A groove is formed at the top end of the workbench. The material guiding plate is movably clamped in the groove. A first rotating shaft is rotatably installed inside the groove. One end of the first rotating shaft fixedly penetrates through one side of the material guiding plate. A sliding groove is formed inside the groove. A slider is slidably clamped inside the sliding groove. A support rod is rotatably installed at the top end of the slider. One end of the support rod is rotatably connected to the end of the material guiding plate away from the first rotating shaft. By driving the support rod to move through the slider, the support rod drives the material guiding plate to rotate along the first rotating shaft, so that the material guiding plate slides onto the material guiding slope, which can facilitate the discharge of the friction plates after inkjet printing. A threaded rod is rotatably installed inside the sliding groove. One end of the threaded rod threadedly penetrates through the slider. The slider can be driven to move through the threaded rod. A second motor is fixedly provided at one end of the sliding groove. The end of the output shaft of the second motor is fixedly connected to one end of the threaded rod. The second motor can provide power for the rotation of the threaded rod. A material guiding slope is formed at one end of the workbench. The material guiding slope communicates with the groove, which can facilitate the discharging of materials.

[0007] Compared with the prior art, the beneficial effects of the present utility model are as follows:

[0008] 1. By driving the rotating rod to rotate through the second rotating shaft, the rotating rod drives the fixed shaft to rotate, the fixed shaft drives the push rod to move, the push rod drives the push plate to move, and the push plate pushes a friction plate to move, so that the friction plate moves out of the discharge port and moves onto the material guiding plate, which can avoid the situation of low manual operation efficiency, thus achieving the purpose of convenient operation;

[0009] 2. By driving the slider to move through the threaded rod, the slider drives the support rod to move, the support rod drives the material guiding plate to rotate along the first rotating shaft, so that the material guiding plate slides onto the material guiding slope, which can facilitate the discharge of the friction plates after inkjet printing, thus achieving the purpose of convenient discharging. BRIEF DESCRIPTION OF THE DRAWINGS

[0010] In order to more clearly illustrate the technical solutions in the embodiments of the present utility model or the prior art, the following will briefly introduce the drawings required for use in the description of the embodiments or the prior art. Obviously, the following drawings are only some embodiments of the present utility model. For those of ordinary skill in the art, other drawings can be obtained based on these drawings without creative efforts.

[0011] Figure 1 It is a schematic structural diagram of the present utility model.

[0012] Figure 2 It is a schematic cross-sectional view of the material pushing assembly structure of the present utility model.

[0013] Figure 3 It is a schematic cross-sectional view of the workbench and the material guiding assembly structure of the present utility model.

[0014] In the figure: 1, workbench; 2, material pushing assembly; 21, material placing cylinder; 22, through groove; 23, push plate; 24, push rod; 25, discharge port; 26, fixed plate; 27, second rotating shaft; 28, rotating rod; 29, fixed shaft; 210, first motor; 3, material guiding assembly; 31, material guiding plate; 32, groove; 33, first rotating shaft; 34, sliding groove; 35, slider; 36, support rod; 37, threaded rod; 38, second motor; 4, inkjet coding mechanism; 5, material guiding slope; 6, support leg. Specific embodiments

[0015] Next, the technical solutions in the embodiments of the present invention will be clearly and completely described in conjunction with the accompanying drawings in the embodiments of the present invention. Obviously, the described embodiments are only a part of the embodiments of the present invention, rather than all the embodiments. Based on the embodiments of the present invention, all other embodiments obtained by those of ordinary skill in the art without creative efforts shall fall within the protection scope of the present invention.

[0016] Embodiment: As Figures 1-3 shown, the present invention provides a disc friction plate inkjet coding device, including a workbench 1 and an inkjet coding mechanism 4. The inkjet coding mechanism 4 is fixedly installed at the top end of the workbench 1. A material pushing assembly 2 is arranged at the top end of the workbench 1, and a material guiding assembly 3 is arranged at the top end of the workbench 1. The material pushing assembly 2 includes a material placing cylinder 21. The material placing cylinder 21 is fixedly installed on the workbench 1. A through groove 22 is opened on one side of the material placing cylinder 21. A push plate 23 is slidably clamped inside the through groove 22. One side of the push plate 23 is hinged with a push rod 24. A discharge port 25 is opened on the side of the material placing cylinder 21 away from the through groove 22. The discharge port 25 is aligned with the push plate 23. By driving the push plate 23 to move through the push rod 24, the push plate 23 pushes a friction plate to move, so that the friction plate moves out from the discharge port 25 and moves onto the material guiding plate 31, which can avoid the situation of low manual operation efficiency. One end of the workbench 1 is fixedly provided with a fixed plate 26. A second rotating shaft 27 is rotatably installed at the top end of the fixed plate 26. A rotating rod 28 is fixedly sleeved on the outer side of the second rotating shaft 27. One end of the rotating rod 28 is fixedly provided with a fixed shaft 29. The top end of the fixed shaft 29 is rotatably installed at one end of the push rod 24. By driving the rotating rod 28 to rotate through the second rotating shaft 27, the rotating rod 28 drives the fixed shaft 29 to rotate, and the fixed shaft 29 drives the push rod 24 to move. A first motor 210 is fixedly installed at the bottom end of the fixed plate 26. The end of the output shaft of the first motor 210 movably penetrates through the fixed plate 26 and is fixedly connected to the bottom end of the second rotating shaft 27. The first motor 210 can provide power for the rotation of the second rotating shaft 27. The bottom end of the workbench 1 is fixedly provided with support legs 6 distributed in an annular array. The support legs 6 can improve the stability of the device.

[0017] The material guiding assembly 3 includes a material guiding plate 31. A groove 32 is formed at the top end of the workbench 1. The material guiding plate 31 is movably clamped in the groove 32. A first rotating shaft 33 is rotatably installed inside the groove 32. One end of the first rotating shaft 33 fixedly penetrates through one side of the material guiding plate 31. A sliding groove 34 is formed inside the groove 32. A sliding block 35 is slidably clamped inside the sliding groove 34. A support rod 36 is rotatably installed at the top end of the sliding block 35. One end of the support rod 36 is rotatably connected to the end of the material guiding plate 31 away from the first rotating shaft 33. By driving the support rod 36 to move through the sliding block 35, the support rod 36 drives the material guiding plate 31 to rotate along the first rotating shaft 33, so that the material guiding plate 31 slides onto the material guiding slope 5, which can facilitate the discharge of the friction plates after inkjet coding. A threaded rod 37 is rotatably installed inside the sliding groove 34. One end of the threaded rod 37 threadedly penetrates through the sliding block 35. The threaded rod 37 can drive the sliding block 35 to move. One end of the sliding groove 34 is fixedly provided with a second motor 38. The end of the output shaft of the second motor 38 is fixedly connected to one end of the threaded rod 37. The second motor 38 can provide power for the rotation of the threaded rod 37. A material guiding slope 5 is formed at one end of the workbench 1. The material guiding slope 5 is communicated with the groove 32, which can facilitate the discharge of materials.

[0018] Working principle: First, place the friction plates into the feeding cylinder 21, start the first motor 210, so that the first motor 210 starts to work. The end of the output shaft of the first motor 210 drives the second rotating shaft 27 to rotate. The second rotating shaft 27 drives the rotating rod 28 to rotate. The rotating rod 28 drives the fixed shaft 29 to rotate. The fixed shaft 29 drives the push rod 24 to move. The push rod 24 drives the push plate 23 to move. The push plate 23 pushes a friction plate to move, so that the friction plate moves out from the material outlet 25 and moves onto the material guiding plate 31, which can avoid the situation of low manual operation efficiency and thus achieve the purpose of convenient operation. Then, the inkjet coding mechanism 4 performs inkjet coding on the friction plates. Subsequently, start the second motor 38, so that the second motor 38 starts to work. The end of the output shaft of the second motor 38 drives the threaded rod 37 to rotate. The threaded rod 37 drives the sliding block 35 to move inside the sliding groove 34. The sliding block 35 drives the support rod 36 to move. The support rod 36 drives the material guiding plate 31 to rotate along the first rotating shaft 33, so that the material guiding plate 31 slides onto the material guiding slope 5, which can facilitate the discharge of the friction plates after inkjet coding and thus achieve the purpose of convenient discharge of materials.

[0019] Obviously, those skilled in the art can make various changes and modifications to the present utility model without departing from the spirit and scope of the present utility model. Thus, if these modifications and variations of the present utility model fall within the scope of the claims of the present utility model and their equivalent technologies, the present utility model is also intended to include these modifications and variations.

Claims

1. A disc friction plate inkjet device, comprising a workbench (1) and an inkjet mechanism (4), characterized in that: The coding mechanism (4) is fixedly mounted on the top of the workbench (1); a material pushing assembly (2) is provided on the top of the workbench (1); and a material guiding assembly (3) is provided on the top of the workbench (1); The push assembly (2) comprises a discharge barrel (21), the discharge barrel (21) being fixedly mounted on the workbench (1), a through slot (22) being provided on one side of the discharge barrel (21), a push plate (23) being provided on a sliding card inside the through slot (22), a push rod (24) being hingedly connected to one side of the push plate (23), a discharge port (25) being provided on a side of the discharge barrel (21) away from the through slot (22), and the discharge port (25) being aligned with the push plate (23).

2. A disc friction plate inkjet device as claimed in claim 1, characterized in that: The material guide assembly (3) comprises a material guide plate (31). A groove (32) is provided at the top of the workbench (1). The material guide plate (31) is movably mounted in the groove (32). A first rotating shaft (33) is rotatably mounted inside the groove (32). One end of the first rotating shaft (33) is fixedly passed through one side of the material guide plate (31). A sliding groove (34) is provided inside the groove (32). A sliding block (35) is slidably mounted inside the sliding groove (34). A support rod (36) is rotatably mounted at the top of the sliding block (35). One end of the support rod (36) is rotatably connected to an end of the material guide plate (31) away from the first rotating shaft (33).

3. A disc friction plate inkjet device as claimed in claim 1, characterized in that: A fixing plate (26) is fixedly provided at one end of the workbench (1), a second rotating shaft (27) is rotatably mounted on the top end of the fixing plate (26), a rotating rod (28) is fixedly sleeved outside the second rotating shaft (27), a fixing shaft (29) is fixedly provided at one end of the rotating rod (28), and the top end of the fixing shaft (29) is rotatably mounted on one end of the push rod (24).

4. A disc friction plate inkjet device as claimed in claim 2, characterized in that: A threaded rod (37) is rotatably mounted inside the slide groove (34), and one end of the threaded rod (37) is threadedly inserted through the slider (35).

5. A disc friction plate inkjet device as claimed in claim 3, characterized in that: A first motor (210) is fixedly disposed at the bottom end of the fixing plate (26), and an end portion of an output shaft of the first motor (210) movably passes through the fixing plate (26) and is fixedly connected to the bottom end of the second rotating shaft (27).

6. A disc friction plate inkjet device as claimed in claim 4, characterized in that: A second motor (38) is fixedly disposed at one end of the slide slot (34), and an end of an output shaft of the second motor (38) is fixedly connected to one end of the threaded rod (37).

7. A disc friction plate inkjet device as claimed in claim 2, characterized in that: A material guide slope (5) is provided at one end of the workbench (1), and the material guide slope (5) is in communication with the groove (32).

8. A disc friction plate inkjet device as claimed in claim 1, characterized in that: Support legs (6) distributed in a circular array are fixedly provided at the bottom end of the workbench (1).