Energy-saving high-temperature disinfection system
By introducing convenient assembly, sealing, air leakage prevention and insulation mechanisms into the high-temperature disinfection system, the problems of cumbersome assembly, lax sealing and insufficient insulation are solved, and the effects of convenient installation, effective sealing and good insulation are achieved.
Patent Information
- Application Number
- CN202422314096.0
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-09-23
- Publication Date
- 2025-07-22
- Estimated Expiration
- 2034-09-23
AI Technical Summary
The existing high-temperature disinfection system is complicated when assembling, with poor sealing and air leakage protection, and insufficient thermal insulation performance.
It adopts a convenient assembly mechanism, a sealing and air leakage prevention mechanism and a thermal insulation mechanism, and uses magnetic suction matching, sealing airbags and spring matching and insulation layer design to achieve rapid installation, effective sealing and improve thermal insulation effect.
It improves the installation convenience of high-temperature disinfection system, enhances the sealing effect, avoids gas leakage, and improves thermal insulation performance and reduces heat loss.
Smart Images

Figure CN223125808U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to the technical field of high-temperature disinfection systems, and specifically relates to an energy-saving high-temperature disinfection system. Background Technique
[0002] Sauce is a liquid or semi-liquid sauce made from old soup, grease, vegetables, fruits and seasonings. Sauce plays a very important role in the variety changes of Western cuisine. It can change the style of dishes, enhance the taste of dishes, improve the appearance color of dishes, etc. And hot sauce can also play a role in keeping the dishes warm. With the development of science and technology, high-temperature disinfection rooms have gradually emerged in our lives. Now, an energy-saving high-temperature disinfection system is needed.
[0003] The existing high-temperature disinfection systems still have some disadvantages to a certain extent. When the high-temperature disinfection system is in use, it needs to be assembled first. The assembly steps of the existing high-temperature disinfection systems are often relatively cumbersome when assembling, which greatly improves the convenience of installing the first disinfection tank and the second disinfection tank of the high-temperature disinfection system; the high-temperature disinfection system has high requirements for its sealing performance when in use. The sealing and air leakage prevention effect of the existing high-temperature disinfection systems is not good enough when in use, which makes the sealing effect between the pipe body and the fixed pipe better when the high-temperature disinfection system is in use, and it is easy to cause the gas inside the first disinfection tank and the second disinfection tank to leak out through the gap between the pipe body and the fixed pipe during the use of the high-temperature disinfection system; the heat preservation and heat insulation performance of the existing high-temperature disinfection systems needs to be further improved when in use, which reduces the heat preservation effect of the first disinfection tank and the second disinfection tank when the high-temperature disinfection system is in use, and makes the heat insulation effect on the surfaces of the first disinfection tank and the second disinfection tank of the high-temperature disinfection system not good enough, and heat loss is likely to occur during use. Content of the Utility Model
[0004] The purpose of the utility model is to provide an energy-saving high-temperature disinfection system to solve the problems of relatively cumbersome assembly steps, insufficient sealing and air leakage prevention effect, and the need for further improvement of heat preservation and heat insulation performance when the high-temperature disinfection system is in use as mentioned in the above background technique.
[0005] To achieve the above object, the present utility model provides the following technical solution: an energy-saving high-temperature disinfection system, including a first disinfection tank, on the surface of the first disinfection tank, control buttons are installed, on the surface of the first disinfection tank, a second disinfection tank is arranged, the interior of the second disinfection tank is communicated with that of the first disinfection tank, on the surfaces of both the first disinfection tank and the second disinfection tank, cover bodies are arranged, on the surface at the bottom position of the first disinfection tank and the second disinfection tank, support frames are installed, on the surface at the top position of the first disinfection tank, a pipe body is installed, on the surface at the top position of the second disinfection tank, a fixed pipe is installed, on the surfaces of both the first disinfection tank and the second disinfection tank, convenient assembly mechanisms are arranged, the interior of the convenient assembly mechanism includes an L-shaped frame plate, a rotating plate body and a convenient assembly part, on the inner walls of both the pipe body and the fixed pipe, airtight leakage prevention mechanisms are arranged, the interior of the airtight leakage prevention mechanism includes a sealing airbag, a sealing spring, a sealing frame, a sealing ring and a sealing gasket, on the inner walls of both the second disinfection tank and the cover body, heat preservation and heat insulation mechanisms are arranged, the interior of the heat preservation and heat insulation mechanism includes a positioning card, a positioning slot and a heat preservation and heat insulation part.
[0006] Preferably, the fixed pipe is communicated with the interior of the second disinfection tank, on the inner wall of the first disinfection tank, a hole plate body is installed, on the surface of the hole plate body, a rotating motor is installed, the output end of the rotating motor is electrically connected to the output end of the control button, the output end of the rotating motor is installed with a rotating shaft through a coupling, and on the surface of the rotating shaft, a fan body is installed.
[0007] Preferably, the convenient assembly part is arranged on the surfaces of the first disinfection tank and the second disinfection tank, the convenient assembly part is composed of a fastening bolt, a mounting plate, a first magnet and a second magnet, on the inner walls of both the first disinfection tank, second magnets are installed, on the inner walls of both the second disinfection tank, first magnets are installed, the surfaces of the first magnet and the second magnet are magnetically attracted to each other, on the surface of the first disinfection tank, L-shaped frame plates are installed, on the surface of the L-shaped frame plate, a rotating plate body is arranged, and the surface of the rotating plate body and the L-shaped frame plate are rotatably matched with each other.
[0008] Preferably, on the surface of the rotating plate body, fastening bolts are threadedly connected, one end of the fastening bolt penetrates through the rotating plate body and extends to the inner side of the rotating plate body, on the surface of the second disinfection tank, mounting plates are arranged, the surface of the mounting plate and the fastening bolt are rotatably matched with each other, the surface of the mounting plate is in contact with the surface of the second disinfection tank, and the surface of the fastening bolt and the rotating plate body are rotatably matched with each other.
[0009] Preferably, on the inner wall of the fixed pipe, a sealing frame is installed, inside the sealing frame, a sealing ring is arranged, the sealing ring and the inner wall of the sealing frame are slidably matched with each other, on the surface of the sealing ring, a sealing gasket is adhered, and the surface of the sealing gasket is in contact with the surface of the pipe body.
[0010] Preferably, equally spaced sealing springs are installed inside the sealing frame. One end of each sealing spring is fixed to the surface of the sealing ring. Equally spaced sealing air bags are installed on the inner walls of the sealing frame, and the surface of each sealing air bag is fixed to the surface of the sealing ring.
[0011] Preferably, the heat insulation part is arranged on the inner walls of the second disinfection tank and the cover body. The heat insulation part is composed of a heat insulation board, a first heat insulation layer and a second heat insulation layer. Positioning fasteners are installed on the surfaces of the second disinfection tank, and positioning card slots are formed on the inner walls of the cover body. The surfaces of the positioning card slots and the positioning fasteners are engaged with each other. The heat insulation board is adhered to the inner wall of the second disinfection tank.
[0012] Preferably, a first heat insulation layer is arranged on the inner wall of the heat insulation board. The first heat insulation layer is adhered to the inner wall of the heat insulation board. A second heat insulation layer for heat insulation of the interiors of the first disinfection tank and the second disinfection tank is adhered to the inner wall of the first heat insulation layer. The surface of the second heat insulation layer is adhered to the inner wall of the first heat insulation layer.
[0013] Compared with the prior art, the beneficial effects of the present utility model are as follows: This energy-saving high-temperature disinfection system not only enables the second disinfection tank to be stably installed on the surface of the first disinfection tank when the high-temperature disinfection system is in use, greatly improving the convenience of installing the first disinfection tank and the second disinfection tank by the high-temperature disinfection system, but also making the sealing effect between the pipe body and the fixed pipe better when the high-temperature disinfection system is in use, avoiding the phenomenon that the gas inside the first disinfection tank and the second disinfection tank leaks through the gap between the pipe body and the fixed pipe during the use of the high-temperature disinfection system. Moreover, it makes the heat insulation effect of the first disinfection tank and the second disinfection tank better when the high-temperature disinfection system is in use, and the heat insulation effect on the surfaces of the first disinfection tank and the second disinfection tank better, and it is not easy to have the phenomenon of heat loss during use.
[0014] 1. By providing a convenient assembly mechanism, the second disinfection tank drives the first magnet to move until it comes into contact with the surface of the second magnet. Under the magnetic attraction of the first magnet and the second magnet, the second disinfection tank is initially fixed on the surface of the first disinfection tank. Subsequently, the user rotates the rotating plate body on the surface of the L-shaped frame plate, causing the rotating plate body to rotate on the surface of the L-shaped frame plate. The user tightens the fastening bolt on the surface of the rotating plate body, causing the fastening bolt to rotate on the surface of the rotating plate body. When the fastening bolt moves, the fastening bolt drives the mounting plate to move into contact with the surface of the second disinfection tank. Under the combined action of the fastening bolt and the mounting plate, the second disinfection tank is stably installed on the surface of the first disinfection tank, avoiding the phenomenon that the installation between the first disinfection tank and the second disinfection tank is not firm enough during the use of the high-temperature disinfection system, realizing the convenient assembly function of the high-temperature disinfection system, so that the second disinfection tank can be stably installed on the surface of the first disinfection tank when the high-temperature disinfection system is used, greatly improving the convenience of installing the first disinfection tank and the second disinfection tank in the high-temperature disinfection system;
[0015] 2. By providing a sealing and air leakage prevention mechanism, under the combined action of the sealing spring and the sealing airbag inside the sealing frame, the sealing ring and the sealing gasket are driven to move, causing the sealing ring to drive the sealing gasket to move into contact with the surface of the pipe body. Under the combined action of the sealing ring and the sealing gasket, the pipe body and the fixed pipe are sealed. Under the combined action of the sealing airbag and the sealing spring, the sealing effect between the pipe body and the fixed pipe is further improved, realizing the sealing and air leakage prevention function of the high-temperature disinfection system, so that the sealing effect between the pipe body and the fixed pipe is better when the high-temperature disinfection system is used, avoiding the phenomenon that the gas inside the first disinfection tank and the second disinfection tank leaks through the gap between the pipe body and the fixed pipe during the use of the high-temperature disinfection system;
[0016] 3. By providing a heat preservation and heat insulation mechanism, the second disinfection tank drives the positioning card to be inserted into the positioning card slot. Under the clamping action of the positioning card and the positioning card slot, the cover body is installed on the surface of the second disinfection tank. At this time, under the action of the heat insulation board, the heat insulation effect between the second disinfection tank and the cover body is improved. Under the action of the second heat preservation layer, the heat preservation performance is better when the cover body is installed on the surface of the second disinfection tank, and the heat insulation effect between the first disinfection tank and the second disinfection tank is better, realizing the heat preservation and heat insulation function of the high-temperature disinfection system, so that the heat preservation effect of the first disinfection tank and the second disinfection tank is better when the high-temperature disinfection system is used, and the heat insulation effect on the surfaces of the first disinfection tank and the second disinfection tank is better during use, and it is not easy to have the phenomenon of heat loss during use. BRIEF DESCRIPTION OF THE DRAWINGS
[0017] Figure 1 is a three-dimensional structure schematic diagram of the present utility model;
[0018] Figure 2This is the schematic diagram of the main view cross-section structure of the present utility model;
[0019] Figure 3 of the present utility model Figure 2 The enlarged schematic diagram of the convenient assembly mechanism;
[0020] Figure 4 of the present utility model Figure 2 The enlarged schematic diagram of the sealing and air leakage prevention mechanism;
[0021] Figure 5 The enlarged schematic diagram of the heat preservation and heat insulation mechanism of the present utility model.
[0022] In the figure: 1. The first disinfection tank; 101. The second disinfection tank; 102. The pipe body; 103. The cover body; 104. The support frame; 105. The rotating motor; 106. The orifice plate body; 107. The fan body; 108. The fixed pipe; 2. The convenient assembly mechanism; 201. The L-shaped frame plate; 202. The rotating plate body; 203. The convenient assembly part; 2031. The fastening bolt; 2032. The mounting plate; 2033. The first magnet; 2034. The second magnet; 3. The sealing and air leakage prevention mechanism; 301. The sealing airbag; 302. The sealing spring; 303. The sealing frame; 304. The sealing ring; 305. The sealing gasket; 4. The heat preservation and heat insulation mechanism; 401. The positioning fixture; 402. The positioning slot; 403. The heat preservation and heat insulation part; 4031. The heat insulation board; 4032. The first heat preservation layer; 4033. The second heat preservation layer. Specific embodiments
[0023] Next, the technical solutions in the embodiments of the present utility model will be clearly and completely described in conjunction with the accompanying drawings in the embodiments of the present utility model. Obviously, the described embodiments are only a part of the embodiments of the present utility model, rather than all of the embodiments.
[0024] The structure of an energy-saving high-temperature disinfection system provided by the present utility model is as Figure 1 and Figure 2As shown in the figure, it includes a first disinfection tank 1. A control button is installed on the surface of the first disinfection tank 1. The model of this control button can be selected from the LA series. A second disinfection tank 101 is arranged on the surface of the first disinfection tank 1. The second disinfection tank 101 is communicated with the inside of the first disinfection tank 1. Cover bodies 103 are arranged on the surfaces of both the first disinfection tank 1 and the second disinfection tank 101. Support frames 104 are installed on the surfaces at the bottom positions of the first disinfection tank 1 and the second disinfection tank 101. A pipe body 102 is installed on the surface at the top position of the first disinfection tank 1. A fixed pipe 108 is installed on the surface at the top position of the second disinfection tank 101. The fixed pipe 108 is communicated with the inside of the second disinfection tank 101. A hole plate body 106 is installed on the inner wall of the first disinfection tank 1. A rotating motor 105 is installed on the surface of the hole plate body 106. The model of this rotating motor 105 can be selected from the JO series. The output end of the rotating motor 105 is electrically connected to the output end of the control button. The output end of the rotating motor 105 is installed with a rotating shaft through a coupling, and a fan body 107 is installed on the surface of the rotating shaft.
[0025] Further, as Figure 2 and Figure 3 shown in the figure, convenient assembly mechanisms 2 are arranged on the surfaces of both the first disinfection tank 1 and the second disinfection tank 101. The inside of the convenient assembly mechanism 2 includes an L-shaped frame plate 201, a rotating plate body 202 and a convenient assembly part 203. The convenient assembly part 203 is arranged on the surfaces of the first disinfection tank 1 and the second disinfection tank 101. The convenient assembly part 203 is composed of a fastening bolt 2031, a mounting plate 2032, a first magnet 2033 and a second magnet 2034. Second magnets 2034 are installed on the inner walls of both the first disinfection tank 1. First magnets 2033 are installed on the inner walls of both the second disinfection tank 101. The surfaces of the first magnet 2033 and the second magnet 2034 are magnetically attracted to each other. L-shaped frame plates 201 are installed on the surfaces of both the first disinfection tank 1. A rotating plate body 202 is arranged on the surface of the L-shaped frame plate 201. The surface of the rotating plate body 202 is in rotational cooperation with the surface of the L-shaped frame plate 201. Fastening bolts 2031 are threadedly connected to the surfaces of both the rotating plate body 202. One end of the fastening bolt 2031 penetrates through the rotating plate body 202 and extends to the inside of the rotating plate body 202. Mounting plates 2032 are arranged on the surfaces of both the second disinfection tank 101. The surface of the mounting plate 2032 is in rotational cooperation with the surface of the fastening bolt 2031. The surface of the mounting plate 2032 is in contact with the surface of the second disinfection tank 101. The surface of the fastening bolt 2031 is in rotational cooperation with the surface of the rotating plate body 202.
[0026] During implementation, the second disinfection tank 101 drives the first magnet 2033 to move until it comes into contact with the surface of the second magnet 2034. Under the magnetic attraction of the first magnet 2033 and the second magnet 2034, the second disinfection tank 101 is preliminarily fixed on the surface of the first disinfection tank 1. Subsequently, the user rotates the rotating plate body 202 on the surface of the L-shaped frame plate 201, causing the rotating plate body 202 to rotate on the surface of the L-shaped frame plate 201. The user tightens the fastening bolt 2031 on the surface of the rotating plate body 202, causing the fastening bolt 2031 to rotate on the surface of the rotating plate body 202. When the fastening bolt 2031 moves, the fastening bolt 2031 drives the mounting plate 2032 to move until it comes into contact with the surface of the second disinfection tank 101. Under the combined action of the fastening bolt 2031 and the mounting plate 2032, the second disinfection tank 101 is stably installed on the surface of the first disinfection tank 1, avoiding the phenomenon of unstable installation between the first disinfection tank 1 and the second disinfection tank 101 during the use of the high-temperature disinfection system, so as to realize the function of convenient assembly of the high-temperature disinfection system.
[0027] Further, as Figure 2 and Figure 4 shown, sealing and air leakage prevention mechanisms 3 are provided on the inner walls of both the pipe body 102 and the fixed pipe 108. The inside of the sealing and air leakage prevention mechanism 3 includes a sealing airbag 301, a sealing spring 302, a sealing frame 303, a sealing ring 304, and a sealing gasket 305. The sealing frame 303 is installed on the inner wall of the fixed pipe 108. A sealing ring 304 is provided inside the sealing frame 303. The sealing ring 304 is slidably engaged with the inner wall of the sealing frame 303. The sealing gasket 305 is adhered to the surface of the sealing ring 304. The surface of the sealing gasket 305 is in contact with the surface of the pipe body 102. Equally spaced sealing springs 302 are installed inside the sealing frame 303. One end of the sealing spring 302 is fixed to the surface of the sealing ring 304. Equally spaced sealing airbags 301 are installed on the inner wall of the sealing frame 303. The surface of the sealing airbag 301 is fixed to the surface of the sealing ring 304.
[0028] During implementation, under the combined action of the sealing spring 302 and the sealing airbag 301 inside the sealing frame 303, the sealing ring 304 and the sealing gasket 305 are driven to move, causing the sealing ring 304 to drive the sealing gasket 305 to move until it comes into contact with the surface of the pipe body 102. Under the combined action of the sealing ring 304 and the sealing gasket 305, the pipe body 102 and the fixed pipe 108 are sealed. Under the combined action of the sealing airbag 301 and the sealing spring 302, the sealing effect between the pipe body 102 and the fixed pipe 108 is further improved, so as to realize the function of sealing and air leakage prevention of the high-temperature disinfection system.
[0029] Further, as Figure 2 and Figure 5As shown in the figure, heat insulation mechanisms 4 are provided on the inner walls of the second disinfection tank 101 and the cover 103. The inside of the heat insulation mechanism 4 includes a positioning clip 401, a positioning slot 402, and a heat insulation part 403. The heat insulation part 403 is arranged on the inner walls of the second disinfection tank 101 and the cover 103. The heat insulation part 403 is composed of a heat insulation board 4031, a first heat insulation layer 4032, and a second heat insulation layer 4033. Positioning clips 401 are installed on the surfaces of the second disinfection tank 101, and positioning slots 402 are formed on the inner walls of the cover 103. The surfaces of the positioning slots 402 and the positioning clips 401 are engaged with each other. The heat insulation board 4031 is adhered to the inner wall of the second disinfection tank 101. The first heat insulation layer 4032 is arranged on the inner wall of the heat insulation board 4031 and is adhered to the inner wall of the heat insulation board 4031. The second heat insulation layer 4033 for heat insulation of the interiors of the first disinfection tank 1 and the second disinfection tank 101 is adhered to the inner wall of the first heat insulation layer 4032, and the surface of the second heat insulation layer 4033 is adhered to the inner wall of the first heat insulation layer 4032.
[0030] During implementation, the second disinfection tank 101 drives the positioning clip 401 to be inserted into the positioning slot 402. Under the engagement of the positioning clip 401 and the positioning slot 402, the cover 103 is installed on the surface of the second disinfection tank 101. At this time, the heat insulation effect between the second disinfection tank 101 and the cover 103 is improved by the heat insulation board 4031. Under the action of the second heat insulation layer 4033, the heat preservation performance is better when the cover 103 is installed on the surface of the second disinfection tank 101, and the heat insulation effect between the first disinfection tank 1 and the second disinfection tank 101 is better, so as to realize the heat insulation function of the high-temperature disinfection system.
[0031] Working principle: When in use, first place the first disinfection tank 1 at the designated position. The user places the second disinfection tank 101 on the surface of the first disinfection tank 1. At this time, the second disinfection tank 101 drives the first magnet 2033 to move to contact the surface of the second magnet 2034. Under the magnetic attraction of the first magnet 2033 and the second magnet 2034, the second disinfection tank 101 is initially fixed on the surface of the first disinfection tank 1. Subsequently, the user rotates the rotating plate body 202 on the surface of the L-shaped frame plate 201, causing the rotating plate body 202 to rotate on the surface of the L-shaped frame plate 201. The user tightens the fastening bolt 2031 on the surface of the rotating plate body 202, causing the fastening bolt 2031 to rotate on the surface of the rotating plate body 202. When the fastening bolt 2031 moves, the fastening bolt 2031 drives the mounting plate 2032 to move into contact with the surface of the second disinfection tank 101. Under the combined action of the fastening bolt 2031 and the mounting plate 2032, the second disinfection tank 101 is stably installed on the surface of the first disinfection tank 1, avoiding the phenomenon of unstable installation between the first disinfection tank 1 and the second disinfection tank 101 during the use of the high-temperature disinfection system, so as to realize the function of convenient assembly of the high-temperature disinfection system. Thus, when the high-temperature disinfection system is in use, the second disinfection tank 101 can be stably installed on the surface of the first disinfection tank 1, greatly improving the convenience of installing the first disinfection tank 1 and the second disinfection tank 101 of the high-temperature disinfection system.
[0032] Subsequently, after the pipe body 102 is installed on the surface of the fixed pipe 108, under the combined action of the sealing spring 302 and the sealing airbag 301 inside the sealing frame 303, the sealing ring 304 and the sealing gasket 305 are driven to move, causing the sealing ring 304 to drive the sealing gasket 305 to move into contact with the surface of the pipe body 102. Under the combined action of the sealing ring 304 and the sealing gasket 305, the gap between the pipe body 102 and the fixed pipe 108 is sealed. Under the combined action of the sealing airbag 301 and the sealing spring 302, the sealing effect between the pipe body 102 and the fixed pipe 108 is further improved, so as to realize the function of sealing and preventing air leakage of the high-temperature disinfection system. Thus, when the high-temperature disinfection system is in use, the sealing effect between the pipe body 102 and the fixed pipe 108 is better, avoiding the phenomenon that the gas inside the first disinfection tank 1 and the second disinfection tank 101 leaks out through the gap between the pipe body 102 and the fixed pipe 108 during the use of the high-temperature disinfection system.
[0033] Subsequently, when the user places the cover body 103 on the surface of the second disinfection tank 101, the second disinfection tank 101 drives the positioning card 401 to be inserted into the positioning card slot 402. Under the engagement of the positioning card 401 and the positioning card slot 402, the cover body 103 is installed on the surface of the second disinfection tank 101. At this time, under the action of the heat insulation plate 4031, the heat insulation effect between the second disinfection tank 101 and the cover body 103 is improved. Under the action of the second heat insulation layer 4033, the heat preservation performance is better when the cover body 103 is installed on the surface of the second disinfection tank 101, and the heat insulation effect between the first disinfection tank 1 and the second disinfection tank 101 is better, so as to realize the heat preservation and insulation function of the high-temperature disinfection system. Thus, when the high-temperature disinfection system is in use, the heat preservation effect of the first disinfection tank 1 and the second disinfection tank 101 is better, and the heat insulation effect on the surfaces of the first disinfection tank 1 and the second disinfection tank 101 is better during use, and the phenomenon of heat loss is not likely to occur during the use process, and finally the use work of the high-temperature disinfection system is completed.
[0034] For those skilled in the art, it is obvious that the present utility model is not limited to the details of the above exemplary embodiments, and without departing from the spirit or basic characteristics of the present utility model, the present utility model can be implemented in other specific forms.
Claims
1. An energy-saving high-temperature disinfection system, comprising a first disinfection tank (1), characterized in that: The surface of the first disinfection tank (1) is equipped with control buttons. The surface of the first disinfection tank (1) is provided with a second disinfection tank (101). The second disinfection tank (101) is in communication with the interior of the first disinfection tank (1). The surfaces of both the first disinfection tank (1) and the second disinfection tank (101) are provided with covers (103). The surface at the bottom position of the first disinfection tank (1) and the second disinfection tank (101) is equipped with a support frame (104). The surface at the top position of the first disinfection tank (1) is equipped with a pipe body (102). The surface at the top position of the second disinfection tank (101) is equipped with a fixed pipe (108). The surfaces of both the first disinfection tank (1) and the second disinfection tank (101) are provided with a convenient assembly mechanism (2). The interior of the convenient assembly mechanism (2) includes an L-shaped frame plate (201), a rotating plate body (202), and a convenient assembly part (203). The inner walls of both the pipe body (102) and the fixed pipe (108) are provided with a sealing and air leakage prevention mechanism (3). The interior of the sealing and air leakage prevention mechanism (3) includes a sealing airbag (301), a sealing spring (302), a sealing frame (303), a sealing ring (304), and a sealing pad (305). The inner walls of both the second disinfection tank (101) and the cover (103) are provided with a heat preservation and heat insulation mechanism (4). The interior of the heat preservation and heat insulation mechanism (4) includes a positioning card (401), a positioning slot (402), and a heat preservation and heat insulation part (403).
2. An energy-saving high-temperature disinfection system according to claim 1, characterized in that: The fixed pipe (108) is in communication with the interior of the second disinfection tank (101). The inner wall of the first disinfection tank (1) is equipped with an orifice plate body (106). The surface of the orifice plate body (106) is equipped with a rotating motor (105). The output end of the rotating motor (105) is electrically connected to the output end of the control button. The output end of the rotating motor (105) is installed with a rotating shaft through a coupling, and a fan body (107) is installed on the surface of the rotating shaft.
3. An energy-saving high-temperature disinfection system according to claim 1, characterized in that: The convenient assembly part (203) is arranged on the surfaces of the first disinfection tank (1) and the second disinfection tank (101). The convenient assembly part (203) is composed of a fastening bolt (2031), a mounting plate (2032), a first magnet (2033), and a second magnet (2034). Second magnets (2034) are installed on the inner walls of both the first disinfection tank (1). First magnets (2033) are installed on the inner walls of both the second disinfection tank (101). The surfaces of the first magnet (2033) and the second magnet (2034) are magnetically attracted to each other. L-shaped frame plates (201) are installed on the surfaces of the first disinfection tank (1). The surface of the L-shaped frame plate (201) is provided with a rotating plate body (202). The surface of the rotating plate body (202) and the L-shaped frame plate (201) are rotatably matched with each other.
4. The energy-saving high-temperature disinfection system according to claim 3, characterized in that: The surfaces of the turning plate body (202) are all threadedly connected with fastening bolts (2031). One end of the fastening bolt (2031) penetrates through the turning plate body (202) and extends to the inner side of the turning plate body (202). Mounting plates (2032) are arranged on the surfaces of the second disinfection tank (101). The mounting plates (2032) are rotationally matched with the surfaces of the fastening bolts (2031). The surfaces of the mounting plates (2032) are in contact with the surfaces of the second disinfection tank (101). The fastening bolts (2031) are rotationally matched with the surfaces of the turning plate body (202).
5. An energy-saving high-temperature disinfection system according to claim 1, characterized in that: A sealing frame (303) is installed on the inner wall of the fixed pipe (108). A sealing ring (304) is arranged inside the sealing frame (303). The sealing ring (304) is slidably matched with the inner wall of the sealing frame (303). A sealing gasket (305) is adhered to the surface of the sealing ring (304). The surface of the sealing gasket (305) is in contact with the surface of the pipe body (102).
6. An energy-saving high-temperature disinfection system according to claim 5, characterized in that: Equidistantly arranged sealing springs (302) are installed inside the sealing frame (303). One end of the sealing spring (302) is fixed to the surface of the sealing ring (304). Equidistantly arranged sealing air bags (301) are installed on the inner walls of the sealing frame (303). The surfaces of the sealing air bags (301) are fixed to the surface of the sealing ring (304).
7. An energy-saving high-temperature disinfection system according to claim 1, characterized in that: The heat preservation and heat insulation part (403) is arranged on the inner walls of the second disinfection tank (101) and the cover body (103). The heat preservation and heat insulation part (403) is composed of a heat insulation board (4031), a first heat preservation layer (4032) and a second heat preservation layer (4033). Positioning clamping parts (401) are installed on the surfaces of the second disinfection tank (101). Positioning clamping grooves (402) are formed on the inner walls of the cover body (103). The positioning clamping grooves (402) are clamped and matched with the surfaces of the positioning clamping parts (401). The heat insulation board (4031) is adhered to the inner wall of the second disinfection tank (101).
8. An energy-saving high-temperature disinfection system according to claim 7, characterized in that: The first heat preservation layer (4032) is arranged on the inner wall of the heat insulation board (4031). The first heat preservation layer (4032) is bonded to the inner wall of the heat insulation board (4031). The second heat preservation layer (4033) for heat preservation and heat insulation of the interiors of the first disinfection tank (1) and the second disinfection tank (101) is adhered to the inner wall of the first heat preservation layer (4032). The surface of the second heat preservation layer (4033) is bonded to the inner wall of the first heat preservation layer (4032).