Automatic lubricating device
The design of the automatic lubrication device enables automated cleaning and lubrication of the chain, solving the problem of low efficiency of manual lubrication in existing technologies and improving maintenance efficiency and chain lifespan.
Patent Information
- Application Number
- CN202520847346.9
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-04-29
- Publication Date
- 2026-02-17
- Estimated Expiration
- 2035-04-29
AI Technical Summary
Chain lubrication of chain machines relies on manual operation, resulting in low maintenance efficiency and short chain lifespan.
An automatic lubrication device was designed, including a cleaning start valve, a lubrication start valve, a traverse module, a telescopic component, and a nozzle component. It achieves chain cleaning and lubrication through an automated process. Combined with a detection component and a waste liquid collection box, it improves maintenance efficiency and accuracy.
It enables automated cleaning and lubrication of the chain, improving maintenance efficiency, extending the chain's service life, and reducing labor costs and environmental pollution.
Smart Images

Figure CN223924482U_ABST
Abstract
Description
Technical Field
[0001] This utility model belongs to the field of solar cell technology, and specifically relates to an automatic lubrication device. Background Technology
[0002] Chain conveyors, as a common type of transmission equipment, are widely used in THL workshops. A chain conveyor consists of multiple chains, which require proper lubrication during prolonged operation to ensure normal functioning and extend their service life.
[0003] In existing technologies, chain lubrication of chain conveyors mainly relies on manual operation. The chains are typically installed in confined spaces and equipped with protective covers and other safety devices. Workers need to spend considerable time and effort removing these covers and entering the narrow space to perform cleaning and lubrication, resulting in high labor costs and low maintenance efficiency. Furthermore, workers usually only determine the need for lubrication when they notice abnormal chain operation or unusual noises, by which time the chain has already suffered some wear, potentially shortening its lifespan.
[0004] Therefore, it is necessary to provide a new technical solution to solve the above-mentioned technical problems. Utility Model Content
[0005] The technical problem to be solved by this utility model is the low maintenance efficiency and short service life of the chain.
[0006] To solve the above-mentioned technical problems, this utility model provides an automatic lubrication device. The automatic lubrication device includes a cleaning assembly with a cleaning start valve and a lubrication start valve, a traversing module, a telescopic assembly connected to the traversing module, and a nozzle assembly. The traversing module drives the telescopic assembly to reciprocate between the cleaning start valve and the lubrication start valve. The telescopic assembly is used to press the cleaning start valve and the lubrication start valve respectively. The nozzle assembly is connected to the cleaning start valve and the lubrication start valve respectively. The nozzle assembly and the cleaning start valve form a first spray channel for spraying cleaning agent, and the nozzle assembly and the lubrication start valve form a second spray channel for spraying lubricant.
[0007] Optionally, the automatic lubrication device further includes a detection component for detecting the chain to be lubricated, the detection component being connected to the traverse module and the telescopic component respectively.
[0008] Optionally, the detection component includes a CCD camera and a controller connected to the CCD camera. The controller is connected to the lateral movement module and the telescopic component, respectively, and the camera of the CCD camera faces the chain to be lubricated.
[0009] Optionally, the automatic lubrication device further includes a waste liquid collection box, the opening of which faces the chain to be lubricated. The waste liquid collection box is used to collect the cleaning agent sprayed onto the chain to be lubricated through the first spray channel and the lubricant sprayed onto the chain to be lubricated through the second spray channel.
[0010] Optionally, the cleaning assembly includes a first container for containing cleaning agent and a second container for containing lubricant. The first container is connected to the cleaning start valve and communicates with the first spray channel. The second container is connected to the lubrication start valve and communicates with the second spray channel.
[0011] Optionally, the nozzle assembly includes a first nozzle and a second nozzle, wherein the first nozzle is in communication with the cleaning start valve and the second nozzle is in communication with the lubrication start valve.
[0012] Optionally, the cleaning start valve and the lubrication start valve are located on the same plane, and the cleaning start valve and the lubrication start valve are arranged at intervals.
[0013] Optionally, the lateral movement module includes a support frame, a slide rail and a drive component respectively connected to the support frame, the slide rail being slidably connected to the telescopic assembly, and the drive component driving the telescopic assembly to slide on the slide rail along the reciprocating direction.
[0014] Optionally, the telescopic assembly includes a telescopic member and a telescopic rod. The telescopic member is connected to the lateral movement module, and the telescopic rod is connected to the telescopic member. The telescopic member drives the telescopic rod to extend and retract. When the lateral movement module moves the telescopic rod connected to the telescopic member above the cleaning start valve, the cleaning start valve is directly opposite the telescopic rod. When the lateral movement module moves the telescopic rod connected to the telescopic member above the lubrication start valve, the lubrication start valve is directly opposite the telescopic rod.
[0015] Optionally, the automatic lubrication device further includes a transmission gear set and a rotary driver. The chain to be lubricated is wound around the transmission gear set, and the rotary driver is connected to the transmission gear set. The rotary driver drives the transmission gear set to rotate the chain to be lubricated, and the nozzle assembly is positioned directly over the chain to be lubricated.
[0016] Beneficial effects:
[0017] This invention provides an automatic lubrication device. A telescopic assembly is connected to a lateral movement module. The lateral movement module drives the telescopic assembly to reciprocate between a cleaning start valve and a lubrication start valve. The telescopic assembly is used to press the cleaning start valve and lubrication start valve of the cleaning assembly, respectively. A nozzle assembly is connected to both the cleaning start valve and the lubrication start valve. The nozzle assembly and the cleaning start valve form a first spray channel for spraying cleaning agent, and the nozzle assembly and the lubrication start valve form a second spray channel for spraying lubricant. Thus, during the cleaning and lubrication of the chain, the lateral movement module moves the telescopic assembly above the cleaning start valve. The telescopic assembly extends towards the cleaning start valve, and after pressing the cleaning start valve, the cleaning start valve in the first spray channel opens. At this time, the cleaning agent is sprayed through the first spray channel onto the chain to be lubricated, cleaning the chain. Then, the lateral module moves the telescopic assembly above the lubrication start valve. The telescopic assembly extends towards the lubrication start valve, and after pressing the lubrication start valve, the lubrication start valve located in the second spray channel opens. At this time, lubricant is sprayed through the second spray channel onto the chain to be lubricated, thus lubricating the cleaned chain. This achieves the technical effect of improving maintenance efficiency and extending the service life of the chain. Attached Figure Description
[0018] To more clearly illustrate the technical solutions in the embodiments of this utility model or the prior art, the drawings used in the embodiments will be briefly introduced below. Obviously, the drawings described below are only some embodiments of this utility model. For those skilled in the art, other drawings can be obtained based on these drawings without creative effort.
[0019] Figure 1 This is a schematic diagram of an automatic lubrication device provided in an embodiment of the present invention.
[0020] Figure 2 This is a structural schematic diagram of the transverse module and telescopic component in an automatic lubrication device provided in an embodiment of the present utility model.
[0021] Figure 3 This is a schematic diagram illustrating the principle structure of a detection component in an automatic lubrication device provided for an embodiment of this utility model.
[0022] The meanings of the labels in the attached drawings are as follows: 1—cleaning assembly, 11—cleaning start valve, 12—lubrication start valve, 13—first container, 14—second container, 2—transverse module, 21—support frame, 22—slide rail, 23—drive component, 3—telescopic assembly, 31—telescopic device, 32—telescopic rod, 4—nozzle assembly, 41—first nozzle, 42—second nozzle, 43—first spray channel, 44—second spray channel, 5—detection assembly, 51—CCD camera, 52—controller, 6—waste liquid collection box, 7—transmission gear set, 8—rotary drive, 9—chain. Detailed Implementation
[0023] The embodiments of this application are described in detail below. Examples of the embodiments are shown in the accompanying drawings, wherein the same or similar reference numerals denote the same or similar elements or elements having the same or similar functions throughout. The embodiments described below with reference to the accompanying drawings are exemplary and are only used to explain this application, and should not be construed as limiting this application.
[0024] To enable those skilled in the art to better understand the solutions of this application, the technical solutions of the embodiments of this application will be clearly and completely described below with reference to the accompanying drawings. Obviously, the described embodiments are only a part of the embodiments of this application, and not all of them. All other embodiments obtained by those skilled in the art based on the embodiments of this application without creative effort are within the scope of protection of this application.
[0025] In the embodiments of this application, "at least one" refers to one or more; "multiple" refers to two or more. In the description of this application, the terms "first," "second," "third," etc., are used only for the purpose of distinguishing descriptions and should not be construed as indicating or implying relative importance, nor should they be construed as indicating or implying order.
[0026] In this specification, references such as "one embodiment" or "some embodiments" mean that one or more embodiments of this application include the specific features, structures, or characteristics described in connection with that embodiment. Therefore, the terms "comprising," "including," "having," and variations thereof in this specification all mean "including but not limited to," unless otherwise specifically emphasized. It should be noted that in the embodiments of this application, "and / or" describes the relationship between related objects, indicating that three relationships can exist. For example, A and / or B can represent: A existing alone, A and B existing simultaneously, and B existing alone.
[0027] It should be noted that, in the embodiments of this utility model, when a component is referred to as being "fixed to" another component, it can be directly on the other component or there may be an intervening component. When a component is considered to be "connected to" another component, it can be directly connected to the other component or there may be an intervening component. When a component is considered to be "set on" another component, it can be directly set on the other component or there may be an intervening component. Furthermore, in the embodiments of this application, "connection" can also be understood as an electrical connection; the connection between two electrical components can be a direct or indirect connection between the two electrical components. For example, the connection between A and B can be a direct connection between A and B, or an indirect connection between A and B through one or more other electrical components. The terms "vertical," "horizontal," "left," "right," and similar expressions used in the embodiments of this utility model are for illustrative purposes only and are not intended to limit the utility model.
[0028] This utility model provides an automatic lubrication device, please refer to [link to relevant documentation]. Figures 1 to 3 As shown, Figure 1 This is a schematic diagram of the structure of an automatic lubrication device provided in an embodiment of this utility model. Figure 2 This is a schematic diagram of the structure of the transverse module and telescopic component in an automatic lubrication device according to an embodiment of this utility model. Figure 3 This is a schematic diagram of the principle structure of the detection component in an automatic lubrication device provided in this embodiment of the present invention. The automatic lubrication device provided in this embodiment of the present invention includes a cleaning component 1, a transverse module 2, a telescopic component 3, and a nozzle component 4. The cleaning component 1 has a cleaning start valve 11 and a lubrication start valve 12. The telescopic component 3 is connected to the transverse module 2, and the transverse module 2 drives the telescopic component 3 to reciprocate between the cleaning start valve 11 and the lubrication start valve 12. The telescopic component 3 is used to press the cleaning start valve 11 and the lubrication start valve 12 respectively. The nozzle component 4 is connected to the cleaning start valve 11, and the nozzle component 4 and the cleaning start valve 11 form a first spray channel 43 for spraying cleaning agent. The nozzle component 4 is connected to the lubrication start valve 12, and the nozzle component 4 and the lubrication start valve 12 form a second spray channel 44 for spraying lubricant.
[0029] The first spray channel 43 has a space for containing cleaning agent, and the second spray channel 44 has a space for containing lubricant. The cleaning agent or lubricant can be sprayed from the nozzle assembly 4 onto the chain 9 to be lubricated. The spray range can be adjusted according to the width of the chain 9 to be lubricated, such as by adjusting the distance between the nozzle assembly 4 and the chain 9.
[0030] Among them, such as Figure 1As shown, during the counter-clockwise rotation of the chain 9 to be lubricated, the telescopic component 3 is first moved above the cleaning start valve 11 by the lateral module 2. Then, the telescopic component 3 extends and presses the cleaning start valve 11, opening the first spray channel 43. Cleaning agent is sprayed from the nozzle assembly 4 to thoroughly clean the chain 9 to be lubricated. After cleaning, the lateral module 2 again moves the telescopic component 3 above the lubrication start valve 12. The telescopic component 3 extends and presses the lubrication start valve 12, opening the second spray channel 44. Lubricant is sprayed from the nozzle assembly 4 to lubricate the cleaned chain 9.
[0031] The cleaning start valve 11 and lubrication start valve 12 can each be push-button valves. The cleaning assembly 1 has two receiving spaces, which can be arranged vertically or side-by-side. The two receiving spaces store cleaning agent and lubricant respectively, and are pre-pressurized to a pressure greater than the external pressure. For example, when filling with cleaning agent and lubricant, the internal pressure of the receiving spaces can be pre-pressurized using an air pump. The push-button valves are pressable buttons that control the opening and closing of the valves. When the button is pressed, the valve opens, allowing fluid to flow; when the button is released, the valve closes, blocking fluid flow.
[0032] The cleaning start valve 11 and the lubrication start valve 12 can also be diaphragm valves. A diaphragm valve uses an elastic diaphragm to control the flow of fluid. When the diaphragm is subjected to external pressure, such as pressing, the diaphragm will deform and squeeze the above-mentioned receiving space, and at the same time open the valve to allow the fluid to pass through.
[0033] In this embodiment, the telescopic component 3 is connected to the lateral movement module 2. The lateral movement module 2 drives the telescopic component 3 to reciprocate between the cleaning start valve 11 and the lubrication start valve 12. The telescopic component 3 is used to press the cleaning start valve 11 and the lubrication start valve 12 of the cleaning component 1 respectively. The nozzle component 4 is connected to the cleaning start valve 11 and the lubrication start valve 12 respectively. The nozzle component 4 and the cleaning start valve 11 form a first spray channel 43 for spraying cleaning agent, and the nozzle component 4 and the lubrication start valve 12 form a second spray channel 44 for spraying lubricant. Thus, during the cleaning and lubrication of the chain 9 to be lubricated, the lateral movement module 2 drives the telescopic component 3 to move above the cleaning start valve 11. The telescopic component 3 extends towards the cleaning start valve 11. After the telescopic component 3 presses the cleaning start valve 11, the cleaning start valve 11 located in the first spray channel 43 opens. At this time, the cleaning agent is sprayed onto the chain 9 to be lubricated through the first spray channel 43 to clean the chain 9 to be lubricated. Then, the lateral module 2 moves the telescopic component 3 to above the lubrication start valve 12. The telescopic component 3 extends towards the lubrication start valve 12, and after the telescopic component 3 presses the lubrication start valve 12, the lubrication start valve 12 located in the second spray channel 44 opens. At this time, lubricant is sprayed through the second spray channel 44 onto the chain 9 to be lubricated, thus lubricating the cleaned chain 9. This achieves the technical effect of improving maintenance efficiency and extending the service life of the chain 9.
[0034] As one implementation method, please continue to see Figures 1 to 3 The automatic lubrication device provided in this embodiment of the present invention also includes a detection component 5, which is used to detect the chain 9 to be lubricated. The detection component 5 is connected to the traverse module 2 and the telescopic component 3 respectively. For example, in the process of cleaning and lubricating the chain 9 to be lubricated, the detection component 5 is activated first to perform a preliminary detection on the chain 9 to determine whether the chain 9 to be lubricated needs cleaning and lubrication. If the chain 9 is detected to need maintenance, the traverse module 2 then drives the telescopic component 3 to move above the cleaning start valve 11. The telescopic component 3 extends towards the cleaning start valve 11 and presses the cleaning start valve 11. At this time, the cleaning start valve 11 located in the first spray channel 43 opens, and the cleaning agent is sprayed onto the chain 9 through the first spray channel 43 to clean the chain 9. After cleaning, the lateral module 2 moves the telescopic component 3 again to above the lubrication start valve 12. The telescopic component 3 presses the lubrication start valve 12, opening the lubrication start valve 12 located in the second spray channel 44. Lubricant is then sprayed onto the chain 9 through the second spray channel 44 to lubricate the cleaned chain 9. The detection component 5 can more accurately determine the maintenance needs of the chain 9, which helps to improve the targeting and efficiency of maintenance.
[0035] In some implementations, please refer to [link / reference]. Figures 1 to 3The detection component 5 includes a CCD camera 51 and a controller 52. The controller 52 is connected to the CCD camera 51 and is also connected to the traverse module 2 and the telescopic component 3. The camera of the CCD camera 51 is directed towards the chain 9 to be lubricated, enabling it to capture image information of the chain 9 in real time. The controller 52 is connected to both the traverse module 2 and the telescopic component 3, and can determine the maintenance needs of the chain 9 based on the image information transmitted by the CCD camera 51, and control the movement of the traverse module 2 and the telescopic component 3 accordingly. For example, when the chain 9 needs cleaning and lubrication, the CCD camera 51 first captures an image of the chain 9, and the controller 52 processes and analyzes the image to determine whether the chain 9 needs cleaning and lubrication. If maintenance is required, the controller 52 then controls the movement of the traverse module 2 and the telescopic component 3, causing the cleaning agent and lubricant to be sprayed onto the chain 9, completing the cleaning and lubrication process. By using a CCD camera 51 and a controller 52 as the detection component 5, the maintenance needs of the chain 9 can be determined more accurately, improving the accuracy and efficiency of maintenance.
[0036] In some implementations, please refer to [link / reference]. Figures 1 to 3 The automatic lubrication device provided in this embodiment of the invention also includes a waste liquid collection box 6. The opening of the waste liquid collection box 6 faces the chain 9 to be lubricated. The waste liquid collection box 6 is used to collect the cleaning agent sprayed onto the chain 9 to be lubricated through the first spray channel 43 and the lubricant sprayed onto the chain 9 to be lubricated through the second spray channel 44. During the cleaning and lubrication process, after the cleaning agent and lubricant are sprayed onto the chain 9 to be lubricated, the excess liquid will drip into the waste liquid collection box 6, which can avoid environmental pollution and equipment corrosion caused by waste liquid. At the same time, the waste liquid collection box 6 also facilitates the recycling and treatment of waste liquid, which is beneficial to improving the environmental friendliness and maintainability of the equipment.
[0037] In some implementations, please refer to [link / reference]. Figure 1 and Figure 2 The cleaning assembly 1 includes a first container 13 and a second container 14. The first container 13 contains cleaning agent and is connected to a cleaning start valve 11. The first container 13 is also connected to a first spray channel 43. The second container 14 contains lubricant and is connected to a lubrication start valve 12. The second container 14 is also connected to a second spray channel 44. During cleaning and lubrication, the cleaning agent flows from the first container 13 and is sprayed onto the chain 9 to be lubricated via the cleaning start valve 11 and the first spray channel 43. The lubricant flows from the second container 14 and is sprayed onto the chain 9 to be lubricated via the lubrication start valve 12 and the second spray channel 44. This separate storage and supply of cleaning agent and lubricant avoids mixing and contamination, improving the reliability and stability of the equipment.
[0038] In some implementations, please refer to [link / reference]. Figure 1 The nozzle assembly 4 includes a first nozzle 41 and a second nozzle 42. The first nozzle 41 is connected to the cleaning start valve 11, and the second nozzle 42 is connected to the lubrication start valve 12. During the cleaning and lubrication process, the cleaning agent is sprayed from the first nozzle 41 to clean the chain 9 to be lubricated; the lubricant is sprayed from the second nozzle 42 to lubricate the cleaned chain 9. This allows the cleaning agent and lubricant to be sprayed separately, avoiding mutual interference and influence between the two liquids, and improving the cleaning and lubrication effect of the equipment.
[0039] In some implementations, please refer to [link / reference]. Figure 1 The first nozzle 41 and the second nozzle 42 can be rotary nozzles. When the cleaning agent is sprayed from the first nozzle 41, it will drive the first nozzle 41 to rotate and spray. When the lubricant is sprayed from the second nozzle 42, it will drive the second nozzle 42 to rotate and spray. Through rotational spraying, the cleaning agent and lubricant can be more evenly covered on the chain 9.
[0040] In some implementations, please refer to [link / reference]. Figure 1 The cleaning start valve 11 and the lubrication start valve 12 are located on the same plane and are spaced apart along the reciprocating direction, allowing the telescopic assembly 3 to press the cleaning start valve 11 and the lubrication start valve 12 sequentially and accurately during movement, thereby activating the cleaning and lubrication functions respectively. Since the cleaning start valve 11 and the lubrication start valve 12 are on the same plane, the telescopic member 31 can move the telescopic rod 32 by the same length to press the cleaning start valve 11 and the lubrication start valve 12 respectively, simplifying the structure. When maintenance of the chain 9 is required, the lateral movement module 2 first moves the telescopic assembly 3 above the cleaning start valve 11. The telescopic assembly 3 extends a certain length to press the cleaning start valve 11, cleaning the chain 9. After cleaning, the lateral movement module 2 continues to move the telescopic assembly 3 above the lubrication start valve 12. The telescopic assembly 3 extends the same length again to press the lubrication start valve 12, lubricating the chain 9.
[0041] In some implementations, please refer to [link / reference]. Figure 1 and Figure 2The lateral movement module 2 includes a support frame 21, a slide rail 22, and a drive component 23. The slide rail 22 and the drive component 23 are connected to the support frame 21. The drive component 23 includes a motor or a cylinder. The slide rail 22 is slidably connected to the telescopic component 3. The drive component 23 drives the telescopic component 3 to slide along the slide rail 22 in a reciprocating direction. The slide rail 22 of the lateral movement module 2 is connected to the support frame 21, which provides support for the slide rail 22. The slide rail 22 provides a moving track for the telescopic component 3. The drive component 23 is connected to the slide rail 22 and the telescopic component 3, and can drive the telescopic component 3 to slide along the slide rail 22 in a reciprocating direction. For example, the drive rod of the drive component 23 is connected to a threaded rod, and the telescopic component 3 is threadedly connected to the threaded rod. The drive component 23 drives the threaded rod to rotate, thereby moving the telescopic component 3 on the slide rail 22.
[0042] In some implementations, please refer to [link / reference]. Figure 1 and Figure 2 The telescopic assembly 3 includes a telescopic member 31 and a telescopic rod 32. The telescopic member 31 is connected to the lateral movement module 2, and the telescopic rod 32 is connected to the telescopic member 31. The telescopic member 31 drives the telescopic rod 32 to extend and retract. Additionally, a pressing block can be provided at the end of the telescopic rod 32 opposite to the telescopic member 31. The pressing block can have a larger contact area with the cleaning start valve 11 and the lubrication start valve 12. When the lateral movement module 2 moves the telescopic rod 32 connected to the telescopic member 31 above the cleaning start valve 11, the cleaning start valve 11 faces the telescopic rod 32. When the lateral movement module 2 moves the telescopic rod 32 connected to the telescopic member 31 above the lubrication start valve 12, the lubrication start valve 12 faces the telescopic rod 32. When chain 9 needs maintenance, the lateral movement module 2 first moves the telescopic rod 32, connected to the telescopic device 31, above the cleaning start valve 11. At this time, the cleaning start valve 11 is directly opposite the telescopic rod 32. The telescopic device 31 drives the telescopic rod 32 to extend and press the cleaning start valve 11, activating the cleaning function. After cleaning, the lateral movement module 2 continues to move the telescopic rod 32 above the lubrication start valve 12. At this time, the lubrication start valve 12 is directly opposite the telescopic rod 32. The telescopic device 31 again drives the telescopic rod 32 to extend and press the lubrication start valve 12, activating the lubrication function.
[0043] In some embodiments, the telescopic device 31 can be a telescopic motor or a telescopic cylinder. The telescopic motor is a linear motor, capable of converting electrical energy into linear motion to achieve the extension, retraction, or propulsion of an object. The telescopic cylinder is a piston-type telescopic cylinder, comprising a piston and a sleeve, with a seal installed between the piston and the sleeve. When gas enters the cylinder, it pushes the piston to move along the cylinder's axial direction, achieving the telescopic movement.
[0044] In some implementations, please refer to [link / reference]. Figure 1 and Figure 2The automatic lubrication device provided in this embodiment of the present invention further includes a transmission gear set 7 and a rotary driver 8. A chain 9 to be lubricated is wound around the transmission gear set 7. The rotary driver 8 is connected to the transmission gear set 7 and drives the transmission gear set 7 to rotate the chain 9 to be lubricated. A nozzle assembly 4 is positioned directly on the chain 9 to be lubricated. The rotary driver 8 includes a motor or a cylinder. The transmission gear set 7 includes two gears, each connected to the shaft of a corresponding motor. The motor shaft drives the two gears to rotate clockwise or counterclockwise. The chain 9 to be lubricated is wound around the two gears of the transmission gear set 7. After the rotary driver 8 is connected to the transmission gear set 7, it can drive the transmission gear set 7 to rotate the chain 9 to be lubricated. Because the first nozzle 41 and the second nozzle 42 in the nozzle assembly 4 are positioned directly on the chain 9 to be lubricated, the cleaning agent and lubricant can be accurately sprayed onto the chain 9. When maintenance is required on the chain 9 to be lubricated, the rotary driver 8 is activated, driving the transmission gear set 7 to rotate the chain 9 to be lubricated. Simultaneously, the transverse module 2 and the telescopic component 3 work together, pressing the cleaning start valve 11 and the lubrication start valve 12 in sequence to activate the cleaning and lubrication functions. The cleaning agent and lubricant are sprayed onto the rotating chain 9 to be lubricated through the first spray channel 43 and the second spray channel 44, respectively, which can clean and lubricate the chain 9 in all directions, thus improving the efficiency and effectiveness of maintenance.
[0045] Finally, it should be noted that the above specific embodiments are only used to illustrate the technical solution of this utility model and not to limit it. Although this utility model has been described in detail with reference to examples, those skilled in the art should understand that modifications or equivalent substitutions can be made to the technical solution of this utility model without departing from the spirit and scope of the technical solution of this utility model, and all such modifications and substitutions should be covered within the scope of the claims of this utility model.
Claims
1. An automatic lubrication device, characterized in that, The automatic lubricating device comprises a cleaning assembly with a cleaning starting valve and a lubricating starting valve, a horizontal moving module, a telescopic module connected with the horizontal moving module, and a nozzle assembly, the horizontal moving module drives the telescopic module to reciprocate between the cleaning starting valve and the lubricating starting valve, the telescopic module is used for pressing the cleaning starting valve and the lubricating starting valve respectively, the nozzle assembly is connected with the cleaning starting valve and the lubricating starting valve respectively, the nozzle assembly and the cleaning starting valve form a first spraying channel for spraying cleaning agent, and the nozzle assembly and the lubricating starting valve form a second spraying channel for spraying lubricating agent.
2. The automatic lubrication apparatus according to claim 1, characterized in that The automatic lubricating device further comprises a detection assembly for detecting a chain to be lubricated, and the detection assembly is connected with the horizontal moving module and the telescopic module respectively.
3. The automatic lubrication apparatus according to claim 2, wherein The detection assembly comprises a CCD camera and a controller connected with the CCD camera, the controller is connected with the horizontal moving module and the telescopic module respectively, and a camera head direction of the CCD camera is towards the chain to be lubricated.
4. The automatic lubrication apparatus according to claim 1, wherein The automatic lubricating device further comprises a waste liquid collecting box, an opening of the waste liquid collecting box is opposite to the chain to be lubricated, and the waste liquid collecting box is used for collecting the cleaning agent sprayed to the chain to be lubricated through the first spraying channel and the lubricating agent sprayed to the chain to be lubricated through the second spraying channel.
5. The automatic lubrication apparatus according to claim 1, wherein The cleaning assembly comprises a first container for containing cleaning agent and a second container for containing lubricating agent, the first container is connected with the cleaning starting valve, and the first container is in communication with the first spraying channel; the second container is connected with the lubricating starting valve, and the second container is in communication with the second spraying channel.
6. The automatic lubrication apparatus according to claim 5, wherein The nozzle assembly comprises a first nozzle and a second nozzle, the first nozzle is in communication with the cleaning starting valve, and the second nozzle is in communication with the lubricating starting valve.
7. The automatic lubrication apparatus of claim 1, wherein The cleaning starting valve and the lubricating starting valve are located in the same plane, and the cleaning starting valve and the lubricating starting valve are arranged at intervals.
8. The automatic lubrication apparatus of claim 1, wherein The horizontal moving module comprises a support frame, a sliding rail and a driving part connected with the support frame respectively, the sliding rail is in sliding connection with the telescopic module, and the driving part drives the telescopic module to slide on the sliding rail in the reciprocating direction.
9. The automatic lubrication apparatus of claim 1, wherein The telescopic module comprises a telescopic device and a telescopic rod, the telescopic device is connected with the horizontal moving module, the telescopic rod is connected with the telescopic device, the telescopic device drives the telescopic rod to perform telescopic movement, when the horizontal moving module drives the telescopic rod connected with the telescopic device to move above the cleaning starting valve, the cleaning starting valve is opposite to the telescopic rod, and when the horizontal moving module drives the telescopic rod connected with the telescopic device to move above the lubricating starting valve, the lubricating starting valve is opposite to the telescopic rod.
10. The automatic lubrication apparatus of claim 1, wherein The automatic lubricating device further comprises a transmission gear set and a rotary driver, the chain to be lubricated is arranged around the transmission gear set, the rotary driver is connected with the transmission gear set, the rotary driver drives the transmission gear set to drive the chain to be lubricated to rotate, and the nozzle assembly is opposite to the chain to be lubricated.