A height-detectable oiling machine

By introducing a height detection module and cooperating clamping, rotating, and moving components into the oiling machine, the problem of oiling products with unacceptable heights in existing oiling devices has been solved, thereby improving the accuracy and efficiency of oiling.

CN224573992UActive Publication Date: 2026-07-31JIANGSU KAISI SHIELD TECHNOLOGY CO LTD
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
JIANGSU KAISI SHIELD TECHNOLOGY CO LTD
Filing Date
2025-08-23
Publication Date
2026-07-31

AI Technical Summary

Technical Problem

When existing oiling equipment processes workpieces uniformly, it is easy to apply oil to highly substandard products as well, resulting in waste of resources and reduced work efficiency.

Method used

A height-detecting oiling machine was designed. The workpiece is detected by a height detection module, and oiling is performed after it passes the test. The machine involves the coordinated work of the clamping base, rotating and moving parts, and the oiling parts to ensure the accuracy and efficiency of oiling.

Benefits of technology

It improves the accuracy and efficiency of oiling, reduces resource waste, extends the service life of the detection head, and enhances the stability and convenience of the device.

✦ Generated by Eureka AI based on patent content.

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Patent Text Reader

Abstract

The utility model discloses an oiling machine of detectable height relates to the field of oiling equipment technology, and it includes detection station, is equipped with stand on the detection station, and the stand has the sliding block along the vertical sliding connection, and the detection station lower extreme part is equipped with the moving piece no.
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Description

Technical Field

[0001] This utility model relates to the field of oiling equipment technology, and in particular to an oiling machine capable of detecting height. Background Technology

[0002] Currently, in industrial production, it is often necessary to apply oil to the surface of workpieces to achieve the purpose of lubrication and rust prevention. Traditional equipment treats workpieces by immersion, spraying and brushing, which is mostly manual or semi-automatic operation.

[0003] Related technology can be found in Chinese Patent No. CN218423724U, which discloses an oiling device, including: a main body, a support frame, an oil delivery component, a sponge, and an air delivery component. The main body has an oiling chamber; the support frame is fixedly installed inside the oiling chamber; the oil delivery component includes an oil pipe fixed to the support frame, which is pre-filled with lubricating oil; the sponge is fixedly installed on the support frame and configured to apply oil to the product; the air delivery component delivers compressed air to the oil pipe to push the lubricating oil in the oil pipe to the sponge. By delivering compressed air to the oil pipe through the air delivery component, the lubricating oil in the oil tank can be delivered to the sponge, and the sponge applies oil to the product. This avoids problems such as clogged nozzles and uneven oiling due to vibration, effectively improving the oiling efficiency of the device and ensuring the uniformity and stability of the oiling.

[0004] Regarding the aforementioned technologies, the equipment processes workpieces uniformly during operation, which can easily lead to situations where highly substandard products are also coated with oil, resulting in resource waste and affecting the equipment's working efficiency. Therefore, there is an urgent need for an oiling device that can perform qualification testing on workpieces before processing. Utility Model Content

[0005] To improve the accuracy of oiling, this application provides an oiling machine that can detect height.

[0006] This application provides an oiling machine capable of detecting height, employing the following technical solution: A height-detectable oiling machine includes a detection table. A clamping seat and a moving component are located below the detection table. The clamping seat is used to clamp the workpiece and drive it to rotate. A height detection module is also provided at the upper end of the detection table. After the workpiece is installed on the rotating seat, the height detection module detects the height of the workpiece. If the workpiece height deviates from the standard range, the height detection module issues a warning. A platform is provided at the upper end of the detection table, and a moving component is provided at the lower end to drive the platform to move vertically. An oiling component is provided on the platform for applying oil and lubricating the workpiece. A moving component is provided on the platform to drive the oiling component closer to or away from the workpiece.

[0007] By adopting the above technical solution, under the support of the testing table, the operator places the clamping component into the clamping seat. The clamping seat supports and limits the workpiece, and the height detection module detects the height of the workpiece. If the workpiece height is unqualified, the height detection module issues a prompt. If the workpiece height is qualified, the clamping seat drives the workpiece to rotate along its own axis. At the same time, the third moving component drives the oiling component to approach the workpiece and apply lubricating oil. The second moving component drives the platform to move vertically, and the platform drives the oiling component to move vertically, so that the oiling component contacts the workpiece along the length of the workpiece to fully coat the workpiece. This helps to improve the oiling accuracy and working efficiency of the device.

[0008] Optionally, the height detection module includes a column, a slider, a sensor module, and a detection unit. The column is fixedly installed on the detection table, the slider slides vertically along the column under the drive of the moving component, the slider is fixedly connected to the sensor module, the sensor module moves synchronously with the slider, and the detection unit is connected below the sensor module for contact detection with the workpiece.

[0009] By adopting the above technical solution, the detection platform supports the column, and the column supports and guides the slider. Driven by the moving part one, the slider slides along the height direction of the column. The slider drives the sensor module to move closer to or away from the workpiece, so that the sensor module contacts the workpiece and thus detects the height of the workpiece, which helps to improve the stability of the device detection.

[0010] Optionally, the detection unit includes an elastic element and a detection head. One end of the elastic element is fixedly connected to the detection head, and the other end is fixedly connected to the sensor module. The detection head is slidably connected to the sensor module. In its natural state, the elastic element pushes the detection head away from the sensor module.

[0011] By adopting the above technical solution, the elastic element is used to connect the detection head and the sensor module, while providing vertical space for the detection head to move, reducing the probability of damage caused by collision between the detection head and the workpiece, and helping to extend the service life of the detection head.

[0012] Optionally, the oiling component includes an oil storage block, an oil pipe, and an oiling block. The oil storage block is fixedly connected to the three output ends of the moving component. The oil pipe is located outside the oil storage block and communicates with the oil storage block. The oiling block is located at the end of the oil storage block near the workpiece and communicates with the oil storage block. The oiling block has several oil passage holes opened laterally. One end of the oil passage hole is connected to the oiling block, and the other end is located on the side of the oiling block near the workpiece.

[0013] By adopting the above technical solution, the lubricating oil is transported to the oil storage block along the oil pipe. The oil storage block temporarily stores the lubricating oil. The lubricating oil enters the oil coating block through the oil passage and is finally applied to the surface of the workpiece by the oil coating block to lubricate the workpiece.

[0014] Optionally, the oiling block has an application groove adapted to the workpiece on the side closest to the workpiece, and one end of the oil passage hole is located on the inner wall of the application groove.

[0015] By adopting the above technical solution, the workpiece fits against the inner wall of the coating tank when it rotates, which allows the oiling block to apply lubricating oil to the surface of the workpiece, thus improving the coating effect of the device and increasing the utilization rate of lubricating oil.

[0016] Optionally, the clamping seat includes a motor and a ring. The ring is fixed to the upper end of the inspection table, the motor is located at the lower end of the inspection table and faces the ring, and the workpiece is located inside the ring and is rotatably connected to the ring under the drive of the motor.

[0017] By adopting the above technical solution, the ring supports and limits the workpiece, and the motor drives the workpiece to rotate, which facilitates the device to coat the outer surface of the workpiece and improves the coating convenience of the device.

[0018] Optionally, the upper end of the detection platform is provided with gratings at both ends, with one grating emitting detection light and the other grating receiving the detection light.

[0019] By adopting the above technical solution, the two gratings at both ends send and receive detection light to detect whether there are foreign objects interfering with the grating's coating process. When the detection light is interfered with and the grating cannot be received, the device stops working. When the detection light is received normally, the device works normally.

[0020] Optionally, the detection platform is equipped with a sensor switch, which faces the workpiece and is used to detect whether a workpiece is placed in front of it.

[0021] By adopting the above technical solution, if the inductive switch determines that there is a workpiece in front, the device will work normally; otherwise, the device will not work, which helps to improve the convenience of the device for detection.

[0022] In summary, this application includes at least one of the following beneficial technical effects: 1. With the support of the testing table, the operator places the clamping component into the clamping seat. The clamping seat supports and limits the workpiece. The height detection module detects the height of the workpiece. If the workpiece height is not qualified, the height detection module will issue a prompt. If the workpiece height is qualified, the clamping seat will drive the workpiece to rotate along its own axis. At the same time, the third moving component drives the oiling component to approach the workpiece and apply lubricating oil. The second moving component drives the platform to move vertically. The platform drives the oiling component to move vertically, so that the oiling component contacts the workpiece along the length of the workpiece to apply lubricating oil to the workpiece. This helps to improve the oiling accuracy and working efficiency of the device. 2. The detection table supports the column and the column supports and guides the slider. Driven by the moving part one, the slider slides along the height direction of the column. The slider drives the sensor module to move closer to or away from the workpiece, so that the sensor module contacts the workpiece and thus detects the height of the workpiece, which helps to improve the stability of the device detection. 3. The elastic element is used to connect the detection head and the sensor module, and at the same time provides vertical movement space for the detection head, reducing the probability of damage caused by collision between the detection head and the workpiece, which helps to extend the service life of the detection head. Attached Figure Description

[0023] Figure 1 This is a schematic diagram of the overall structure of an oiling machine that can detect height.

[0024] Figure 2 This is a schematic diagram designed to highlight the positions of movable component one and movable component two.

[0025] Figure 3 yes Figure 2 An enlarged schematic diagram of part A in the middle.

[0026] Figure 4 This is a schematic diagram designed to highlight the platform structure.

[0027] Explanation of reference numerals in the attached drawings: 1. Detection table; 2. Height detection module; 21. Column; 22. Slider; 23. Sensor module; 24. Detection section; 241. Detection head; 242. Elastic element; 25. Moving part one; 3. Platform; 31. Moving part two; 32. Moving part three; 4. Oiling component; 41. Oil storage block; 42. Oil pipe; 43. Oiling block; 431. Oil passage hole; 432. Coating groove; 5. Clamping seat; 51. Ring; 52. Motor; 6. Grating; 7. Inductive switch. Detailed Implementation

[0028] The present application will be further described in detail below with reference to all the accompanying drawings.

[0029] This application discloses an oiling machine capable of detecting height. Example

[0030] Reference Figure 1 and Figure 2 A height-detectable oiling machine includes a detection table 1 with a clamping seat 5. The clamping seat 5 includes a motor 52 and a ring 51. The ring 51 is fixed on the detection table 1, and the motor 52 is located at the lower end of the detection table 1 and faces the ring 51. The operator places the workpiece inside the ring 51, which supports and limits the workpiece. The motor 52 contacts the lower end of the workpiece and drives the workpiece to rotate along its own axis, so that the workpiece is rotatably connected to the ring 51, which helps to improve the stability of the workpiece installation.

[0031] Reference Figure 1 and Figure 2 The detection platform 1 has a height detection module 2 on the side near the ring 51. The height detection module 2 includes a column 21, a slider 22, a sensor module 23, and a detection part 24. The column 21 is fixedly installed on the detection platform 1. The slider 22 is slidably connected to the column 21 in the vertical direction. The lower end of the detection platform 1 is provided with a moving part 25 for driving the slider 22 to slide. The moving part 25 can be a cylinder. The sensor module 23 is fixedly connected to the slider 22. The slider 22 drives the sensor module 23 to move back and forth in the vertical direction, which helps to improve the structural stability of the device.

[0032] Reference Figure 2 and Figure 3 The detection unit 24 includes a detection head 241 and an elastic element 242. The detection head 241 is inserted into the sensor and slidably connected to the sensor vertically. The lower end of the detection head 241 is directly opposite the workpiece. The elastic element 242 can be a spring. The spring is sleeved on the outside of the detection head 241. One end of the spring is fixedly connected to the detection head 241, and the other end is fixedly connected to the sensor module 23. In its natural state, the spring pushes the detection head 241 away from the sensor module 23.

[0033] Reference Figure 2 and Figure 3 When the sensor module 23 moves downward, it causes the detection head 241 to contact the workpiece and retract. The sensor module 23 detects the retraction distance of the detection head 241. If the retraction distance is within the detection difference, the workpiece height is qualified and the device proceeds to the next processing step. If it exceeds the detection difference, the workpiece height is unqualified, the sensor module 23 issues a prompt, and the device does not proceed to the next processing step, which helps to improve the accuracy of the device operation.

[0034] Reference Figure 1 and Figure 4 The testing platform 1 is equipped with a platform 3. A second movable component 31, which can be a cylinder, is located at the lower end of the testing platform 1. The platform 3 is connected to the output end of the cylinder, allowing the cylinder to drive the platform 3 to reciprocate vertically through the output end. The platform 3 is equipped with a third movable component 32 and an oiling component 4. The third movable component 32 can be a cylinder. The oiling component 4 includes an oil pipe 42, an oil storage block 41, and an oiling block 43. The oil storage block 41 is fixedly connected to the output end of the cylinder. The oil pipe 42 is connected to one side of the oil storage block 41, and the oiling block 43 is connected to one side of the oil storage block 41 along the length of the testing platform 1. Lubricating oil enters the oil storage block 41 through the oil pipe 42, temporarily storing the lubricating oil, which then enters the oiling block 43.

[0035] Reference Figure 4The oiling block 43 has several oil passage holes 431 opened laterally along its inner edge. All oil passage holes 431 are connected to the oil storage block 41. The side of the oiling block 43 away from the oil storage block 41 has a coating groove 432 adapted to the workpiece. The oil passage holes 431 guide the lubricating oil, so that the lubricating oil flows from the end of the oiling block 43 near the oil storage block 41 to the end near the coating groove 432. The cylinder drives the oil storage block 41 to move laterally back and forth through the output end, thereby driving the oiling block 43 to move closer to or away from the workpiece, so that the lubricating oil is coated along the inner wall of the coating groove 432 to the outer surface of the workpiece, which is beneficial to improving the utilization efficiency and coating effect of the lubricating oil.

[0036] Reference Figure 3 The inner wall of the testing table 1 is equipped with an induction switch 7 that faces the workpiece. When the workpiece is placed on the ring 51, the induction switch 7 senses the workpiece and the device works. If the workpiece is not placed on the ring 51, the device does not work.

[0037] Reference Figure 1 The detection platform 1 is equipped with gratings 6 at both ends along its length. The height detection module 2 and the oiling component 4 are located between the two gratings 6. One grating 6 emits detection light, and the other grating 6 receives the detection light. If the detection light is interfered with, the grating 6 will not detect the detection light, and the device will stop working. If the detection light is received normally, the device will work normally, which helps to improve the stability of the device.

[0038] The implementation principle of a height-detectable oiling machine according to an embodiment of this application is as follows: Under the support of the detection table 1, the ring 51 supports and limits the workpiece. The first moving part 25 drives the slider 22 to reciprocate along the column 21. The slider 22 drives the sensor module 23 to reciprocate vertically. The sensor module 23 drives the detection head 241 to move closer to or away from the workpiece. The elastic element 242 provides clearance space for the detection head 241. If the retraction distance of the detection head 241 meets the detection difference value, the motor 52 drives the workpiece to rotate. The second moving part 31 drives the platform 3 to reciprocate vertically. The third moving part... 32 The oil pipe 42 and the oiling block 43 are driven by the oil storage block 41 to approach the workpiece. The lubricating oil enters the oil storage block 41 along the oil pipe 42, enters the oiling block 43 through the oil storage block 41, and is finally applied to the surface of the workpiece by the oiling block 43 to lubricate the device. If the retraction distance of the detection head 241 exceeds the detection difference range, the workpiece height is unqualified and the device will not work. During the operation of the device, the workpiece height is detected first, and then the workpiece is further processed. This allows the device to selectively apply oil to qualified workpieces, reduce resource waste, and improve the accuracy and efficiency of the device's oiling.

[0039] The above are all preferred embodiments of this application, and are not intended to limit the scope of protection of this application. Therefore, all equivalent changes made in accordance with the structure, shape and principle of this application should be covered within the scope of protection of this application.

Claims

1. A height detectable oiling machine comprising a detection table (1), characterized in that: The testing platform (1) is provided with a clamping seat (5) and a moving part (25) below it. The clamping seat (5) is used to clamp the workpiece and drive the workpiece to rotate. The upper end of the testing platform (1) is also provided with a height detection module (2). After the workpiece is installed on the rotating seat, the height detection module (2) detects the height of the workpiece. If the height of the workpiece deviates from the standard range, the height detection module (2) issues a prompt. The upper end of the testing platform (1) is provided with a platform (3), and the lower end is provided with a moving part (31) that drives the platform (3) to move vertically. The platform (3) is provided with an oiling part (4), which is used to apply oil to lubricate the workpiece. The platform (3) is provided with a moving part (32) that drives the oiling part (4) to move closer to or away from the workpiece.

2. The oil applicator of claim 1, wherein: The height detection module (2) includes a column (21), a slider (22), a sensor module (23), and a detection unit (24). The column (21) is fixedly installed on the detection table (1). The slider (22) slides vertically along the column (21) under the drive of the moving part (25). The slider (22) is fixedly connected to the sensor module (23). The sensor module (23) moves synchronously with the slider (22). The detection unit (24) is connected below the sensor module (23) and faces the workpiece, and is used to contact the workpiece for detection.

3. A height detectable oil applicator as claimed in claim 2, wherein: The detection unit (24) includes an elastic element (242) and a detection head (241). One end of the elastic element (242) is fixedly connected to the detection head (241), and the other end is fixedly connected to the sensor module (23). The detection head (241) is slidably connected to the sensor module (23) and is located directly above the workpiece. In its natural state, the elastic element (242) pushes the detection head (241) away from the sensor module (23).

4. The height detectable oil applicator of claim 1, wherein: The oiling component (4) includes an oil storage block (41), an oil pipe (42), and an oiling block (43). The oil storage block (41) is fixedly connected to the output end of the moving component (32). The oil pipe (42) is located outside the oil storage block (41) and communicates with the oil storage block (41). The oiling block (43) is located at the end of the oil storage block (41) close to the workpiece and communicates with the oil storage block (41). The oiling block (43) has several oil passage holes (431) opened laterally. One end of the oil passage hole (431) is connected to the oiling block (43), and the other end is located on the side of the oiling block (43) close to the workpiece.

5. A height detectable oil applicator as claimed in claim 4, wherein: The oiling block (43) has an application groove (432) adapted to the workpiece on the side near the workpiece, and one end of the oil passage hole (431) is located on the inner wall of the application groove (432).

6. The height detectable oil applicator of claim 1, wherein: The clamping seat (5) includes a motor (52) and a ring (51). The ring (51) is fixed at the upper end of the testing table (1), and the motor (52) is located at the lower end of the testing table (1) and is directly opposite to the ring (51). The workpiece is located inside the ring (51) and is rotatably connected to the ring (51) under the drive of the motor (52).

7. The height detectable oil applicator of claim 1, wherein: The detection platform (1) has gratings (6) at both ends of its upper end. One grating (6) emits detection light, and the other grating (6) receives the detection light.

8. The height detectable oil applicator of claim 1, wherein: The detection platform (1) is provided with an inductive switch (7) which is opposite to the workpiece and is used for detecting whether the workpiece is placed in front.