Oil mixing, stirring and pumping system

By designing an oil mixing and pumping system, combined with multiple devices, efficient mixing and spraying of seaweed products is achieved, solving the problems of multiple devices, large footprint, and long processing time in existing technologies, and realizing efficient processing of seaweed products.

CN223615787UActive Publication Date: 2025-12-02QINQIN INC CO LTD FUJIAN +1
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Patent Information

Application Number
CN202423120472.9
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-12-17
Publication Date
2025-12-02
Estimated Expiration
2034-12-17

AI Technical Summary

Technical Problem

The current seaweed food processing process requires multiple independent devices, resulting in long processing time, large footprint, and complex process.

Method used

Design an oil mixing and pumping system, including an oil mixing and stirring device, a pumping device, a raw material conveying device, a mixing and processing device, a finished product conveying device, and a drying device. The combined use of these devices achieves oil mixing and uniform spraying, simplifying the processing procedure.

Benefits of technology

By simplifying equipment and processes, shortening processing time, and reducing floor space, efficient mixing and uniform spraying of oils can be achieved.

✦ Generated by Eureka AI based on patent content.

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Patent Text Reader

Abstract

The utility model relates to an oil mixing, stirring and pumping system which comprises an oil mixing and stirring device, a pumping device, a raw material conveying device, a mixing and processing device, a finished product conveying device and a drying device. The oil mixing and stirring device is connected with the pumping device through a metal wire soft conveying pipeline, the output end of the raw material conveying device faces an input port of the mixing and processing device, and the bearing end of the finished product conveying device is arranged on the lower side of the mixing and processing device. The bearing end of the finished product conveying device is used for bearing finished products poured from the output port of the mixing processing device, and the output end of the finished product conveying device is arranged towards the input end of the drying device. And then the oil mixture is uniformly sprayed on the semi-finished product, so that the food processing process can be simplified, processing devices are reduced, and the processing time is shortened.
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Description

Technical Field

[0001] This application relates to the field of food processing technology, and in particular to an oil mixing and pumping system. Background Technology

[0002] In the processing of seaweed products, semi-finished seaweed products need to be sprayed with oil, sprinkled with powder, sprayed with sugar, and have powdered seaweed flakes added to obtain the finished seaweed products. However, in the existing technology, separate oil spraying devices, separate powder sprinkling devices, separate sugar spraying devices, and separate devices for adding powdered seaweed flakes are often used. Therefore, it requires a long processing time and the processing process is relatively complicated. At the same time, since multiple independent devices are used to complete the processing of seaweed products, the area occupied is large. Utility Model Content

[0003] To address the problems of existing technologies, this application provides a technical solution for an oil mixing and pumping system. Specifically, this application includes an oil mixing and stirring device, a pumping device, a raw material conveying device, a mixing and processing device, a finished product conveying device, and a drying device. The oil mixing and stirring device mixes oil and materials to obtain an oil mixture. The resulting oil mixture is then pumped to the mixing and processing device for uniform mixing with the semi-finished product conveyed by the raw material conveying device. Finally, the finished product is conveyed to the drying device to obtain the dried product. Therefore, the solution provided by this application allows for the initial mixing of the required oil, materials, and powdered seaweed flakes to obtain an oil mixture. The oil mixture is then uniformly sprayed onto the semi-finished product, simplifying the food processing process, reducing the number of processing devices, and shortening the processing time.

[0004] This application provides an oil mixing and pumping system, including an oil mixing and stirring device, a pumping device, a raw material conveying device, a mixing and processing device, a finished product conveying device, and a drying device;

[0005] The oil mixing and stirring device is connected to the pumping device via a flexible metal wire conveying pipe. The output end of the raw material conveying device is positioned facing the input port of the mixing and processing device. The bearing end of the finished product conveying device is positioned below the mixing and processing device. The bearing end of the finished product conveying device is used to carry the finished product poured from the output port of the mixing and processing device. The output end of the finished product conveying device is positioned facing the input end of the drying device.

[0006] Furthermore, the raw material conveying device includes a raw material conveying mechanism, a raw material carrying mechanism, and a sugar dispensing mechanism;

[0007] One end of the raw material conveying mechanism is used to place the raw material container, the other end of the raw material conveying mechanism is set towards the inlet of the raw material carrying mechanism, the outlet of the raw material carrying mechanism is set towards the input port of the mixing and processing device, and the outlet of the sugar dispensing mechanism is set towards the input port of the mixing and processing device.

[0008] Furthermore, it also includes a control module, and the oil mixing and stirring device, the pumping device, the raw material conveying device, the mixing and processing device, the finished product conveying device, and the drying device are all electrically connected to the control module.

[0009] Furthermore, the control module includes a frequency converter, and the oil mixing and stirring device includes a mixing and containing device and a stirring mechanism;

[0010] The drive end of the frequency conversion mechanism is electrically connected to the control end of the stirring mechanism, and the stirring end of the stirring mechanism is located inside the mixing container and extends to the bottom of the mixing container.

[0011] The bottom of the side wall of the mixing container is provided with a liquid outlet, which is connected to the liquid inlet of the pumping device through the flexible metal wire conveying pipe.

[0012] Furthermore, the control module includes an air source, and the pumping device includes a diaphragm pump, a three-way pneumatic control valve, and a spraying mechanism;

[0013] The inlet of the diaphragm pump is connected to the outlet of the mixing container via the flexible metal wire conveying pipe. The outlet of the diaphragm pump is connected to the input of the three-way pneumatic control valve via the flexible metal wire conveying pipe. The first output of the three-way pneumatic control valve is connected to the input of the spraying mechanism via the flexible metal wire conveying pipe. The second output of the three-way pneumatic control valve is connected to the first inlet of the mixing container via the flexible metal wire conveying pipe. The spraying end of the spraying mechanism is positioned facing the input port of the mixing processing device.

[0014] The diaphragm pump, the three-way pneumatic control valve, and the spraying mechanism are all connected to the gas source via gas pipelines.

[0015] Furthermore, a first ball valve is provided on the flexible metal wire conveying pipe between the diaphragm pump and the mixing container, and a second ball valve is provided on the flexible metal wire conveying pipe between the three-way pneumatic control valve and the mixing container. The first liquid inlet is located at the top of the mixing container.

[0016] Furthermore, the air source includes an air compression device, and the spraying mechanism includes an oil spray gun, a flat atomizing nozzle, and a solenoid valve assembly;

[0017] The input end of the oil spray gun is connected to the first output end of the three-way pneumatic control valve through the flexible metal wire conveying pipe, and the output end of the oil spray gun is connected to the input end of the flat atomizing nozzle through the flexible metal wire conveying pipe. The atomizing end of the flat atomizing nozzle is set towards the input port of the mixing and processing device.

[0018] The solenoid valve assembly is disposed on the gas delivery channel between the air compressor and the flat atomizing nozzle.

[0019] Furthermore, the spraying mechanism also includes a pressure regulating valve and a throttle valve, and the solenoid valve assembly includes a first solenoid valve for controlling the airflow between the air compressor and the flat atomizing nozzle;

[0020] The pressure regulating valve is disposed on the gas delivery channel between the air compressor and the first solenoid valve, and the throttle valve is disposed on the gas delivery channel between the first solenoid valve and the flat atomizing nozzle, and is disposed near one end of the flat atomizing nozzle.

[0021] Furthermore, the finished product conveying device includes a finished product conveying mechanism, one end of which is used to place the finished product container, and the other end of which is positioned toward the input end of the drying device.

[0022] Furthermore, the flexible metal wire conveying pipe is a transparent hose made of polyurethane material and steel wire.

[0023] Implementing this application will have the following beneficial effects:

[0024] This application establishes an oil mixing and stirring device, a pumping device, a raw material conveying device, a mixing and processing device, a finished product conveying device, and a drying device. The oil mixing and stirring device mixes oil and materials to obtain an oil mixture. This oil mixture is then pumped to the mixing and processing device for uniform mixing with the semi-finished product conveyed by the raw material conveying device. Finally, it is conveyed to the drying device via the finished product conveying device to obtain the dried product. Therefore, the solution provided by this application allows for the initial mixing of the required oil, materials, and powdered seaweed flakes to obtain an oil mixture. The oil mixture is then uniformly sprayed onto the semi-finished product, simplifying the food processing process, reducing the number of processing devices, and shortening the processing time. Attached Figure Description

[0025] To more clearly illustrate the technical solutions of this application, the accompanying drawings used in the description of the embodiments or prior art will be briefly introduced below. Obviously, the drawings described below are merely some embodiments of this application. Those skilled in the art can obtain other drawings based on these drawings without any creative effort.

[0026] Figure 1 A schematic diagram of the flow structure of an oil mixing and pumping system provided in this application embodiment;

[0027] Figure 2 A schematic diagram of the specific structure of an oil mixing and pumping system provided in this application embodiment;

[0028] Figure 3 This is a schematic diagram of the structure of the finished product conveying mechanism and drying device provided in the embodiments of this application;

[0029] In the figure, the corresponding reference numerals are: 1-oil mixing and stirring device; 11-mixing and containing device; 12-stirring mechanism; 2-pumping device; 21-diaphragm pump; 22-three-way pneumatic control valve; 23-spraying mechanism; 231-oil spray gun; 232-flat atomizing nozzle; 3-raw material conveying device; 31-raw material conveying mechanism; 32-raw material carrying mechanism; 33-sugar spreading mechanism; 4-mixing and processing device; 5-finished product conveying device; 51-finished product conveying mechanism; 6-drying device; 7-control module; 8-metal wire flexible conveying pipe; 81-first ball valve; 82-second ball valve. Detailed Implementation

[0030] The technical solutions of the embodiments of this application will be clearly and completely described below with reference to the accompanying drawings. Obviously, the described embodiments are only some embodiments of this application, and not all embodiments. Based on the embodiments of this application, all other embodiments obtained by those of ordinary skill in the art without creative effort are within the scope of protection of this application.

[0031] It should be noted that, in this application, unless otherwise explicitly specified and limited, the terms "installation," "connection," "linking," and "fixing," etc., should be interpreted broadly. For example, they can refer to a fixed connection, a detachable connection, or an integral part; they can refer to a mechanical connection, an electrical connection, or a connection that allows communication between them; they can refer to a direct connection or an indirect connection through an intermediate medium; they can refer to the internal communication between two components or the interaction between two components. Those skilled in the art can understand the specific meaning of the above terms in this application according to the specific circumstances.

[0032] Hereinafter, embodiments will be described with reference to the accompanying drawings, which are not intended to limit the disclosure described in the claims.

[0033] Please see Figures 1-3 The following is combined with Figures 1-3 This application provides a detailed description of an oil mixing and pumping system according to an embodiment.

[0034] This application provides an oil mixing and pumping system, such as... Figures 1-3 As shown, specifically, the oil mixing and pumping system includes an oil mixing and stirring device 1, a pumping device 2, a raw material conveying device 3, a mixing and processing device 4, a finished product conveying device 5, and a drying device 6.

[0035] The oil mixing and stirring device 1 and the pumping device 2 are connected by a flexible metal wire conveying pipe 8. The output end of the raw material conveying device 3 is set towards the input port of the mixing and processing device 4. The bearing end of the finished product conveying device 5 is set on the lower side of the mixing and processing device 4. The bearing end of the finished product conveying device 5 is used to carry the finished product poured from the output port of the mixing and processing device 4. The output end of the finished product conveying device 5 is set towards the input end of the drying device 6.

[0036] In this embodiment, the oil mixing and stirring device 1 is used to hold oil and materials and stir the oil and materials to obtain an oil mixture. In a specific embodiment, the oil mixture is a mixture including powdered seaweed flakes, palm oil and seasoning powder. Therefore, the oil mixture is a viscous liquid oil mixture. The pumping device 2 is used to transfer the oil mixture to the mixing and processing device 4. The raw material conveying device 3 is used to convey the semi-finished product, which is to be sprayed with powdered seaweed flakes, palm oil, seasoning powder and sugar, to the mixing and processing device 4. The mixing and processing device 4 is a rotating device. Through the rotation of the mixing and processing device 4, the oil mixture and the semi-finished product can be fully mixed to obtain the finished product to be dried. The finished product conveying device 5 is used to transfer the finished product to be dried to the drying device 6, so that it can be dried by the drying device 6 to obtain the finished food product. In a specific embodiment, the semi-finished product can be seaweed blanks and the finished food product can be seaweed food.

[0037] Furthermore, this application sets up an oil mixing and stirring device 1, a pumping device 2, a raw material conveying device 3, a mixing and processing device 4, a finished product conveying device 5, and a drying device 6. The oil mixing and stirring device 1 is used to mix and stir the oil and materials to obtain an oil mixture. The obtained oil mixture is then transported to the mixing and processing device 4 by the pumping device 2, so that it can be uniformly mixed with the semi-finished product transported by the raw material conveying device 3 in the mixing and processing device 4. Then, it is transported to the drying device 6 by the finished product conveying device 5 to obtain the dried finished product. Therefore, the solution provided by this application can first mix and stir the oil, materials, and powdered seaweed flakes to obtain an oil mixture, and then spray the oil mixture uniformly onto the semi-finished product, thereby simplifying the food processing process, reducing processing devices, and shortening the processing time.

[0038] In practical applications, the flexible metal wire conveying pipe 8 is a transparent hose made of polyurethane material and steel wire. In some embodiments, the steel wire can be galvanized steel wire or stainless steel wire, etc. Specifically, the flexible metal wire conveying pipe 8 has a three-layer structure, including an inner layer, a reinforcing layer, and an outer layer. The inner layer is made of transparent polyurethane material to provide a smooth and flat surface, which helps to reduce friction when conveying viscous liquid oil mixtures and allows observation of the flow of the oil mixture inside the pipe. The reinforcing layer is usually made of spiral steel wire to provide support and pressure resistance for the hose, enabling it to withstand certain internal pressure and external extrusion. The outer layer is made of polyurethane material, which has wear resistance, aging resistance, and UV resistance properties, and is used to protect the internal structure from the effects of external environment such as temperature, chemicals, and physical pressure.

[0039] Furthermore, the diameter of the flexible metal wire conveying pipe 8 is 15 mm to 25 mm. Optionally, the diameter of the flexible metal wire conveying pipe 8 can be any value between 15 mm and 25 mm. For example, the diameter of the flexible metal wire conveying pipe 8 is 15 mm, 18 mm, 20 mm or 25 mm, etc. Preferably, the diameter of the flexible metal wire conveying pipe 8 is 25 mm. It should be noted that the pipe diameter refers to the nominal diameter of the pipe.

[0040] In one specific embodiment, the mixing and processing device 4 includes multiple octagonal barrels. In another specific embodiment, the mixing and processing device 4 includes four octagonal barrels, and the four octagonal barrels are located in different directions. Thus, the four octagonal barrels can be used to mix the oil mixture and the semi-finished product at the same time, thereby improving the mixing efficiency. Furthermore, the drying device 6 is a dryer. Here, the specific model of the dryer is not limited, as long as it can dry the finished product to be dried.

[0041] In one specific implementation, such as Figure 1 and Figure 2As shown, the oil mixing and pumping system also includes a control module 7. The oil mixing and stirring device 1, the pumping device 2, the raw material conveying device 3, the mixing and processing device 4, the finished product conveying device 5, and the drying device 6 are all electrically connected to the control module 7.

[0042] Specifically, by setting up a control module 7, the oil mixing and stirring device 1, the pumping device 2, the raw material conveying device 3, the mixing and processing device 4, the finished product conveying device 5, and the drying device 6 can be controlled, thereby realizing an automated food processing process.

[0043] In one alternative implementation, such as Figure 2 As shown, the raw material conveying device 3 includes a raw material conveying mechanism 31, a raw material carrying mechanism 32, and a sugar-sprinkling mechanism 33; wherein, one end of the raw material conveying mechanism 31 is used to place the raw material container, the other end of the raw material conveying mechanism 31 is set towards the inlet of the raw material carrying mechanism 32, the outlet of the raw material carrying mechanism 32 is set towards the input port of the mixing and processing device 4, and the outlet of the sugar-sprinkling mechanism 33 is set towards the input port of the mixing and processing device 4.

[0044] In this embodiment, the raw material conveying mechanism 31 can be a conveyor belt. A raw material container can be placed at the end of the conveyor belt away from the raw material carrying mechanism 32 so that the operation of the conveyor belt can transport the raw material container holding the semi-finished product to one end of the raw material carrying mechanism 32. At this time, the raw material container can pour the semi-finished product into the raw material carrying mechanism 32, so that the raw material carrying mechanism 32 can be used to transport the semi-finished product into the mixing and processing device 4. It should be noted that a buckle can be set on the conveyor belt so that the raw material container can be fixed on the conveyor belt. After the semi-finished product is poured into the raw material carrying mechanism 32, the conveyor belt can rotate in the opposite direction so as to repeatedly transport the semi-finished product.

[0045] In one specific embodiment, the raw material carrying mechanism 32 includes a raw material carrying container and a conveying component. The raw material carrying container has a discharge port at its bottom. One end of the conveying component is fixedly connected to the discharge port, and the other end of the conveying component extends toward the side away from the raw material carrying container. The conveying component can then be used to convey the raw material semi-finished product to the mixing and processing device 4. In another specific embodiment, the raw material carrying mechanism 32 is movable. The movement of the raw material carrying mechanism 32 can then drive the conveying component to move toward the input port of the mixing and processing device 4, so as to facilitate the conveying of the raw material semi-finished product to the mixing and processing device 4.

[0046] In one specific embodiment, the sugar-spreading mechanism 33 is a device capable of spreading sugar. The specific model of the sugar-spreading mechanism 33 is not limited here, as long as it can spread sugar.

[0047] In one alternative implementation, such as Figure 2As shown, the control module 7 includes a frequency converter, and the oil mixing and stirring device 1 includes a mixing and containing device 11 and a stirring mechanism 12. The drive end of the frequency converter is electrically connected to the control end of the stirring mechanism 12. The stirring end of the stirring mechanism 12 is located inside the mixing and containing device 11 and extends to the bottom of the mixing and containing device 11. The bottom of the side wall of the mixing and containing device 11 is provided with a liquid outlet, which is connected to the liquid inlet of the pumping device 2 through a flexible metal wire conveying pipe 8.

[0048] In this embodiment, the frequency conversion mechanism can be a frequency converter, and the stirring mechanism 12 can be a stirring paddle or stirring rod, etc. Furthermore, this application provides a stirring mechanism 12 extending to the bottom of the oil mixing and stirring device 1, so as to use the stirring mechanism 12 to stir the oil mixture in the oil mixing and stirring device 1, thereby preventing the oil mixture from settling to the bottom and improving the spraying efficiency and accuracy. At the same time, a frequency conversion mechanism is also provided to control the output of the stirring mechanism 12, thereby reducing the stirring frequency of the stirring mechanism 12, thereby preventing the oil mixture from splashing and improving the spraying accuracy.

[0049] In another specific embodiment, the oil mixing and stirring device 1 is also provided with an electric heater, which can be used to ensure that the oil mixture in the oil mixing and stirring device 1 is at a constant temperature.

[0050] In one alternative implementation, such as Figure 2 As shown, the control module 7 includes an air source, and the pumping device 2 includes a diaphragm pump 21, a three-way pneumatic control valve 22, and a spraying mechanism 23. The inlet of the diaphragm pump 21 is connected to the outlet of the mixing container 11 via a flexible metal wire conveying pipe 8. The outlet of the diaphragm pump 21 is connected to the input of the three-way pneumatic control valve 22 via the flexible metal wire conveying pipe 8. The first output of the three-way pneumatic control valve 22 is connected to the input of the spraying mechanism 23 via the flexible metal wire conveying pipe 8. The second output of the three-way pneumatic control valve 22 is connected to the first inlet of the mixing container 11 via the flexible metal wire conveying pipe 8. The spraying end of the spraying mechanism 23 is positioned facing the input port of the mixing processing device 4. The diaphragm pump 21, the three-way pneumatic control valve 22, and the spraying mechanism 23 are all connected to the air source via air supply pipes.

[0051] In this embodiment, the diaphragm pump 21 is a pneumatic diaphragm pump capable of conveying a viscous liquid oil mixture. Therefore, the pneumatic diaphragm pump can convey a viscous liquid oil mixture without causing blockage. At the same time, the pneumatic diaphragm pump has low pulse vibration, which enables stable transmission of the oil mixture.

[0052] The reason for using a pneumatic diaphragm pump to transport viscous liquid oil mixtures is that the pneumatic diaphragm pump is a device driven by an air source, and it is suitable for transporting viscous liquid oil mixtures in humid environments. The air source is a device that can generate, process, and store compressed air. It is the power source of pneumatic equipment and can convert the mechanical energy output by the prime mover into the pressure energy of compressed air and deliver it to the pneumatic equipment to drive its operation.

[0053] In one specific embodiment, the three-way pneumatic control valve 22 is used to control the flow direction of the oil mixture. Specifically, the three-way pneumatic control valve 22 is a control valve driven by an air source. In some embodiments, when the three-way pneumatic control valve 22 is in the first conducting state, the diaphragm pump 21, the three-way pneumatic control valve 22 and the spraying mechanism 23 are in a connected state, and the spraying mechanism 23 can spray the oil mixture. When the three-way pneumatic control valve 22 is in the second conducting state, the diaphragm pump 21, the three-way pneumatic control valve 22 and the mixing container 11 are in a connected state, which can prevent the oil mixture in the mixing container 11 from settling to the bottom, improve spraying efficiency and accuracy, and further make the oil mixture and raw material semi-finished products evenly mixed.

[0054] Furthermore, solenoid valves are installed on the air supply pipelines between the air source and the diaphragm pump 21, the three-way pneumatic control valve 22 and the spraying mechanism 23, so that the control module 7 can control the operation of the diaphragm pump 21, the three-way pneumatic control valve 22 and the spraying mechanism 23 through the solenoid valves.

[0055] In one alternative implementation, such as Figure 2 As shown, a first ball valve 81 is provided on the flexible metal wire conveying pipe 8 between the diaphragm pump 21 and the mixing container 11, and a second ball valve 82 is provided on the flexible metal wire conveying pipe 8 between the three-way pneumatic control valve 22 and the mixing container 11. The first liquid inlet is located at the top of the mixing container 11.

[0056] Specifically, by installing a first ball valve 81 on the flexible metal wire conveying pipe 8 between the diaphragm pump 21 and the mixing and containing device 11, and a second ball valve 82 on the flexible metal wire conveying pipe 8 between the three-way pneumatic control valve 22 and the mixing and containing device 11, the outlet flow and return flow of the mixing and containing device 11 can be controlled, thereby ensuring that the spraying volume corresponding to the spraying mechanism 23 meets the spraying requirements.

[0057] In one alternative implementation, such as Figure 2As shown, the air source includes an air compressor, and the spraying mechanism 23 includes an oil spray gun 231, a flat atomizing nozzle 232, and a solenoid valve assembly. The input end of the oil spray gun 231 is connected to the first output end of the three-way pneumatic control valve 22 through a flexible metal wire conveying pipe 8, and the output end of the oil spray gun 231 is connected to the input end of the flat atomizing nozzle 232 through the flexible metal wire conveying pipe 8. The atomizing end of the flat atomizing nozzle 232 is positioned facing the input port of the mixing and processing device 4. The solenoid valve assembly is located on the gas delivery channel between the air compressor and the flat atomizing nozzle 232.

[0058] Specifically, the flat atomizing nozzle 232 is a wide duckbill fan-shaped nozzle. In practical applications, the width of the flat atomizing nozzle 232 is 40 mm to 90 mm. Optionally, the width of the flat atomizing nozzle 232 can be any value within the range of 40 mm to 90 mm. For example, the width of the flat atomizing nozzle 232 can be 40 mm, 45 mm, 50 mm, 65 mm, 75 mm, 80 mm, or 90 mm, etc. Preferably, the width of the flat atomizing nozzle 232 is 65 mm. Further, the width of the slit inside the flat atomizing nozzle 232 is 2 mm to 3 mm. Optionally, the width of the slit inside the flat atomizing nozzle 232 can be 2 mm, 2.3 mm, 2.5 mm, 2.8 mm, or 3 mm, etc. Preferably, the width of the slit inside the flat atomizing nozzle 232 is 2.5 mm.

[0059] In one specific embodiment, the oil spray gun 231 is a spray gun driven by an air source, and the oil spray gun 231 is connected to the air source through an air supply pipe. The solenoid valve assembly includes four solenoid valves, of which one solenoid valve is used to control the air flow between the air source and the diaphragm pump 21, one solenoid valve is used to control the gas flow between the three-way pneumatic control valve 22 and the air source, one solenoid valve is used to control the gas flow between the oil spray gun 231 and the air source, and one solenoid valve is used to control the air flow between the air compressor and the flat atomizing nozzle 232. It should be noted that the number of solenoid valves in the solenoid valve assembly can be increased or decreased based on this, so as to use the corresponding solenoid valves to control the flow of gas or liquid.

[0060] In practical applications, the solenoid valve is driven by a voltage of 24V. This ensures that even if liquid is sprayed onto the solenoid valve during operation, causing a short circuit, the valve will not output high pressure and harm the user.

[0061] In one alternative implementation, such as Figure 2As shown, the spraying mechanism 23 also includes a pressure regulating valve and a throttle valve. The solenoid valve assembly includes a first solenoid valve for controlling the air flow between the air compressor and the flat atomizing nozzle 232. The pressure regulating valve is disposed on the gas delivery channel between the air compressor and the first solenoid valve, and the throttle valve is disposed on the gas delivery channel between the first solenoid valve and the flat atomizing nozzle 232, and is disposed near one end of the flat atomizing nozzle 232.

[0062] Specifically, the air compressor provides compressed air to the flat atomizing nozzle 232 to atomize the oil mixture in the nozzle 232, thereby achieving atomized spraying of the oil mixture and making the mixing more uniform. Furthermore, by setting a pressure regulating valve in the gas delivery channel between the air compressor and the first solenoid valve, and a throttle valve in the gas delivery channel between the first solenoid valve and the flat atomizing nozzle 232, the pressure and flow rate of the flat atomizing nozzle 232 can be adjusted, thereby preventing the oil mixture from being unable to mix and atomize with the compressed air output by the air compressor due to excessive air pressure or volume.

[0063] In one alternative implementation, such as Figure 2 and Figure 3 As shown, the finished product conveying device 5 includes a finished product conveying mechanism 51. One end of the finished product conveying mechanism 51 is used to place the finished product container, and the other end of the finished product conveying mechanism 51 is set towards the input end of the drying device 6.

[0064] In this embodiment, the finished product conveying mechanism 51 can be a conveyor belt. A finished product container can be placed at the end of the conveyor belt away from the drying device 6 so that the conveyor belt can be used to transport the finished product container holding the finished product to be dried to one end of the drying device 6. At this time, the finished product container can transport the finished product to be dried to the drying device 6, so that the drying device 6 can be used to dry the finished product to obtain the dried finished product. It should be noted that a buckle can be set on the conveyor belt so that the finished product container can be fixed on the conveyor belt. After the finished product to be dried is transported to the drying device 6, the conveyor belt can be reversed so as to repeatedly transport the finished product to be dried.

[0065] The above embodiments of this application have the following beneficial effects:

[0066] This application establishes an oil mixing and stirring device, a pumping device, a raw material conveying device, a mixing and processing device, a finished product conveying device, and a drying device. The oil mixing and stirring device mixes oil and materials to obtain an oil mixture. This oil mixture is then pumped to the mixing and processing device for uniform mixing with the semi-finished product conveyed by the raw material conveying device. Finally, it is conveyed to the drying device via the finished product conveying device to obtain the dried product. Therefore, the solution provided by this application allows for the initial mixing of the required oil, materials, and powdered seaweed flakes to obtain an oil mixture. The oil mixture is then uniformly sprayed onto the semi-finished product, simplifying the food processing process, reducing the number of processing devices, and shortening the processing time.

[0067] The structure shown in this embodiment is only a partial structure related to the solution of this application and does not constitute a limitation on the device to which the solution of this application is applied. Specific devices may include more or fewer components than shown, or combinations of certain components, or arrangements of different components. It should be understood that the methods, apparatuses, etc., disclosed in this embodiment can be implemented in other ways.

[0068] The above description is merely a specific embodiment of this application, but the scope of protection of this application is not limited thereto. Any variations or substitutions that can be easily conceived by those skilled in the art within the scope of the technology disclosed in this application should be included within the scope of protection of this application. Therefore, the scope of protection of this application should be determined by the scope of the claims.

Claims

1. An oil mixing and pumping system, characterized in that, It includes an oil mixing and stirring device (1), a pumping device (2), a raw material conveying device (3), a mixing and processing device (4), a finished product conveying device (5), and a drying device (6); The oil mixing and stirring device (1) and the pumping device (2) are connected by a flexible metal wire conveying pipe (8). The output end of the raw material conveying device (3) is set towards the input port of the mixing and processing device (4). The bearing end of the finished product conveying device (5) is set under the mixing and processing device (4). The bearing end of the finished product conveying device (5) is used to carry the finished product poured from the output port of the mixing and processing device (4). The output end of the finished product conveying device (5) is set towards the input end of the drying device (6).

2. The oil mixing and pumping system according to claim 1, characterized in that, The raw material conveying device (3) includes a raw material conveying mechanism (31), a raw material carrying mechanism (32), and a sugar dispensing mechanism (33); One end of the raw material conveying mechanism (31) is used to place the raw material container, and the other end of the raw material conveying mechanism (31) is set towards the inlet of the raw material carrying mechanism (32). The outlet of the raw material carrying mechanism (32) is set towards the input port of the mixing and processing device (4), and the outlet of the sugar sprinkling mechanism (33) is set towards the input port of the mixing and processing device (4).

3. The oil mixing and pumping system according to claim 1, characterized in that, It also includes a control module (7), and the oil mixing and stirring device (1), the pumping device (2), the raw material conveying device (3), the mixing and processing device (4), the finished product conveying device (5) and the drying device (6) are all electrically connected to the control module (7).

4. The oil mixing and pumping system according to claim 3, characterized in that, The control module (7) includes a frequency conversion mechanism, and the oil mixing and stirring device (1) includes a mixing and containing device (11) and a stirring mechanism (12); The drive end of the frequency conversion mechanism is electrically connected to the control end of the stirring mechanism (12). The stirring end of the stirring mechanism (12) is located inside the mixing container (11) and extends to the bottom of the mixing container (11). The bottom of the side wall of the mixing container (11) is provided with a liquid outlet, which is connected to the liquid inlet of the pumping device (2) through the metal wire soft conveying pipe (8).

5. The oil mixing and pumping system according to claim 4, characterized in that, The control module (7) includes an air source, and the pumping device (2) includes a diaphragm pump (21), a three-way pneumatic control valve (22), and a spraying mechanism (23); The inlet of the diaphragm pump (21) is connected to the outlet of the mixing container (11) through the flexible metal wire conveying pipe (8). The outlet of the diaphragm pump (21) is connected to the input of the three-way pneumatic control valve (22) through the flexible metal wire conveying pipe (8). The first output of the three-way pneumatic control valve (22) is connected to the input of the spraying mechanism (23) through the flexible metal wire conveying pipe (8). The second output of the three-way pneumatic control valve (22) is connected to the first inlet of the mixing container (11) through the flexible metal wire conveying pipe (8). The spraying end of the spraying mechanism (23) is set towards the input port of the mixing processing device (4). The diaphragm pump (21), the three-way pneumatic control valve (22), and the spraying mechanism (23) are all connected to the gas source through gas pipelines.

6. The oil mixing and pumping system according to claim 5, characterized in that, A first ball valve (81) is provided on the flexible metal wire conveying pipe (8) between the diaphragm pump (21) and the mixing container (11), and a second ball valve (82) is provided on the flexible metal wire conveying pipe (8) between the three-way pneumatic control valve (22) and the mixing container (11). The first liquid inlet is located at the top of the mixing container (11).

7. The oil mixing and pumping system according to claim 5, characterized in that, The air source includes an air compression device, and the spraying mechanism (23) includes an oil spray gun (231), a flat atomizing nozzle (232), and a solenoid valve assembly; The input end of the oil spray gun (231) is connected to the first output end of the three-way pneumatic control valve (22) through the flexible metal wire conveying pipe (8), and the output end of the oil spray gun (231) is connected to the input end of the flat atomizing nozzle (232) through the flexible metal wire conveying pipe (8). The atomizing end of the flat atomizing nozzle (232) is set towards the input port of the mixing and processing device (4). The solenoid valve assembly is disposed on the gas delivery channel between the air compressor and the flat atomizing nozzle (232).

8. The oil mixing and pumping system according to claim 7, characterized in that, The spraying mechanism (23) also includes a pressure regulating valve and a throttle valve, and the solenoid valve assembly includes a first solenoid valve for controlling the air flow between the air compressor and the flat atomizing nozzle (232); The pressure regulating valve is disposed on the gas delivery channel between the air compressor and the first solenoid valve, and the throttle valve is disposed on the gas delivery channel between the first solenoid valve and the flat atomizing nozzle (232), and is disposed near one end of the flat atomizing nozzle (232).

9. The oil mixing and pumping system according to claim 1, characterized in that, The finished product conveying device (5) includes a finished product conveying mechanism (51), one end of which is used to place the finished product container, and the other end of which is set toward the input end of the drying device (6).

10. The oil mixing and pumping system according to claim 1, characterized in that, The flexible metal wire conveying pipe (8) is a transparent hose made of polyurethane material and steel wire.