Cooling and forming system in production and transportation of vegetable seasonings

By designing a cooling forming system for production and transportation of vegetable seasonings, the problems of low energy efficiency and insufficient intelligence of the cooling forming system in the existing technology are solved, efficient cooling and automated adjustment are achieved, and production efficiency and product quality are improved.

CN120212686AInactive Publication Date: 2025-06-27SHANDONG DINGWEI FOOD CO LTD
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Patent Information

Application Number
CN202510694111.5
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2025-05-28
Publication Date
2025-06-27
Estimated Expiration
Not applicable · inactive patent

AI Technical Summary

Technical Problem

In the production of existing food or non-alcoholic beverages, the cooling molding system has problems such as low energy efficiency and insufficient intelligence, resulting in long cooling time, high energy consumption and lack of automatic adjustment.

Method used

A cooling forming system for the production and transportation of vegetable seasonings is designed, including a cooling mechanism, a refrigeration mechanism and a water treatment mechanism. The cooling mechanism increases the flow time and contact area of ​​the cooling water by rotating the mounting tube and the U-shaped flow pipe. The cooling mechanism uses the refrigeration water storage tank and the refrigerator to achieve efficient cooling. The water treatment mechanism ensures the cleanliness and smoothness of the cooling water through the annular filter and the flow pipe.

Benefits of technology

It improves the cooling efficiency of seasonings, reduces energy consumption, realizes real-time monitoring and automated adjustment of cooling materials, and improves production efficiency and product quality.

✦ Generated by Eureka AI based on patent content.

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Abstract

The invention discloses a cooling forming system in vegetable seasoning production and transportation, and relates to the technical field of food processing, the cooling forming system comprises a base, the surface of the base is provided with a cooling mechanism, a refrigeration mechanism and a water treatment mechanism; the cooling mechanism comprises a cooling tank fixedly mounted on the upper surface of the base, a rotary mounting pipe is rotationally arranged in the cooling tank, and a plurality of U-shaped flow guide pipes are fixedly arranged on the surface of the rotary mounting pipe. By arranging the cooling mechanism and the refrigerating mechanism, cooling water in the refrigerating water storage tank can be input into a rotary mounting pipe in the cooling tank, and a U-shaped flow guide pipe is used for guiding the cooling water, so that the cooling water flows left and right in a reciprocating manner, and the flowing time of the cooling water in the cooling tank is prolonged; and meanwhile, the rotary mounting pipe is used for driving the U-shaped flow guide pipe to cool the food sauce in the cooling tank, so that the U-shaped flow guide pipe is in sufficient and uniform contact with the sauce, and the sauce cooling effect can be improved.
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Description

Technical Field

[0001] The present invention relates to the technical field of food processing, and particularly to a cooling and forming system for the production and transportation of vegetable seasonings. Background Art

[0002] In the industrial production of vegetable seasonings for food or non-alcoholic beverages (such as solid seasoning blocks, sauce concentrates, etc.), cooling and forming is a key link affecting product quality and production efficiency. The cooling equipment in traditional technologies mainly has the following limitations: First, low energy consumption efficiency: Most existing air-cooling or water-cooling systems use single-temperature zone cooling, resulting in the surface hardening of the seasoning while residual heat remains inside, prolonging the cooling treatment time and increasing energy consumption; Second, lack of intelligence: Existing equipment lacks a real-time monitoring module for the weight of the cooled material and cannot adaptively adjust cooling parameters, which is not conducive to automated continuous processing; In view of the above problems, it is necessary to develop a cooling and forming system for the production and transportation of vegetable seasonings to facilitate the cooling treatment of food or non-alcoholic beverages. Summary of the Invention

[0003] The purpose of the present invention is to provide a cooling and forming system for the production and transportation of vegetable seasonings to solve the problems raised in the above background art.

[0004] To achieve the above purpose, the present invention provides the following technical solution: A cooling and forming system for the production and transportation of vegetable seasonings, including a base, on the surface of which a cooling mechanism, a refrigeration mechanism, and a water treatment mechanism are provided; The cooling mechanism includes a cooling tank fixedly installed on the upper surface of the base. Inside the cooling tank, a rotating installation pipe is rotatably provided. On the surface of the rotating installation pipe, a number of U-shaped diversion pipes are fixedly provided. The number of U-shaped diversion pipes are staggered on both sides of the rotating installation pipe. A number of diversion partitions are fixedly connected to the inner wall of the rotating installation pipe. The outside of the cooling tank is wrapped with an annular cooling shell, and a cooling cavity is formed between the annular cooling shell and the cooling tank; The refrigeration mechanism includes a refrigeration water storage tank. A refrigerator is fixedly installed on the side of the refrigeration water storage tank. The inner bottom wall of the refrigeration water storage tank is rotatably connected with a linkage conduit. The top end of the linkage conduit is fixedly connected with a shunt pipe. At the top of both ends of the shunt pipe, movable square pipes are fixedly embedded. A number of water outlet holes are provided on the opposite surfaces of the two movable square pipes.

[0005] Preferably, the evaporator of the refrigerator extends into the interior of the refrigerated water storage tank, and several evaporators are evenly arranged on the inner side wall of the refrigerated water storage tank. Several of the water outlet holes are evenly distributed in a linear array on the surface of the movable square pipe. The top end of the rotary mounting pipe extends to the outside of the refrigerated water storage tank. A first circulating water pipe is fixedly embedded in the upper surface of the refrigerated water storage tank. One end of the first circulating water pipe away from the refrigerated water storage tank is rotatably connected to the top end of the rotary mounting pipe, and the first circulating water pipe communicates the interior of the refrigerated water storage tank with the interior of the rotary mounting pipe.

[0006] Preferably, several flow guiding partitions and the U-shaped flow guiding pipe are alternately distributed on the inner and outer surfaces of the rotary mounting pipe, and the U-shaped flow guiding pipe communicates with the interior of the rotary mounting pipe. The bottom end of the rotary mounting pipe extends below the base, and a driven gear is fixedly connected to the surface of the rotary mounting pipe. A protective shell is fixedly arranged on the lower surface of the base. A driving motor is fixedly arranged inside the protective shell. A driving gear is fixedly arranged on the rotating shaft of the driving motor. The position of the driving gear corresponds to that of the driven gear, and the driving gear meshes with the driven gear.

[0007] Preferably, the bottom end of the rotary mounting pipe is rotatably connected to a second circulating water pipe. One end of the second circulating water pipe away from the rotary mounting pipe extends above the base, and the output end of the second circulating water pipe extends into the interior of the annular cooling shell. A circulating delivery pump is fixedly arranged on the lower surface of the base. The output end and the input end of the circulating delivery pump are both fixedly connected to the second circulating water pipe.

[0008] Preferably, the water treatment mechanism includes a treatment box fixedly arranged on the upper surface of the base. The treatment box is located at the bottom of the refrigerated water storage tank, and a water guiding pipe is fixedly embedded on the left side of the treatment box. One end of the water guiding pipe away from the treatment box extends into the interior of the annular cooling shell. The second circulating water pipe and the water guiding pipe are distributed on both sides of the annular cooling shell.

[0009] Preferably, the bottom end of the linkage conduit extends into the interior of the treatment box, and a top limiting disc is fixedly connected to the bottom end of the linkage conduit. A bottom limiting disc is rotatably arranged on the inner bottom wall of the treatment box. An annular filter screen is fixedly connected between the top limiting disc and the bottom limiting disc. The bottom input end of the linkage conduit extends into the interior of the annular filter screen. A transmission shaft rod is fixedly connected to the lower surface of the bottom limiting disc. The bottom end of the transmission shaft rod extends to the outside of the treatment box.

[0010] Preferably, the bottom end of the transmission shaft rod extends into the interior of the protective shell, and a driven synchronous pulley is fixedly connected to the surface of the transmission shaft rod. A driving synchronous pulley is fixedly arranged at the bottom of the rotary mounting pipe. A transmission belt is installed between the driving synchronous pulley and the driven synchronous pulley.

[0011] Preferably, an extension bracket is fixedly arranged on the inner wall of the processing box, and a strip-shaped cleaning brush is fixedly installed on the surface of the extension bracket. The position of the strip-shaped cleaning brush corresponds to that of the annular filter net, and the strip-shaped cleaning brush is in lap joint with the surface of the annular filter net.

[0012] Preferably, a forming and conveying mechanism is arranged on the front surface of the base. The forming and conveying mechanism comprises a conveyor belt and a weighing device. The top weighing surface of the weighing device is in lap joint with the surface of the conveyor belt. A plurality of forming collection boxes are placed on the surface of the conveyor belt. An outlet elbow is fixedly embedded at the bottom of the front surface of the cooling tank, and an electromagnetic switch valve is arranged on the surface of the outlet elbow.

[0013] Preferably, two feed pipes are fixedly embedded on the upper surface of the cooling tank. The feed pipes are in a trapezoidal structure, and a cover plate is rotatably connected to the top of the feed pipes.

[0014] Compared with the prior art, the beneficial effects of the present invention are as follows: (1). In this cooling and forming system for the production and transportation of vegetable seasonings, by arranging a cooling mechanism and a refrigeration mechanism, the cooling water in the refrigeration water storage tank can be input into the rotating installation pipe inside the cooling tank by using a circulating delivery pump, and a plurality of flow guide partitions inside the rotating installation pipe are used to guide the cooling water flow into a plurality of U-shaped flow guide pipes. The U-shaped flow guide pipes are used to guide the cooling water, so that the cooling water flow reciprocates left and right, thereby increasing the flow time of the cooling water in the cooling tank. At the same time, the rotating installation pipe drives the U-shaped flow guide pipes to cool the food sauce in the cooling tank, so that the U-shaped flow guide pipes are in full and uniform contact with the sauce, which is beneficial to improving the cooling effect on the sauce.

[0015] (2). In this cooling and forming system for the production and transportation of vegetable seasonings, by arranging a water treatment mechanism, during the process of the circulating delivery pump circulating and delivering the cooling water, the cooling water in the cooling cavity can be input into the processing box by using a water guide pipe, and then the annular filter net in the water treatment box is used to filter the impurities in the water, avoiding the blockage of the internal part of the circulating cooling pipeline by the impurities in the water and affecting the smoothness of the circulating water path, and the circulating water entering the refrigeration water storage tank can be kept clean, improving the cooling effect on the circulating water.

[0016] (3). In this cooling and forming system for the production and transportation of vegetable seasonings, by arranging an annular cooling shell outside the cooling tank, the cooling cavity formed between the annular cooling shell and the cooling tank can be filled with cooling water, so as to cool the outer surface of the cooling tank, and then the inner wall of the cooling tank cools the sauce inside, increasing the cooling area of the sauce, and further improving the cooling effect on the sauce inside the cooling tank.

[0017] (4) The cooling and forming system for the production and transportation of this vegetable seasoning can, by setting up a forming and conveying mechanism, use the forming collection box on the surface of the conveyor belt to collect the sauce cooled in the cooling tank, and use a weighing device to weigh the forming collection box in real time. When the weighing device detects that the forming collection box reaches the set weight, it can automatically close the electromagnetic switch valve on the surface of the discharge elbow pipe, and then use the conveyor belt to drive the next forming collection box to move under the discharge elbow pipe to achieve automatic continuous discharging operation. Description of the Drawings

[0018] Figure 1 Front view structural schematic diagram of the present invention; Figure 2 Rear bottom view structural schematic diagram of the present invention; Figure 3 Structural schematic diagram of the bottom of the base of the present invention from the bottom view; Figure 4 Partial front cross-sectional structural schematic diagram of the present invention; Figure 5 Front cross-sectional structural schematic diagram of the refrigeration mechanism and the water treatment mechanism of the present invention; Figure 6 Front cross-sectional structural schematic diagram of the cooling mechanism of the present invention; Figure 7 is Figure 5 Enlarged structural schematic diagram at A in Figure 8 is Figure 5 Enlarged structural schematic diagram at B in In the figure: 1, base; 2, cooling mechanism; 3, refrigeration mechanism; 4, water treatment mechanism; 5, protective shell; 6, drive motor; 7, drive gear; 8, driven gear; 9, driven synchronous pulley; 10, drive synchronous pulley; 11, transmission belt; 12, forming and conveying mechanism; 13, discharge elbow pipe; 14, electromagnetic switch valve; 201, cooling tank; 202, rotating installation pipe; 203, flow guiding partition; 204, annular cooling shell; 205, second circulating water pipe; 208, feed pipe; 209, U-shaped flow guiding pipe; 210, cooling cavity; 211, circulating transfer pump; 301, refrigeration water storage tank; 302, refrigeration machine; 303, linkage conduit; 304, shunt pipe; 305, movable square pipe; 306, water outlet hole; 307, first circulating water pipe; 308, evaporator; 401, treatment box; 402, water guiding pipe; 403, top limiting disc; 404, bottom limiting disc; 405, annular filter screen; 406, drive shaft rod; 407, extension bracket; 408, strip-shaped cleaning brush; 1201, conveyor belt; 1202, weighing device; 1203, forming collection box. Detailed implementation mode

[0019] Next, the technical solutions in the embodiments of the present invention will be clearly and completely described in conjunction with the accompanying drawings in the embodiments of the present invention. Obviously, the described embodiments are only a part of the embodiments of the present invention, rather than all the embodiments. Based on the embodiments of the present invention, all other embodiments obtained by those of ordinary skill in the art without creative efforts shall fall within the protection scope of the present invention.

[0020] Please refer to Figures 1-8 , the present invention provides a technical solution: a cooling and forming system in the production and transportation of vegetable seasonings, including a base 1, and a cooling mechanism 2, a refrigeration mechanism 3, and a water treatment mechanism 4 are arranged on the surface of the base 1.

[0021] Please refer to Figure 1 , the cooling mechanism 2 includes a cooling tank 201 fixedly installed on the upper surface of the base 1, and a forming and conveying mechanism 12 is arranged on the front surface of the base 1. The forming and conveying mechanism 12 includes a conveyor belt 1201 and a weighing device 1202. The top weighing surface of the weighing device 1202 is lapped with the surface of the conveyor belt 1201. A number of forming collection boxes 1203 are placed on the surface of the conveyor belt 1201. An outlet elbow 13 is fixedly embedded at the bottom of the front surface of the cooling tank 201, and an electromagnetic switch valve 14 is arranged on the surface of the outlet elbow 13.

[0022] The cooled sauce can solidify into blocks inside the forming collection box 1203, which is convenient for subsequent cutting and packaging of the block-shaped sauce.

[0023] Two feed pipes 208 are fixedly embedded on the upper surface of the cooling tank 201. The feed pipes 208 are in a trapezoidal structure, and a cover plate is rotatably connected to the top of the feed pipes 208.

[0024] It should be noted that a control panel is arranged on the surface of the base 1, and the control panel is electrically connected to the conveyor belt 1201, the weighing device 1202, and the electromagnetic switch valve 14 respectively.

[0025] It is worth noting that by arranging the forming and conveying mechanism 12 on the front surface of the cooling tank 201, when discharging the cooled food sauce in the cooling tank 201, the electromagnetic switch valve 14 on the surface of the outlet elbow 13 can be opened, and the forming collection box 1203 on the surface of the conveyor belt 1201 is used to collect the discharged sauce, and the weighing device 1202 is used to weigh the forming collection box 1203 in real time. When the weighing device 1202 detects that the forming collection box 1203 reaches the set weight, the electromagnetic switch valve 14 on the surface of the outlet elbow 13 can be automatically closed, and then the conveyor belt 1201 is used to drive the next forming collection box 1203 to move below the outlet elbow 13 to realize automatic continuous discharging operation.

[0026] Please refer to Figure 3 and Figure 4 Inside the cooling tank 201, a rotating mounting pipe 202 is rotatably arranged. On the surface of the rotating mounting pipe 202, a plurality of U-shaped diversion pipes 209 are fixedly arranged. The plurality of U-shaped diversion pipes 209 are staggered and distributed on both sides of the rotating mounting pipe 202. Inside the inner wall of the rotating mounting pipe 202, a plurality of diversion partitions 203 are fixedly connected. The outside of the cooling tank 201 is wrapped with an annular cooling shell 204. A cooling cavity 210 is formed between the annular cooling shell 204 and the cooling tank 201.

[0027] It should be noted that by arranging the annular cooling shell 204 outside the cooling tank 201, the cooling cavity 210 formed between the annular cooling shell 204 and the cooling tank 201 can be filled with cooling water, so as to cool the outer surface of the cooling tank 201, and then the inner wall of the cooling tank 201 cools the internal sauce, increasing the cooling area of the sauce, and further improving the cooling effect on the sauce inside the cooling tank 201.

[0028] Please refer to Figure 4 and Figure 5 The bottom end of the rotating mounting pipe 202 extends below the base 1, and on the surface of the rotating mounting pipe 202, a driven gear 8 is fixedly connected. On the lower surface of the base 1, a protective shell 5 is fixedly arranged. Inside the protective shell 5, a driving motor 6 is fixedly arranged. On the rotating shaft of the driving motor 6, a driving gear 7 is fixedly arranged. The position of the driving gear 7 corresponds to that of the driven gear 8, and the driving gear 7 meshes with the driven gear 8.

[0029] Please refer to Figure 5 and Figure 6 A plurality of diversion partitions 203 and U-shaped diversion pipes 209 are staggered and distributed on the inner and outer surfaces of the rotating mounting pipe 202, and the U-shaped diversion pipes 209 communicate with the inside of the rotating mounting pipe 202.

[0030] The bottom end of the rotating mounting pipe 202 is rotatably connected to a second circulating water pipe 205. One end of the second circulating water pipe 205 away from the rotating mounting pipe 202 extends above the base 1, and the output end of the second circulating water pipe 205 extends into the inside of the annular cooling shell 204. On the lower surface of the base 1, a circulating delivery pump 211 is fixedly arranged. The output end and the input end of the circulating delivery pump 211 are both fixedly connected to the second circulating water pipe 205.

[0031] Please refer to Figure 5 and Figure 7 The refrigeration mechanism 3 includes a refrigeration water storage tank 301. On the surface of the refrigeration water storage tank 301, a water filling pipe is arranged. On the surface of the water filling pipe, a water filling valve is arranged. Staff can replenish water to the refrigeration water storage tank 301 through the water filling pipe.

[0032] A refrigerator 302 is fixedly installed on the side of the refrigerated water storage tank 301. A linkage conduit 303 is rotatably connected to the inner bottom wall of the refrigerated water storage tank 301. The top end of the linkage conduit 303 is fixedly connected to a shunt pipe 304. The two top ends of the shunt pipe 304 are fixedly embedded with movable square pipes 305. A number of water outlet holes 306 are opened on the opposite surfaces of the two movable square pipes 305.

[0033] The evaporator 308 of the refrigerator 302 extends into the interior of the refrigerated water storage tank 301, and a number of evaporators 308 are evenly arranged on the inner side wall of the refrigerated water storage tank 301. A number of water outlet holes 306 are evenly distributed in a linear array on the surface of the movable square pipe 305. The top end of the rotating installation pipe 202 extends to the outside of the refrigerated water storage tank 301. The first circulating water pipe 307 is fixedly embedded in the upper surface of the refrigerated water storage tank 301. One end of the first circulating water pipe 307 away from the refrigerated water storage tank 301 is rotatably connected to the top end of the rotating installation pipe 202, and the first circulating water pipe 307 interconnects the interior of the refrigerated water storage tank 301 and the rotating installation pipe 202.

[0034] It should be noted that by setting the cooling mechanism 2 and the refrigeration mechanism 3, the cooling water in the refrigerated water storage tank 301 can be input into the rotating installation pipe 202 inside the cooling tank 201 by the circulating delivery pump 211, and the cooling water flow can be diverted to a number of U-shaped diversion pipes 209 by a number of diversion partitions 203 inside the rotating installation pipe 202. The U-shaped diversion pipes 209 are used to divert the cooling water, so that the cooling water flow reciprocates left and right, thereby increasing the flow time of the cooling water in the cooling tank 201. At the same time, the rotating installation pipe 202 is used to drive the U-shaped diversion pipes 209 to cool the food sauce in the cooling tank 201, so that the U-shaped diversion pipes 209 are in full and uniform contact with the sauce, which is beneficial to improving the cooling effect on the sauce.

[0035] Please refer to Figure 5 and Figure 8 As shown in, the water treatment mechanism 4 includes a treatment box 401 fixedly arranged on the upper surface of the base 1. The treatment box 401 is located at the bottom of the refrigerated water storage tank 301, and a water guide pipe 402 is fixedly embedded on the left side of the treatment box 401. One end of the water guide pipe 402 away from the treatment box 401 extends into the interior of the annular cooling shell 204. The second circulating water pipe 205 and the water guide pipe 402 are distributed on both sides of the annular cooling shell 204, and the top end of the second circulating water pipe 205 is close to the left top of the annular cooling shell 204, and the left end of the water guide pipe 402 is close to the right bottom of the annular cooling shell 204.

[0036] It should be noted that a sewage outlet is opened on the surface of the treatment box 401, and a sealing plate is arranged on the surface of the sewage outlet. The sealing plate can be opened to discharge and clean the impurities in the treatment box 401 through the sewage outlet.

[0037] Please refer toFigure 5 and Figure 8 The bottom end of the linkage conduit 303 extends into the interior of the processing box 401, and a top limiting disk 403 is fixedly connected to the bottom end of the linkage conduit 303. A bottom limiting disk 404 is rotatably arranged on the inner bottom wall of the processing box 401. An annular filter net 405 is fixedly connected between the top limiting disk 403 and the bottom limiting disk 404. The bottom input end of the linkage conduit 303 extends into the interior of the annular filter net 405. A transmission shaft rod 406 is fixedly connected to the lower surface of the bottom limiting disk 404, and the bottom end of the transmission shaft rod 406 extends to the outside of the processing box 401.

[0038] Please refer to Figure 8 An extension bracket 407 is fixedly arranged on the inner wall of the processing box 401. A strip-shaped cleaning brush 408 is fixedly installed on the surface of the extension bracket 407. The position of the strip-shaped cleaning brush 408 corresponds to that of the annular filter net 405, and the strip-shaped cleaning brush 408 is in contact with the surface of the annular filter net 405.

[0039] Please refer to Figure 3 and Figure 4 The bottom end of the transmission shaft rod 406 extends into the interior of the protective shell 5, and a driven synchronous pulley 9 is fixedly connected to the surface of the transmission shaft rod 406. A driving synchronous pulley 10 is fixedly arranged at the bottom of the rotary installation pipe 202. A transmission belt 11 is installed between the driving synchronous pulley 10 and the driven synchronous pulley 9. During the rotation of the transmission shaft rod 406, the bottom limiting disk 404 and the top limiting disk 403 can be driven to rotate, thereby driving the annular filter net 405 to rotate in the processing box 401, so that the impurities in the circulating water are evenly distributed on the surface of the annular filter net 405, avoiding local accumulation and blockage of the annular filter net 405. And during the rotation of the annular filter net 405, the strip-shaped cleaning brush 408 on the surface of the extension bracket 407 is used to clean the annular filter net 405, further preventing the filter from being blocked.

[0040] It is worth noting that by setting the water treatment mechanism 4, during the process of the circulating delivery pump 211 circulating and delivering the cooling water, the cooling water in the cooling cavity 210 can be input into the processing box 401 through the water guiding pipe 402, and then the impurities in the water are filtered by the annular filter net 405 in the water treatment box 401, avoiding the blockage of the internal part of the circulating cooling pipeline by the impurities in the water and affecting the smoothness of the circulating water path, and the circulating water entering the refrigeration water storage tank 301 can be kept clean, improving the cooling effect on the circulating water.

[0041] Working principle: When in use, first open the cover plate of the feed pipe 208, input the food sauce to be cooled into the cooling tank 201 from the feed pipe 208, then start the refrigerator 302 to cool the water in the refrigeration water storage tank 301, and then use the circulating delivery pump 211 and the first circulating water pipe 307 to suck the inside of the rotation installation pipe 202, so as to input the cooling water in the refrigeration water storage tank 301 into the top of the rotation installation pipe 202 through the first circulating water pipe 307. Then, use several flow guide partitions 203 inside the rotation installation pipe 202 and the external U-shaped flow guide pipe 209 to guide the cooling water, so that the cooling water flows inside the U-shaped flow guide pipe 209, thereby using the U-shaped flow guide pipe 209 to cool the sauce. At the same time, use the drive motor 6 to drive the drive gear 7 to rotate, the drive gear 7 drives the driven gear 8 and the rotation installation pipe 202 to rotate, thereby driving several U-shaped flow guide pipes 209 to rotate inside the cooling tank 201, making the U-shaped flow guide pipe 209 fully and evenly contact with the sauce, improving the cooling effect. Then, use the second circulating water pipe 205 to input the cooling water into the cooling cavity 210 between the annular cooling shell 204 and the cooling tank 201, so that the inside of the cooling cavity 210 is filled with cooling water, thereby surrounding the cooling tank 201 and improving the cooling range of the sauce. Then, use the water guide pipe 402 to transport the cooling water in the annular cavity 210 to the treatment box 401, and use the annular filter screen 405 to filter the impurities in the circulating cooling water. Then, use the linkage conduit 303 to input the filtered circulating water inside the annular filter screen 405 into the shunt pipe 304 and two movable square pipes 305 in the refrigeration water storage tank 301, and then use several water outlet holes 306 on the surface of the movable square pipe 305 to distribute the circulating water into the refrigeration water storage tank 301. And when the rotation installation pipe 202 rotates, under the cooperation of the drive synchronous wheel 10, the driven synchronous wheel 9 and the transmission belt 11, the transmission shaft rod 406 can be driven to rotate, and then drive the bottom limit disc 404 to rotate, and at the same time drive the linkage conduit 303 and the movable square pipe 305 to rotate, so that the circulating water is evenly distributed into the refrigeration water storage tank 301, so that the circulating water can be evenly and quickly cooled for subsequent circulating cooling use.

[0042] The standard parts used in the present invention can all be purchased from the market. The special-shaped parts can be customized according to the description in the specification and the drawings. The specific connection methods of each part all adopt conventional means such as bolts, rivets, and welding that are mature in the prior art. The machinery, parts, and equipment all adopt conventional models in the prior art, and the circuit connection adopts the conventional connection method in the prior art, which will not be elaborated here. The content not described in detail in this specification belongs to the prior art well-known to those skilled in the art.

[0043] The above describes the present invention and its implementation manners. Such description is not restrictive. What is shown in the drawings is only one of the implementation manners of the present invention, and the actual structure is not limited thereto. In general, if those of ordinary skill in the art are inspired by it and, without departing from the gist of the present invention, creatively design structural manners and embodiments similar to the technical solution, they shall fall within the protection scope of the present invention.

Claims

1. A cooling and forming system for the production and transportation of vegetable seasonings, comprising a base (1), characterized in that: A cooling mechanism (2), a refrigeration mechanism (3) and a water treatment mechanism (4) are arranged on the surface of the base (1); The cooling mechanism (2) includes a cooling tank (201) fixedly installed on the upper surface of the base (1). A rotating installation pipe (202) is rotatably arranged inside the cooling tank (201). A plurality of U-shaped diversion pipes (209) are fixedly arranged on the surface of the rotating installation pipe (202). The plurality of U-shaped diversion pipes (209) are staggered on both sides of the rotating installation pipe (202). A plurality of diversion partition plates (203) are fixedly connected to the inner wall of the rotating installation pipe (202). An annular cooling shell (204) is wrapped outside the cooling tank (201). A cooling cavity (210) is formed between the annular cooling shell (204) and the cooling tank (201); The refrigeration mechanism (3) includes a refrigeration water storage tank (301). A refrigerator (302) is fixedly installed on the side surface of the refrigeration water storage tank (301). A linkage conduit (303) is rotatably connected to the inner bottom wall of the refrigeration water storage tank (301). The top end of the linkage conduit (303) is fixedly connected to a shunt pipe (304). Two movable square pipes (305) are fixedly embedded at the top ends of both ends of the shunt pipe (304). A plurality of water outlet holes (306) are formed on the opposite surfaces of the two movable square pipes (305).

2. The cooling and forming system for the production and transportation of a vegetable seasoning according to claim 1, wherein: The evaporator (308) of the refrigerator (302) extends into the refrigeration water storage tank (301), and a plurality of evaporators (308) are evenly arranged on the inner side wall of the refrigeration water storage tank (301). The plurality of water outlet holes (306) are evenly distributed in a linear array on the surface of the movable square pipe (305). The top end of the rotating installation pipe (202) extends outside the refrigeration water storage tank (301). A first circulating water pipe (307) is fixedly embedded on the upper surface of the refrigeration water storage tank (301). One end of the first circulating water pipe (307) away from the refrigeration water storage tank (301) is rotatably connected to the top end of the rotating installation pipe (202), and the first circulating water pipe (307) connects the inside of the refrigeration water storage tank (301) and the rotating installation pipe (202) to communicate with each other.

3. A cooling and forming system for the production and transportation of vegetable seasonings according to claim 1, characterized in that: A plurality of diversion partition plates (203) and U-shaped diversion pipes (209) are staggered on the inner and outer surfaces of the rotating installation pipe (202), and the U-shaped diversion pipes (209) communicate with the inside of the rotating installation pipe (202). The bottom end of the rotating installation pipe (202) extends below the base (1), and a driven gear (8) is fixedly connected to the surface of the rotating installation pipe (202). A protective shell (5) is fixedly arranged on the lower surface of the base (1). A driving motor (6) is fixedly arranged inside the protective shell (5). A driving gear (7) is fixedly arranged on the rotating shaft of the driving motor (6). The position of the driving gear (7) corresponds to that of the driven gear (8), and the driving gear (7) meshes with the driven gear (8).

4. A cooling and forming system for the production and transportation of vegetable seasonings according to claim 3, characterized in that: The bottom end of the rotating mounting pipe (202) is rotatably connected to a second circulating water pipe (205). One end of the second circulating water pipe (205) away from the rotating mounting pipe (202) extends above the base (1), and the output end of the second circulating water pipe (205) extends into the annular cooling shell (204). A circulating delivery pump (211) is fixedly arranged on the lower surface of the base (1), and the output end and the input end of the circulating delivery pump (211) are fixedly connected to the second circulating water pipe (205).

5. A cooling and forming system for the production and transportation of vegetable seasonings according to claim 4, characterized in that: The water treatment mechanism (4) includes a treatment box (401) fixedly arranged on the upper surface of the base (1). The treatment box (401) is located at the bottom of the refrigeration water storage tank (301), and a water guide pipe (402) is fixedly embedded on the left side of the treatment box (401). One end of the water guide pipe (402) away from the treatment box (401) extends into the annular cooling shell (204). The second circulating water pipe (205) and the water guide pipe (402) are distributed on both sides of the annular cooling shell (204).

6. The cooling and forming system during the production and transportation of a vegetable seasoning according to claim 5, wherein: The bottom end of the linkage conduit (303) extends into the treatment box (401), and a top limiting disc (403) is fixedly connected to the bottom end of the linkage conduit (303). A bottom limiting disc (404) is rotatably arranged on the inner bottom wall of the treatment box (401). An annular filter screen (405) is fixedly connected between the top limiting disc (403) and the bottom limiting disc (404). The bottom input end of the linkage conduit (303) extends into the annular filter screen (405). A transmission shaft rod (406) is fixedly connected to the lower surface of the bottom limiting disc (404), and the bottom end of the transmission shaft rod (406) extends outside the treatment box (401).

7. A cooling and forming system for the production and transportation of vegetable seasonings according to claim 6, characterized in that: The bottom end of the transmission shaft rod (406) extends into the protective shell (5), and a driven synchronous pulley (9) is fixedly connected to the surface of the transmission shaft rod (406). A driving synchronous pulley (10) is fixedly arranged at the bottom of the rotating mounting pipe (202), and a transmission belt (11) is installed between the driving synchronous pulley (10) and the driven synchronous pulley (9).

8. A cooling and forming system for the production and transportation of vegetable seasonings according to claim 7, characterized in that: An extension bracket (407) is fixedly arranged on the inner wall of the treatment box (401), and a strip-shaped cleaning brush (408) is fixedly installed on the surface of the extension bracket (407). The position of the strip-shaped cleaning brush (408) corresponds to that of the annular filter screen (405), and the strip-shaped cleaning brush (408) is in contact with the surface of the annular filter screen (405).

9. A cooling and forming system for the production and transportation of vegetable seasonings according to claim 1, characterized in that: A forming conveying mechanism (12) is arranged on the front surface of the base (1). The forming conveying mechanism (12) includes a conveyor belt (1201) and a weighing device (1202). The top weighing surface of the weighing device (1202) is in contact with the surface of the conveyor belt (1201). A number of forming collection boxes (1203) are placed on the surface of the conveyor belt (1201). An outlet elbow pipe (13) is fixedly embedded at the bottom of the front surface of the cooling tank (201), and an electromagnetic switch valve (14) is arranged on the surface of the outlet elbow pipe (13).

10. A cooling and forming system for the production and transportation of vegetable seasonings according to claim 1, characterized in that: Two feed pipes (208) are fixedly embedded in the upper surface of the cooling tank (201). The feed pipes (208) are trapezoidal in structure, and a cover plate is rotatably connected to the top of the feed pipes (208).

Citation Information

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