Cooling device for sesame oil production
By using a combination of a thermal plate and a semiconductor refrigeration sheet in the cooling device for sesame oil production, the problem of difficult to control the temperature difference caused by the long length of the cooling tube and the bending shape is solved, and uniform cooling and precise control of sesame oil are achieved.
Patent Information
- Application Number
- CN202421913831.3
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-08-08
- Publication Date
- 2025-05-27
- Estimated Expiration
- 2034-08-08
AI Technical Summary
In the existing cooling device for sesame oil production, since the cooling tube is long and has multiple curved shapes, it is difficult to accurately regulate the temperature difference between a section of the cooling tube that initially contacts high-temperature sesame oil and the subsequent cooling tube, which affects the accuracy of sesame oil cooling.
A cooling device for sesame oil production including a frame, a baffle, a water inlet pipe, a thermal plate and a semiconductor refrigeration sheet is designed. The thermally conductive plate transfers the heat emitted by sesame oil to the semiconductor refrigeration sheet, and dissipates heat through the semiconductor refrigeration sheet to achieve uniform cooling of sesame oil.
Through the combination of the thermal conductivity plate and the semiconductor refrigeration sheet, even cooling of sesame oil can be achieved, improving the accuracy and efficiency of sesame oil cooling.
Smart Images

Figure CN222912084U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to the field of sesame oil production, in particular to a cooling device for sesame oil production. Background Art
[0002] Sesame oil, also known as sesame oil, is a vegetable oil extracted from sesame seeds. The sesame seeds are roasted or fried to enhance the aroma, and then the oil is obtained by pressing or solvent extraction.
[0003] According to a cooling device for sesame oil production with patent authorization announcement number CN214032375U, the cooling device comprises a box, a support frame is fixedly provided in the middle of one side of the box, a water tank is fixedly provided on one side of the top of the support frame, a cooling component is fixedly provided inside the box, and the cooling component comprises a water delivery pump, a water delivery pipe, a water outlet pipe and a plurality of nozzles, an oil inlet bucket is fixedly provided on the top of the other side of the box, a cooling box is fixedly provided at the bottom of the box, and the oil outlet of the oil inlet bucket is fixedly connected to the inside of the cooling box through a cooling pipe. When cooling the sesame oil, the above patent transports the cooling water inside the water storage tank to the water outlet pipe through the water delivery pump, and then sprays it to the cooling pipe through the nozzle, so as to cool the sesame oil inside the cooling pipe, so that the sesame oil can be evenly cooled. However, in the process of cooling the sesame oil, since the cooling pipe is long and presents multiple curved shapes, the temperature difference between a section of the cooling pipe that initially contacts the high-temperature sesame oil and the subsequent cooling pipe is difficult to achieve precise control, thereby affecting the accuracy of cooling the sesame oil.
[0004] In view of the above-mentioned existing patents, it is necessary to design a cooling device for sesame oil production that can evenly cool sesame oil. Utility Model Content
[0005] In order to overcome the disadvantage that the temperature difference between a section of the cooling pipe that initially contacts the high-temperature sesame oil and the subsequent cooling pipes is difficult to accurately control due to the cooling pipe being long and presenting multiple bends, the utility model provides a cooling device for sesame oil production.
[0006] The technical solution of the utility model is as follows: a cooling device for sesame oil production comprises a frame, a baffle, a water inlet pipe, a heat conduction plate and a semiconductor refrigeration sheet, wherein the baffle is installed on the front side of the frame, a group of water inlet pipes is arranged on the right side of the frame, two water inlet pipes in the same group are arranged with an interval up and down, heat conduction plates are symmetrically arranged on both sides of the frame, the two heat conduction plates are embedded in the frame, and semiconductor refrigeration sheets are installed on the sides of the two heat conduction plates away from each other.
[0007] Further explanation: It also includes a water inlet pipe, a connecting cylinder, a return pipe, a refrigerator, and a communicating pipe. The front side of the baffle is connected with the water inlet pipe and the return pipe. Both the water inlet pipe and the return pipe pass through the baffle, and the water inlet pipe and the return pipe are symmetrically arranged. One end of the return pipe close to the water inlet pipe is connected with the connecting cylinder, one end of the water inlet pipe close to the return pipe is connected with the refrigerator, and the refrigerator and the connecting cylinder are connected through the communicating pipe.
[0008] Further explanation: It also includes an electric impeller, and the electric impeller is installed inside the connecting cylinder.
[0009] Further explanation: It also includes a partition plate. The middle part inside the frame body is provided with a partition plate. The partition plate is located between the two water inlet pipes. The inside of the partition plate is hollow, and both the water inlet pipe and the return pipe are located in the middle hollow part of the partition plate.
[0010] Further explanation: It also includes barrier water wheels. Three groups of barrier water wheels are arranged on both sides inside the frame body, and the two barrier water wheels in the same group are arranged at intervals up and down.
[0011] Further explanation: A channel for liquid to flow is provided between the left side of the partition plate and the inner wall of the frame body.
[0012] The beneficial effect of the present utility model is that through the cooperation of the heat conducting plate and the semiconductor refrigeration sheet, the heat conducting plate can transfer the heat dissipated by the sesame oil to the semiconductor refrigeration sheet, and then the semiconductor refrigeration sheet dissipates the transferred heat, so as to achieve the effect of uniformly cooling the sesame oil. Description of the Drawings
[0013] Figure 1 It is a three-dimensional structural schematic diagram of the present utility model.
[0014] Figure 2 It is a three-dimensional structural schematic diagram of components such as the connecting cylinder, the return pipe, and the refrigerator of the present utility model.
[0015] Figure 3 It is a cross-sectional view of the frame body, the heat conducting plate, and the semiconductor refrigeration sheet of the present utility model.
[0016] Figure 4 It is a three-dimensional structural schematic diagram of components such as the semiconductor refrigeration sheet, the partition plate, and the barrier water wheels of the present utility model.
[0017] Marks in the drawings: 1: frame body, 111: baffle, 2: water inlet pipe, 3: heat conducting plate, 4: semiconductor refrigeration sheet, 5: water inlet pipe, 6: connecting cylinder, 7: return pipe, 8: refrigerator, 9: electric impeller, 10: partition plate, 11: barrier water wheel, 12: communicating pipe. Detailed Embodiment
[0018] The present utility model will be further described below in conjunction with specific embodiments. The schematic embodiments and descriptions of this utility model are used to explain the present utility model, but do not limit the present utility model.
[0019] A cooling device for sesame oil production, as Figures 1 - 4 shown, includes a frame 1, a baffle 111, a water inlet pipe 2, a heat conduction plate 3, a semiconductor refrigeration sheet 4, a water inlet tube 5, a connecting cylinder 6, a return pipe 7, a refrigerator 8, an electric impeller 9, a partition plate 10, a blocking water wheel 11 and a communicating pipe 12. A baffle 111 is installed on the front side of the frame 1. A group of water inlet pipes 2 are arranged on the right side of the frame 1. The two water inlet pipes 2 in the same group are arranged at an upper and lower interval. The upper water inlet pipe 2 can allow sesame oil to flow in, and the lower water inlet pipe 2 can discharge the cooled sesame oil, so as to collect the cooled sesame oil. Heat conduction plates 3 are symmetrically arranged on the upper and lower sides of the frame 1. Both heat conduction plates 3 are embedded in the frame 1. Semiconductor refrigeration sheets 4 are arranged on the sides of the two heat conduction plates 3 away from each other. Through the cooperation of the heat conduction plate 3 and the semiconductor refrigeration sheet 4, the heat conduction plate 3 can transfer the heat dissipated by the sesame oil to the semiconductor refrigeration sheet 4, and the semiconductor refrigeration sheet 4 dissipates the heat, so as to achieve the effect of cooling the sesame oil. The front side of the baffle 111 is connected with a water inlet tube 5 and a return pipe 7. Both the water inlet tube 5 and the return pipe 7 pass through the baffle, and the water inlet tube 5 and the return pipe 7 are symmetrically arranged. One end of the return pipe 7 close to the water inlet tube 5 is connected with a connecting cylinder 6. One end of the water inlet tube 5 close to the return pipe 7 is connected with a refrigerator 8. The refrigerator 8 uses the principles of energy conversion and phase change of substances to effectively transfer and dissipate heat, so as to maintain the low temperature state inside the system. An electric impeller 9 is installed inside the connecting cylinder 6. Starting the operation of the electric impeller 9 can generate suction, so that the coolant that absorbs heat flows through the return pipe 7 to the connecting cylinder 6, and then flows into the refrigerator 8 through the communicating pipe 12. The refrigerator 8 cools the coolant that absorbs heat. The refrigerator 8 is connected with the connecting cylinder 6 through the communicating pipe 12. A partition plate 10 is arranged in the middle of the frame 1. The partition plate 10 is made of aluminum material. The inside of the partition plate 10 is hollow. The partition plate 10 divides the frame 1 into upper and lower layers. The partition plate 10 is located between the two water inlet pipes 2, and both the water inlet tube 5 and the return pipe 7 are located in the hollow part in the middle of the partition plate 10. The hollow part in the middle of the partition plate 10 is filled with coolant. A channel for liquid flow is provided between the left side of the partition plate 10 and the inner wall of the frame 1, which is convenient for the sesame oil in the upper layer to flow to the lower layer through the channel. Three groups of blocking water wheels 11 are arranged on both sides inside the frame 1. The two blocking water wheels 11 in the same group are arranged at an upper and lower interval. When the sesame oil flows, the blocking water wheels 11 can be rotated by the sesame oil to slow down the flow rate of the sesame oil.
[0020] When the device needs to be used, the staff connects the discharge pipe on the discharge device to the upper water inlet pipe 2. Subsequently, sesame oil flows into the upper water inlet pipe 2 through the discharge pipe. Since the partition plate 10 divides the interior of the frame 1 into upper and lower layers, during the flow of sesame oil, the sesame oil first flows to the upper layer and then continues to flow leftward. At the same time, the sesame oil will contact the upper barrier water wheel 11 and push the upper barrier water wheel 11 to rotate, thereby slowing down the flow rate of the sesame oil so that the heat of the sesame oil can be transferred to the upper heat conduction plate 3. After that, the heat will be dissipated through the upper semiconductor refrigeration sheet 4, so that the temperature of the sesame oil gradually decreases. Until the sesame oil reaches the channel for liquid circulation, it will flow from the channel to the lower layer. Next, the sesame oil will flow rightward. During this process, the sesame oil will contact the lower barrier water wheel 11 and push the lower barrier water wheel 11 to rotate, further slowing down the flow rate of the sesame oil. At this time, the remaining heat in the sesame oil can be transferred to the lower heat conduction plate 3, and then the remaining heat is dissipated through the lower semiconductor refrigeration sheet 4, thus realizing the cooling of the sesame oil. During the cooling process of the sesame oil, since the partition plate 10 is pre-filled with coolant and the partition plate 10 is made of aluminum profile, the partition plate 10 can absorb and transfer the heat dissipated by the sesame oil to the coolant while the sesame oil is flowing. To accelerate this process, the staff starts the electric impeller 9 and the refrigerator 8. The rotation of the electric impeller 9 generates suction, which will cause the coolant that has absorbed heat to flow through the return pipe 7 to the connecting cylinder 6, and then through the connecting cylinder 6 to the refrigerator 8. The refrigerator 8 will cool the coolant that has absorbed heat to the initial temperature, and then these coolants will flow back into the interior of the partition plate 10 through the water inlet pipe 5 to form a cycle, ensuring that the sesame oil is evenly cooled. When the sesame oil completes the cooling operation, the staff turns off the electric impeller 9 and the refrigerator 8. Subsequently, the cooled sesame oil can be discharged through the lower water inlet pipe 2, facilitating the staff to collect the cooled sesame oil.
[0021] Although the present disclosure has been described only with respect to a limited number of embodiments, those skilled in the art who benefit from the present disclosure will understand that various other embodiments can be designed without departing from the scope of the present invention. Therefore, the scope of the present invention should be limited only by the appended claims.
Claims
1. A cooling device for sesame oil production, characterized in that: The invention comprises a frame (1), a baffle (111), a water inlet pipe (2), a heat conduction plate (3) and a semiconductor cooling sheet (4); the baffle (111) is installed on the front side of the frame (1); a group of water inlet pipes (2) is arranged on the right side of the frame (1); two water inlet pipes (2) in the same group are arranged with an interval up and down; heat conduction plates (3) are symmetrically arranged on both sides of the frame (1); the two heat conduction plates (3) are both embedded in the frame (1); and semiconductor cooling sheets (4) are both arranged on the sides of the two heat conduction plates (3) away from each other.
2. A cooling device for sesame oil production according to claim 1, characterized in that: The invention also comprises a water inlet pipe (5), a connecting tube (6), a return pipe (7), a refrigerator (8) and a connecting pipe (12); the front side of the baffle (111) is connected with the water inlet pipe (5) and the return pipe (7); the water inlet pipe (5) and the return pipe (7) both pass through the baffle (111); the water inlet pipe (5) and the return pipe (7) are symmetrically arranged; one end of the return pipe (7) close to the water inlet pipe (5) is connected with the connecting tube (6); one end of the water inlet pipe (5) close to the return pipe (7) is connected with the refrigerator (8); and the refrigerator (8) and the connecting tube (6) are connected via the connecting pipe (12).
3. A cooling device for sesame oil production according to claim 2, characterized in that: It also includes an electric impeller (9), which is installed inside the connecting cylinder (6).
4. A cooling device for sesame oil production according to claim 3, characterized in that: The invention also comprises a partition plate (10), which is arranged in the middle of the frame (1), and is located between the two water inlet pipes (2). The interior of the partition plate (10) is hollow, and the water inlet pipe (5) and the return pipe (7) are both located in the hollow part in the middle of the partition plate (10).
5. A cooling device for sesame oil production according to claim 4, characterized in that: It also includes a barrier water wheel (11). Three groups of barrier water wheels (11) are arranged on both sides of the inner side of the frame (1), and two barrier water wheels (11) in the same group are arranged at an interval up and down.
6. A cooling device for sesame oil production according to claim 5, characterized in that: A channel for liquid circulation is provided between the left side of the partition plate (10) and the inner wall of the frame (1).
Citation Information
Patent Citations
Cooling device for sesame oil production
CN214032375U