Intelligent oil temperature cooling type thin oil station

By introducing a cooling mechanism into the thin oil station and utilizing the cooling pipe to exchange coolant and the fan to dissipate heat and cool down, the problem of low cooling rate of the thin oil is solved, efficient cooling of the thin oil is achieved, and equipment lubrication is facilitated.

CN223411837UActive Publication Date: 2025-10-03JIANGSU HONEST HYDRAULIC & LUBRICATE EQUIP
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Patent Information

Application Number
CN202423030697.5
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-12-10
Publication Date
2025-10-03
Estimated Expiration
2034-12-10

AI Technical Summary

Technical Problem

The existing intelligent oil temperature cooling type thin oil station has a low thin oil cooling rate, which makes it inconvenient to take the thin oil at any time.

Method used

A cooling mechanism is used, including a cooling box, a pump, a cooling pipe, a fan, a heat dissipation hole and a heat conduction plate. The cooling rate of the thin oil is improved through heat exchange between the cooling pipe and the coolant and heat dissipation and cooling by the fan, combined with heat conduction by the heat conduction plate.

Benefits of technology

The cooling rate of the thin oil is improved, making it easier to use the thin oil at any time and meeting the lubrication needs of the equipment.

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Patent Text Reader

Abstract

The utility model discloses an intelligent oil temperature cooling type thin oil station which comprises a thin oil station body and a cooling mechanism, and an oil tank is arranged on the bottom wall of the thin oil station body. The cooling mechanism comprises a cooling box, a first pump machine, a cooling pipeline, a fan, heat dissipation holes and a heat conducting plate, the cooling box is arranged at the right end of the bottom wall of the thin oil station, the left side wall of the cooling box is attached to the right side wall of the oil tank, the first pump machine is arranged on the bottom wall of the thin oil station, a pump inlet of the first pump machine is communicated with the oil tank through a pump outlet pipe, and the cooling pipeline is arranged in the cooling box; the oil inlet end of the cooling pipeline penetrates through the front side wall of the cooling box to be communicated with a pump outlet of the first pump machine, the oil outlet end of the cooling pipeline penetrates through the front side wall of the cooling box to be communicated with the oil tank, and the cooling pipeline located in the cooling box is arranged in an S shape. The temperature of the thin oil is reduced through the cooling mechanism, the cooling rate of the thin oil is increased, and the thin oil can be conveniently taken at any time.
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Description

Technical Field

[0001] The utility model relates to the technical field of thin oil lubrication stations, in particular to an intelligent oil temperature cooling type thin oil station. Background Art

[0002] After a period of use, mechanical equipment is usually lubricated with thin oil to extend its service life and reduce the incidence of equipment failure. The thin oil station is the heart of the thin oil circulation lubrication system, and its function is to force the thin oil to the friction parts of the machine.

[0003] When the existing intelligent oil temperature cooling type oil station is working, the oil in the oil tank of the oil station is usually pumped out through the oil drain pipe by a pump, and then the oil is pressed to the friction part of the machine. The amount of oil is monitored by a flow meter. The oil exchanges heat with the coolant through the cooling pipe, causing the temperature of the oil to drop.

[0004] The existing intelligent oil temperature cooling type dilute oil station has the following problems: the temperature of the dilute oil is reduced only by heat exchange with the coolant, and the cooling rate of the dilute oil is low, which is not conducive to the ready use of the dilute oil. For this reason, we propose an intelligent oil temperature cooling type dilute oil station. Utility Model Content

[0005] The technical problem to be solved by the present invention is to overcome the existing defects and provide an intelligent oil temperature cooling type thin oil station. When cooling the thin oil, the temperature of the thin oil is reduced by the cooling mechanism, the cooling rate of the thin oil is increased, and the thin oil is convenient to be used at any time, which can effectively solve the problems in the background technology.

[0006] To achieve the above-mentioned purpose, the present invention provides the following technical solutions: an intelligent oil temperature cooling type thin oil station, comprising a thin oil station, a bottom wall of the thin oil station is provided with an oil tank, and also includes a cooling mechanism;

[0007] The cooling mechanism comprises a cooling box, a pump machine 1, a cooling pipe, a fan, a heat dissipation hole and a heat conduction plate. A cooling box is provided at the right end of the bottom wall of the thin oil station, and the left side wall of the cooling box is fitted with the right side wall of the oil tank. A pump machine 1 is provided on the bottom wall of the thin oil station, and the pump inlet of the pump machine 1 is connected with the oil tank through a pump outlet pipe. A cooling pipe is provided inside the cooling box, and the oil inlet end of the cooling pipe passes through the front side wall of the cooling box and is connected with the pump outlet of the pump machine 1, and the oil outlet end of the cooling pipe passes through the front side wall of the cooling box and is connected with the oil tank. The cooling pipe located inside the cooling box is arranged in an S shape, and fans are provided in the mounting grooves on the front and rear sides of the upper surface of the cooling box. Evenly distributed heat dissipation holes are opened on the upper end of the right side wall of the cooling box, and a heat conduction plate is provided on the left side wall of the cooling box, which is fitted with the right side wall of the oil tank. When the thin oil is cooled, the temperature of the thin oil is reduced by the cooling mechanism, and the cooling rate of the thin oil is increased, so that the thin oil can be taken at any time.

[0008] Furthermore, it also includes a single-chip microcomputer, which is fixedly connected to the right side of the thin oil station. The input end of the single-chip microcomputer is electrically connected to the external power supply, and the input ends of the pump and the fan are respectively electrically connected to the output end of the single-chip microcomputer, so as to facilitate the normal operation of the control equipment.

[0009] Furthermore, the cooling mechanism also includes a liquid inlet pipe and a liquid outlet pipe. A liquid inlet pipe is provided at the liquid inlet at the lower end of the right side surface of the cooling box, and a liquid outlet pipe is provided at the liquid outlet at the upper end of the right side surface of the cooling box. Both the liquid inlet pipe and the liquid outlet pipe pass through the right side wall of the thin oil station to facilitate the replacement of the coolant.

[0010] Furthermore, an oil outlet pipe is provided at the oil outlet on the upper surface of the oil tank, and a second pump is provided in the mounting hole on the upper surface of the thin oil station. The second pump is connected to the oil tank through the oil outlet pipe, and the input end of the second pump is electrically connected to the output end of the single-chip microcomputer, so as to facilitate pumping the thin oil out of the oil tank.

[0011] Furthermore, an oil drain pipe is provided at the pump outlet of the second pump machine, and a flow meter is connected in series on the outer surface of the oil drain pipe. The detection end of the flow meter is inserted into the interior of the oil drain pipe. The flow meter is bidirectionally electrically connected to the single-chip microcomputer to facilitate monitoring of the amount of oil discharged.

[0012] Furthermore, a temperature sensor is provided on the front side of the oil tank, a detection end of the temperature sensor is inserted into the interior of the oil tank, and the temperature sensor is bidirectionally electrically connected to the single chip microcomputer, so as to facilitate monitoring the temperature of the thin oil in the oil tank.

[0013] Furthermore, a protective door is hinged at the front side opening of the thin oil station through a hinge, and a glass observation window is provided on the outer surface of the protective door to facilitate maintenance of the thin oil station by staff.

[0014] Compared with the existing technology, the beneficial effects of the present invention are: the intelligent oil temperature cooling type thin oil station has the following advantages:

[0015] When the temperature of the thin oil is too high, the pump will pump the thin oil in the oil tank into the cooling pipe. The thin oil exchanges heat with the coolant in the cooling box through the cooling pipe. Because the cooling pipe is arranged in an S shape, the contact area between the cooling pipe and the coolant is large, and the cooling rate of the thin oil is high. The fan dissipates heat and cools the coolant. The heat dissipation holes can discharge the heat in the cooling box and form air convection with the fan to accelerate the heat dissipation in the cooling box. The heat conduction plate can absorb and conduct the heat of the thin oil in the oil tank, further cool the thin oil in the oil tank, and improve the cooling rate of the thin oil, so that the thin oil can be used at any time. BRIEF DESCRIPTION OF THE DRAWINGS

[0016] Figure 1 This is a schematic diagram of the structure of the utility model;

[0017] Figure 2 It is a schematic structural diagram of the cross-section of the present invention.

[0018] In the figure: 1 thin oil station, 2 oil tank, 3 cooling mechanism, 31 cooling box, 32 pump 1, 33 cooling pipe, 34 fan, 35 heat dissipation hole, 36 heat conduction plate, 37 liquid inlet pipe, 38 liquid outlet pipe, 4 single-chip computer, 5 oil outlet pipe, 6 pump 2, 7 oil drain pipe, 8 flow meter, 9 temperature sensor, 10 protective door, 11 glass observation window. DETAILED DESCRIPTION

[0019] The following will be combined with the drawings in the embodiments of the present invention to clearly and completely describe the technical solutions in the embodiments of the present invention. Obviously, the embodiments described are only part of the embodiments of the present invention, not all of the embodiments. Based on the embodiments of the present invention, all other embodiments obtained by ordinary technicians in this field without making creative efforts are within the scope of protection of the present invention.

[0020] See also Figure 1-2 , this embodiment provides a technical solution: an intelligent oil temperature cooling type thin oil station, including a thin oil station 1, a bottom wall of the thin oil station 1 is provided with an oil tank 2, a cooling mechanism 3, and a single-chip computer 4. The single-chip computer 4 is fixedly connected to the right side of the thin oil station 1, and the input end of the single-chip computer 4 is electrically connected to an external power supply. An oil outlet pipe 5 is provided at the oil outlet on the upper surface of the oil tank 2. A second pump 6 is provided in the mounting hole on the upper surface of the thin oil station 1. The second pump 6 is connected to the oil tank 2 through the oil outlet pipe 5. The input end of the second pump 6 is electrically connected to the output end of the single-chip computer 4. An oil discharge pipe 7 is provided at the pump outlet of the second pump 6. A flow meter 8 is connected in series on the outer surface of the oil discharge pipe 7. The detection end of the flow meter 8 is inserted into the discharge pipe. Inside the oil pipe 7, the flow meter 8 is bidirectionally electrically connected to the single-chip computer 4. A temperature sensor 9 is provided on the front side of the oil tank 2. The detection end of the temperature sensor 9 is inserted into the interior of the oil tank 2. The temperature sensor 9 is bidirectionally electrically connected to the single-chip computer 4. A protective door 10 is hinged at the front side opening of the thin oil station 1. A glass observation window 11 is provided on the outer surface of the protective door 10. When the thin oil station 1 needs to be used, the staff operates the single-chip computer 4 to turn on the pump 2 6. The pump 2 6 pumps the thin oil out of the oil tank 2 through the oil outlet pipe 5, and then sprays the thin oil to the designated position through the oil discharge pipe 7. The amount of oil discharged monitored by the flow meter 8 can be observed through the display screen on the single-chip computer 4.

[0021] Cooling mechanism 3: It includes a cooling box 31, a pump 32, a cooling pipe 33, a fan 34, a heat dissipation hole 35 and a heat conducting plate 36. The cooling box 31 is provided at the right end of the bottom wall of the thin oil station 1. The left side wall of the cooling box 31 is in contact with the right side wall of the oil tank 2. The bottom wall of the thin oil station 1 is provided with a pump 32. The pump inlet of the pump 32 is connected to the oil tank 2 through the pump outlet pipe. The cooling pipe 33 is provided inside the cooling box 31. The oil inlet end of the cooling pipe 33 passes through the front side wall of the cooling box 31 and is connected to the pump outlet of the pump 32. The oil outlet end of the cooling pipe 33 passes through the cooling box 31. The front side wall of the box 31 is connected to the oil tank 2, and the cooling pipe 33 inside the cooling box 31 is arranged in an S shape. The mounting grooves on the front and rear sides of the upper surface of the cooling box 31 are provided with fans 34. The upper end of the right side wall of the cooling box 31 is provided with evenly distributed heat dissipation holes 35. The left side wall of the cooling box 31 is provided with a heat conducting plate 36, which is in contact with the right side wall of the oil tank 2. The input ends of the pump 32 and the fan 34 are respectively electrically connected to the output end of the single-chip computer 4. The cooling mechanism 3 also includes a liquid inlet pipe 37 and a liquid outlet pipe 38. The liquid inlet at the lower end of the right side of the cooling box 31 is connected to the cooling pipe 37. There is a liquid inlet pipe 37 at the opening, and a liquid outlet pipe 38 at the liquid outlet on the upper right side of the cooling box 31. Both the liquid inlet pipe 37 and the liquid outlet pipe 38 pass through the right side wall of the thin oil station 1. When the temperature sensor 9 detects that the temperature of the thin oil in the oil tank 2 is too high, the pump 32 is turned on. The pump 32 pumps the thin oil in the oil tank 2 into the cooling pipe 33. The thin oil exchanges heat with the coolant in the cooling box 31 through the cooling pipe 33, so that the temperature of the thin oil is reduced. Because the cooling pipe 33 is arranged in an S shape, the cooling pipe 33 is in contact with the coolant in the cooling box 31. The area is large, and the cooling rate of the thin oil is high. The cooled thin oil returns to the oil tank 2. At the same time, the fan 34 is turned on and blows air into the cooling box 31, so that the fan 34 dissipates heat and cools down the coolant. The heat dissipation holes 35 can discharge the heat in the cooling box 31 and form air convection with the fan 34 to accelerate the heat dissipation in the cooling box 31. The heat conduction plate 36 can absorb and conduct the heat of the thin oil in the oil tank 2, further cooling the thin oil in the oil tank 2, and replace the coolant in the cooling box 33 through the liquid inlet pipe 37 and the liquid outlet pipe 38.

[0022] The working principle of the intelligent oil temperature cooling type thin oil station provided by the utility model is as follows: when the thin oil station 1 needs to be used, the staff controls the single chip computer 4 to turn on the pump 2 6, and the pump 2 6 pumps the thin oil out of the oil tank 2 through the oil outlet pipe 5, and then sprays the thin oil to the designated position through the oil discharge pipe 7. The size of the oil discharge amount monitored by the flow meter 8 can be observed through the display screen on the single chip computer 4. When the temperature sensor 9 detects that the temperature of the thin oil in the oil tank 2 is too high, the pump 1 32 is turned on, and the pump 1 32 pumps the thin oil in the oil tank 2 into the cooling pipe 33. The thin oil exchanges heat with the coolant in the cooling box 31 through the cooling pipe 33, so that the temperature of the thin oil is reduced. The cooling pipe 33 is arranged in an S shape, so the contact area between the cooling pipe 33 and the coolant in the cooling box 31 is large, the cooling rate of the thin oil is high, and the cooled thin oil returns to the oil tank 2. At the same time, the fan 34 is turned on, and the fan 34 can blow air into the cooling box 31, so that the fan 34 dissipates heat and cools down the coolant. The heat dissipation holes 35 can discharge the heat in the cooling box 31 and form air convection with the fan 34 to accelerate the heat dissipation in the cooling box 31. The heat conducting plate 36 can absorb and conduct the heat of the thin oil in the oil tank 2, further cooling the thin oil in the oil tank 2, and replace the coolant in the cooling box 33 through the liquid inlet pipe 37 and the liquid outlet pipe 38.

[0023] It is worth noting that the single chip microcomputer 4 disclosed in the above embodiment can use STM32L1, the pump 1 32 and the pump 2 6 can use ACm centrifugal pumps, the fan 34 can use MF50151V2-1000C-G99, the flow meter 8 can use KR-DC series, and the temperature sensor 9 can use TMP100NA / 3K. The single chip microcomputer 4 controls the operation of the pump 1 32, the fan 34, the pump 2 6, the flow meter 8 and the temperature sensor 9 using methods commonly used in the prior art.

[0024] The above description is merely an embodiment of the present invention and does not limit the patent scope of the present invention. Any equivalent structure or equivalent process transformation made by using the contents of the description and drawings of the present invention, or directly or indirectly applied in other related technical fields, are also included in the patent protection scope of the present invention.

Claims

1. An intelligent oil temperature cooling type dilute oil station, comprising a dilute oil station (1), wherein the bottom wall of the dilute oil station (1) is provided with an oil tank (2), characterized in that: Also includes a cooling mechanism (3); Cooling mechanism (3): It includes a cooling box (31), a pump (32), a cooling pipe (33), a fan (34), a heat dissipation hole (35) and a heat conduction plate (36). The right end of the bottom wall of the thin oil station (1) is provided with a cooling box (31), the left side wall of the cooling box (31) is in contact with the right side wall of the oil tank (2), the bottom wall of the thin oil station (1) is provided with a pump (32), the pump inlet of the pump (32) is connected to the oil tank (2) through the pump outlet pipe, the cooling pipe (33) is provided inside the cooling box (31), the oil inlet end of the cooling pipe (33) passes through the cooling The front side wall of the box (31) is connected to the pump outlet of the pump machine (32), the oil outlet end of the cooling pipe (33) passes through the front side wall of the cooling box (31) and is connected to the oil tank (2), the cooling pipe (33) located inside the cooling box (31) is arranged in an S shape, fans (34) are provided in the mounting grooves on the front and rear sides of the upper surface of the cooling box (31), evenly distributed heat dissipation holes (35) are opened at the upper end of the right side wall of the cooling box (31), and a heat conducting plate (36) is provided on the left side wall of the cooling box (31), and the heat conducting plate (36) is in contact with the right side wall of the oil tank (2).

2. The intelligent oil temperature cooling type thin oil station according to claim 1 is characterized by: The invention also includes a single chip microcomputer (4), which is fixedly connected to the right side of the thin oil station (1), the input end of the single chip microcomputer (4) is electrically connected to the external power supply, and the input ends of the pump (32) and the fan (34) are respectively electrically connected to the output end of the single chip microcomputer (4).

3. The intelligent oil temperature cooling type thin oil station according to claim 1 is characterized by: The cooling mechanism (3) further comprises a liquid inlet pipe (37) and a liquid outlet pipe (38). The liquid inlet pipe (37) is provided at the liquid inlet at the lower end of the right side surface of the cooling box (31), and the liquid outlet pipe (38) is provided at the liquid outlet at the upper end of the right side surface of the cooling box (31). Both the liquid inlet pipe (37) and the liquid outlet pipe (38) pass through the right side wall of the thin oil station (1).

4. The intelligent oil temperature cooling type thin oil station according to claim 2 is characterized by: An oil outlet pipe (5) is provided at the oil outlet on the upper surface of the oil tank (2), and a second pump (6) is provided in the mounting hole on the upper surface of the thin oil station (1). The second pump (6) is connected to the oil tank (2) through the oil outlet pipe (5), and the input end of the second pump (6) is electrically connected to the output end of the single chip computer (4).

5. The intelligent oil temperature cooling type thin oil station according to claim 4 is characterized in that: An oil discharge pipe (7) is provided at the pump outlet of the second pump (6), a flow meter (8) is connected in series to the outer surface of the oil discharge pipe (7), a detection end of the flow meter (8) is inserted into the interior of the oil discharge pipe (7), and the flow meter (8) is bidirectionally electrically connected to the single chip microcomputer (4).

6. The intelligent oil temperature cooling type thin oil station according to claim 2 is characterized by: A temperature sensor (9) is provided on the front side of the oil tank (2), a detection end of the temperature sensor (9) is inserted into the interior of the oil tank (2), and the temperature sensor (9) is bidirectionally electrically connected to the single chip computer (4).

7. The intelligent oil temperature cooling type thin oil station according to claim 1 is characterized by: A protective door (10) is hingedly connected to the front side opening of the thin oil station (1) via a hinge, and a glass observation window (11) is provided on the outer surface of the protective door (10).