Edible oil cooling and conveying device

By introducing a spiral cavity separation structure and temperature control components into the edible oil cooling and conveying device, and combining it with a three-way valve to switch the refrigerant source, the problems of the existing equipment's non-replaceable cooling medium and unstable temperature are solved, achieving flexible cooling and temperature stability, and improving the equipment's adaptability and service life.

CN223375589UActive Publication Date: 2025-09-23WUHAN KITCHEN FOOD CO LTD
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Patent Information

Application Number
CN202423063017.X
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-12-12
Publication Date
2025-09-23
Estimated Expiration
2034-12-12

AI Technical Summary

Technical Problem

Existing edible oil cooling and conveying equipment cannot quickly replace the cooling medium, and the cooling temperature is unstable, which affects the adaptability of the equipment and the life of the pipeline.

Method used

A edible oil cooling and conveying device was designed. Through the spiral cavity separation structure and temperature control component in the sleeve, cooling water or air was used for temperature regulation. The refrigerant source was switched by a three-way valve to achieve rapid change of cooling mode. The edible oil flow rate was adjusted in combination with the temperature control component to stabilize the temperature.

Benefits of technology

It realizes the rapid replacement of cooling medium according to demand, improves the adaptability of equipment, ensures the stability of cooling temperature, avoids the impact of excessively high or low temperature on equipment and energy consumption, and improves cooling efficiency and equipment service life.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses an edible oil cooling and conveying device which comprises a sleeve and an oil pump, one side of the sleeve is provided with an oil conveying assembly, the oil conveying assembly comprises a connecting pipe and an outlet pipe, the connecting pipe is provided with a valve assembly, the valve assembly comprises a brake sleeve and a motor, the other side of the sleeve is provided with a refrigerant assembly, and the refrigerant assembly is connected with the oil pump. The refrigerant assembly comprises an air duct and a fan, a conversion assembly is installed on the air duct and comprises a three-way valve and an inlet, and a separation assembly is installed on the inner side of the sleeve. Different refrigerants can be conveniently replaced for cooling according to field adjustment, the adaptability of equipment is improved, the temperature stability of cooled edible oil is guaranteed, the situation that the service life of an edible oil conveying pipeline and the service life of the equipment are affected due to the too high temperature can be avoided, the situation that conveying energy consumption is increased due to the too low temperature can be avoided, and the service life of the equipment is prolonged. The device is suitable for cooling and conveying edible oil.
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Description

Technical Field

[0001] The utility model relates to the technical field of edible oil cooling and conveying equipment, in particular to an edible oil cooling and conveying device. Background Art

[0002] In order to facilitate the transportation of edible oil, it is often necessary to cool the edible oil before pumping it, and thus an edible oil cooling and conveying device is needed. The utility model patent with patent application number CN202322262428.0 discloses an edible oil cooling and conveying device. A cooling barrel is used on the conveying pipe to cool the oil, which can effectively reduce the temperature of the edible oil and avoid the impact of high temperature on the service life of the conveying pipe. The cooling barrel adopts an open design and continuously stirs the cooling water through stirring blades to make the water temperature of the cooling water uniform at the upper and lower positions, and the heat dissipation and cooling effect is better. A filter plate is provided in the water tank to filter the recovered cooling water to avoid the cooling water scale caused by high temperature clogging the pipe, making the cooling water circulation smoother and less prone to clogging. According to the technical solution disclosed therein, when the existing edible oil cooling and conveying equipment is in use, on the one hand, it is not possible to quickly replace different cooling media as needed, which is not conducive to improving the adaptability of the equipment. On the other hand, during the cooling and cooling work, it is impossible to ensure the temperature stability after cooling, which is easy to affect the service life of the pipe due to high temperature, or increase the transportation energy consumption due to too low temperature.

[0003] Therefore, how to design a edible oil cooling and conveying device has become our current problem to be solved. Utility Model Content

[0004] In view of the shortcomings of the existing technology, the purpose of this utility model is to provide an edible oil cooling and conveying device to solve the problems raised in the above background technology. The utility model has a reasonable design and is convenient to use, and is suitable for cooling and conveying edible oil.

[0005] To achieve the above-mentioned purpose, the utility model provides the following technical solutions: a cooking oil cooling and conveying device, comprising a sleeve and an oil pump, an oil delivery component installed on one side of the sleeve, the oil delivery component including a connecting pipe and an outlet pipe, a valve component installed on the connecting pipe, the valve component including a gate sleeve and a motor, a refrigerant component installed on the other side of the sleeve, the refrigerant component including a wind tube and a fan, a conversion component installed on the wind tube, the conversion component including a three-way valve and an inlet, a partition component installed on the inner side of the sleeve, the partition component including screw plate 1 and screw plate 2, a temperature control component installed on the outlet pipe, the temperature control component including a guide sleeve and a sliding sleeve.

[0006] Furthermore, one end of the connecting pipe is welded to the oil pump, the other end of the connecting pipe is welded to one side of one end of the sleeve, the brake sleeve is welded to the outer side of the connecting pipe, and the motor is installed on the outer side of the brake sleeve by bolts.

[0007] Furthermore, a gate plate is clamped on the inner side of the connecting pipe, one end of the gate plate extends to the inner side of the gate sleeve, a screw rod is welded on the output shaft of the motor, a threaded opening is opened on the inner side of the gate plate, and one end of the screw rod is installed on the inner side of the threaded opening through a thread.

[0008] Furthermore, the outlet pipe is welded to one side of the other end of the sleeve, the guide sleeve is installed on the inner side of the outlet pipe, the sliding sleeve is welded on the guide sleeve, one end of the sliding sleeve extends to the outer side of the outlet pipe, and the sliding sleeve is connected to the guide sleeve.

[0009] Furthermore, the outer sides of the screw plate 1 and the screw plate 2 are welded to the inner wall of the sleeve, and the screw plate 1 and the screw plate 2 separate the inner side of the sleeve into spiral cavity 1 and spiral cavity 2, and the connecting pipe is connected to the outlet pipe through the spiral cavity 1.

[0010] Furthermore, a discharge port is welded on the other side of one end of the sleeve, and a through port is opened on the other side of the other end of the sleeve, and the through port is connected to the discharge port through spiral chamber 2. The three-way valve is welded on the other side of the other end of the sleeve, the air duct is welded on one side of the three-way valve, and the inlet is welded on the other side of the three-way valve.

[0011] Furthermore, the through port is connected to the air duct or the inlet through a three-way valve, the fan is installed on the inner side of the air duct through bolts, and a partition net is installed on the outer side of the air duct through bolts.

[0012] Furthermore, a piston is clamped on the inner side of the sleeve, and button one and button two are installed on the inner wall of the sleeve by bolts, and button one and button two are distributed on both sides of the piston. An external switch group is connected to the sleeve, and the switch group is connected to button one, button two, an oil pump and a fan through wires, and button one and button two are connected to the motor through wires.

[0013] The edible oil cooling and conveying device is provided with a cooling water pump, and the cooling water is directly fed into the condenser through the condenser tube, and the condenser tube is cooled and the condenser tube is cooled. When the condenser tube is cooled, the condenser tube is cooled and the condenser tube is cooled. When the condenser tube is cooled, the condenser tube is cooled and the condenser tube is cooled. When the condenser tube is cooled, the condenser tube is cooled and the condenser tube is cooled.

[0014] 2. When the edible oil cooling and conveying device is in use, when the cooled edible oil is conveyed outward through the outlet pipe, the heat of the edible oil is conducted to the inner side of the guide sleeve. When the temperature of the edible oil in the outlet pipe is high, the air in the guide sleeve expands, and the expanded air pushes the piston to the left on the inner side of the sliding sleeve. The piston squeezes button one, and button one opens the motor in the positive direction. The motor pushes the gate plate from the inner side of the gate sleeve to the inner side of the connecting pipe through the screw rod, closing the opening of the connecting pipe, thereby reducing the flow rate of the edible oil and improving the cooling effect of the edible oil. When the temperature of the edible oil is low, the piston squeezes button two to the right, and button two opens the motor in the reverse direction. The motor drives the gate plate to increase the opening of the connecting pipe through the screw rod, thereby increasing the flow rate of the edible oil, which can effectively ensure the temperature stability of the cooled edible oil, avoid affecting the service life of the edible oil conveying pipeline and equipment due to excessively high temperature, and avoid increasing the conveying energy consumption due to excessively low temperature.

[0015] 3. The edible oil cooling and conveying device is reasonably designed, efficient and convenient to use, and is suitable for cooling and conveying edible oil. BRIEF DESCRIPTION OF THE DRAWINGS

[0016] Figure 1 This is a structural diagram of an edible oil cooling and conveying device of the utility model;

[0017] Figure 2 This is a cross-sectional view of an edible oil cooling and conveying device according to the present invention;

[0018] Figure 3 This is a structural diagram of a sliding sleeve of an edible oil cooling and conveying device of the present invention;

[0019] In the figure: 1. Sleeve; 2. Oil pump; 3. Connecting pipe; 4. Gate sleeve; 5. Motor; 6. Gate plate; 7. Screw rod; 8. Outlet pipe; 9. Air duct; 10. Partition screen; 11. Fan; 12. Three-way valve; 13. Inlet; 14. Outlet; 15. Screw plate 1; 16. Screw plate 2; 17. Guide sleeve; 18. Sliding sleeve; 19. Piston; 20. Button 1; 21. Button 2. DETAILED DESCRIPTION

[0020] 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.

[0021] See also Figures 1 to 3The utility model provides a technical solution: an edible oil cooling and conveying device, comprising a sleeve 1 and an oil pump 2, an oil delivery component is installed on one side of the sleeve 1, the oil delivery component comprises a connecting pipe 3 and an outlet pipe 8, a valve component is installed on the connecting pipe 3, the valve component comprises a gate sleeve 4 and a motor 5, a refrigerant component is installed on the other side of the sleeve 1, the refrigerant component comprises a wind tube 9 and a fan 11, a conversion component is installed on the wind tube 9, the conversion component comprises a three-way valve 12 and an inlet 13, a partition component is installed on the inner side of the sleeve 1, the partition component comprises a screw plate 15 and a screw plate 2 16, and a The temperature control component includes a guide sleeve 17 and a sliding sleeve 18. One end of the connecting pipe 3 is welded to the oil pump 2, and the other end of the connecting pipe 3 is welded to one side of one end of the sleeve 1. The brake sleeve 4 is welded to the outer side of the connecting pipe 3. The motor 5 is installed on the outer side of the brake sleeve 4 by bolts. The inner side of the connecting pipe 3 is clamped with a gate plate 6, and one end of the gate plate 6 extends to the inner side of the gate sleeve 4. A screw rod 7 is welded on the output shaft of the motor 5. A threaded port is opened on the inner side of the gate plate 6, and one end of the screw rod 7 is installed on the inner side of the threaded port by thread. A piston 19 is clamped on the inner side of the sliding sleeve 18, and the inner wall of the sliding sleeve 18 is fixed by bolts. A button 1 20 and a button 2 21 are provided, and the button 1 20 and the button 2 21 are distributed on both sides of the piston 19. The sleeve 1 is externally connected to a switch group, and the switch group is connected to the button 1 20, the button 2 21, the oil pump 2 and the fan 11 through wires. The button 1 20 and the button 2 21 are both connected to the motor 5 through wires. When the cooled cooking oil is transported outward through the outlet pipe 8, the heat of the cooking oil is conducted to the inner side of the guide sleeve 17. When the temperature of the cooking oil in the outlet pipe 8 is high, the air in the guide sleeve 17 expands, and the expanded air pushes the piston 19 to the left on the inner side of the sliding sleeve 18, and the piston 19 squeezes the button 1 20 and the button 2 21. 0 opens the motor 5 in the forward direction, and the motor 5 pushes the gate plate 6 from the inner side of the gate sleeve 5 to the inner side of the connecting pipe 3 through the screw rod 7, thereby closing the opening of the connecting pipe 3, thereby reducing the flow rate of the cooking oil and improving the cooling effect of the cooking oil. When the temperature of the cooking oil is low, the piston 19 presses the button 2 21 to the right, and the button 2 21 opens the motor 5 in the reverse direction, and the motor 5 drives the gate plate 6 to increase the opening of the connecting pipe 3 through the screw rod 7, thereby increasing the flow rate of the cooking oil. This can effectively ensure the temperature stability of the cooled cooking oil, avoid affecting the service life of the cooking oil transportation pipeline and equipment due to excessively high temperature, and avoid increasing the transportation energy consumption due to excessively low temperature.

[0022] In this embodiment, the outlet pipe 8 is welded to one side of the other end of the sleeve 1, the guide sleeve 17 is installed on the inner side of the outlet pipe 8, the sliding sleeve 18 is welded on the guide sleeve, one end of the sliding sleeve 18 extends to the outside of the outlet pipe 8, the sliding sleeve 18 is connected to the guide sleeve 17, the outer sides of the screw plate 15 and the screw plate 2 16 are welded to the inner wall of the sleeve 1, the screw plate 15 and the screw plate 2 16 divide the inner side of the sleeve 1 into a spiral cavity 1 and a spiral cavity 2, the connecting pipe 3 is connected to the outlet pipe 8 through the spiral cavity 1, and the sleeve 1 is welded with a discharge port 14 on the other side of one end, and a through port is opened on the other side of the other end of the sleeve 1, and the through port is connected to the discharge port 14 through the spiral cavity 2. The three-way valve 12 is welded to the other side of the other end of the sleeve 1, and the wind tube 9 is welded to one side of the three-way valve 12. The inlet 13 is welded to the other side of the three-way valve 12. The through port is connected to the wind tube 9 or the inlet 13 respectively through the three-way valve 12. The fan 11 is installed on the inner side of the wind tube 9 by bolts, and the outer side of the wind tube 9 is installed by bolts. Equipped with a partition 10, when in use, the oil pump 2 pumps the cooking oil to the inside of the sleeve 1 through the connecting pipe 3, and flows along the spiral cavity 1 separated by the screw plate 15 and the screw plate 2 16 in the sleeve 1, flows out through the outlet pipe 8, and transports the cooking oil. When the temperature is high or the heat of the cooking oil needs to be recovered, the inlet 13 is connected to the cooling water source, and the three-way valve 12 is turned to connect the inlet 13 with the sleeve 1, and the cooling water flows through the spiral cavity 2 separated by the screw plate 15 and the screw plate 2 16, and flows out through the screw plate 8. Plate 1 15 and spiral plate 2 16 absorb the heat of the cooking oil in spiral chamber 1, and hot water is discharged through the outlet 14, which can increase the cooling speed and facilitate the recovery and reuse of heat energy. When heat recovery is not needed, the three-way valve 12 is turned to connect the air duct 9 with the sleeve 1, and the fan 11 transports air to the inside of spiral chamber 2 to cool the cooking oil, saving water consumption, and then different refrigerants can be replaced for cooling according to the work needs on site, thereby improving the adaptability of the equipment.

[0023] The edible oil cooling and conveying device provides electric energy for all electrical equipment through an external power supply. When in use, the oil pump 2 pumps the edible oil to the inner side of the sleeve 1 through the connecting pipe 3, and flows along the spiral cavity 1 separated by the spiral plate 15 and the spiral plate 2 16 in the sleeve 1, flows out through the outlet pipe 8, and conveys the edible oil. When the temperature is high or the heat of the edible oil needs to be recovered, the inlet 13 is connected to the cooling water source, and the three-way valve 12 is rotated to connect the inlet 13 with the sleeve 1, and the cooling water flows through the spiral plate 15 and the sleeve 1. The hot water flows through the spiral chamber 2 separated by the first and second spiral plates 15 and 16, and absorbs the heat of the cooking oil in the spiral chamber 1 through the spiral plates 15 and 16, and the hot water is discharged through the outlet 14, which can increase the cooling speed and facilitate the recovery and reuse of heat energy. When heat recovery is not needed, the three-way valve 12 is turned to connect the air cylinder 9 with the sleeve 1, and the fan 11 conveys air to the inner side of the spiral chamber 2 to cool the cooking oil, saving water consumption, and then can be carried out according to the work needs on site. Different refrigerants are replaced for cooling and temperature reduction to improve the adaptability of the equipment. When the cooled cooking oil is transported outward through the outlet pipe 8, the heat of the cooking oil is conducted to the inner side of the guide sleeve 17. When the temperature of the cooking oil in the outlet pipe 8 is high, the air in the guide sleeve 17 expands. The expanded air pushes the piston 19 to the left on the inner side of the sliding sleeve 18. The piston 19 squeezes the button 20. The button 20 opens the motor 5 in the positive direction. The motor 5 pushes the gate 6 on the inner side of the gate sleeve 5 toward the inner side of the connecting pipe 3 through the screw rod 7, closing the small connecting pipe. The opening of the tube 3 is increased, thereby reducing the flow rate of the cooking oil and improving the cooling effect of the cooking oil. When the temperature of the cooking oil is low, the piston 19 squeezes the button 21 to the right, and the button 21 reversely opens the motor 5. The motor 5 drives the gate 6 through the screw rod 7 to increase the opening of the connecting tube 3, thereby increasing the flow rate of the cooking oil. It can effectively ensure the temperature stability of the cooled cooking oil, avoid affecting the service life of the cooking oil transportation pipeline and equipment due to excessively high temperature, and avoid increasing the transportation energy consumption due to excessively low temperature.

[0024] In addition, it should be understood that although this specification is described in terms of implementation methods, not every implementation method contains only one independent technical solution. This narrative method of the specification is only for the sake of clarity. Those skilled in the art should regard the specification as a whole. The technical solutions in each embodiment can also be appropriately combined to form other implementation methods that can be understood by those skilled in the art.

Claims

1. An edible oil cooling and conveying device, comprising a sleeve (1) and an oil pump (2), an oil delivery assembly being installed on one side of the sleeve (1), the oil delivery assembly comprising a connecting pipe (3) and an outlet pipe (8), a valve assembly being installed on the connecting pipe (3), the valve assembly comprising a gate sleeve (4) and a motor (5), and characterized in that: A refrigerant assembly is installed on the other side of the sleeve (1), and the refrigerant assembly includes a wind tube (9) and a fan (11). A conversion assembly is installed on the wind tube (9), and the conversion assembly includes a three-way valve (12) and an inlet (13). A partition assembly is installed on the inner side of the sleeve (1), and the partition assembly includes a screw plate 1 (15) and a screw plate 2 (16). A temperature control assembly is installed on the outlet pipe (8), and the temperature control assembly includes a guide sleeve (17) and a sliding sleeve (18).

2. The edible oil cooling and conveying device according to claim 1, characterized in that: One end of the connecting pipe (3) is welded to the oil pump (2), the other end of the connecting pipe (3) is welded to one side of one end of the sleeve (1), the brake sleeve (4) is welded to the outer side of the connecting pipe (3), and the motor (5) is mounted on the outer side of the brake sleeve (4) by bolts.

3. The edible oil cooling and conveying device according to claim 2, characterized in that: A gate plate (6) is clamped on the inner side of the connecting pipe (3), one end of the gate plate (6) extends to the inner side of the gate sleeve (4), a screw rod (7) is welded on the output shaft of the motor (5), a threaded opening is opened on the inner side of the gate plate (6), and one end of the screw rod (7) is installed on the inner side of the threaded opening through a thread.

4. The edible oil cooling and conveying device according to claim 3, characterized in that: The outlet pipe (8) is welded to one side of the other end of the sleeve (1), the guide sleeve (17) is installed on the inner side of the outlet pipe (8), the sliding sleeve (18) is welded to the guide sleeve, one end of the sliding sleeve (18) extends to the outer side of the outlet pipe (8), and the sliding sleeve (18) is connected to the guide sleeve (17).

5. The edible oil cooling and conveying device according to claim 1, characterized in that: The outer sides of the screw plate 1 (15) and the screw plate 2 (16) are welded to the inner wall of the sleeve (1). The screw plate 1 (15) and the screw plate 2 (16) divide the inner side of the sleeve (1) into spiral cavity 1 and spiral cavity 2. The connecting pipe (3) is connected to the outlet pipe (8) through the spiral cavity 1.

6. The edible oil cooling and conveying device according to claim 5, characterized in that: A discharge port (14) is welded to the other side of one end of the sleeve (1), a through port is opened on the other side of the other end of the sleeve (1), and the through port is connected to the discharge port (14) through the second spiral cavity. The three-way valve (12) is welded to the other side of the other end of the sleeve (1), the air cylinder (9) is welded to one side of the three-way valve (12), and the inlet (13) is welded to the other side of the three-way valve (12).

7. The edible oil cooling and conveying device according to claim 6, characterized in that: The opening is connected to the air duct (9) or the inlet (13) respectively through a three-way valve (12); the fan (11) is installed on the inner side of the air duct (9) through bolts; and a partition net (10) is installed on the outer side of the air duct (9) through bolts.

8. The edible oil cooling and conveying device according to claim 7, characterized in that: A piston (19) is clamped on the inner side of the sliding sleeve (18), and a button 1 (20) and a button 2 (21) are installed on the inner wall of the sliding sleeve (18) by bolts. The button 1 (20) and the button 2 (21) are distributed on both sides of the piston (19). An external switch group is connected to the sleeve (1), and the switch group is connected to the button 1 (20), the button 2 (21), the oil pump (2) and the fan (11) through electric wires. The button 1 (20) and the button 2 (21) are both connected to the motor (5) through electric wires.

Citation Information

Patent Citations

  • Edible oil cooling and conveying device

    CN220668753U