A temperature control device for the production and processing of wire drawing lubricating oil

By adding a waste heat recovery structure and a support structure to the lubricating oil production temperature control device, the problems of energy waste and operating environment are solved, and the effects of energy saving, consumption reduction and temperature stability are achieved.

CN120255602BActive Publication Date: 2025-09-23GUANGDONG YUTUO TECH CO LTD
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Patent Information

Application Number
CN202510400844.3
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2025-04-01
Publication Date
2025-09-23
Estimated Expiration
2045-04-01

AI Technical Summary

Technical Problem

Existing lubricating oil production temperature control devices lack waste heat recovery structures, resulting in energy waste and heat increase during the production process, affecting the operator's working environment and production costs.

Method used

A waste heat recovery structure is added to the lubricating oil production temperature control device to recover the generated heat and use it to preheat the raw oil. Combined with the support structure and glass plate operating table, the equipment stability and operational safety are improved.

Benefits of technology

It realizes the effective recovery of waste heat, reduces heating energy consumption, improves the stability of temperature control and lubricating oil quality, improves the operating environment and reduces production costs.

✦ Generated by Eureka AI based on patent content.

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Abstract

The present invention relates to the technical field of lubricating oil production, and discloses a temperature control device for the production and processing of wire drawing lubricating oil. In the present invention, in the production of wire drawing lubricating oil, a waste heat recovery structure is added to the temperature control device to recover the heat generated during the working process. For example, during production, the equipment will generate a large amount of waste heat. Directly discharging this heat will lead to waste, but after recovery, it can be transported through a pipeline to preheat the raw oil, which can save energy consumption costs for heating. At the same time, the heat dissipation pressure of the equipment itself is reduced, the temperature control is more stable, and the quality of the lubricating oil is not easily affected by temperature fluctuations. In addition, the environment in the working area will also be improved, and the operating workers do not need to endure high temperatures and stuffiness. This design is in line with environmental protection trends and can reduce production costs.
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Description

Technical Field

[0001] The invention belongs to the technical field of lubricating oil production, and in particular relates to a temperature control device for the production and processing of wire drawing lubricating oil. Background Art

[0002] Lubricants are liquid or semi-solid lubricants used in various types of vehicles and mechanical equipment to reduce friction and protect machinery and workpieces. They primarily provide lubrication, cooling assistance, rust prevention, cleaning, sealing, and cushioning. Anything applied between two objects in relative motion to reduce friction and wear caused by contact is considered a lubricant. Lubricants generally consist of two parts: a base oil and additives. Base oil is the primary component of lubricants and determines their fundamental properties. Additives compensate for and improve base oil performance deficiencies, imparting new properties and making them a crucial component of lubricants.

[0003] In the invention with publication number CN222298279U, a temperature control device for lubricating oil production and processing is disclosed, which belongs to the field of lubricating oil production technology, including: this temperature control device for lubricating oil production and processing controls the temperature of the lubricating oil inside the lubricating oil temperature control box through a control console to control cooling components such as a cooling fan, and can also use a temperature control board to connect a heating base plate at one end of the connecting wire for heating and temperature control, so as to achieve the overall temperature control effect of the lubricating oil by the device. At the same time, a large temperature difference will be generated in a short period of time during temperature control. At this time, the temperature difference may form condensation water in the air. The anti-condensation water component will guide the condensation water through its own structure and ventilate it to the outside of the lubricating oil temperature control box before it is formed, so as to prevent the formation of condensation water from polluting the lubricating oil and further improve the quality of the produced lubricating oil.

[0004] However, the lack of waste heat recovery structure in this structure will lead to energy waste and increase the energy consumption cost of heating. In addition, the heat generated during the production process will cause the external temperature to rise, which is not suitable for the operator to work. Summary of the Invention

[0005] The purpose of the present invention is to provide a temperature control device for the production and processing of wire drawing lubricating oil in order to solve the above-mentioned problems.

[0006] The technical solution adopted by the present invention is as follows: a temperature control device for the production and processing of wire drawing lubricating oil, comprising an equipment casing, a heat outlet pipe base is provided at the right front end edge of the bottom end of the inner upper surface of the equipment casing, the upper end of the heat outlet pipe base is fixedly connected to the heat outlet pipe, the front end of the heat outlet pipe is connected to the fan casing, the bottom end of the inner circumferential surface of the fan casing is installed with a fixing block, the front surface of the fixing block is installed with a rotating shaft casing, the front end of the rotating shaft casing is installed with a heat transfer network, the outer circumferential surface of the heat transfer network is provided with a heat shield plate, the front surface center position of the front surface of the heat transfer network is rotatably provided with a rotating shaft, the front end of the rotating shaft is installed with a fan blade fixing block, the side circumferential surface of the fan blade fixing block is welded with a fan blade, the front surface edge of the heat transfer network is connected with the fan blade casing, the front end edge of the fan casing is fixedly connected with a heat pipe, and the end of the heat pipe is located at the inner position of the fan casing and a heat outlet is installed.

[0007] By adopting the above technical solution, in the production of wire drawing lubricants, adding a waste heat recovery structure to the temperature control device can recover the heat generated during operation. For example, during production, the equipment generates a large amount of waste heat. Directly discharging this heat would result in waste. However, after recovery, it can be transported through pipelines to preheat the raw oil, saving heating energy costs. At the same time, the equipment's own heat dissipation pressure is reduced, temperature control is more stable, and the lubricant quality is less susceptible to temperature fluctuations. The working environment is also improved, and operators do not need to endure high temperatures and stuffiness. This design is both environmentally friendly and reduces production costs.

[0008] In a preferred embodiment, pillars are fixedly connected to the four corners of the lower surface of the device housing, and a chassis is installed at the ends of the pillars.

[0009] By adopting the above technical solution, a support structure is installed at the bottom of the temperature control device to support more stable equipment operation, especially during high-speed production, which can reduce vibration and prevent loosening of internal parts affecting temperature control accuracy. The bottom can be separated from the ground by a distance to prevent moisture corrosion or uneven ground from causing the equipment to tilt, thereby extending its service life. Finally, it can facilitate daily maintenance. Workers do not need to lie on the ground to operate, but can directly squat to check the bottom discharge port, which is time-saving and safe.

[0010] In a preferred embodiment, a glass plate is provided on the front surface of the device housing near the lower edge.

[0011] By adopting the above technical solution, a glass plate is installed in front of the temperature control device, so that the internal temperature changes and the operation status of the machine can be directly seen. Accidents can be discovered in time, and dust and debris can be prevented from entering to affect the accuracy, and workers can be prevented from accidentally touching high-temperature components.

[0012] In a preferred embodiment, an operating table is installed on the upper end of the glass plate on the front surface of the device housing.

[0013] The aforementioned technical solution allows for an operating table to be installed in front of the temperature control device, primarily for easier operation. Workers can adjust the temperature and view data directly from a standing position, saving time and effort. The buttons and display are integrated into one unit, making operation smoother. Furthermore, the wiring is hidden beneath the table, ensuring a clean and safe environment.

[0014] In a preferred embodiment, a feed inlet fixing block is installed on the upper surface of the device housing near the left edge, and a feed inlet is provided through the interior of the feed inlet fixing block.

[0015] By adopting the above technical solution, a feed port is opened on the top of the temperature control device. The advantage is that it is more convenient for the operator to add materials, and the raw materials flow into the equipment naturally by their own weight, reducing the possibility of pipeline blockage. At the same time, it is not easy to leak around, keeping the workshop clean.

[0016] In a preferred embodiment, an air inlet is provided on the right surface of the device housing near the lower edge, and a filter is provided inside the air inlet.

[0017] By adopting the above technical solution, a filtered air inlet is installed on the side of the temperature control device, which can block dust and impurities in the workshop, prevent them from entering the interior of the equipment and causing damage, reduce parts wear, and the filter can be removed for flushing, improving the convenience of maintenance.

[0018] In a preferred embodiment, a discharge port fixing block is fixedly connected to the center of the lower surface of the equipment housing, and the discharge port is installed at the lower end of the discharge port fixing block.

[0019] By adopting the above technical solution, a discharge port is designed at the bottom of the temperature control device. After the lubricating oil is processed, it flows out of the equipment by its own gravity, eliminating the need for additional power pumping and reducing energy consumption. The bottom structure is convenient for completely emptying the residue and can be rinsed clean during cleaning.

[0020] In a preferred embodiment, the other end of the heat pipe is connected to a heating chamber.

[0021] By adopting the above technical solution, a heating chamber is installed in the feed pipe, and the heat acts directly on the flowing lubricating oil, which is heated evenly. It can also reduce the loss of equipment caused by repeated heating and extend its service life.

[0022] In a preferred embodiment, the upper end of the interior of the heating bin is fixedly connected to a material delivery pipe, and the lower end of the heating bin is fixedly connected to a material delivery pipe base.

[0023] By adopting the above technical solution, the feed pipe is connected to the heating chamber and fixed with a base to ensure that the pipeline will not shake, the interface is not easy to loosen and leak oil, and the heating is more uniform. At the same time, the base is used to support the feed pipe to prevent deformation under long-term high temperature, thereby reducing the number of maintenance times.

[0024] In a preferred embodiment, the lower end of the fan housing is fixedly connected to a fan base.

[0025] By adopting the above technical solution, a special base is installed at the bottom of the fan. Its purpose is to reduce vibration transmission, avoid loosening of other parts, run more quietly and smoothly, and prevent long-term vibration from causing deviation and affecting heat dissipation efficiency.

[0026] In summary, due to the adoption of the above technical solution, the beneficial effects of the present invention are:

[0027] In the present invention, a waste heat recovery structure is added to the temperature control device during the production of wire drawing lubricant. This allows the heat generated during operation to be recovered. For example, during production, the equipment generates a large amount of waste heat. Directly discharging this heat would result in waste. However, after recovery, this heat can be transported through a pipeline to preheat the raw oil, saving energy costs for heating. Simultaneously, the equipment's own heat dissipation pressure is reduced, temperature control is more stable, and the lubricant's quality is less susceptible to temperature fluctuations. Furthermore, the working environment is improved, and workers no longer have to endure high temperatures and oppressive conditions. This design is both environmentally friendly and reduces production costs. BRIEF DESCRIPTION OF THE DRAWINGS

[0028] Figure 1 It is a left view of the external structure of the present invention;

[0029] Figure 2 It is a right side view of the external structure of the present invention;

[0030] Figure 3 Schematic diagram of the internal structure of the device housing in the present invention;

[0031] Figure 4 This is a front view of the waste heat recovery structure of the present invention;

[0032] Figure 5 Schematic diagram of the internal structure of the fan in the present invention;

[0033] Figure 6 This is the rear view of the waste heat recovery structure in the present invention.

[0034] Markings in the figure: 1. Equipment casing; 2. Glass plate; 3. Pillar; 4. Chassis; 5. Air inlet; 6. Feed inlet; 7. Feed inlet fixing block; 8. Operating table; 9. Discharge outlet fixing block; 10. Discharge outlet; 11. Filter; 12. Feed pipe base; 13. Feed pipe; 14. Heating chamber; 15. Heat pipe; 16. Fan base; 17. Heat outlet pipe base; 18. Heat outlet; 19. Fan blade casing; 20. Heat shield; 21. Heat transmission network; 22. Rotating shaft; 23. Fan blade fixing block; 24. Fan blade; 25. Heat outlet pipe; 26. Fan casing; 27. Fixing block; 28. Rotating shaft casing. DETAILED DESCRIPTION

[0035] To make the objectives, technical solutions, and advantages of the embodiments of the present invention more clear, the technical solutions in the embodiments of the present invention will be clearly and completely described below in conjunction with the embodiments of the present invention. Obviously, the described embodiments are only part of the embodiments of the present invention, not all of the embodiments. All other embodiments obtained by ordinary technicians in this field based on the embodiments of the present invention without making any creative efforts shall fall within the scope of protection of the present invention.

[0036] Reference Figure 1-6 ,

[0037] Example:

[0038] A temperature control device for the production and processing of wire drawing lubricating oil, comprising an equipment housing 1, a heat outlet pipe base 17 is provided at the right front end edge of the bottom end of the inner upper surface of the equipment housing 1, the upper end of the heat outlet pipe base 17 is fixedly connected to a heat outlet pipe 25, the front end of the heat outlet pipe 25 is connected to a fan housing 26, a fixed block 27 is installed at the bottom end of the inner circumferential surface of the fan housing 26, a rotating shaft housing 28 is installed on the front surface of the fixed block 27, a heat transfer network 21 is installed at the front end of the rotating shaft housing 28, a heat shield 20 is provided on the outer circumferential surface of the heat transfer network 21, a rotating shaft 22 is rotatably provided at the center position of the front surface of the heat transfer network 21, and the front end of the rotating shaft 22 is installed. A fan blade fixing block 23 is installed, and fan blades 24 are welded to the side circumferential surface of the fan blade fixing block 23. The front edge of the heat transfer network 21 is connected to the fan blade housing 19. The front edge of the fan housing 26 is fixedly connected to the heat pipe 15. The end of the heat pipe 15 is located inside the fan housing 26 and is equipped with a heat outlet 18. In the production of wire drawing lubricating oil, adding a waste heat recovery structure to the temperature control device can recycle the heat generated during operation. For example, during production, the equipment generates a large amount of waste heat. Directly discharging this heat will result in waste. However, after recovery, it can be transported through a pipeline to preheat the raw oil, which can save energy consumption for heating. At the same time, the equipment's own heat dissipation pressure is reduced, temperature control is more stable, and the quality of the lubricating oil is not easily affected by temperature fluctuations. In addition, the environment in the working area will be improved, and operators will not have to endure high temperatures and stuffiness. This design is both environmentally friendly and can reduce production costs.

[0039] The lower surface of the equipment casing 1 is fixedly connected with pillars 3 at the four corners, and a chassis 4 is installed at the end of the pillars 3. A supporting structure is installed at the bottom of the temperature control device to support the equipment to run more stably, especially during high-speed production, to reduce vibration, to prevent loosening of internal parts affecting the temperature control accuracy, and to separate the bottom from the ground by a distance to prevent moisture corrosion or uneven ground from causing the equipment to tilt, thereby extending the service life. Finally, it can facilitate daily maintenance. Workers do not need to lie on the ground to operate, but can directly squat to check the bottom discharge port, which is time-saving and safe.

[0040] A glass plate 2 is provided on the front surface of the equipment housing 1 near the lower edge. By installing a glass plate in front of the temperature control device, the internal temperature changes and the operation status of the machine can be directly seen. Accidents can be discovered in time, and dust and debris can be prevented from entering to affect the accuracy, and workers can be prevented from accidentally touching high-temperature components.

[0041] An operating table 8 is mounted on the front surface of the equipment housing 1, above the glass panel 2. This addition of the operating table in front of the temperature control device facilitates operation. Workers can adjust the temperature and view data directly from a standing position, saving time and effort. The buttons and display are integrated into a single unit, making operation smoother. Furthermore, wiring is concealed beneath the tabletop, ensuring a clean and secure environment.

[0042] A feed port fixing block 7 is installed on the upper surface of the equipment housing 1 near the left edge, and a feed port 6 is provided inside the feed port fixing block 7. The feed port is opened on the top of the temperature control device. The advantage is that it is more convenient for the operator to add materials, and the raw materials flow into the equipment naturally by their own weight, reducing the possibility of pipeline blockage. At the same time, it is not easy to leak around, keeping the workshop clean.

[0043] An air inlet 5 is provided on the right surface of the equipment casing 1 near the lower edge, and a filter 11 is provided inside the air inlet 5. An air inlet with a filter is installed on the side of the temperature control device to block dust and impurities in the workshop, prevent them from entering the interior of the equipment and causing damage, reduce wear on parts, and the filter can be removed for flushing, thereby improving the convenience of maintenance.

[0044] A discharge port fixing block 9 is fixedly connected to the center position of the lower surface of the equipment housing 1, and a discharge port 10 is installed at the lower end of the discharge port fixing block 9. The discharge port is designed at the bottom of the temperature control device. After the lubricating oil is processed, it flows out of the equipment by its own gravity, eliminating the need for additional power pumping and reducing energy consumption. The bottom structure is convenient for completely emptying the residue and can be rinsed clean when cleaning.

[0045] The other end of the heat pipe 15 is connected to the heating chamber 14. By installing a heating chamber in the feed pipe, heat is directly applied to the flowing lubricating oil, which is heated evenly. It can also reduce the loss of equipment caused by repeated heating and extend its service life.

[0046] The upper end of the interior of the heating bin 14 is fixedly connected to a feed pipe 13, and the lower end of the heating bin 14 is fixedly connected to a feed pipe base 12. The feed pipe is connected to the heating bin and fixed with the base to ensure that the pipeline will not shake, the interface is not easy to loosen and leak oil, and the heating is more uniform. At the same time, the base is used to support the feed pipe, so that it will not deform under long-term high temperature and the number of maintenance times is reduced.

[0047] The lower end of the fan housing 26 is fixedly connected to the fan base 16. A special base is installed at the bottom of the fan to reduce vibration transmission, avoid loosening of other parts, run more quietly and smoothly, and prevent long-term shaking from causing deviation and affecting heat dissipation efficiency.

[0048] The implementation principle of an embodiment of a temperature control device for the production and processing of wire drawing lubricating oil according to the present invention is as follows: In the present invention, in the production of wire drawing lubricating oil, a waste heat recovery structure is added to the temperature control device to recover the heat generated during the working process. For example, during production, the equipment will generate a large amount of waste heat. Directly discharging this heat will lead to waste, but after recovery, it can be transported through a pipeline to preheat the raw oil, which can save energy consumption costs for heating. At the same time, the heat dissipation pressure of the equipment itself is reduced, the temperature control is more stable, and the quality of the lubricating oil is not easily affected by temperature fluctuations. In addition, the environment in the working area will also be improved, and the operating workers do not need to endure high temperatures and stuffiness. This design is in line with environmental protection trends and can reduce production costs.

[0049] The above embodiments are only used to illustrate the technical solutions of the present invention, rather than to limit the same. Although the present invention has been described in detail with reference to the aforementioned embodiments, those skilled in the art should understand that they can still modify the technical solutions described in the aforementioned embodiments, or make equivalent replacements for some of the technical features therein. However, these modifications or replacements do not deviate the essence of the corresponding technical solutions from the spirit and scope of the technical solutions of the various embodiments of the present invention.

Claims

1. A temperature control device for producing and processing wire drawing lubricating oil, comprising a device housing (1), characterized in that: A heat outlet pipe base (17) is provided at the right front end edge of the bottom end of the inner upper surface of the equipment housing (1), the upper end of the heat outlet pipe base (17) is fixedly connected to a heat outlet pipe (25), the front end of the heat outlet pipe (25) is connected to a fan housing (26), a fixed block (27) is installed at the bottom end of the inner circumferential surface of the fan housing (26), a rotating shaft housing (28) is installed on the front surface of the fixed block (27), a heat transmission network (21) is installed at the front end of the rotating shaft housing (28), the outer circumferential surface of the heat transmission network (21) is provided with a heat shield (20), and the heat transmission network (21) is provided with a heat shield (20). A rotating shaft (22) is rotatably provided at the center position of the front surface of the heat network (21), a fan blade fixing block (23) is installed at the front end of the rotating shaft (22), and a fan blade (24) is welded to the side circumferential surface of the fan blade fixing block (23). The front surface edge of the heat transmission network (21) is connected to a fan blade housing (19), and the front end edge of the fan housing (26) is fixedly connected to a heat pipe (15), and the end of the heat pipe (15) is located inside the fan housing (26) and is installed with a heat outlet (18), and the other end of the heat pipe (15) is connected to a heating chamber (14).

2. A temperature control device for producing and processing wire drawing lubricating oil according to claim 1, characterized in that: Supports (3) are fixedly connected to the four corners of the lower surface of the equipment housing (1), and a chassis (4) is installed at the ends of the support (3).

3. The temperature control device for producing and processing wire drawing lubricating oil according to claim 1, characterized in that: A glass plate (2) is provided on the front surface of the device housing (1) near the lower edge.

4. The temperature control device for producing and processing wire drawing lubricating oil according to claim 1, characterized in that: An operating table (8) is installed on the front surface of the equipment housing (1) at the upper end of the glass plate (2).

5. The temperature control device for producing and processing wire drawing lubricating oil according to claim 1, characterized in that: A feed port fixing block (7) is installed on the upper surface of the equipment housing (1) near the left edge, and a feed port (6) is provided through the interior of the feed port fixing block (7).

6. The temperature control device for producing and processing wire drawing lubricating oil according to claim 1, characterized in that: An air inlet (5) is provided on the right surface of the device housing (1) near the lower edge, and a filter (11) is provided inside the air inlet (5).

7. The temperature control device for producing and processing wire drawing lubricating oil according to claim 1, characterized in that: A discharge port fixing block (9) is fixedly connected to the center position of the lower surface of the equipment housing (1), and a discharge port (10) is installed at the lower end of the discharge port fixing block (9).

8. The temperature control device for producing and processing wire drawing lubricating oil according to claim 1, characterized in that: The upper end of the interior of the heating bin (14) is fixedly connected to a material delivery pipe (13), and the lower end of the heating bin (14) is fixedly connected to a material delivery pipe base (12).

9. The temperature control device for producing and processing wire drawing lubricating oil according to claim 1, characterized in that: The lower end of the fan housing (26) is fixedly connected to the fan base (16).

Citation Information

Patent Citations

  • Temperature control device for lubricating oil production and processing

    CN222298279U

  • Waste heat recovery device for lubricating oil production

    CN215809324U

  • Distillation tower for regenerating waste lubricating oil

    CN216366649U