Cooling device applied to anthocyanin concentration equipment

By designing a cooling device for anthocyanin concentration equipment, the thermal circulation cooling mechanism is used to perform uninterrupted heat absorption treatment during the operation of the equipment, the normal operation problem of the equipment when it is operated under high temperature conditions is solved, extending the service life of the equipment and improving the operating efficiency.

CN222912465UActive Publication Date: 2025-05-27TAIZHOU LINQING BIOTECHNOLOGY CO LTD
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Patent Information

Application Number
CN202421637048.9
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-07-11
Publication Date
2025-05-27
Estimated Expiration
2034-07-11

AI Technical Summary

Technical Problem

The existing anthocyanin concentration equipment operates for a long time under high temperature conditions, resulting in adversely affecting the normal operation of the equipment.

Method used

A cooling device applied to anthocyanin concentration equipment is designed, including a fast heat dissipation assembly and a load-bearing set component. The heat-absorbing treatment is performed continuously during operation using a thermal cycling cooling mechanism to ensure the cooling effect of the equipment.

Benefits of technology

Through effective cooling measures, the service life of the equipment is extended, and the operation efficiency and product quality of the anthocyanin concentration equipment are improved.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model provides a cooling device applied to anthocyanin concentration equipment, and relates to the technical field of anthocyanin concentration, the cooling device comprises a rapid heat dissipation assembly and a bearing and sleeving part, the bearing and sleeving part assembled by bolts is arranged above the middle part of the rapid heat dissipation assembly, and the bearing and sleeving part is connected with the rapid heat dissipation assembly. Thermal circulation cooling mechanisms which are connected with the bearing and sleeving parts in a sleeving and inserting mode are arranged above the two ends of the rapid heat dissipation assembly, and the bearing and sleeving parts comprise bolt substrates; according to the anthocyanin concentration device, after the lifting frame is used for supporting the outer sleeve and the inner groove drum, the bearing sleeving component in the annular closed state is used for installing the anthocyanin concentration device, the inner groove drum is provided with the annular groove-shaped structure, and the annular radiating pipes and the annular fins are all provided with the annular state structures; and the heat circulation cooling mechanism can continuously perform heat absorption treatment in the operation process, the cooling effect in the equipment operation process is guaranteed, and the service life of the equipment is prolonged.
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Description

Technical Field

[0001] The utility model relates to the technical field of anthocyanin concentration, in particular to a cooling device applied to anthocyanin concentration equipment. Background Art

[0002] Anthocyanin is a kind of water-soluble natural pigment widely existing in plants in nature. It is the colored aglycone obtained by hydrolysis of anthocyanin. Most of the main color-forming substances in fruits, vegetables and flowers are related to it. Under different pH value conditions of the plant cell vacuole, anthocyanin makes the petals present colorful colors. It is known that there are more than 20 kinds of anthocyanins, and 6 kinds are important in food, namely pelargonidin, cyanidin, delphinidin, peonidin, petunidin and malvidin. Anthocyanins in natural state exist in the form of glycosides, called anthocyanins, and there are few free anthocyanins. Anthocyanins are mainly used for food coloring, and can also be used in dyes, medicine, cosmetics and other aspects.

[0003] When the existing cooling device is in use, for example, the patent with publication number CN104003969A discloses a concentration extraction device and its application of anthocyanin, which uses membrane technology to concentrate and extract anthocyanin, specifically including solid-liquid separation, resin purification, desorption, concentration, drying and other steps. Since the membrane concentration technology is used instead of the traditional scraping evaporation concentration technology, the production efficiency and product quality of anthocyanin are greatly improved, the production cost is reduced, and the economic benefits and market competitiveness of the enterprise are improved; however, in the above technology, the long-term high-temperature state during the concentration process has an adverse effect on the normal operation of the equipment. Therefore, the utility model proposes a cooling device applied to anthocyanin concentration equipment to solve the problems existing in the prior art. Summary of the Utility Model

[0004] In view of the above problems, the utility model proposes a cooling device applied to anthocyanin concentration equipment. The cooling device applied to anthocyanin concentration equipment mainly uses a lifting frame to support the outer sleeve and the inner trough cylinder, so that the annular closed bearing sleeve component installs the anthocyanin concentration equipment. Since the inner trough cylinder has an annular groove structure, and the annular diffuser pipe and the annular fin both have an annular structure, the heat circulation cooling mechanism can continuously absorb heat during operation, ensuring the cooling effect during the operation of the equipment and improving the service life of the equipment.

[0005] To achieve the purpose of the utility model, the utility model is realized through the following technical solutions: A cooling device applied to anthocyanin concentration equipment includes a rapid heat dissipation component and a bearing sleeve component. Above the middle of the rapid heat dissipation component, there is a bearing sleeve component assembled by bolts. Above both ends of the rapid heat dissipation component, there is a heat circulation cooling mechanism socketed and inserted with the bearing sleeve component;

[0006] The bearing sleeve assembly includes a bolt base plate, a pool body, a drain valve, a lifting frame, an outer sleeve, and an inner groove cylinder. The bolt base plate is bolted above the middle of the rapid heat dissipation assembly. A pool body is arranged above the bolt base plate, and a drain valve is arranged at the output end of the pool body. A lifting frame is arranged above the periphery of the pool body, an outer sleeve is arranged on one side above the lifting frame, and an inner groove cylinder installed in a sleeved manner is arranged on the inner side of the outer sleeve.

[0007] As a preferred embodiment of the present invention, both the outer sleeve and the inner groove cylinder are of an annular cylindrical structure, and the inner groove cylinder has a porous structure.

[0008] As a preferred embodiment of the present invention, the rapid heat dissipation assembly includes a pressure relief pad, a base plate, end-to-end blocks, side arms, opening clamping plates, and a rapid fan. The pressure relief pad is arranged on the top side of the base plate, end-to-end blocks are arranged above both ends of the base plate, side arms are arranged on the side of the end-to-end blocks, opening clamping plates are arranged at the inner ends of the side arms, and a rapid fan assembled by bolts is arranged on the outer side of the opening clamping plates.

[0009] As a preferred embodiment of the present invention, the thermal cycle cooling mechanism includes a reserve liquid tank, a supply valve block, a liquid outlet valve, a pump body, a first heat dissipation pipe group, a first fin group, a control valve block, a diversion chamber, an annular heat dissipation pipe, an annular fin, a water distribution seat, a second heat dissipation pipe group, and a second fin group. The reserve liquid tank is arranged on the top side of the end-to-end block, a supply valve block is arranged on one side above the reserve liquid tank, a liquid outlet valve is arranged at the output end of the supply valve block, and a pump body is arranged at the output end of the liquid outlet valve.

[0010] As a preferred embodiment of the present invention, the output end of the pump body is provided with a first heat dissipation pipe group, and a first fin group is arranged on the outer side of the first heat dissipation pipe group. The output end of the first heat dissipation pipe group is provided with a control valve block, and the output end of the control valve block is provided with a diversion chamber. The output end of the diversion chamber is provided with an annular heat dissipation pipe, and an annular fin is arranged on the outer side of the annular heat dissipation pipe.

[0011] As a preferred embodiment of the present invention, the other end of the pump body is provided with a water distribution seat, and the output end of the water distribution seat is provided with a second heat dissipation pipe group. A second fin group is arranged on the outer side of the second heat dissipation pipe group.

[0012] The beneficial effects of the present invention are:

[0013] The utility model mainly uses a lifting frame to support the outer sleeve and the inner groove cylinder, so that the load-bearing sleeve component in an annular closed state installs the anthocyanin concentration equipment. Since the inner groove cylinder has an annular groove structure, and both the annular diffuser pipe and the annular fin have an annular structure, the thermal cycle cooling mechanism can continuously absorb heat during operation, ensuring the cooling effect during the operation of the equipment and extending the service life of the equipment. BRIEF DESCRIPTION OF THE DRAWINGS

[0014] Figure 1 is a three-dimensional structural schematic diagram of the utility model;

[0015] Figure 2 is a bottom three-dimensional structural schematic diagram of the utility model;

[0016] Figure 3 is a sectional three-dimensional structural schematic diagram of the load-bearing sleeve component of the utility model;

[0017] Figure 4 is a three-dimensional structural schematic diagram of the thermal cycle cooling mechanism of the utility model.

[0018] Wherein: 1. Quick heat dissipation component; 101. Pressure reducing pad; 102. Base plate; 103. End pair block; 104. Side arm; 105. Opening clamp; 106. Quick fan; 2. Load-bearing sleeve component; 201. Bolt base plate; 202. Pool body; 203. Drain valve; 204. Lifting frame; 205. Outer sleeve; 206. Inner groove cylinder; 3. Thermal cycle cooling mechanism; 301. Reserve liquid tank; 302. Supply valve block; 303. Liquid outlet valve; 304. Pump body; 305. First diffuser pipe group; 306. First fin group; 307. Control valve block; 308. Diverting cabin; 309. Annular diffuser pipe; 3010. Annular fin; 3011. Water distribution seat; 3012. Second diffuser pipe group; 3013. Second fin group. DETAILED DESCRIPTION OF THE EMBODIMENTS

[0019] In order to deepen the understanding of the present utility model, the following will further describe the present utility model in detail with reference to embodiments. These embodiments are only used to explain the present utility model and do not limit the protection scope of the present utility model.

[0020] According to Figures 1-4 as shown, this embodiment proposes a cooling device applied to an anthocyanin concentration equipment, including a quick heat dissipation component 1 and a load-bearing sleeve component 2. A load-bearing sleeve component 2 assembled by bolts is arranged above the middle of the quick heat dissipation component 1, and a thermal cycle cooling mechanism 3 socketed and inserted with the load-bearing sleeve component 2 is arranged above both ends of the quick heat dissipation component 1;

[0021] The bearing set part 2 includes a bolt base plate 201, a pool body 202, a drain valve 203, a lifting frame 204, an outer sleeve 205 and an inner groove cylinder 206. The bolt base plate 201 is bolted above the middle of the rapid heat dissipation component 1. A pool body 202 is arranged above the bolt base plate 201, and a drain valve 203 is arranged at the output end of the pool body 202. A lifting frame 204 is arranged above the periphery of the pool body 202. An outer sleeve 205 is arranged on one side above the lifting frame 204, and an inner groove cylinder 206 is sleeved and installed on the inner side of the outer sleeve 205.

[0022] Both the outer sleeve 205 and the inner groove cylinder 206 are of annular cylindrical structures, and the inner groove cylinder 206 has a porous structure.

[0023] In this embodiment, when in use, the drain valve 203 is closed, and the pool body 202 is filled with a sufficient amount of water, so that the anthocyanin concentration equipment to be installed is sleeved under the cooperation of the outer sleeve 205 and the inner groove cylinder 206.

[0024] The rapid heat dissipation component 1 includes a pressure reduction pad 101, a base plate 102, end-to-end blocks 103, side arms 104, opening clamps 105 and rapid fans 106. The pressure reduction pad 101 is arranged on the top side of the base plate 102. End-to-end blocks 103 are arranged above both ends of the base plate 102. Side arms 104 are arranged on the sides of the end-to-end blocks 103. Opening clamps 105 are arranged at the inner ends of the side arms 104. Rapid fans 106 are bolted on the outer sides of the opening clamps 105.

[0025] In this embodiment, then the pressure reduction pad 101 and the base plate 102 are used to place the equipment at the processing location, and the rapid fans 106 outside the opening clamps 105 are started to operate to achieve the effect of rapid cooling.

[0026] The thermal cycle cooling mechanism 3 includes a reserve liquid tank 301, a supply valve block 302, a liquid outlet valve 303, a pump body 304, a first heat dissipation pipe group 305, a first fin group 306, a control valve block 307, a diversion chamber 308, an annular heat dissipation pipe 309, an annular fin 3010, a water distribution seat 3011, a second heat dissipation pipe group 3012 and a second fin group 3013. The reserve liquid tank 301 is arranged on the top side of the end-to-end block 103. A supply valve block 302 is arranged on one side above the reserve liquid tank 301. A liquid outlet valve 303 is arranged at the output end of the supply valve block 302. A pump body 304 is arranged at the output end of the liquid outlet valve 303.

[0027] In this embodiment, the supply valve block 302 is used to supply a sufficient amount of coolant to the reserve liquid tank 301 in advance. After completion, the supply valve block 302 is closed, the liquid outlet valve 303 is opened, and the output end of the pump body 304 is started to output power to drive the output end to operate, so as to achieve the effect of pumping the coolant in the reserve liquid tank 301.

[0028] A first diffuser pipe group 305 is provided at the output end of the pump body 304, and a first fin group 306 is provided on the outer side of the first diffuser pipe group 305. A control valve block 307 is provided at the output end of the first diffuser pipe group 305, and a splitter cabin 308 is provided at the output end of the control valve block 307. An annular diffuser pipe 309 is provided at the output end of the splitter cabin 308, and an annular fin 3010 is provided on the outer side of the annular diffuser pipe 309.

[0029] In this embodiment, after the first cooling is completed, the coolant enters the first diffuser group 305 and the first fin group 306 to cooperate with the fast fan 106 to achieve the effect of the second cooling. After the second cooling, the control valve block 307 is opened to enter the split cabin 308, the annular diffuser 309, and the annular fin 3010, thereby achieving the heat absorption effect of the anthocyanin concentration equipment during operation.

[0030] A water diversion seat 3011 is disposed at the other end of the pump body 304 , and a second diffuser tube set 3012 is disposed at the output end of the water diversion seat 3011 . A second fin set 3013 is disposed on the outer side of the second diffuser tube set 3012 .

[0031] In this embodiment, when cooling is required, the water inside the pool body 202 cooperates with the water diversion seat 3011 , the second diffuser tube group 3012 and the second fin group 3013 to perform the first cooling.

[0032] The working principle of the cooling device applied to anthocyanin concentration equipment is as follows: when in use, the drain valve 203 is closed, and the pool body 202 is made to carry a sufficient amount of water, so that the outer sleeve 205 and the inner groove cylinder 206 cooperate with each other to connect the anthocyanin concentration equipment to be installed, and then the pressure relief pad 101 and the base plate 102 are used to place the equipment at the processing site, and the fast fan 106 outside the open clamping plate 105 is started to run to achieve the effect of rapid cooling, and the replenishment valve block 302 is used in advance to replenish the reserve liquid tank 301 with a sufficient amount of coolant, and after completion, the replenishment valve block 302 is closed, the liquid outlet valve 303 is opened, and the pump body 304 is started to deliver the liquid. The output power at the output end drives the output end to operate so as to achieve the effect of extracting the cooling liquid from the reserve liquid tank 301. When cooling is required, the water inside the pool body 202 cooperates with the water distribution seat 3011, the second diffuser group 3012 and the second fin group 3013 for the first cooling. After the first cooling is completed, the cooling liquid enters the first diffuser group 305 and the first fin group 306 in cooperation with the fast fan 106 to achieve the second cooling effect. After the second cooling, the control valve block 307 is opened to enter the diverter cabin 308, the annular diffuser 309 and the annular fin 3010, thereby achieving the heat absorption effect of the anthocyanin concentration equipment during operation.

[0033] The basic principles, main features and advantages of the present utility model have been shown and described above. Those skilled in the art should understand that the present utility model is not limited by the above embodiments. What is described in the above embodiments and the specification only illustrates the principles of the present utility model. Without departing from the spirit and scope of the present utility model, the present utility model will have various changes and improvements, and all these changes and improvements fall within the scope of the present utility model claimed. The scope of protection claimed for the present utility model is defined by the appended claims and their equivalents.

Claims

1. A cooling device for anthocyanin concentration equipment, comprising a rapid heat dissipation component (1) and a bearing set component (2), characterized in that: A load-bearing set component (2) assembled with bolts is arranged above the middle of the rapid heat dissipation component (1), and a thermal circulation cooling mechanism (3) sleeved and plugged with the load-bearing set component (2) is arranged above both ends of the rapid heat dissipation component (1); The bearing set component (2) comprises a bolt base plate (201), a pool body (202), a drain valve (203), a lifting frame (204), an outer sleeve (205) and an inner groove cylinder (206); the bolt base plate (201) is bolted to the upper middle part of the rapid heat dissipation component (1); the pool body (202) is arranged above the bolt base plate (201), and the drain valve (203) is arranged at the output end of the pool body (202); the lifting frame (204) is arranged above the four sides of the pool body (202); the outer sleeve (205) is arranged on one side above the lifting frame (204), and the inner side of the outer sleeve (205) is provided with an inner groove cylinder (206) which is sleeved and installed.

2. The cooling device for anthocyanin concentration equipment according to claim 1, characterized in that: The outer sleeve (205) and the inner groove sleeve (206) are both annular cylindrical structures, and the inner groove sleeve (206) has a porous structure.

3. The cooling device for anthocyanin concentration equipment according to claim 1, characterized in that: The rapid heat dissipation component (1) comprises a pressure relief pad (101), a base plate (102), an end-to-end block (103), a side arm (104), an open clamping plate (105) and a rapid fan (106); the base plate (102) is arranged on the top side of the pressure relief pad (101), and the end-to-end blocks (103) are arranged above both ends of the base plate (102); the side of the end-to-end block (103) is arranged with a side arm (104), and the inner end of the side arm (104) is arranged with an open clamping plate (105); and the outer side of the open clamping plate (105) is arranged with a rapid fan (106) assembled with bolts.

4. The cooling device for anthocyanin concentration equipment according to claim 3, characterized in that: The thermal circulation cooling mechanism (3) comprises a reserve liquid tank (301), a supply valve block (302), a liquid outlet valve (303), a pump body (304), a first diffuser pipe group (305), a first fin group (306), a control valve block (307), a direction dividing cabin (308), an annular diffuser pipe (309), an annular fin (3010), a water distribution seat (3011), a second diffuser pipe group (3012) and a second fin group (3013); the reserve liquid tank (301) is arranged on the top side of the end-to-end block (103); a supply valve block (302) is arranged on one side above the reserve liquid tank (301); a liquid outlet valve (303) is arranged at the output end of the supply valve block (302); and a pump body (304) is arranged at the output end of the liquid outlet valve (303).

5. The cooling device for anthocyanin concentration equipment according to claim 4, characterized in that: The output end of the pump body (304) is provided with a first diffusion pipe group (305), and the outer side of the first diffusion pipe group (305) is provided with a first fin group (306); the output end of the first diffusion pipe group (305) is provided with a control valve block (307), and the output end of the control valve block (307) is provided with a directional compartment (308); the output end of the directional compartment (308) is provided with an annular diffusion pipe (309), and the outer side of the annular diffusion pipe (309) is provided with an annular fin (3010).

6. The cooling device for anthocyanin concentration equipment according to claim 4, characterized in that: The other end of the pump body (304) is provided with a water diversion seat (3011), and the output end of the water diversion seat (3011) is provided with a second diffuser tube group (3012), and the outer side of the second diffuser tube group (3012) is provided with a second fin group (3013).

Citation Information

Patent Citations

  • High-efficiency concentration and extraction apparatus for anthocyanidin and application thereof

    CN104003969A