Sterile heating disinfection device

By designing a sterile heating and disinfection device, using the built-in electric heating components and power supply components of the base to achieve heating and ultrasonic cleaning of the disinfectant, the problem of lack of efficient heating equipment in the operating room is solved and the disinfection effect and safety are improved.

CN222899771UActive Publication Date: 2025-05-27CHINA JAPAN FRIENDSHIP HOSPITAL
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Patent Information

Application Number
CN202421478461.5
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-06-26
Publication Date
2025-05-27
Estimated Expiration
2034-06-26

AI Technical Summary

Technical Problem

The lack of efficient heating equipment in the operating room leads to the inability to quickly and safely disinfect the surgical equipment, affecting the disinfection effect.

Method used

A sterile heating and disinfection device is designed, including a base, a heater and an ultrasonic cleaner. The base has built-in electrical heating components and power supply components, and the heating and ultrasonic cleaning of the disinfectant is achieved through the heating interface and power supply interface.

Benefits of technology

The device can quickly and efficiently disinfect surgical equipment, ensuring disinfection effect, and at the same time it is safer and suitable for operating rooms.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses a sterile heating disinfection device, and relates to the technical field of decontamination equipment of surgical equipment. The sterile heating disinfection device comprises a base, a heater and an ultrasonic cleaner. Wherein an electric heating assembly and a power supply assembly are arranged in the base, a heating interface and a power supply interface are formed in the top of the base, and the power supply assembly is electrically connected with the power supply interface; a heating cavity for accommodating liquid is formed in the middle of the heater, a first placement opening communicated with the heating cavity is formed in the top of the heater, and the heater can be placed at the heating interface so as to electrically or magnetically heat the disinfectant through the electric heating assembly; the ultrasonic cleaner is used for ultrasonic cleaning, a cleaning cavity for containing ultrasonic cleaning liquid is formed in the middle of the ultrasonic cleaner, a second containing opening communicated with the cleaning cavity is formed in the top of the ultrasonic cleaner, and the ultrasonic cleaner can be placed on the power supply interface to supply power to the ultrasonic cleaner. By using the sterile heating and sterilizing device, the surgical equipment can be quickly and efficiently sterilized in an operating room, and the sterilizing effect on the surgical equipment is effectively ensured.
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Description

Technical Field

[0001] The utility model relates to the technical field of surgical equipment disinfection equipment, and more specifically, to a sterile heating and disinfection device. Background Art

[0002] During the operation, it is often necessary to disinfect surgical equipment. For example, wipe the lens of the endoscope. And to ensure complete sterility, hot water is poured during the wiping process for disinfection. However, at present, microwave ovens are not allowed in operating rooms and professional diagnosis and treatment rooms, so rapid and safe heating cannot be achieved.

[0003] In summary, how to change the current situation that surgical equipment cannot be efficiently disinfected in the operating room while improving the disinfection effect is an urgent problem for technicians in this field at present. Summary of the Utility Model

[0004] In view of this, the purpose of the utility model is to provide a sterile heating and disinfection device. Using this sterile heating and disinfection device can not only disinfect surgical equipment quickly and efficiently in the operating room, but also effectively ensure the disinfection effect on surgical equipment.

[0005] In order to achieve the above purpose, the utility model provides the following technical solutions:

[0006] A sterile heating and disinfection device, comprising:

[0007] A base, which internally has an electric heating component and a power supply component. The top of the base has a heating interface and a power supply interface, and the power supply component is electrically connected to the power supply interface;

[0008] A heater, which has a heating cavity for containing liquid in the middle and a first placement opening communicating with the heating cavity at the top. The heater can be placed on the heating interface to electrically or magnetically heat the disinfectant through the electric heating component;

[0009] An ultrasonic cleaner for ultrasonic cleaning, which has a cleaning cavity for containing ultrasonic cleaning liquid in the middle and a second placement opening communicating with the cleaning cavity at the top. The ultrasonic cleaner can be placed on the power supply interface to supply power to the ultrasonic cleaner.

[0010] Preferably, it further includes another heater. The top of the base has two heating interfaces, and the heater can be arranged corresponding to the heating interfaces to heat the liquid inside through the electric heating component.

[0011] Preferably, both the heater and the ultrasonic cleaner include a metal outer bottle and an inner liner. The inner liner is inserted into the inside of the metal outer bottle to prevent the heater and the ultrasonic cleaner from having rigid collisions with the instruments in their inner cavities.

[0012] Preferably, the inner container of the ultrasonic cleaner has a sealing structure for opening or closing the second placement opening.

[0013] Preferably, the heater and the ultrasonic cleaner are both placed on the base through a fixture. The heater and the ultrasonic cleaner are plugged into the corresponding fixture, and the heater and the ultrasonic cleaner can be prevented from rigidly colliding with the base through the fixture.

[0014] Preferably, a plurality of the heating interfaces are all the same;

[0015] And / or, the base is provided with a plurality of identical power supply interfaces.

[0016] Preferably, the top of the base has a groove, and the power supply interface and the heating interface are both located inside the groove. The heater and the ultrasonic cleaner can be inserted into or pulled out of the corresponding groove.

[0017] Preferably, it further includes a cable and a plurality of sterile bags. The cable is electrically connected to the electric heating component and the power supply component. The free end of the cable extends to the outside of the base, and the sterile bag can be wrapped around or unwrapped from the outside of the cable;

[0018] And / or, it further includes a plurality of cleaning bags, and the cleaning bags can be wrapped around or unwrapped from the outside of the heater or the ultrasonic cleaner.

[0019] Preferably, the heater and the ultrasonic cleaner further include a bottle cap that can be opened and closed on the metal outer bottle to close or open the metal outer bottle.

[0020] Preferably, the base includes a support part and a plurality of partition parts located on the top of the support part. The space on the top of the support part is divided into a plurality of independent operation rooms through the plurality of partition parts, and the heating interface and the power supply interface are respectively located in the corresponding operation rooms.

[0021] For the sterile heating and disinfection device provided by the present invention, the base is used to support and install the heater, the ultrasonic cleaner, etc. and cooperate with them to achieve heating or ultrasonic cleaning.

[0022] First, an electric heating component is arranged inside the base, such as a resistor and its circuit devices, a heating coil and its circuit devices, etc. Correspondingly, a heating interface, such as a power-on terminal, is reserved on the top of the base. Then, the heater is placed on the heating interface, and the disinfectant liquid in the heating cavity can be heated through the electric heating component. Moreover, a through hole is opened on the top of the heater as the first placement opening, and the medical device to be cleaned can be placed into the heating cavity through the first placement opening to achieve cleaning and disinfection.

[0023] Furthermore, a power supply component is also provided inside the base. The power supply component may include devices such as cables and resistors that form a circuit. Correspondingly, a power supply interface is provided on the top of the base. After placing the ultrasonic cleaner on the power supply interface, the ultrasonic cleaner can be connected to the circuit formed by the power supply component to be powered by the power supply component. The ultrasonic cleaner has a cleaning chamber inside, and a through hole is opened at the top of the ultrasonic cleaner as a second placement opening. Then, the medical device to be cleaned can be placed into the cleaning chamber through the second placement opening to achieve ultrasonic cleaning.

[0024] This sterile heating and disinfection device can efficiently perform high-temperature cleaning and ultrasonic cleaning on medical devices, and has relatively high safety. BRIEF DESCRIPTION OF THE DRAWINGS

[0025] In order to more clearly illustrate the technical solutions in the embodiments of the present invention or the prior art, the following will briefly introduce the drawings required for use in the description of the embodiments or the prior art. Obviously, the drawings in the following description are only the embodiments of the present invention. For those of ordinary skill in the art, without creative efforts, other drawings can also be obtained according to the provided drawings.

[0026] Figure 1 Structural schematic diagram of a specific embodiment provided by the present invention;

[0027] Figure 2 First schematic diagram of the base of a specific embodiment provided by the present invention;

[0028] Figure 3 First perspective schematic diagram of a specific embodiment provided by the present invention;

[0029] Figure 4 Second schematic diagram of the base of a specific embodiment provided by the present invention;

[0030] Figure 5 Second perspective schematic diagram of a specific embodiment provided by the present invention;

[0031] Figure 6 Third perspective schematic diagram of a specific embodiment provided by the present invention;

[0032] Figure 7 Third schematic diagram of the base of a specific embodiment provided by the present invention;

[0033] Figure 8 Fourth schematic diagram of the base of a specific embodiment provided by the present invention;

[0034] Figure 9 Partial schematic diagram of the heater of a specific embodiment provided by the present invention;

[0035] Figure 10 A partial schematic view of the ultrasonic cleaner according to the specific embodiment provided by the present utility model;

[0036] Figure 11 is Figure 10 a schematic view of the closed state of the inner liner in

[0037] Figure 12 is Figure 10 a schematic view of the open state of the inner liner in

[0038] Reference numerals:

[0039] 1 - Base; 11 - Heating interface; 12 - Power supply interface; 13 - Groove; 14 - Support part; 15 - Partition part;

[0040] 2 - Heater; 21 - Heating chamber; 22 - First placement opening;

[0041] 3 - Ultrasonic cleaner; 31 - Cleaning chamber; 32 - Second placement opening;

[0042] 4 - Fixer; 5 - Cable; 6 - Sterile bag;

[0043] 70 - Metal outer bottle; 80 - Inner liner; 801 - Sealing structure; 90 - Bottle cap. Detailed implementation manners

[0044] Next, the technical solutions in the embodiments of the present utility model will be clearly and completely described with reference to 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 the embodiments. Based on the embodiments of the present utility model, all other embodiments obtained by those of ordinary skill in the art without making creative efforts shall fall within the protection scope of the present utility model.

[0045] The core of the present utility model is to provide a sterile heating and disinfection device. Using this sterile heating and disinfection device can not only quickly and efficiently disinfect surgical equipment in the operating room, but also effectively ensure the disinfection effect on surgical equipment.

[0046] Please refer to Figure 1, the present utility model provides a sterile heating and disinfection device, including a base 1, a heater 2, and an ultrasonic cleaner 3. Among them, the interior of the base 1 has an electric heating component and a power supply component. The top of the base 1 has a heating interface 11 and a power supply interface 12. The power supply component is electrically connected to the power supply interface 12; the middle part of the heater 2 has a heating chamber 21 for accommodating liquid, and the top has a first placement opening 22 communicating with the heating chamber 21. The heater 2 can be placed on the heating interface 11 to electrically or magnetically heat the disinfectant liquid through the electric heating component; the ultrasonic cleaner 3 is used for ultrasonic cleaning. The middle part has a cleaning chamber 31 for accommodating ultrasonic cleaning liquid, and the top has a second placement opening 32 communicating with the cleaning chamber 31. The ultrasonic cleaner 3 can be placed on the power supply interface 12 to supply power to the ultrasonic cleaner 3.

[0047] The base 1 is used to support and install the heater 2, the ultrasonic cleaner 3, etc. and cooperate with them to achieve heating or ultrasonic cleaning.

[0048] First, an electric heating component is provided inside the base 1, such as heating resistors and their circuit devices, heating coils and their circuit devices, etc. Correspondingly, as Figures 1 to 8 shown, a heating interface 11, such as a power-on terminal, is reserved at the top of the base 1. Then, by placing the heater 2 on the heating interface 11, the disinfectant liquid in the heating chamber 21 can be heated through the electric heating component. And a through hole is opened at the top of the heater 2 as the first placement opening 22, so that the medical device to be cleaned can be placed into the heating chamber 21 through the first placement opening 22 to achieve cleaning and disinfection.

[0049] Second, a power supply component is also provided inside the base 1. The power supply component may include devices forming a circuit such as a cable 5, a resistor, etc. Correspondingly, as Figures 1 to 8 shown, a power supply interface 12 is provided at the top of the base 1. After placing the ultrasonic cleaner 3 on the power supply interface 12, the ultrasonic cleaner 3 can be connected to the circuit formed by the power supply component to supply power to the ultrasonic cleaner 3 through the power supply component; the ultrasonic cleaner 3 has a cleaning chamber 31 inside, and a through hole is opened at the top of the ultrasonic cleaner 3 as the second placement opening 32, so that the medical device to be cleaned can be placed into the cleaning chamber 31 through the second placement opening 32 to achieve ultrasonic cleaning.

[0050] This sterile heating and disinfection device can efficiently perform high-temperature cleaning and ultrasonic cleaning on medical devices, and has relatively high safety.

[0051] In some possible embodiments, the electric heating component adopts an electromagnetic heating component, the power supply component adopts a wireless power supply component, and a component for cooperating with the power supply component to achieve power supply is provided inside the ultrasonic cleaner 3. Then, placing the fixer 4 on the heating interface 11 can achieve heating. Similarly, placing the ultrasonic cleaner 3 on the power supply interface 12 can achieve power supply.

[0052] In some possible embodiments, a plug-in terminal is provided as a heating interface 11 for plugging in a heater 2 to achieve heating, and a plug-in terminal is provided as a power supply interface 12 for plugging in an ultrasonic cleaner 3 to achieve power supply. After plugging the heater 2 into the heating interface 11, heating can be achieved. Similarly, after plugging the ultrasonic cleaner 3 into the power supply interface 12, power supply can be achieved.

[0053] It should be noted that the types of the heating interface 11 and the electrolytic heat component cooperating therewith, and the power supply interface 12 and the power supply component cooperating therewith are not limited, as long as the above functions can be satisfied.

[0054] On the basis of the above embodiments, another heater 2 is further included. The top of the base 1 has two heating interfaces 11, and the heater 2 can be arranged at the corresponding heating interfaces 11 to heat the liquid inside it through an electric heating component.

[0055] As Figures 1 to 8 shown, two heating interfaces 11 are provided on the base 1. In some possible embodiments, the power supply interface 12 and the two heating interfaces 11 are arranged collinearly on the upper surface of the base 1. For example, in the horizontal direction, they are the power supply interface 12, the heating interface 11, the heating interface 11 in sequence, or, in the horizontal direction, they are the heating interface 11, the power supply interface 12, the heating interface 11, etc.; in some possible embodiments, the power supply interface 12 and the two heating interfaces 11 are arranged in a triangular shape on the upper surface of the base 1. For example, the power supply interface 12 is arranged at the top angle position, and the heating interfaces 11 are arranged at the two bottom foot positions.

[0056] It should be noted that the two heating interfaces 11 can be the same or different, and the heaters 2 cooperating with the two heating interfaces 11 can be the same or different, as long as the liquid inside the heater 2 can be heated.

[0057] Correspondingly, two independent sets of electric heating components are arranged inside the base 1, or a set of electric heating components with two heating resistors and / or heating coils and other types of heating terminals are provided to heat the heaters 2 placed at the two heating interfaces 11 respectively. With such an arrangement, different types or a large amount of disinfectant solutions can be heated through each heater 2, such as heating cold water and sterile saline respectively, or all for heating cold water.

[0058] On the basis of the above embodiments, both the heater 2 and the ultrasonic cleaner 3 include a metal outer bottle 70 and an inner container 80. The inner container 80 is inserted inside the metal outer bottle 70 to prevent the heater 2 and the ultrasonic cleaner 3 from having a rigid collision with the instruments in their inner cavities.

[0059] As Figure 3 、 Figure 5 andFigure 6 As shown, both the heater 2 and the ultrasonic cleaner 3 are double-layer structures. In this embodiment, the outer layer is a metal outer bottle 70 with a relatively high thermal conductivity and / or ultrasonic conductivity to improve the heating efficiency and ultrasonic cleaning performance. The inner layer is an elastic inner bladder 80 with relatively low hardness, such as a plastic structure or a silicone structure, etc., to prevent damage to the instruments placed therein.

[0060] In some possible embodiments, in the heater 2, the inner bladder 80 is inserted into the metal outer bottle 70, and the peripheral wall of the inserted part is provided with drainage holes. Specifically, the drainage holes are through holes. During use, first heat the liquid in the metal outer bottle 70, and then insert the inner bladder 80 into the corresponding metal outer bottle 70. During this process, the liquid in the metal outer bottle 70 can flow into the inner bladder 80 through the drainage holes. Such a setting is beneficial to further improve the heating efficiency while effectively preventing damage to the instruments placed in the heater 2.

[0061] Based on the above embodiments, the inner bladder 80 of the ultrasonic cleaner 3 has a plugging structure 801 that can open or close the second placement opening 32.

[0062] As Figures 10 to 12 shown, the inner bladder 80 of the ultrasonic cleaner 3 has a second placement opening 32 at the top, so that the instrument can be placed into the ultrasonic cleaner 3 through the second placement opening 32, and a plugging structure 801 that can open or close is provided at the second placement opening 32. For example, the plugging structure 801 is a plug that can be inserted into or pulled out of the second placement opening 32. Before placing the instrument into the ultrasonic cleaner 3, pull out the plugging structure 801, and then the instrument can be placed in. When taking the instrument out of the ultrasonic cleaner 3, the operation is opposite to the above operation.

[0063] Furthermore, the inner bladder 80 of the ultrasonic cleaner 3 is made of a rubber part. Such a setting is beneficial to prevent the ultrasonic waves from emitting during the cleaning of the instrument by the ultrasonic cleaner 3, so as to prevent adverse effects or damage to the operator.

[0064] Preferably, as Figures 10 to 12As shown, the plugging structure 801 can adopt a number of elastic fan-shaped structures. Each fan-shaped structure is arranged in a circle and the fan-shaped structures are spliced. When the instrument is placed into the ultrasonic cleaner 3, the instrument can push open each fan-shaped structure, and then the instrument can be placed in. And each fan-shaped structure abuts against the peripheral wall of the instrument, or automatically resets to close the second placement opening 32. Preferably, the plugging structure 801 adopts an elastically contractible annular structure. When the instrument is placed into the ultrasonic cleaner 3, push the plugging structure 801 to make it contract, and then the instrument can be placed in. Remove the pressure applied on the plugging structure 801 to make the plugging structure 801 abut against the peripheral surface of the instrument, or automatically reset to close the second placement opening 32. That is, the plugging structure 801 adopts an elastic structure, which is beneficial to further ensure the sealing of the inner cavity of the inner tank 80 and is convenient to operate.

[0065] Based on the above embodiments, the heater 2 and the ultrasonic cleaner 3 are both placed on the base 1 through the fixer 4. The heater 2 and the ultrasonic cleaner 3 are plugged into the corresponding fixer 4, and the heater 2 and the ultrasonic cleaner 3 can be prevented from having a rigid collision with the base 1 through the fixer 4.

[0066] As Figure 6 shown, the heater 2 and the ultrasonic cleaner 3 can both be plugged on the fixer 4, and thus are placed on the base 1 through the fixer 4. In this embodiment, the fixer 4 can adopt a structure with a hardness lower than that of the base 1, such as a silica gel seat or a plastic seat, etc., to prevent damage to the heater 2, the ultrasonic cleaner 3, and the base 1.

[0067] Based on the above embodiments, a number of heating interfaces 11 are all the same; and / or, the base 1 is provided with a number of identical power supply interfaces 12. In this embodiment, the heating interfaces 11 in the sterile heating and disinfection device are designed in a unified manner, so that each heater 2 can be set on any one of the heating interfaces 11. Similarly, the power supply interfaces 12 in the sterile heating and disinfection device are also designed in a unified manner, so that the ultrasonic cleaner 3 can be set on different power supply interfaces 12.

[0068] Based on the above embodiments, the top of the base 1 has a groove 13, and the power supply interface 12 and the heating interface 11 are both located inside the groove 13. The heater 2 and the ultrasonic cleaner 3 can be inserted into or pulled out from the corresponding groove 13.

[0069] As Figure 8 shown, a groove 13 is opened at the top of the base 1, and the power supply interface 12 and the heating interface 11 are arranged inside the groove 13. After the heater 2 is inserted into the heating interface 11, heating can be realized through the heating component. Similarly, after the ultrasonic cleaner 3 is inserted into the power supply interface 12, power supply can be realized through the power supply component.

[0070] Further, the fixer 4 can be inserted into the interior of the groove 13, and the heater 2 and the ultrasonic cleaner 3 can be inserted into the groove 13 through the fixer 4.

[0071] Based on the above embodiments, it further includes a cable 5 and a plurality of sterile bags 6. The cable 5 is electrically connected to the electric heating component and the power supply component. The free end of the cable 5 extends to the outside of the base 1, and the sterile bag 6 can be wrapped around or unwrapped from the outside of the cable 5.

[0072] In this embodiment, straps or adhesive tapes are provided at the ends of the sterile bag 6, so that the sterile bag 6 can be put on the outside of the cable 5 and fixed, as shown in Figure 3 、 Figure 5 and Figure 6 to prevent the cable 5 from contaminating the operating room, and it is also convenient to remove the sterile bag 6 to facilitate the cleaning and disinfection of the cable 5.

[0073] Based on the above embodiments, it further includes a plurality of cleaning bags, and the cleaning bags can be wrapped around or unwrapped from the outside of the heater 2 or the ultrasonic cleaner 3.

[0074] In this embodiment, straps or adhesive tapes are provided at the ends of the cleaning bags, so that the cleaning bags can be put on the outside of the outer bottle and fixed to prevent the heater 2 and the ultrasonic cleaner 3 from contaminating the operating room, and it is also convenient to remove the cleaning bags to facilitate the cleaning and disinfection of the heater 2 and the ultrasonic cleaner 3.

[0075] Based on the above embodiments, the heater 2 and the ultrasonic cleaner 3 further include a bottle cap 90 that can be opened and closed on the metal outer bottle 70 to close or open the metal outer bottle 70.

[0076] As shown in Figure 3 、 Figure 5 and Figure 6 The bottle cap 90 and the metal outer bottle 70 can be fitted by means of screw connection or snap connection. When in use, the bottle cap 90 is removed to open the first placement port 22 or the second placement port 32, and after use or when needed, the metal outer bottle 70 and the inner liner 80 inserted into the metal outer bottle 70 can be closed by the bottle cap 90.

[0077] Based on any of the above embodiments, the base 1 includes a support portion 14 and a plurality of partition portions 15 located at the top of the support portion 14. The space at the top of the support portion 14 is divided into a plurality of independent operation rooms by the plurality of partition portions 15, and the heating interface 11 and the power supply interface 12 are located in the corresponding operation rooms one by one.

[0078] As shown in Figure 7 and Figure 8As shown, the heating interface 11 and the power supply interface 12 are both arranged on the supporting part 14, and a number of partition parts 15 are arranged on the supporting part 14. The partition parts 15 can adopt a flat plate structure or a U-shaped bending plate structure, etc. Then, the space enclosed by one partition part 15 and the supporting part 14 is the operation room, or the space enclosed by adjacent partition parts 15 and the supporting part 14 is the operation room. The corresponding heating interface 11 or power supply interface 12 is arranged in each operation room, so that the heater 2 and the ultrasonic cleaner 3 cooperating with the heating interface 11 and the power supply interface 12 can be in independent spaces to prevent cross-contamination between the operation rooms.

[0079] Furthermore, each partition part 15 adopts a transparent structure to facilitate observing the situations in the operation rooms.

[0080] Based on any of the above embodiments, four spaced feet are provided at the bottom of the base 1 for stable support.

[0081] It should be noted that the relational terms such as "first" and "second" mentioned above are only used to distinguish one entity from several other entities, and do not necessarily require or imply any such actual relationship or order between these entities; the "upper surface, lower surface, top, bottom" and the orientation words "up, down, left, right" mentioned above are defined based on the accompanying drawings of the specification.

[0082] In this specification, the various embodiments are described in a progressive manner. The key point of each embodiment is to illustrate the differences from other embodiments. The same or similar parts among the embodiments can be referred to each other.

[0083] The aseptic heating and disinfection device provided by the present utility model has been introduced in detail above. Specific examples are used herein to elaborate on the principle and implementation manner of the present utility model. The description of the above embodiments is only used to help understand the method and its core idea of the present utility model. It should be pointed out that for those of ordinary skill in the art in this technical field, without departing from the principle of the present utility model, several improvements and modifications can be made to the present utility model, and these improvements and modifications also fall within the protection scope of the present utility model.

Claims

1. A sterile heating disinfection device, characterized in that: include: A base (1) having an electric heating component and a power supply component inside, the top of the base (1) having a heating interface (11) and a power supply interface (12), the power supply component being electrically connected to the power supply interface (12); A heater (2), wherein the middle portion has a heating chamber (21) for containing liquid, and the top portion has a first placement port (22) communicating with the heating chamber (21); the heater (2) can be placed on the heating interface (11) to electrically or magnetically heat the disinfectant through the electric heating component; An ultrasonic cleaner (3) for ultrasonic cleaning, wherein the middle portion has a cleaning chamber (31) for containing ultrasonic cleaning liquid, and the top portion has a second placement opening (32) connected to the cleaning chamber (31); the ultrasonic cleaner (3) can be placed on the power supply interface (12) to supply power to the ultrasonic cleaner (3); It also comprises another heater (2), the top of the base (1) is provided with two heating interfaces (11), and the heater (2) can be arranged corresponding to the heating interfaces (11) to heat the liquid inside the heater through the electric heating component; The heater (2) and the ultrasonic cleaner (3) both comprise a metal outer bottle (70) and an inner liner (80), wherein the inner liner (80) is inserted into the metal outer bottle (70) to prevent the heater (2) and the ultrasonic cleaner (3) from having a rigid collision with the equipment in their inner cavities; The heater (2) and the ultrasonic cleaner (3) are both placed on the base (1) via a fixture (4); the heater (2) and the ultrasonic cleaner (3) are plugged into the corresponding fixture (4); the heater (2) and the ultrasonic cleaner (3) can be prevented from having a rigid collision with the base (1) via the fixture (4); The heater (2) and the ultrasonic cleaner (3) further include a bottle cap (90) which can be opened and closed on the metal outer bottle (70) so as to close or open the metal outer bottle (70).

2. The aseptic heating disinfection device according to claim 1, characterized in that: The inner container (80) of the ultrasonic cleaner (3) has a sealing structure (801) capable of opening or closing the second placement opening (32).

3. The aseptic heating disinfection device according to claim 1, characterized in that: The plurality of heating interfaces (11) are all the same; And / or, the base (1) is provided with a plurality of identical power supply interfaces (12).

4. The aseptic heating disinfection device according to claim 1, characterized in that: The top of the base (1) is provided with a groove (13), the power supply interface (12) and the heating interface (11) are both located inside the groove (13), and the heater (2) and the ultrasonic cleaner (3) can be inserted into or pulled out of the corresponding groove (13).

5. The aseptic heating disinfection device according to claim 1, characterized in that: It also includes a cable (5) and a plurality of sterile bags (6), wherein the cable (5) electrically connects the electric heating component and the power supply component, the free end of the cable (5) extends to the outside of the base (1), and the sterile bag (6) can be wrapped or unwrapped on the outside of the cable (5); And / or, it also includes a plurality of cleaning bags, which can be wrapped or unwrapped on the outside of the heater (2) or the ultrasonic cleaner (3).

6. The aseptic heating disinfection device according to any one of claims 1 to 5, characterized in that: The base (1) comprises a support portion (14) and a plurality of blocking portions (15) located on the top of the support portion (14); the space on the top of the support portion (14) is divided into a plurality of mutually independent operating rooms by the plurality of blocking portions (15); the heating interface (11) and the power supply interface (12) are located in the corresponding operating rooms one by one.