Humidifying device assembly and structure

By using a humidifying ball with no flowing liquid water and an integrated structural design, combined with a sealing head and an anti-slip insert, the choking hazard, hospital infection risk, and noise problem of traditional humidification devices are solved, achieving safe, effective, and stable humidification.

CN223682905UActive Publication Date: 2025-12-19TANGSHAN ENPUSHI PHARM TECH CO LTD
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Patent Information

Application Number
CN202520230057.4
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-02-13
Publication Date
2025-12-19
Estimated Expiration
2035-02-13

AI Technical Summary

Technical Problem

Traditional humidification devices pose risks of choking and drowning, hospital-acquired infections, and noise pollution.

Method used

It employs a humidification ball with no flowing liquid water and an integrated structural design, combined with a sealing head, anti-slip insert, and specific channels to ensure humidification effect, hygiene, and stability.

Benefits of technology

It significantly improves safety, hygiene, and comfort, reduces the risk of choking, hospital-acquired infections, and noise interference, and enhances the stability and reliability of the device.

✦ Generated by Eureka AI based on patent content.

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Abstract

The embodiment of the utility model relates to the technical field of gas humidifying devices, and provides a humidifying device assembly which comprises a main body, the main body is provided with a cavity, and the cavity is provided with a first connecting port and a second connecting port; the humidifying balls are arranged in the cavity, and the humidifying balls are arranged in the cavity. The sealing device further comprises a first sealing head and a second sealing head, and the first sealing head and the second sealing head are arranged on the first connecting opening and the second connecting opening respectively. Another embodiment of the utility model provides a humidifying device structure which comprises the humidifying device assembly and further comprises a first connecting pipe, and the first connecting pipe is connected with the first connecting port; and the second connecting pipe is connected with the second connecting port. By means of the technical scheme, the technical problems that in the prior art, a humidifying device is poor in humidifying effect, and the hidden danger of choking, the hospital infection risk and the noise influence exist are solved.
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Description

TECHNICAL FIELD

[0001] Embodiments of the present disclosure relate to the technical field of gas humidification device, in particular, to a breathing humidification device assembly and structure. BACKGROUND

[0002] The humidification device is a medical equipment for humidifying inhaled gas, mainly used for assisting patients in breathing, keeping the inhaled gas at a suitable humidity, avoiding the drying of respiratory mucosa, and helping to maintain the normal physiological function of the respiratory tract. The traditional breathing humidification device usually uses liquid water to humidify the gas, which has the following pain points: first, the risk of choking, which may occur during use, and the risk of splashing liquid and choking the patient will be doubled in the moving humidification device; second, the risk of hospital infection, which may cause hospital infection due to the breeding of viruses, fungi and other pathogens; third, the noise impact, which may have adverse effects on the patient's rest and other activities. CONTENT OF THE UTILITY MODEL

[0003] In order to overcome the above-mentioned defects, the embodiments of the present disclosure provide a humidification device assembly and structure, which solves the technical problem of poor humidification effect of the existing humidification device, and the risks of choking, hospital infection and noise impact.

[0004] According to one aspect, at least one embodiment of the present disclosure provides a humidification device assembly, comprising:

[0005] a main body having a cavity, the cavity having a first connecting port and a second connecting port;

[0006] a plurality of humidification balls arranged in the cavity.

[0007] For example, the humidification device assembly provided by at least one embodiment of the present disclosure further comprises a first plug and a second plug, and the first plug and the second plug are arranged on the first connecting port and the second connecting port, respectively.

[0008] For example, the humidification device assembly provided by at least one embodiment of the present disclosure, the first plug and the second plug are an integral structure with the main body, and the humidification balls are humidification balls without flowing liquid water.

[0009] For example, the humidification device assembly provided by at least one embodiment of the present disclosure, the connection between the first plug and the second plug and the main body has an annular groove for facilitating the unscrewing of the first plug and the second plug; the first plug and the second plug each have a hand pinch portion.

[0010] For example, the humidifying device assembly provided by at least one embodiment of the present disclosure further has an anti-skid insertion part, and the annular groove is located between the anti-skid insertion part and the hand-gripping part, and the anti-skid insertion part is used for insertion.

[0011] For example, the humidifying device assembly provided by at least one embodiment of the present disclosure has a plurality of annular anti-skid conical ribs on the anti-skid insertion part, and the main body is cylindrical or spherical.

[0012] For example, the humidifying device assembly provided by at least one embodiment of the present disclosure comprises:

[0013] a barrel;

[0014] a first cover and a second cover, the first cover and the second cover are respectively arranged at two ends of the barrel, the first cover has a first connecting port, and the second cover has a second connecting port.

[0015] For example, the humidifying device assembly provided by at least one embodiment of the present disclosure has a plurality of circumferential arrangements of reinforcing ribs in the cavity.

[0016] For example, the humidifying device assembly provided by at least one embodiment of the present disclosure has a first connecting channel and a second connecting channel, the first connecting channel has the first connecting port, the second connecting channel has the second connecting port, the first connecting channel and the first connecting port are formed on the first cover, and the first connecting channel and the second connecting port are formed on the second cover.

[0017] For example, the humidifying device assembly provided by at least one embodiment of the present disclosure further comprises:

[0018] a partition, the humidifying ball is provided with the partition between the first cover and the second cover, and the partition has a plurality of through holes;

[0019] a water-absorbing member, the partition is provided with the filter between the first cover and the second cover;

[0020] The water-absorbing member has an insertion channel, and the first connecting channel and the second connecting port pass into the insertion channel.

[0021] According to another aspect, the present disclosure at least one embodiment further provides a humidifying device structure comprising the humidifying device assembly, and further comprising:

[0022] a first connecting pipe, the first connecting pipe is connected with the first connecting port;

[0023] a second connecting pipe, the second connecting pipe is connected with the second connecting port.

[0024] The beneficial effects of the embodiments disclosed herein are as follows:

[0025] This disclosure significantly improves the safety, hygiene, and comfort of humidification devices. By utilizing a cavity with a humidification bulb, safe, low-noise, and effective humidification of gases is achieved. The structure and operation of conventional humidification devices are improved to better meet the needs of patients. Attached Figure Description

[0026] To more clearly illustrate the technical solutions in the embodiments of this disclosure, the accompanying drawings used in the description of the embodiments of this disclosure will be briefly introduced below. Obviously, the drawings described below are merely some exemplary embodiments of this disclosure. For those skilled in the art, other drawings can be obtained based on the content of the exemplary embodiments of this disclosure and these drawings without any creative effort.

[0027] Figure 1 This is a schematic diagram of the structure of a humidification device assembly in one embodiment of the present disclosure;

[0028] Figure 2 for Figure 1 A schematic diagram of the internal structure of the humidification device assembly in the embodiment;

[0029] Figure 3 for Figure 1 A schematic diagram of the internal structure of the first cap in the embodiment;

[0030] Figure 4 for Figure 1 A bottom view of the structure of the first cap in the embodiment;

[0031] Figure 5 This is a schematic diagram of the structure of the humidification device assembly in yet another embodiment of this disclosure;

[0032] Figure 6 for Figure 5 A side view of the internal structure of the partition in the embodiment;

[0033] Figure 7 for Figure 5 A bottom view of the internal structure of the partition in the embodiment;

[0034] Figure 8 This is a schematic diagram of the structure of the humidification device in one embodiment of the present disclosure;

[0035] In the figure: main body-1, cavity-101, first connecting port-102, second connecting port-103, anti-skid insertion part-104, annular anti-skid taper-105, cylinder-106, first cover-107, second cover-108, reinforcing ridge-109, first connecting channel-110, second connecting channel-111, humidification ball-2, first plug-3, second plug-4, annular groove-5, partition-6, through hole-601, water absorption part-7, insertion channel-701, connecting pipe one-8, connecting pipe two-9. DETAILED DESCRIPTION

[0036] The present disclosure will be further described in conjunction with the drawings and embodiments. It can be understood that the specific embodiments described herein are only used to explain the present disclosure, but not to limit the present disclosure.

[0037] In order to make the drawing simple, only the parts related to the disclosure are shown in each figure, which does not represent the actual structure of the product. In addition, in order to make the drawing simple and easy to understand, in some figures, only one of the parts with the same structure or function is shown, or only one of them is marked. In this paper, "one" not only means "only one", but also means "more than one", and "several" includes "two" and "more than two".

[0038] In this paper, it should be noted that, unless otherwise specified and limited, the terms "mounting", "connection" and "connection" should be understood broadly, for example, it can be fixed connection, or detachable connection, or integral connection; it can be mechanical connection, or electrical connection; it can be direct connection, or indirect connection through intermediate medium, or internal communication of two elements. For those skilled in the art, the specific meaning of the above terms in the present disclosure can be understood according to the specific circumstances.

[0039] In the present disclosure, unless otherwise specified and limited, the first feature "on" or "under" the second feature can include that the first and second features are in direct contact, or that the first and second features are not in direct contact but are in contact through another feature between them. Moreover, the first feature "on", "above" and "above" the second feature includes that the first feature is directly above and obliquely above the second feature, or only means that the horizontal height of the first feature is higher than that of the second feature. The first feature "below", "below" and "below" the second feature includes that the first feature is directly below and obliquely below the second feature, or only means that the horizontal height of the first feature is less than that of the second feature.

[0040] In the description of this embodiment, terms such as "upper," "lower," "left," and "right" are based on the orientation or positional relationship shown in the accompanying drawings. They are used only for the convenience of description and simplification of operation, and are not intended to indicate or imply that the device or element referred to must have a specific orientation, or be constructed and operated in a specific orientation. Therefore, they should not be construed as limitations on this disclosure.

[0041] Furthermore, in the description of this application, the terms "first," "second," etc., are used only to distinguish descriptions and should not be construed as indicating or implying relative importance.

[0042] like Figures 1-4 As shown, a humidification device assembly according to an embodiment of the present disclosure is illustrated. In this humidification device assembly, the main body 1 has a cavity 101, which is provided with a first connection port 102 and a second connection port 103. A plurality of humidification balls 2 are disposed within the cavity 101.

[0043] In practical applications, such as in patient respiratory support scenarios: gas enters the cavity 101 through the first connection port 102 and comes into full contact with the internal humidification bulb 2. The porous structure of the humidification bulb 2 can effectively adsorb moisture and release it evenly into the gas as it passes through, thus achieving gas humidification. The treated gas is then output through the second connection port 103 for the patient to inhale.

[0044] The advantages of this design are: First, it avoids the choking risk that may be associated with traditional liquid humidification methods, as the absence of a large amount of liquid reduces the possibility of splashing and patient choking. Second, it reduces the risk of hospital-acquired infections. The humidification bulb 2 is relatively independent and easy to clean and replace, reducing the opportunity for pathogen growth. It can also be designed as a disposable product, allowing for convenient replacement of the entire humidification device after use, eliminating the risk of cross-infection. Third, it reduces operating noise. Compared to traditional devices, this design produces less noise and will not significantly disturb patients' rest.

[0045] For example, when a patient needs to move, this humidification device can stably provide humidified gas to the patient without worrying about liquid sloshing or splashing.

[0046] In terms of technical effectiveness, it significantly improves the safety, hygiene, and comfort of using humidification devices. Overall working principle: Utilizing a cavity 101 with a humidification bulb 2, it achieves safe, low-noise, and effective humidification of gas. Overall technical benefits: It improves the structure and operation of traditional humidification devices, better meeting the needs of patients.

[0047] In some examples, a first sealing head 3 and a second sealing head 4 are also included, which are respectively disposed on the first connection port 102 and the second connection port 103.

[0048] In actual use, for example, when the humidification device is not working or needs to be paused: the first plug 3 can effectively close the first connection port 102, preventing dust, impurities, and other external pollutants from entering the inside of the cavity 101, thereby avoiding contamination of the humidification ball 2. Similarly, the second plug 4 can close the second connection port 103, preventing the humidification ball 2 inside the cavity 101 from drying out, while also preventing external pollutants from entering from the second connection port 103.

[0049] The advantages of this design are: first, it improves the hygiene and safety of the humidification device. By setting the plugs, the influence of external pollutants on the inside of the device is effectively reduced, and the humidification ball 2 is also prevented from drying out, ensuring the quality of the humidified gas. Second, it enhances the stability and reliability of the device, ensuring that the inside of the device remains clean and in good condition when not in use.

[0050] For example, during transportation or storage of the humidification device, the plugs can provide good protection and extend the service life of the device.

[0051] In terms of technical effects, the protection performance and preservation effect of the humidification device are significantly improved. The overall working principle: with the help of the first plug 3 and the second plug 4, the first connection port 102 and the second connection port 103 are closed and protected respectively. Overall technical effect: the structure of the humidification device is improved, allowing it to maintain good performance and sanitary conditions in various states.

[0052] In some examples, the first plug 3 and the second plug 4 are integrated with the main body 1, and the humidification ball 2 is a non-flowing liquid water humidification ball 2.

[0053] In actual application scenarios, such as continuous use of the humidification device in a medical environment: since the first plug 3 and the second plug 4 are integrated with the main body 1, this greatly improves the structural stability and sealing performance of the entire device. The integrated design reduces the possibility of gaps and looseness at the connection, reducing the risk of gas leakage and external pollutant intrusion. The use of non-flowing liquid water humidification ball 2 avoids many problems that may be caused by liquid water in traditional humidification methods. For example, when the device is moved or tilted, there is no liquid water flow or splashing, thereby eliminating the risk of choking and drowning. At the same time, non-flowing liquid water also reduces the conditions for the growth of bacteria, fungi, and other pathogens, reducing the risk of hospital infection.

[0054] The advantages of this design are: first, the integrated structure enhances the durability and reliability of the device, reducing the likelihood of component damage and failure. Second, the non-flowing liquid water humidification ball 2 improves the safety and hygiene of the humidification process, making it more suitable for medical equipment with strict requirements.

[0055] For example, during emergency transportation, even if the humidification device is subjected to jolts and shaking, the integrated structure and special humidification ball 2 can still ensure its normal and stable operation, providing safe and effective humidified gas for the patient.

[0056] In terms of technical effects, the stability, safety, and hygiene performance of the humidification device are significantly improved. Overall working principle: relying on the stability of the integrated structure and the characteristics of the non-flowing liquid water humidification ball 2, the reliable operation of the humidification device is ensured. Overall technical effect: the structure and humidification method of the humidification device are optimized, making it perform well under various complex conditions.

[0057] In some examples, the connection between the first plug 3 and the second plug 4 and the main body 1 is provided with an annular groove 5 for facilitating the unscrewing thereof, and the first plug 3 and the second plug 4 each have a hand pinch portion.

[0058] In actual operation, for example, when the humidification device needs to be maintained or the humidification ball 2 needs to be replaced: the presence of the annular groove 5 provides a convenient leverage point for the operator. By inserting a tool into the annular groove 5, torque can be more easily applied to unscrew the first plug 3 and the second plug 4. At the same time, the design of the hand pinch portion allows the operator to directly pinch the plug with his hand without tools, and perform the unscrewing operation.

[0059] The advantages of this design are: first, it improves the convenience and efficiency of operation, whether using tools or operating by hand, the plugs can be easily removed. Second, it facilitates regular cleaning, maintenance, and component replacement of the device, ensuring that the humidification device is always in good working condition.

[0060] For example, in the daily maintenance work of the hospital, medical staff can quickly disassemble the plugs to inspect and clean the inside of the cavity 101, ensuring the performance and hygiene of the humidification device.

[0061] In terms of technical effects, the maintainability and ease of use of the humidification device are significantly enhanced. Overall working principle: through the design of the annular groove 5 and the hand pinch portion, the disassembly operation of the first plug 3 and the second plug 4 is simplified. Overall technical effect: the maintenance efficiency and ease of use of the humidification device are improved, making it more adaptable to various needs in actual use.

[0062] In some examples, the main body 1 also has an anti-slip insertion portion 104, and the annular groove 5 is located between the anti-slip insertion portion 104 and the hand pinch portion.

[0063] In practical applications, such as when connecting or fixing the humidification device with other equipment: the anti-slip plug-in part 104 can provide good plug-in stability and friction, ensuring that the humidification device is not easily loose or detached in the plugged state. The annular groove 5 is reasonably designed between the anti-slip plug-in part 104 and the hand pinch part, neither affecting the plug-in function of the anti-slip plug-in part 104, nor facilitating the operator to unscrew the plug head through the annular groove 5.

[0064] The advantages of this design are: first, it enhances the connection reliability of the humidification device in use, effectively preventing accidental detachment through the anti-slip plug-in part 104. Second, the reasonable layout of components makes the operation more convenient and efficient.

[0065] For example, in some environments with relatively large vibrations, the anti-slip plug-in part 104 can ensure the stable plug-in of the humidification device, and when the plug needs to be removed, the annular groove 5 can easily play its role.

[0066] In terms of technical effects, the plug-in stability and operation convenience of the humidification device are significantly improved. Overall working principle: the anti-slip plug-in part 104 achieves stable plug-in, and the annular groove 5 facilitates the removal of the plug head, with each component working together. Overall technical effect: the structure and function of the humidification device are optimized, making it perform better in practical applications.

[0067] In some examples, the anti-slip plug-in part 104 has several annular anti-slip taper ribs 105, and the main body 1 is cylindrical or spherical.

[0068] In actual use scenarios, for example, when connecting the humidification device with the matching equipment: the several annular anti-slip taper ribs 105 on the anti-slip plug-in part 104 can significantly increase the friction. When performing the plug-in operation, these anti-slip taper ribs 105 are in close contact with the interface, effectively preventing the device from loosening or falling out during use due to external forces or vibrations. If the main body 1 is cylindrical, its regular shape can be more accurately positioned during plug-in, saving installation time and space, especially in situations where the installation space is limited and directional requirements are required. When the main body 1 is spherical, it has better adaptability and flexibility, making it easier to plug in some situations where the installation angle and position requirements are not so strict, and the spherical structure can disperse the force, reducing damage to the plug-in part.

[0069] The advantages of this design are: first, the annular anti-slip taper ribs 105 greatly improve the stability and reliability of the plug-in. Second, the cylindrical or spherical main body 1 design meets the diversity of different installation environments and use requirements.

[0070] For example, in some environments where medical equipment is relatively compact, the cylindrical main body 1 can better adapt to limited space; while in some situations where the installation angle needs to be adjusted flexibly, the spherical main body 1 can take advantage of its advantages.

[0071] Technical effects: significantly enhance the plug-in performance and environmental adaptability of the humidification device. Overall working principle: rely on the anti-slip taper 105 to increase friction, combined with the columnar or spherical body 1 form, realize stable and flexible plug-in. Overall technical effect: optimize the plug-in structure of the humidification device, improve its practicality and reliability in various application scenarios.

[0072] In some examples, the body 1 includes a cylinder 106, a first cover 107 and a second cover 108. The first cover 107 and the second cover 108 are respectively arranged at both ends of the cylinder 106, the first cover 107 has a first connecting port 102, and the second cover 108 has a second connecting port 103.

[0073] In actual application, such as in the assembly and maintenance process of the humidification device: the cylinder 106 provides the main space to accommodate the humidification ball 2. When it is necessary to replace the humidification ball 2 or clean the inside of the cylinder 106, the first cover 107 and the second cover 108 can be conveniently disassembled. The first connecting port 102 on the first cover 107 is used for the input of gas, and the second connecting port 103 on the second cover 108 is used for the output of humidified gas.

[0074] The advantages of this design are: first, it facilitates the assembly and disassembly of the device, reducing the cost of production and maintenance. Second, it is convenient for individual manufacturing and quality control of each component of the device, improving the consistency and reliability of the product.

[0075] For example, after a long period of use, if it is found that there is dirt accumulation inside the cylinder 106, the first cover 107 and the second cover 108 can be quickly disassembled for thorough cleaning of the cylinder 106.

[0076] Technical effects: significantly improve the maintainability and production convenience of the humidification device. Overall working principle: through the combination of the cylinder 106 and the first cover 107, the second cover 108, form a complete body 1 structure, realize the humidification function of gas. Overall technical effect: optimize the structure design of the body 1, make it more easily to produce, assemble and maintain.

[0077] In some examples, the first cover 107 and the second cover 108 each have a reinforcing ridge 109, the reinforcing ridge 109 is arranged in several circles, and is located in the cavity 101.

[0078] In actual use cases, such as when the humidification device is subjected to internal gas pressure or external impact while in operation, the circumferentially arranged reinforcing ribs 109 on the first cover 107 and the second cover 108 can significantly enhance the structural strength of the covers. These reinforcing ribs 109 can effectively disperse and withstand forces from the inside and outside, preventing the covers from deforming or breaking under pressure, thereby ensuring the sealing and stability of the humidification device.

[0079] The advantages of this design are: first, it improves the pressure resistance and impact resistance of the covers, prolonging the service life of the humidification device. Second, it ensures the reliability of the device under various operating conditions, reducing the risk of failure due to cover damage.

[0080] For example, in cases where the gas flow is large or the pressure fluctuates frequently, the reinforcing ribs 109 can effectively ensure the structural integrity of the first cover 107 and the second cover 108, allowing the humidification device to work continuously and stably.

[0081] In terms of technical effects, the strength and stability of the humidification device cover are significantly enhanced. Overall working principle: use circumferentially arranged reinforcing ribs 109 to improve the structural performance of the first cover 107 and the second cover 108 to cope with various operating stresses. Overall technical effect: optimize the structural design of the humidification device cover, improve the overall reliability and durability of the device.

[0082] In some examples, the cavity 101 has a first connection channel 110 and a second connection channel 111. The first connection channel 110 has a first connection port 102, and the second connection channel 111 has a second connection port 103. The first connection channel 110 and the first connection port 102 are formed on the first cover 107, and the first connection channel 110 and the second connection port 103 are formed on the second cover 108.

[0083] In actual operation, such as when gas enters and exits the humidification device: the gas enters the cavity 101 through the first connection channel 110 and the first connection port 102 on the first cover 107, is treated by the humidification balls 2, and then exits through the second connection channel 111 and the second connection port 103 on the second cover 108.

[0084] The advantages of this design are: first, the specific arrangement of the channels and connection ports makes the gas flow smoother, reducing gas flow resistance and pressure loss. Second, it is convenient to individually design and optimize the connection channels and connection ports to adapt to different gas flow and pressure requirements.

[0085] For example, in application scenarios that require high-flow gas humidification, the diameters and shapes of the first connection channel 110 and the second connection channel 111 can be adjusted to meet the flow requirements.

[0086] Technical effect: significantly improves the flow efficiency and humidification effect of the gas in the humidification device. Overall working principle: by setting specific connecting channels and connecting ports on the first cover 107 and the second cover 108 respectively, the orderly entry and exit of the gas and effective humidification are realized. Overall technical effect: the gas flow path of the humidification device is optimized, and its performance and applicability are improved.

[0087] As shown in Figures 5-7 In some examples, a partition 6 and a water absorption piece 7 are also included, and the partition 6 is arranged between the humidification ball 2 and the first cover 107 and the second cover 108, and the partition 6 has a plurality of through holes 601. The water absorption piece 7 is arranged between the partition 6 and the first cover 107 and the second cover 108. The water absorption piece 7 has a plug-in channel 701, and the first connecting channel 110 and the second connecting port 103 pass into the plug-in channel 701.

[0088] In actual operation, for example, when the humidification device is working: the presence of the partition 6 effectively separates the humidification ball 2 from the cover, preventing the humidification ball 2 from directly contacting and colliding with the cover under the action of airflow or vibration, thereby protecting the humidification ball 2 and ensuring its stable operation. The plurality of through holes on the partition allow the gas to pass through, while also acting as a certain flow regulation for the airflow, allowing the gas to more evenly contact the humidification ball 2 and improve the humidification effect.

[0089] The water absorption piece 7 can absorb the possible trace amount of water, preventing the accumulation of water inside the device. It can be made of sponge, cotton or similar materials. At the same time, the first connecting channel 110 and the second connecting port 103 pass into the plug-in channel, ensuring smooth entry and exit of the gas, and further adjusting and controlling the water in the gas through the water absorption piece 7, preventing the water in the humidification ball 2 from flowing into the subsequent connecting tube such as the nasal oxygen tube, thereby preventing water from running into the nasal oxygen tube.

[0090] The advantages of this design are: first, the partition 6 improves the working stability and service life of the humidification ball 2. Second, the water absorption piece 7 enhances the management and control of water, improving the precision and stability of humidification, and preventing water from running into the nasal oxygen tube.

[0091] For example, in long-term operation or complex working environment, the synergistic effect of the partition 6 and the water absorption piece 7 can keep the humidification device in good performance at all times, providing stable and suitable humidity gas for the patient. Technical effect: significantly improves the performance stability and precision of the humidification effect of the humidification device. Overall working principle: with the synergistic effect of the partition 6 and the water absorption piece 7, the gas flow and water control are optimized to achieve efficient and stable humidification function. Overall technical effect: the internal structure of the humidification device is improved, and its comprehensive performance and reliability are improved.

[0092] As shown in Figure 8As shown, it shows the humidification device structure in another embodiment of the present disclosure, including the humidification device assembly, also contains connecting tube one 8 and connecting tube two 9. Connecting tube one 8 is connected with the first connecting port 102, and connecting tube two 9 is connected with the second connecting port 103.

[0093] In actual application scenarios, such as in the respiratory assistance treatment of patients: connecting tube one 8 connects the external gas source such as oxygen source with the first connecting port 102 of the humidification device assembly, and the gas enters the humidification device assembly for humidification treatment. The humidified gas enters the connecting tube two 9 through the second connecting port 103, and is finally delivered to the patient for use.

[0094] The advantages of this design are: first, through connecting tube one 8 and connecting tube two 9, the humidification device assembly is effectively connected with the external gas source and the patient end, ensuring smooth transmission of the gas. Second, different materials, lengths and diameters of connecting tubes can be selected according to different use requirements to adapt to various complex use environments and patient conditions.

[0095] For example, for patients with difficulty in movement, longer connecting tubes can be selected to increase the range of activity; for patients who need high-flow gas supply, connecting tubes with larger inner diameter can be selected to reduce resistance.

[0096] In terms of technical effects, the versatility and applicability of the humidification device structure are significantly enhanced. The overall working principle: use connecting tube one 8 and connecting tube two 9 to connect the external gas source and the humidification device assembly, and the humidification device assembly and the patient end respectively, to build a complete gas transmission path. Overall technical effect: perfect the structure of the humidification device, so that it can better meet the different clinical needs and use scenarios.

[0097] It should be noted that the above embodiments are only used to illustrate the technical solutions of the present disclosure and not to limit it. Although the present disclosure has been described in detail with reference to the preferred embodiments, those skilled in the art should understand that the technical solutions of the present disclosure can be modified or replaced by equivalents without departing from the spirit and scope of the technical solutions of the present disclosure, which should be covered in the scope of the claims of the present disclosure.

Claims

1. A humidification device assembly, characterized by, The utility model relates to a humidification device, including: a main body (1) having a cavity (101) with a first connecting port (102) and a second connecting port (103); a plurality of humidification balls (2) arranged in the cavity (101).

2. The humidification device assembly of claim 1, wherein, Further comprising a first plug (3) and a second plug (4) arranged on the first connecting port (102) and the second connecting port (103) respectively.

3. The humidification device assembly of claim 2, wherein, The first plug (3) and the second plug (4) are integrated with the main body (1), and the humidification balls (2) are non-flowing liquid water humidification balls (2).

4. The humidification device assembly of claim 2, wherein, The connection between the first plug (3) and the second plug (4) and the main body (1) has an annular groove (5) for facilitating unscrewing of the first plug (3) and the second plug (4); the first plug (3) and the second plug (4) each have a hand pinching portion.

5. The humidification device assembly of claim 4, wherein, The main body (1) further has an anti-skid insertion portion (104) between the annular groove (5) and the hand pinching portion, and the anti-skid insertion portion (104) is used for insertion; the anti-skid insertion portion (104) has a plurality of annular anti-skid conical ribs (105), and the main body (1) is cylindrical or spherical.

6. The humidification device assembly of claim 1, wherein, The main body (1) comprises: a cylinder body (106); a first cover (107) and a second cover (108) arranged at two ends of the cylinder body (106) respectively, the first cover (107) having the first connecting port (102), and the second cover (108) having the second connecting port (103).

7. The humidification device assembly of claim 6, wherein, The first cover (107) and the second cover (108) each have a reinforcing rib (109) arranged in a plurality of circles, and located in the cavity (101).

8. The humidification device assembly of claim 7, wherein, The cavity (101) has a first connecting channel (110) having the first connecting port (102) and a second connecting channel (111) having the second connecting port (103), the first connecting channel (110) and the first connecting port (102) being formed on the first cover (107), and the first connecting channel (110) and the second connecting port (103) being formed on the second cover (108).

9. The humidification device assembly of claim 8, wherein, Further comprising: a partition (6) arranged between the humidification balls (2) and the first cover (107) and the second cover (108), the partition (6) having a plurality of through holes (601); a water absorbing member (7) arranged between the partition (6) and the first cover (107) and the second cover (108); wherein the water absorbing member (7) has an insertion channel (701), and the first connecting channel (110) and the second connecting port (103) lead to the insertion channel (701).

10. A humidification arrangement comprising: The humidification device assembly of any one of claims 1-9, further comprising: a first connecting tube (8) connected to the first connecting port (102); a second connecting tube (9) connected to the second connecting port (103).