A back cover button oiling device
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-09-15
- Publication Date
- 2026-08-11
AI Technical Summary
这就导致在实际使用过程中,操作者仍然需要近距离操作,将零部件放置到涂油位置,使得操作者与涂油机构的距离较近
1、通过设置导向移动机构能将涂油部件准确地移动到输油管正下方,确保输油管准确下降到涂油槽内进行注油操作,提升涂油的精准度,并且在涂油之后将涂油部件复位移到操作者一端,使操作者与输油管保持一定距离,避免涂油时油脂喷到操作者身上,也避免操作者在操作过程中与升降涂油机构接触,防止受到化学伤害和机械结构伤害。
Smart Images

Figure CN224614237U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the field of oiling equipment technology, and in particular to an oiling equipment for a back cover button. Background Technology
[0002] In the context of today's booming automotive industry, the production quality and efficiency of automotive parts are of paramount importance. To ensure smooth operation of automotive parts in practical applications and reduce wear and malfunctions, applying protective grease beforehand during production is a crucial step. Taking the production of rear cover buttons as an example, the manufacturing process requires precise application of lubricating grease inside the button. This helps improve the button's tactile feel and lifespan, ensuring the stability of its switching function.
[0003] Traditional lubrication methods primarily rely on manual operation. Workers carefully apply grease to the surface of parts using tools. However, this method has many drawbacks. On the one hand, manual application is extremely inefficient, making it difficult to meet the demands of rapid delivery in large-scale production, severely restricting production schedules. On the other hand, due to the subjectivity and uncertainty of manual operation, uneven application is prone to occur. Applying too little grease may fail to achieve the desired lubrication and protective effects, while applying too much may result in grease waste and even affect the normal use of parts.
[0004] To overcome the shortcomings of manual oiling, automated oiling equipment has gradually emerged on the market. These devices have improved oiling efficiency and uniformity to some extent. They can automatically oil parts according to preset programs, reducing human interference. However, these existing automated oiling devices are not perfect. While they possess automated oiling capabilities, they lack the ability to transport and position parts. This means that in actual production, operators still need to manually place parts into the designated oiling positions. Consequently, operators inevitably require prolonged contact with grease, which may irritate and damage the skin, affecting their health. Furthermore, the mechanical components in the oiling mechanism, such as high-speed motors and sharp blades, pose potential safety hazards to operators; improper operation could lead to accidents.
[0005] The technical content disclosed in the Chinese patent document (publication number: CN219804887U, patent name: general oiling machine) is as follows: by cooperating with the guide rod cylinder and the brushless geared motor, the oiling column can be driven to move up and down in real time while rotating at a uniform speed. When the oiling column rotates and rises and falls and comes into contact with the grease nozzle, the grease nozzle can spray grease evenly onto the oiling column. Then, when the oiling column comes into contact with the pipe, the grease can be transferred and brushed onto the surface of the pipe, thereby achieving efficient continuous brushing.
[0006] As can be seen from the aforementioned patent documents, although the device achieves automatic oiling through a lifting mechanism, it lacks a corresponding conveying mechanism. This means that in actual use, the operator still needs to operate at close range, placing the parts at the oiling position, resulting in a close proximity between the operator and the oiling mechanism. During the operation of the oiling mechanism, there may be dangerous factors such as splattered grease and high-speed rotating parts, posing certain safety hazards to the operator. Utility Model Content
[0007] The utility model overcomes the shortcomings of the prior art and provides a back cover button oiling device. By setting a guide moving mechanism, the oiling component can be accurately moved to the bottom of the oil supply pipe, ensuring that the oil supply pipe is accurately lowered into the oiling tank for oiling operation, thereby improving the accuracy of oiling.
[0008] To solve the above-mentioned technical problems, the utility model is implemented through the following technical solution: A back cover button oiling device includes a conveying and oiling assembly, which is equipped with a lifting and oiling mechanism and a guiding and moving mechanism. The lifting and oiling mechanism is located above the end of the guide moving mechanism; The guiding moving mechanism includes an oiling component that can move along its track, and the oiling component is provided with an oiling groove for holding grease. The lifting oiling mechanism includes a liftable oil delivery pipe, the lifting path of which intersects perpendicularly with the moving path of the oiling tank. When the oiling component moves directly below the oil supply pipe, the oil supply pipe descends into the oiling tank and outputs grease. After the oiling is completed, it resets and rises again. The oiling component then moves along the guide mechanism to a position away from the lifting oiling mechanism.
[0009] Furthermore, the lifting oiling mechanism includes a lifting base, a lifting drive module connected to the lifting base, a lifting drive module connected to the lifting seat, and an oil supply pipe connected to the side of the lifting seat away from the lifting drive module.
[0010] Furthermore, the lifting base is also equipped with an oil-blocking telescopic power component, which is connected to a telescopic plate, and the telescopic plate is connected to a stop block; After the oil pipeline is raised, the oil baffle telescopic power component pushes out the telescopic plate, causing the baffle to block the oil pipeline outlet.
[0011] Furthermore, the lifting drive module includes a lifting motor, which is connected to a lead screw assembly via a coupling. The lead screw assembly is connected to a lifting connecting block, and the lifting seat is connected to the lifting connecting block.
[0012] Furthermore, the lifting platform is also equipped with an oil valve, which connects the oil tank and the oil delivery pipe.
[0013] Furthermore, the oiling tank is equipped with an oil guide column. When the oil supply pipe delivers grease to the oiling tank, the oil guide column is inserted into the oil supply pipe, thereby guiding the grease to flow along the oil guide column into the oiling tank.
[0014] Furthermore, the guiding moving mechanism includes a moving base plate, on which a moving cylinder and a slide rail are provided. Both the moving cylinder and the slide rail are connected to the guiding moving block, and an oiling component is connected above the guiding moving block.
[0015] Furthermore, a cylinder slider connecting seat is provided between the movable cylinder and the guide moving block. The cylinder slider connecting seat is connected to the bearing connecting column, and the bearing connecting column is connected to the plug-in linkage seat. The upper end of the plug-in linkage seat is inserted into the guide moving block.
[0016] Furthermore, the oiling component includes a fixed base, an oiling groove inserted into the fixed base, a fixing buckle locking post on one side of the oiling groove, a pressing block on one side of the fixing buckle locking post, the pressing block being located above one side of the oiling groove, and the lower end face of the pressing block contacting the oiling groove. A locking head seat is provided above the pressing block, and the locking head seat is connected to the fixed base by bolts.
[0017] Furthermore, the conveying and oiling assembly is mounted on the lower housing, and a cover is provided above the conveying and oiling assembly. The cover has an opening on one side, an operation button panel is provided at the opening, and a control touch screen and a warning light are provided on one side of the cover.
[0018] Compared with existing technologies, the advantages of this utility model are: 1. By setting up a guiding and moving mechanism, the oiling component can be accurately moved directly below the oil supply pipe, ensuring that the oil supply pipe is accurately lowered into the oiling tank for oiling operation, improving the accuracy of oiling. After oiling, the oiling component is reset and moved to the operator's side, keeping the operator at a certain distance from the oil supply pipe, avoiding grease spraying onto the operator during oiling, and also avoiding contact between the operator and the lifting oiling mechanism during operation, preventing chemical and mechanical damage.
[0019] 2. In terms of mechanism design optimization, the cylinder slider connecting seat and the plug-in linkage seat are connected by bearing connecting column, so that there is a degree of freedom for relative rotation between the two. This avoids damage to the moving cylinder due to torque when the parallelism between the moving cylinder and the slide rail is not sufficient, thus extending the service life of the equipment. The fixing buckle locking column of the oiling component restricts the degree of freedom of the oiling tank in the fixed base, so that the oiling tank will not be displaced when subjected to grease impact, ensuring the stability of operation. The locking head seat and the fixed base are detachably connected. When dealing with different parts, the oiling tank can be replaced to achieve the universal function of the oiling equipment, thus expanding the application range of the oiling equipment. Attached Figure Description
[0020] The accompanying drawings are provided to further illustrate the utility model and, together with the embodiments of the utility model, are used to explain the utility model. They do not constitute a limitation on the utility model. In the drawings: Figure 1 This is a schematic diagram of the overall structure of the oiling equipment according to an embodiment of the present invention; Figure 2 This is an exploded schematic diagram of the oiling equipment according to an embodiment of this utility model; Figure 3 This is an exploded view of the conveying and oiling assembly according to an embodiment of the present invention; Figure 4 This is an exploded view of the lifting and oiling mechanism according to an embodiment of the present invention; Figure 5 This is an exploded view of the guide movement mechanism according to an embodiment of the present utility model; Figure 6 This is an exploded schematic diagram of the oiling component according to an embodiment of the present invention.
[0021] In the diagram: 1. Conveying and oiling assembly; 101. Lifting and oiling mechanism; 1011. Lifting base; 1012. Lifting drive module; 10121. Lifting motor; 10122. Coupling; 10123. Screw assembly; 10124. Lifting connecting block; 1013. Lifting seat; 1014. Oil valve; 1015. Oil supply pipe; 1016. Oil-blocking telescopic power component; 10161. Telescopic plate; 10162. Stop block; 102. Guide moving mechanism; 1021. 1. Movable base plate; 1022. Slide rail; 1023. Movable cylinder; 1024. Cylinder slider connecting seat; 1025. Bearing connecting column; 1026. Plug-in linkage seat; 1027. Guide moving block; 1028. Oiling component; 10281. Fixed base; 10282. Fixed buckle locking column; 10283. Locking head seat; 10284. Oiling tank; 103. Oil drum; 2. Cover; 3. Operation button panel; 4. Lower base box; 5. Control touch screen; 6. Warning light. Detailed Implementation
[0022] The preferred embodiments of the utility model are described below with reference to the accompanying drawings. It should be understood that the preferred embodiments described herein are for illustration and explanation only and are not intended to limit the utility model.
[0023] like Figures 1 to 6 As shown, a back cover button oiling device is a highly efficient and automated device specifically designed for the back cover button oiling process. It can significantly improve the accuracy and efficiency of oiling and ensure the stability of oiling quality. The device mainly consists of a conveying oiling component 1, a lower housing 4, a cover 2, an operation button panel 3, a control touch screen 5, and warning lights 6.
[0024] The conveying oiling assembly 1 is provided with a lifting oiling mechanism 101 and a guiding moving mechanism 102; the lifting oiling mechanism 101 is located above the end of the guiding moving mechanism 102; the guiding moving mechanism 102 includes an oiling component 1028 that can move along its track, and the oiling component 1028 is provided with an oiling groove 10284 for carrying grease. The lifting oiling mechanism 101 includes a liftable oil delivery pipe 1015, whose lifting path intersects perpendicularly with the moving path of the oiling tank 10284. When the oiling component 1028 moves directly below the oil supply pipe 1015, the oil supply pipe 1015 descends into the oiling tank 10284 and outputs grease. After the oiling is completed, it resets and rises. The oiling component 1028 then moves along the guide moving mechanism 102 to a position away from the lifting oiling mechanism 101.
[0025] The lifting oiling mechanism 101 includes a lifting base 1011, which is connected to a lifting drive module 1012. The lifting drive module 1012 is connected to a lifting seat 1013, and an oil supply pipe 1015 is connected to the side of the lifting seat 1013 away from the lifting drive module 1012.
[0026] The lifting base 1011 is also provided with an oil-blocking telescopic power component 1016, which is connected to a telescopic plate 10161, and the telescopic plate 10161 is connected to a stop block 10162; in this embodiment, the oil-blocking telescopic power component 1016 is a cylinder or an electric cylinder.
[0027] When the oil pipe 1015 is raised, the oil-blocking telescopic power component 1016 pushes out the telescopic plate 10161, causing the stop block 10162 to block the outlet of the oil pipe 1015. This prevents grease from dripping when the oil pipe 1015 is idle, keeps the equipment clean, and also avoids grease waste.
[0028] The lifting drive module 1012 includes a lifting motor 10121, which is connected to a lead screw assembly 10123 via a coupling 10122. The lead screw assembly 10123 is connected to a lifting connecting block 10124, and the lifting seat 1013 is connected to the lifting connecting block 10124. The lead screw assembly 10123 converts the rotational motion of the lifting motor 10121 into linear motion, thereby realizing the lifting of the lifting seat 1013. The lead screw drive has advantages such as high precision, high transmission efficiency, and large load-bearing capacity, ensuring that the oil pipe 1015 accurately descends into the oiling tank 10284 for oil injection.
[0029] The lifting platform 1013 is also equipped with an oil valve 1014, which connects the oil tank 103 to the oil supply pipe 1015. The function of the oil valve 1014 is to precisely control the amount and speed of grease delivery, ensuring the accuracy and stability of oil injection. By adjusting the oil valve 1014, the amount of grease supplied can be flexibly adjusted according to different oiling needs.
[0030] The oiling tank 10284 is equipped with an oil guide column. When the oil supply pipe 1015 delivers grease to the oiling tank 10284, the oil guide column is inserted into the oil supply pipe 1015, thereby guiding the grease to flow along the oil guide column into the oiling tank 10284.
[0031] The guiding and moving mechanism 102 includes a moving base plate 1021, on which a moving cylinder 1023 and a slide rail 1022 are mounted. Both the moving cylinder 1023 and the slide rail 1022 are connected to the guiding moving block 1027. The oiling component 1028 is connected above the guiding moving block 1027. The guiding and moving mechanism 102 is mainly used to accurately move the oiling component 1028 directly below the oil supply pipe 1015, and to reset the oiling component 1028 to the operator's side after oiling. This ensures that the operator maintains a certain distance from the oil supply pipe 1015, preventing grease from being sprayed onto the operator during oiling, and also preventing the operator from coming into contact with the lifting oiling mechanism 101 during operation, thus avoiding chemical and mechanical damage to the operator.
[0032] A cylinder slider connecting seat 1024 is provided between the movable cylinder 1023 and the guide moving block 1027. The cylinder slider connecting seat 1024 is connected to the bearing connecting column 1025. The bearing connecting column 1025 is connected to the plug-in linkage seat 1026. The upper end of the plug-in linkage seat 1026 is inserted into the guide moving block 1027. The bearing connecting column 1025 allows for relative rotation between the cylinder slider connecting seat 1024 and the plug-in linkage seat 1026. The connection between the bearing connecting column 1025 and the plug-in linkage seat 1026 avoids damage to the movable cylinder 1023 due to torque when the parallelism between the movable cylinder 1023 and the slide rail 1022 is insufficient.
[0033] The oiling component 1028 includes a fixed base 10281, an oiling groove 10284 inserted into the fixed base 10281, a fixing buckle 10282 on one side of the oiling groove 10284, a pressing block on one side of the fixing buckle 10282, the pressing block being positioned above one side of the oiling groove 10284, the lower end face of the pressing block contacting the oiling groove 10284, and a locking head seat 10283 above the pressing block, the locking head seat 10283 being connected to the fixed base 10281 by bolts. By setting the locking pin 10282, the degree of freedom of the oiling tank 10284 in the fixed base 10281 is restricted, so that the oiling tank 10284 will not be displaced when subjected to grease impact, thus ensuring the stability of operation. In addition, since the locking head 10283 and the fixed base 10281 are detachably connected, the oiling tank 10284 can be replaced to achieve the universal function of the oiling equipment when dealing with different parts, making the application of the oiling equipment more extensive.
[0034] The conveying and oiling assembly 1 is mounted on the lower housing 4, which provides stable support for the entire equipment and also protects the internal components of the equipment.
[0035] A cover 2 is provided above the conveying and oiling assembly 1. The cover 2 has an opening on one side. The cover 2 can prevent dust, debris and other objects from entering the equipment, protect the normal operation of the equipment, and also play a certain safety protection role.
[0036] An operation button panel 3 is installed at the opening of the cover 2, which facilitates the operation and control of the equipment by the operator. Through the operation button panel 3, the operator can start and stop the equipment, adjust the operating parameters of the equipment, etc.
[0037] A control touchscreen 5 and an alarm light 6 are installed on one side of the enclosure 2. The control touchscreen 5 is used to display information such as the equipment's operating status and parameter settings. At the same time, operators can also use the touchscreen to perform more detailed settings and control of the equipment. The control touchscreen has the advantages of intuitive and convenient operation, which can improve the operating efficiency and accuracy of the equipment.
[0038] When the equipment malfunctions or encounters an abnormal situation, warning light 6 will emit a corresponding light signal to remind the operator to handle the situation in a timely manner and ensure the safe operation of the equipment.
[0039] This oiling equipment, through the setting of the guide moving mechanism 102, can accurately move the oiling component 1028 directly below the oil supply pipe 1015, ensuring that the oil supply pipe 1015 accurately descends into the oiling tank 10284 for oiling operation, thereby improving the accuracy of oiling. After oiling, the oiling component 1028 is reset and moved to the operator's side, keeping the operator at a certain distance from the oil supply pipe 1015, avoiding grease spraying onto the operator during oiling, and also preventing the operator from coming into contact with the lifting oiling mechanism 101 during operation, thus preventing chemical and mechanical damage.
[0040] In terms of mechanism design optimization, the cylinder slider connecting seat 1024 and the plug-in linkage seat 1026 are connected by the bearing connecting column 1025, so that there is a degree of freedom for relative rotation between the two. This avoids damage to the moving cylinder 1023 due to torque when the parallelism between the moving cylinder 1023 and the slide rail 1022 is insufficient, thus extending the service life of the equipment. The fixing buckle locking column 10282 of the oiling component 1028 restricts the degree of freedom of the oiling tank 10284 in the fixed base 10281, so that the oiling tank 10284 will not be displaced when subjected to grease impact, ensuring the stability of operation. The locking head seat 10283 and the fixed base 10281 are detachably connected. When dealing with different parts, the universal function of the oiling equipment can be achieved by replacing the oiling tank 10284, thus expanding the application range of the oiling equipment.
[0041] Finally, it should be noted that the above are merely preferred embodiments of the utility model and are not intended to limit the utility model. Although the utility model has been described in detail with reference to the embodiments, those skilled in the art can still modify the technical solutions described in the foregoing embodiments or make equivalent substitutions for some of the technical features. However, any modifications, equivalent substitutions, improvements, etc., made within the spirit and principles of the utility model should be included within the protection scope of the utility model.
Claims
1. A rear cover button oiling apparatus characterized by comprising: It includes a conveying and oiling assembly (1), which is equipped with a lifting and oiling mechanism (101) and a guiding and moving mechanism (102). The lifting oiling mechanism (101) is located above the end of the guide moving mechanism (102); The guide moving mechanism (102) includes an oiling component (1028) that can move along its track, and the oiling component (1028) is provided with an oiling groove (10284) for holding grease. The lifting oiling mechanism (101) includes a liftable oil delivery pipe (1015), whose lifting path intersects perpendicularly with the moving path of the oiling tank (10284); When the oiling component (1028) moves directly below the oil supply pipe (1015), the oil supply pipe (1015) descends into the oiling tank (10284) and outputs grease. After completing the oiling, it resets and rises. The oiling component (1028) then moves back along the guide moving mechanism (102) to one end away from the lifting oiling mechanism (101).
2. The back cover button oiling apparatus according to claim 1, characterized by, The lifting oiling mechanism (101) includes a lifting base (1011), which is connected to a lifting drive module (1012). The lifting drive module (1012) is connected to a lifting seat (1013), and an oil supply pipe (1015) is connected to the side of the lifting seat (1013) away from the lifting drive module (1012).
3. The back cover button oiling apparatus of claim 2, wherein The lifting base (1011) is also provided with an oil-blocking telescopic power component (1016), which is connected to a telescopic plate (10161), and the telescopic plate (10161) is connected to a stop block (10162). After the oil pipe (1015) is raised, the oil-blocking telescopic power component (1016) pushes out the telescopic plate (10161), causing the stop block (10162) to block the outlet of the oil pipe (1015).
4. The back cover button oiling apparatus according to claim 2, wherein The lifting drive module (1012) includes a lifting motor (10121), which is connected to a lead screw assembly (10123) via a coupling (10122). The lead screw assembly (10123) is connected to a lifting connecting block (10124), and the lifting seat (1013) is connected to the lifting connecting block (10124).
5. The back cover button oiling apparatus according to claim 4, wherein The lifting seat (1013) is also equipped with an oil valve (1014), which connects the oil tank (103) and the oil pipeline (1015).
6. The back cover button oiling apparatus according to any one of claims 1 to 5, characterized by The oiling tank (10284) is equipped with an oil guide column. When the oil supply pipe (1015) delivers grease to the oiling tank (10284), the oil guide column is inserted into the oil supply pipe (1015) to guide the grease to flow along the oil guide column into the oiling tank (10284).
7. The back cover button oiling apparatus according to any one of claims 1 to 5, characterized by The guide moving mechanism (102) includes a moving base plate (1021), on which a moving cylinder (1023) and a slide rail (1022) are provided. The moving cylinder (1023) and the slide rail (1022) are both connected to the guide moving block (1027), and an oiling component (1028) is connected above the guide moving block (1027).
8. The back cover button oiling apparatus according to claim 7, wherein A cylinder slider connecting seat (1024) is provided between the movable cylinder (1023) and the guide moving block (1027). The cylinder slider connecting seat (1024) is connected to the bearing connecting column (1025). The bearing connecting column (1025) is connected to the plug-in linkage seat (1026). The upper end of the plug-in linkage seat (1026) is inserted into the guide moving block (1027).
9. The back cover button oiling apparatus of claim 8, wherein, The oiling component (1028) includes a fixed base (10281), an oiling groove (10284) inserted into the fixed base (10281), a fixed locking post (10282) provided on one side of the oiling groove (10284), a pressing block provided on one side of the fixed locking post (10282), the pressing block being located above one side of the oiling groove (10284), and the lower end face of the pressing block contacting the oiling groove (10284); A locking head seat (10283) is provided above the pressing block, and the locking head seat (10283) is connected to the fixed base (10281) by bolts.
10. The back cover button oiling apparatus according to any one of claims 1 to 5, 8, 9, wherein The conveying oiling assembly (1) is mounted on the lower housing (4). A cover (2) is mounted above the conveying oiling assembly (1). The cover (2) has an opening on one side. An operation button panel (3) is mounted at the opening of the cover (2). A control touch screen (5) and a warning light (6) are mounted on one side of the cover (2).
Citation Information
Patent Citations
Universal oiling machine
CN219804887U