Modular quick release integrated control lubrication station structure
Patent Information
- Application Number
- CN202522206907.X
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-10-17
- Publication Date
- 2026-09-15
- Estimated Expiration
- 2035-10-17
AI Technical Summary
[0013] Beneficial Effects: This utility model discloses a modular quick-release integrated control lubrication station structure. In order to adjust the oil output and oil output position of the lubrication station, this device is equipped with an oil delivery connector. Through the cooperation between the adjusting knob and the guide seat in the oil delivery connector, when the adjusting knob is turned, the moving adjusting knob and the guide seat rotate relative to each other, thereby adjusting the position of the diversion channel. This allows the diversion channel to connect one, two, or three oil outlet pipes. When the diversion channel is connected to one oil outlet pipe, the device is in a non-working state. When the diversion channel is connected to two oil outlet pipes, lubricating oil can be discharged from one of the oil outlet pipes. When the diversion channel is connected to three oil outlet pipes, lubricating oil can be discharged from two of the oil outlet pipes. By rotating the adjusting knob, the discharge position of the lubricating oil can be adjusted, thereby completing the lubrication work of the compound crusher.
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Figure CN224756739U_ABST
Abstract
Description
Technical Field
[0001] This utility model belongs to the technical field of lubrication stations, specifically relating to a modular quick-release integrated control lubrication station structure. Background Technology
[0002] The compound crusher lubrication station is the core system that ensures the lubrication of key components such as bearings. It typically integrates an oil tank, oil pump, filter, cooler, and electrical control unit. It uses a motor to drive the oil pump, pressurizes and delivers the filtered lubricating oil to each lubrication point, and uses a cooler or heater to control the oil temperature and monitor parameters such as oil pressure and oil level in real time to ensure that the equipment reduces wear and avoids overheating during high-speed operation, thereby improving operational stability and service life.
[0003] However, existing lubrication stations still have some problems. The number and location of oil outlets in existing lubrication stations are relatively fixed. Therefore, when performing multi-directional lubrication oil output, multiple lubrication station systems are required to work, which increases the cost to enterprises. At the same time, multiple adjustment knobs are required to complete the lubrication oil cut-off work, which increases the complexity of operation.
[0004] Therefore, how to adjust the oil output and oil outlet position of the lubrication station is a problem that needs to be solved. Utility Model Content
[0005] Purpose of the utility model: To provide a modular, quick-release integrated control lubrication station structure to solve the above-mentioned problems existing in the prior art.
[0006] Technical solution: A modular, quick-release integrated control lubrication station structure, comprising: The lubrication station body, the oil delivery device installed in the lubrication station body, the oil delivery connector detachably connected to the oil delivery device, and at least two oil delivery pipes symmetrically arranged on the oil delivery connector; The oil delivery connector includes a receiving pipe connected to the oil delivery device, a filter table connected to the receiving pipe, a guide seat connected to the filter table, and an adjustment knob that is detachably mounted on the guide seat. The guide seat is provided with at least two oil outlets; The oil delivery device is existing technology and includes an oil storage tank and an oil delivery pump connected to the oil storage tank. The oil delivery pump is detachably connected to the oil delivery connector via a pipeline.
[0007] In a further embodiment, the filter table includes a flow guide seat, at least two buffer grooves formed on the flow guide seat, a receiving cavity disposed in the flow guide seat, and a plurality of filter screens located in the receiving cavity; The drain seat is also provided with a guide groove, one end of which is connected to one of the buffer grooves, and the other end of which is located in the area between the filter screen and the drain seat. Another buffer groove connects to the receiving pipe; The drainage seat is connected to the receiving pipe.
[0008] In a further embodiment, the drainage seat is also provided with an annular protrusion, and a buffer cavity is formed between the annular protrusion and the drainage seat. The annular protrusion extends a predetermined distance away from the filter screen. When the level of lubricating oil in the buffer chamber is higher than the height of the annular protrusion, the lubricating oil can flow into the receiving chamber.
[0009] In a further embodiment, the drainage seat is also provided with an oil outlet seat; The oil outlet seat is used to connect one of the buffer grooves with the guide seat.
[0010] In a further embodiment, the guide seat includes a diverter block, which has at least three oil outlet pipes, an adjustment knob detachably connected to the diverter block, and a locking block disposed on the adjustment knob.
[0011] In a further embodiment, the clamping block has a rhomboid structure, the clamping block has a predetermined elasticity, and the diverting block is provided with a locking port; The locking block passes through the locking port, and the installation of the adjustment knob and the diverter block is achieved by the deformation of the locking block.
[0012] In a further embodiment, the diverter block is provided with an arc-shaped drainage groove on its circumference. By rotating the adjustment knob, the drainage groove can be connected to the oil outlet pipe.
[0013] Beneficial Effects: This utility model discloses a modular quick-release integrated control lubrication station structure. In order to adjust the oil output and oil output position of the lubrication station, this device is equipped with an oil delivery connector. Through the cooperation between the adjusting knob and the guide seat in the oil delivery connector, when the adjusting knob is turned, the moving adjusting knob and the guide seat rotate relative to each other, thereby adjusting the position of the diversion channel. This allows the diversion channel to connect one, two, or three oil outlet pipes. When the diversion channel is connected to one oil outlet pipe, the device is in a non-working state. When the diversion channel is connected to two oil outlet pipes, lubricating oil can be discharged from one of the oil outlet pipes. When the diversion channel is connected to three oil outlet pipes, lubricating oil can be discharged from two of the oil outlet pipes. By rotating the adjusting knob, the discharge position of the lubricating oil can be adjusted, thereby completing the lubrication work of the compound crusher. Attached Figure Description
[0014] Figure 1This is a front view of the present invention.
[0015] Figure 2 This is a perspective view of the oil delivery connector of this utility model.
[0016] Figure 3 This is a cross-sectional view of the oil delivery connector of this utility model.
[0017] Figure 4 This is a schematic diagram of the buffer cavity of this utility model.
[0018] Figure 5 This is a schematic diagram of the adjustment knob of this utility model; Figure 6 This is a schematic diagram of the flow divider block of this utility model.
[0019] The attached figures are labeled as follows: 1. Lubrication station; 2. Oil delivery connector; 21. Filter table; 211. Drainage seat; 212. Annular protrusion; 213. Buffer groove; 214. Receiving cavity; 215. Buffer cavity; 216. Filter screen; 217. Oil outlet seat; 22. Receiving pipe; 24. Guide seat; 241. Adjustment knob; 242. Drainage groove; 243. Clamping block; 244. Diverting block; 245. Oil outlet pipe; 3. Oil delivery pipe. Detailed Implementation
[0020] To make the above-mentioned objects, features and advantages of the present invention more apparent and understandable, the specific embodiments of the present invention will be described in detail below with reference to the accompanying drawings.
[0021] Many specific details are set forth in the following description in order to provide a full understanding of the invention. However, the invention may also be practiced in other ways different from those described herein, and those skilled in the art can make similar extensions without departing from the spirit of the invention. Therefore, the invention is not limited to the specific embodiments disclosed below.
[0022] Secondly, the term "an embodiment" or "embodiment" as used herein refers to a specific feature, structure, or characteristic that may be included in at least one implementation of the present invention. The phrase "in one embodiment" appearing in different places throughout this specification does not necessarily refer to the same embodiment, nor is it a single embodiment or an embodiment selectively excluded from other embodiments.
[0023] This invention discloses a modular quick-release integrated control lubrication station structure, referring to... Figures 1-6 ,include: The lubrication station 1 includes a main body, an oil delivery device installed in the main body, an oil delivery connector 2 detachably connected to the oil delivery device, and at least two oil delivery pipes 3 symmetrically arranged on the oil delivery connector 2. The oil delivery connector 2 includes a receiving pipe 22 connected to the oil delivery device, a filter table 21 connected to the receiving pipe 22, a guide seat 24 connected to the filter table 21, and an adjusting knob 241 detachably installed on the guide seat 24. The guide seat 24 has at least two oil outlets. By rotating the adjusting knob 241, the flow channel 242 on the adjusting knob 241 is changed, so that the flow channel 242 can be connected to several oil outlet pipes 245 in sequence. By changing the rotation angle of the adjusting knob 241, the oil outlet position and the oil output at each position can be changed.
[0024] The filter table 21 includes a flow guide seat 211, at least two buffer grooves 213 formed on the flow guide seat 211, a receiving cavity 214 disposed in the flow guide seat 211, and a plurality of filter screens 216 located in the receiving cavity 214; the flow guide seat 211 is also provided with a guide groove, one end of which is connected to one of the buffer grooves 213, and the other end of which is located in the area between the filter screens 216 and the flow guide seat 211; the other buffer groove 213 is connected to a receiving pipe 22; the flow guide seat 211 is also provided with an annular protrusion 212, and a buffer cavity 215 is formed between the annular protrusion 212 and the flow guide seat 211; the annular protrusion 212 extends a predetermined distance away from the filter screens 216; when the height of the lubricating oil in the buffer cavity 215 is higher than the height of the annular protrusion 212, the lubricating oil can flow into the receiving cavity 214. When lubricating oil needs to be injected, the oil supply device can supply oil to the oil supply connector 2. The lubricating oil can then enter the buffer groove 213 through the guide seat 211. As the injection volume increases, the horizontal height of the lubricating oil in the buffer groove 213 continuously increases, so that the lubricating oil can be filled into the buffer cavity 215. One inner wall of the buffer cavity 215 is an annular protrusion 212 and the other inner wall is the guide seat 211. Therefore, when the height of the lubricating oil is greater than the height of the annular protrusion 212, the lubricating oil can pass over the annular protrusion 212 and enter the receiving cavity 214. At this time, the lubricating oil is filtered by the filter screen 216 and discharged from the oil outlet 217, completing the filtration of the lubricating oil. Meanwhile, as the lubricating oil passes through the buffer groove 213 and the buffer chamber 215, due to the structure of the buffer groove 213 and the buffer chamber 215, the lubricating oil can only enter the next stage after the height of the lubricating oil is higher than the height of the buffer groove 213 or the height of the annular protrusion 212. During this process, solid impurities in the lubricating oil can settle under the influence of their own gravity, thereby completing the preliminary and secondary filtration of the lubricating oil, reducing the amount of impurities attached to the filter screen 216, and improving the service life of the filter screen.
[0025] The drain seat 211 is also provided with an oil outlet seat 217; the oil outlet seat 217 is used for the communication between one of the buffer grooves 213 and the guide seat 24.
[0026] The guide seat 24 includes a diverter block 244, which has at least three oil outlet pipes 245, an adjustment knob 241 detachably connected to the diverter block 244, and a locking block 243 disposed on the adjustment knob 241. The locking block 243 has a rhomboid structure and a predetermined elasticity. The diverter block 244 has a locking port. The locking block 243 passes through the locking port, and the installation of the adjustment knob 241 and the diverter block 244 is achieved by the deformation of the locking block 243. The diverter block 244 has an arc-shaped drainage groove 242 on its circumference. By rotating the adjustment knob 241, the drainage groove 242 can be connected to the oil outlet pipes 245. When the adjusting knob 241 is turned, the moving adjusting knob 241 rotates relative to the guide seat 24, thereby adjusting the position of the diversion channel 242. This allows the diversion channel 242 to connect one, two, or three oil outlet pipes 245. When the diversion channel 242 is connected to one oil outlet pipe 245, the device is in a non-working state. When the diversion channel 242 is connected to two oil outlet pipes 245, lubricating oil can be discharged from one of the oil outlet pipes 245. When the diversion channel 242 is connected to three oil outlet pipes 245, lubricating oil can be discharged from two of the oil outlet pipes 245. By rotating the adjusting knob 241, the discharge position of the lubricating oil can be adjusted, thereby completing the lubrication work of the compound crusher. The clamping block 243 enables the installation of the diverter block 244 and the adjustment knob 241. In order to ensure that the clamping block 243 is not damaged during rotation, a groove is provided on the clamping block 243. The groove is adapted to the locking port, and an elastic pad is also provided at the locking port.
[0027] Working principle description: When lubricating oil needs to be injected, the oil delivery device can deliver oil to the oil delivery connector 2. The lubricating oil can then enter the buffer groove 213 through the guide seat 211. As the injection volume increases, the horizontal height of the lubricating oil in the buffer groove 213 continuously increases, thus filling the buffer cavity 215. One inner wall of the buffer cavity 215 is an annular protrusion 212, and the other inner wall is the guide seat 211. Therefore, when the height of the lubricating oil is greater than the height of the annular protrusion 212, the lubricating oil can pass over the annular protrusion 212 and enter the receiving cavity 214. At this time, the lubricating oil is filtered by the filter screen 216 and discharged through the oil outlet 217, completing the filtration of the lubricating oil. After the adjustment knob 241 is turned, the moving adjustment knob 241 rotates relative to the guide seat 24, thereby adjusting the position of the diversion channel 242. This allows the diversion channel 242 to connect one, two, or three oil outlet pipes 245. When the diversion channel 242 is connected to one oil outlet pipe 245, the device is in a non-working state. When the diversion channel 242 is connected to two oil outlet pipes 245, lubricating oil can be discharged from one of the oil outlet pipes 245. When the diversion channel 242 is connected to three oil outlet pipes 245, lubricating oil can be discharged from two of the oil outlet pipes 245. By rotating the adjustment knob 241, the discharge position of the lubricating oil can be adjusted, thereby completing the lubrication work of the compound crusher.
[0028] As described above, although the present invention has been shown and described with reference to specific preferred embodiments, it should not be construed as limiting the present invention itself. Various changes in form and detail may be made to the present invention without departing from the spirit and scope of the appended claims.
Claims
1. A modular, quick-release integrated control lubrication station structure, characterized in that, include: The lubrication station body, the oil delivery device installed in the lubrication station body, the oil delivery connector detachably connected to the oil delivery device, and at least two oil delivery pipes symmetrically arranged on the oil delivery connector; The oil delivery connector includes a receiving pipe connected to the oil delivery device, a filter table connected to the receiving pipe, a guide seat connected to the filter table, and an adjustment knob that is detachably mounted on the guide seat. The guide seat has at least two oil outlets.
2. The modular quick-release integrated control lubrication station structure according to claim 1, characterized in that: The filter table includes a flow guide seat, at least two buffer grooves formed on the flow guide seat, a receiving cavity disposed in the flow guide seat, and a plurality of filter screens located in the receiving cavity; The drain seat is also provided with a guide groove, one end of which is connected to one of the buffer grooves, and the other end of which is located in the area between the filter screen and the drain seat. Another buffer groove connects to the receiving pipe; The drainage seat is connected to the receiving pipe.
3. The modular quick-release integrated control lubrication station structure according to claim 2, characterized in that: The drainage seat is also provided with an annular protrusion, and a buffer cavity is formed between the annular protrusion and the drainage seat. The annular protrusion extends a predetermined distance away from the filter screen. When the level of lubricating oil in the buffer chamber is higher than the height of the annular protrusion, the lubricating oil can flow into the receiving chamber.
4. The modular quick-release integrated control lubrication station structure according to claim 3, characterized in that: The drain seat is also equipped with an oil outlet seat; The oil outlet seat is used to connect one of the buffer grooves with the guide seat.
5. The modular quick-release integrated control lubrication station structure according to claim 1, characterized in that: The guide seat includes a flow divider block, which has at least three oil outlet pipes, an adjustment knob detachably connected to the flow divider block, and a locking block provided on the adjustment knob.
6. The modular quick-release integrated control lubrication station structure according to claim 5, characterized in that: The clamping block has a rhomboid structure and a predetermined elasticity; the diverting block is provided with a locking port. The locking block passes through the locking port, and the installation of the adjustment knob and the diverter block is achieved by the deformation of the locking block.
7. The modular quick-release integrated control lubrication station structure according to claim 6, characterized in that: The diverter block has an arc-shaped drainage groove on its circumference. By rotating the adjustment knob, the drainage groove can be connected to the oil outlet pipe.