Humidifying condensate water collecting device matched with breathing pipeline

The fixed interception ball with a deceleration and cooling mechanism addresses the issue of internal pressure instability and equipment contamination by managing gas flow and liquid discharge in respiratory tubes, ensuring stable condensate removal and equipment cleanliness.

CN120305527AInactive Publication Date: 2025-07-15XIEHE HOSPITAL ATTACHED TO TONGJI MEDICAL COLLEGE HUAZHONG SCI & TECH UNIV
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Patent Information

Application Number
CN202510496124.1
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2025-04-21
Publication Date
2025-07-15
Estimated Expiration
Not applicable · inactive patent

AI Technical Summary

Technical Problem

The prior art fails to effectively install gas reduction cooling components and multi-section liquid discharge isolation in the breathing pipeline, resulting in collusion between the internal and external environment, affecting the stability of the air pressure stability and pipeline cleanliness, and affecting the stability of the external discharge treatment of condensate.

Method used

The fixed interceptor ball and combined heat exchange assembly are adopted to slow down the air flow rate through the interceptor assembly, increase the heat exchange area, and achieve steady discharge of condensate water through a multi-stage isolation structure. It is combined with the combined heat exchange assembly for rapid cooling to ensure gas stability and equipment cleanliness.

Benefits of technology

The stable discharge of condensate water is achieved, the air pressure stability and pipeline cleanliness are improved, the equipment operation is simplified, and the efficiency and stability of condensation treatment are improved.

✦ Generated by Eureka AI based on patent content.

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Abstract

The invention discloses a humidifying condensate water collecting device matched with a breathing pipeline, and relates to the technical field of medical instruments, one end of the outer side of a fixed intercepting ball is connected with an air inlet fixed pipe through an adapter, the other end of the outer side of the fixed intercepting ball is connected with an exhaust fixed pipe through an adapter, and the bottom end of the outer side of the fixed intercepting ball is connected with an external thread combined pipe in a penetrating mode; and limiting exhaust hoppers are clamped to the inner sides of the air inlet fixing pipe and the air exhaust fixing pipe, liquid discharging treatment openings are formed in the bottoms of the side ends of the limiting exhaust hoppers, and liquid scraping treatment frames are rotationally connected to the inner sides of the fixing interception balls. The cooling contact area is small, the cooling speed is further affected, the stability of downward drainage and internal gas self-circulation is achieved through cooperation of multi-section isolation combination and mutual linkage, internal and external environments are prevented from being communicated, and the air pressure stability of oxygen supply and the cleanliness of a pipeline are improved.
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Description

Technical Field

[0001] The present invention relates to the technical field of medical devices, and specifically to a humidification condensate collection device for a breathing tube. Background Art

[0002] The breathing tube is a key component connecting the patient to the ventilator and humidifier in mechanical ventilation or respiratory therapy. Its function is to deliver heated and humidified gas and discharge the patient's exhaled gas. The correct use and management of the breathing tube are directly related to patient safety and treatment effect. The collection of humidification condensate in the breathing tube is an important link in respiratory therapy or mechanical ventilation, aiming to prevent the accumulation of condensate from causing adverse effects on the patient or equipment.

[0003] The patent with the application number 202020403307.7 mentions "a breathing tube condensate collection device". This patent has a bag body for storing condensate and a drain valve provided at the bottom of the bag body. When discharging the condensate, medical staff can drain the water in the collection bag through the drain valve without having to disassemble the entire collection bag for drainage, preventing the influence on the air pressure of the oxygen generator and reducing the probability of contamination of the oxygen supply equipment.

[0004] However, in the prior art during the gas condensation treatment, a gas deceleration and cooling component is not provided at the liquid discharge position, and the multi-stage liquid discharge is not isolated and restricted, resulting in the internal and external environments being in communication during gas exhaust and liquid discharge, affecting the stability of the internal oxygen supply air pressure and the cleanliness of the pipeline equipment, and greatly influencing the stability of the external discharge treatment of the condensate. Summary of the Invention

[0005] The present invention provides a humidification condensate collection device for a breathing tube, which can effectively solve the problem in the above-mentioned background art that in the prior art during the gas condensation treatment, a gas deceleration and cooling component is not provided at the liquid discharge position, and the multi-stage liquid discharge is not isolated and restricted, resulting in the internal and external environments being in communication during gas exhaust and liquid discharge, affecting the stability of the internal oxygen supply air pressure and the cleanliness of the pipeline equipment, and greatly influencing the stability of the external discharge treatment of the condensate.

[0006] To achieve the above object, the present invention provides the following technical solution: A humidification condensate collection device for a breathing tube includes a fixed interception ball, and the fixed interception ball is provided with a blocking and discharging component;

[0007] The blocking and discharging component includes an air inlet fixed tube;

[0008] One end of the outer side of the fixed intercepting ball is connected with an air inlet fixed pipe through an adapter, the other end of the outer side of the fixed intercepting ball is connected with an exhaust fixed pipe through an adapter, the bottom end of the outer side of the fixed intercepting ball is connected through a threaded combined pipe, a restricted exhaust hopper is clamped inside both the air inlet fixed pipe and the exhaust fixed pipe, a liquid discharge treatment port is arranged at the bottom of the side end of the restricted exhaust hopper, and a liquid scraping treatment frame is rotatably connected inside the fixed intercepting ball;

[0009] The bottom of the side end of the threaded combined pipe is connected with an internally threaded combined hopper through a thread, a storage fixed barrel is welded at the bottom end of the internally threaded combined hopper, a spring limiting rod is installed at one end inside the threaded combined pipe, a limiting conical block is installed at the top end of the spring limiting rod, a downward pushing treatment frame is welded at the bottom end of the limiting conical block, and an inclined discharge isolation ring is fixed inside the threaded combined pipe;

[0010] An operation connection frame is welded at the top end inside the storage fixed barrel, a plurality of limiting springs are equidistantly installed at the bottom end inside the operation connection frame, and a limiting sealing plate is installed at the top ends of the plurality of limiting springs.

[0011] According to the above technical solution, the liquid scraping treatment frame is rotatably installed inside the exhaust fixed pipe, the longitudinal section of the liquid scraping treatment frame is L-shaped, and the side end of the limiting conical block is sleeved and connected with the side end of the inclined discharge isolation ring.

[0012] According to the above technical solution, the limiting conical block is slidably installed inside the threaded combined pipe, and the bottom end of the downward pushing treatment frame is attached to the top end of the limiting sealing plate.

[0013] According to the above technical solution, the limiting sealing plate is placed inside the storage fixed barrel, and the downward pushing treatment frame is slidably installed inside the threaded combined pipe.

[0014] According to the above technical solution, combined permanent magnets are installed at the bottom end of the downward pushing treatment frame and the top end of the limiting sealing plate, a plurality of linkage spring rods are equidistantly installed at the bottom end inside the storage fixed barrel, and an isolation integration frame is installed at the top ends of the plurality of linkage spring rods;

[0015] A treatment limiting ring is installed at the position corresponding to the isolation integration frame inside the storage fixed barrel, sealing gaskets are installed at the top end inside the storage fixed barrel and the side end of the treatment limiting ring, an operation fixing frame is welded at the bottom of the side end of the isolation integration frame, and a limiting liquid discharge pipe penetrates through the bottom end of the storage fixed barrel.

[0016] According to the above technical solution, the side end of the limiting sealing plate and the top of the side end of the isolation integration frame are respectively attached to the inner side end of the sealing gasket, and the side end of the operation fixing frame is slidably sleeved with the limiting liquid discharge pipe.

[0017] According to the above technical solution, the side end of the isolation and integration frame is sleeved with the inner top of the limit drain pipe, and the longitudinal section of the operation connection frame is in a U shape.

[0018] According to the above technical solution, the fixed interception ball is provided with a combined heat exchange component;

[0019] The combined heat exchange component includes a heat exchange treatment sleeve;

[0020] The outer side end of the fixed interception ball is sleeved with a heat exchange treatment sleeve. The top of the side end of the heat exchange treatment sleeve is connected through and penetrated with a combined threaded pipe. The side end of the combined threaded pipe is connected with a closing treatment cover through threads. An isolation limit pad is installed inside the combined threaded pipe. One side of the bottom end of the heat exchange treatment sleeve is connected through and penetrated with a drain treatment pipe, and a flow regulator is clamped at the side end of the drain treatment pipe;

[0021] Sealing limit rings are installed at the side ends of the air inlet fixed pipe and the exhaust fixed pipe. The side end of the sealing limit ring is rotatably connected with an internally threaded connecting pipe. An anti-slip treatment pad is adhesively bonded to the inner side end of the operation fixed frame. Water absorption isolation sponges are installed inside the externally threaded combined pipe and the operation connection frame.

[0022] According to the above technical solution, the inner diameter of the heat exchange treatment sleeve is equal to the outer diameter of the fixed interception ball, and the inner diameter of the isolation limit pad is equal to the inner diameter of the combined threaded pipe.

[0023] According to the above technical solution, the two internally threaded connecting pipes are respectively rotatably installed at the side ends of the air inlet fixed pipe and the exhaust fixed pipe, and the side end of the anti-slip treatment pad is slidably fitted with the outer side of the limit drain pipe.

[0024] Compared with the prior art, the beneficial effects of the present invention are as follows: The structure of the present invention is scientific and reasonable, and it is safe and convenient to use:

[0025] 1. A drainage and interception component is provided. The exhaust is connected through a fixed intercepting ball, an intake fixed pipe, and an exhaust fixed pipe. In cooperation with the two limiting exhaust funnels in an opposing combination, the flow rate of the outgoing air is slowed down, the residence time of the gas in the fixed intercepting ball is prolonged, and the heat exchange area is increased by the spherical shape to improve the heat exchange efficiency. The spring limit rod drives the limit conical block to be connected and separated from the inclined exhaust isolation ring. In cooperation with the water seal and water pressure, the limit conical block is pushed, and the limit spring drives the limit sealing plate to be snap-connected to the top of the storage fixed barrel to achieve snap-limitation. The operation fixed frame drives the isolation integration frame to rise along the limit drain pipe, so that the top of the isolation integration frame is snap-connected to the processing limit ring and the sealing gasket to achieve external drainage isolation, enabling stable cooperation during condensation recovery and condensation external drainage, realizing directional drainage and internal and external three-stage isolation treatment, isolating and restricting the interior, effectively solving the problems in the prior art that due to the relatively fast gas flow rate, water vapor cannot be effectively condensed and processed at the recovery position, and the cooling contact surface is small, further affecting the cooling speed. Through the interconnection of multiple isolation combinations, the stability of downward drainage and internal gas self-circulation is achieved, avoiding the connection of the internal and external environments, improving the air pressure stability of oxygen supply and the cleanliness of the pipeline, ensuring the stability of condensate external drainage and the operation stability of the equipment, and through the multi-stage cooperation and linkage, improving the convenience of equipment operation.

[0026] 2. A combined heat exchange component is provided. The breathing pipeline is combined and connected with the intake fixed pipe and the exhaust fixed pipe through the internal thread connecting pipe to realize the quick replacement operation of the pipeline and components, which is convenient for daily use and equipment maintenance. The combined threaded pipe is opened by rotating the closing treatment cover, and low-temperature coolant is injected into the heat exchange treatment sleeve through an external syringe. The heat exchange treatment sleeve is sealed by the closing treatment cover and the isolation limit pad. The heat exchange treatment sleeve is used to fit and heat exchange with the fixed intercepting ball to achieve stable heat exchange treatment. The drain treatment pipe is opened by cooperating with the flow regulator to realize the replacement treatment of the coolant. By repeating the above operations, the condensation speed can be effectively increased when cooling the pipeline, ensuring the effect of exhaust dehydration.

[0027] In summary, through the mutual cooperation of the drainage and interception component and the combined heat exchange component, and using the combined connection, the combined treatment of the condensation equipment and the pipeline equipment is realized. By cooperating with increasing the heat exchange area, external heat exchange components, and gas deceleration components, the cooling and condensation speed is increased, the centralized treatment of water vapor is ensured, the operation stability of the equipment and the stable dehydration treatment of gas are ensured, the stability of the centralized treatment of water vapor is ensured, and through the mutual cooperation of multiple components, the effect and efficiency of condensation dehydration are improved. Description of the Drawings

[0028] The drawings are used to provide a further understanding of the present invention and constitute a part of the specification. They are used together with the embodiments of the present invention to explain the present invention and do not constitute a limitation to the present invention.

[0029] In the drawings:

[0030] Figure 1 is a schematic diagram of the three-dimensional structure of the present invention;

[0031] Figure 2 is a schematic diagram of the structure of the intercepting and draining assembly of the present invention;

[0032] Figure 3 is a schematic diagram of the installation structure of the air inlet fixed pipe of the present invention;

[0033] Figure 4 is a schematic diagram of the installation structure of the restricted exhaust hopper of the present invention;

[0034] Figure 5 is a schematic diagram of the installation structure of the limit sealing plate of the present invention;

[0035] Figure 6 is a schematic diagram of the installation structure of the isolation and integration frame of the present invention;

[0036] Figure 7 is a schematic diagram of the structure of the combined heat exchange component of the present invention;

[0037] Figure 8 is a schematic diagram of the installation structure of the internal thread connecting pipe of the present invention;

[0038] Reference numerals in the figure: 1, fixed intercepting ball;

[0039] 2, intercepting and draining assembly; 201, air inlet fixed pipe; 202, exhaust fixed pipe; 203, external thread combined pipe; 204, restricted exhaust hopper; 205, liquid drainage treatment port; 206, liquid scraping treatment frame; 207, internal thread combined hopper; 208, storage fixed barrel; 209, spring limit rod; 210, limit conical block; 211, downward push treatment frame; 212, inclined row isolation ring; 213, operation connection frame; 214, limit spring; 215, limit sealing plate; 216, combined permanent magnet; 217, linkage spring rod; 218, isolation and integration frame; 219, treatment limit ring; 220, sealing gasket; 221, operation fixed frame; 222, limit liquid drainage pipe;

[0040] 3, combined heat exchange component; 301, heat exchange treatment sleeve; 302, combined threaded pipe; 303, closing treatment cover; 304, isolation limit pad; 305, liquid drainage treatment pipe; 306, flow regulator; 307, sealing limit ring; 308, internal thread connecting pipe; 309, anti-slip treatment pad; 310, water absorption isolation sponge. Detailed implementation manners

[0041] The following describes the preferred embodiments of the present invention with reference to the accompanying drawings. It should be understood that the preferred embodiments described herein are only used to illustrate and explain the present invention and are not used to limit the present invention.

[0042] Example: As Figure 1-8 shown, the present invention provides a technical solution, a humidification condensate collection device for a breathing pipeline, including a fixed interception ball 1, and the fixed interception ball 1 is provided with a blocking and draining assembly 2;

[0043] The blocking and draining assembly 2 includes an air inlet fixed pipe 201, an exhaust fixed pipe 202, an external thread combined pipe 203, a restricted exhaust hopper 204, a liquid drainage treatment port 205, a liquid scraping treatment frame 206, an internal thread combined hopper 207, a storage fixed barrel 208, a spring limit rod 209, a limit conical block 210, a downward push treatment frame 211, an inclined drainage isolation ring 212, an operation connection frame 213, a limit spring 214, a limit sealing plate 215, a combined permanent magnet 216, a linkage spring rod 217, an isolation integration frame 218, a treatment limit ring 219, a sealing gasket 220, an operation fixed frame 221 and a limit liquid drainage pipe 222;

[0044] One end of the outer side of the fixed interception ball 1 is connected to the air inlet fixed pipe 201 through a swivel joint, the other end of the outer side of the fixed interception ball 1 is connected to the exhaust fixed pipe 202 through a swivel joint, the bottom end of the outer side of the fixed interception ball 1 is penetrated and connected with an external thread combined pipe 203, a restricted exhaust hopper 204 is clamped inside both the air inlet fixed pipe 201 and the exhaust fixed pipe 202, a liquid drainage treatment port 205 is opened at the bottom of the side end of the restricted exhaust hopper 204, a liquid scraping treatment frame 206 is rotatably connected inside the fixed interception ball 1, the liquid scraping treatment frame 206 is rotatably installed inside the exhaust fixed pipe 202, and the longitudinal section of the liquid scraping treatment frame 206 is L-shaped, realizing stable liquid drainage treatment and ensuring the stable treatment of condensate reflux and condensate concentration;

[0045] The bottom end of the side of the external thread combined pipe 203 is threadedly connected with an internal thread combined hopper 207, the bottom end of the internal thread combined hopper 207 is welded with a storage fixed barrel 208, one end of the inner side of the external thread combined pipe 203 is provided with a spring limit rod 209, a limit conical block 210 is installed at the top end of the spring limit rod 209, a downward push treatment frame 211 is welded at the bottom end of the limit conical block 210, the bottom end of the downward push treatment frame 211 is attached to the top end of the limit sealing plate 215, realizing combined limit and stable connection, an inclined drainage isolation ring 212 is fixed inside the external thread combined pipe 203, the side end of the limit conical block 210 is sleeved and connected with the side end of the inclined drainage isolation ring 212, and the limit conical block 210 is slidably installed inside the external thread combined pipe 203, realizing sealing engagement and sealing limit and ensuring the stability of isolation restriction;

[0046] On the inner top end of the storage fixed barrel 208, an operation connection frame 213 is welded. The longitudinal section of the operation connection frame 213 is in a U shape to ensure the stability of the clamping restriction. At equal intervals on the inner bottom end of the operation connection frame 213, a number of limiting springs 214 are installed. On the top ends of the multiple limiting springs 214, a limiting sealing plate 215 is installed. The limiting sealing plate 215 is placed inside the storage fixed barrel 208. The lower push processing frame 211 is slidably installed inside the external thread combination pipe 203 to ensure the steady processing of sliding restriction and moving alignment. On the bottom end of the lower push processing frame 211 and the top end of the limiting sealing plate 215, combined permanent magnets 216 are installed. At equal intervals on the inner bottom end of the storage fixed barrel 208, a number of linkage spring rods 217 are installed. On the top ends of the multiple linkage spring rods 217, an isolation integration frame 218 is installed;

[0047] At the position corresponding to the isolation integration frame 218 inside the storage fixed barrel 208, a processing limiting ring 219 is installed. Sealing gaskets 220 are installed on the inner top end of the storage fixed barrel 208 and the side end of the processing limiting ring 219. The side end of the limiting sealing plate 215 and the top part of the side end of the isolation integration frame 218 are respectively attached to the inner side end of the sealing gasket 220 to achieve sealing positioning and sealing limitation, and ensure the stability of the clamping limitation and isolation limitation. At the bottom of the side end of the isolation integration frame 218, an operation fixing frame 221 is welded. The bottom end of the storage fixed barrel 208 is connected through a limiting drain pipe 222. The side end of the operation fixing frame 221 is slidably sleeved with the limiting drain pipe 222. The side end of the isolation integration frame 218 is sleeved with the inner top part of the limiting drain pipe 222 to achieve steady combined connection and ensure the stability of the equipment positioning and fixing.

[0048] The fixed interception ball 1 is provided with a combined heat exchange component 3;

[0049] The combined heat exchange component 3 includes a heat exchange processing sleeve 301, a combined threaded pipe 302, a closing processing cover 303, an isolation limiting pad 304, a drain processing pipe 305, a flow regulator 306, a sealing limiting ring 307, an internal threaded connection pipe 308, an anti-slip processing pad 309 and a water absorption isolation sponge 310;

[0050] The heat exchange processing sleeve 301 is sleeved on the outer side end of the fixed interception ball 1. The inner diameter of the heat exchange processing sleeve 301 is equal to the outer diameter of the fixed interception ball 1 to achieve heat exchange processing. On the top part of the side end of the heat exchange processing sleeve 301, a combined threaded pipe 302 is connected through. The side end of the combined threaded pipe 302 is connected with a closing processing cover 303 through threads. An isolation limiting pad 304 is installed inside the combined threaded pipe 302. The inner diameter of the isolation limiting pad 304 is equal to the inner diameter of the combined threaded pipe 302 to ensure the stability of the isolation limitation and isolation restriction. On one side of the bottom end of the heat exchange processing sleeve 301, a drain processing pipe 305 is connected through. The side end of the drain processing pipe 305 is clamped with a flow regulator 306;

[0051] Sealing limit rings 307 are installed on the side ends of the intake fixed pipe 201 and the exhaust fixed pipe 202. An internally threaded connecting pipe 308 is rotatably connected to the side end of the sealing limit ring 307. An anti-slip treatment pad 309 is adhesively bonded to the inner side end of the operation fixing frame 221. The two internally threaded connecting pipes 308 are respectively rotatably installed on the side ends of the intake fixed pipe 201 and the exhaust fixed pipe 202 to ensure stable integrated connection and sealed isolation. The side end of the anti-slip treatment pad 309 is slidably fitted with the outer side of the limit drain pipe 222 to achieve anti-slip treatment and positioning limitation. Water-absorbing isolation sponges 310 are installed inside the externally threaded combined pipe 203 and the operation connecting frame 213.

[0052] The working principle and usage process of the present invention: When the breathing pipeline is in use, the operator combines the bottom connection of the breathing pipeline with the internally threaded connecting pipe 308 through threading, so as to combine and connect the breathing pipeline with the intake fixed pipe 201 and the exhaust fixed pipe 202. The externally threaded combined pipe 203 is threadedly connected to the internally threaded combined hopper 207 through threading. After the combination is completed, the lower push treatment frame 211 and the limit sealing plate 215 are magnetically combined by the two combined permanent magnets 216 to achieve equipment connection. The combined threaded pipe 302 is opened by rotating the closing treatment cover 303, and low-temperature coolant is injected into the heat exchange treatment sleeve 301 through an external syringe. After the injection inside the heat exchange treatment sleeve 301 is completed, the isolation limit pad 304 is snapped into the inside of the combined threaded pipe 302, and the combined threaded pipe 302 and the closing treatment cover 303 are combined and connected through threading to achieve the coolant injection treatment;

[0053] The gas in the breathing pipeline impacts the inside of the fixed intercepting ball 1 through the intake fixed pipe 201 and the restricted exhaust hopper 204. By using large-hole intake and small-hole exhaust, the air flow is accelerated and impacts the inside of the fixed intercepting ball 1. The air flow enters the position of the exhaust fixed pipe 202 through the fixed intercepting ball 1. The restricted exhaust hopper 204 is used again to exhaust the air flow externally. By using small-hole intake and large-hole exhaust, the air flow velocity is slowed down. By accelerating intake and decelerating exhaust, the retention time of the gas in the fixed intercepting ball 1 is prolonged. At this time, the coolant in the heat exchange treatment sleeve 301 is used to cool the air in the fixed intercepting ball 1, reducing the temperature of the internal air flow, so that the contained water vapor is quickly cooled and condensed. The condensed water flows along the fixed intercepting ball 1 to the position of the water absorption isolation sponge 310 at the position of the external thread combination pipe 203. The water enters the positions of the inclined drainage isolation ring 212 and the limit conical block 210 along the water absorption isolation sponge 310. The water gradually accumulates at the position of the inclined drainage isolation ring 212, pushing the limit conical block 210, the downward push treatment frame 211 and the limit sealing plate 215 to move downward. The water enters the position of the operation connection frame 213 inside the storage fixed barrel 208 along the external thread combination pipe 203, the inclined drainage isolation ring 212 and the internal thread combination hopper 207. The water is adsorbed and discharged through the water absorption isolation sponge 310 located at the position of the operation connection frame 213, so as to discharge the water to the bottom end of the storage fixed barrel 208, realizing the external discharge treatment of the condensate;

[0054] The operator manually rotates the liquid scraping treatment frame 206, and the fixed intercepting ball 1 is pushed by the liquid scraping treatment frame 206 to rotate to push the condensed water on the surface to be discharged centrally. At the same time, the condensed water condensed at the positions of the restricted exhaust hopper 204, the intake fixed pipe 201 and the exhaust fixed pipe 202 is discharged centrally through the liquid discharge treatment port 205. The limit conical block 210 is driven by the spring limit rod 209 to rise and engage with the inclined drainage isolation ring 212 to realize the first-stage isolation treatment. The limit sealing plate 215 is driven by the limit spring 214 to engage with the top end of the storage fixed barrel 208 to realize the second-stage sealing treatment. When it is necessary to discharge the condensed water in the storage fixed barrel 208, the operation fixed frame 221 is pulled along the limit drain pipe 222. The isolation integration frame 218 is driven by the operation fixed frame 221 to rise along the limit drain pipe 222, so that the top end of the isolation integration frame 218 engages with the treatment limit ring 219 and the sealing gasket 220. The condensed water is discharged externally along the limit drain pipe 222, realizing the three-stage isolation of liquid discharge and ensuring the stability of the internal protection;

[0055] During the use of the coolant, when the coolant temperature is relatively high and affects the cooling speed, the drain treatment pipe 305 is opened through the flow regulator 306 to drain the coolant in the heat exchange treatment sleeve 301. After the drainage is completed, the drain treatment pipe 305 is hermetically clamped through the flow regulator 306. Then, repeat the above operation of coolant replenishment to inject the coolant into the inner side of the heat exchange treatment sleeve 301 to achieve continuous cooling treatment. There is no need for clinical nurses to open the breathing pipeline at regular intervals and pour out the condensed water regularly, which is cumbersome in operation and is suitable for better promotion and use.

[0056] Finally, it should be noted that the above are only preferred examples of the present invention and are not used to limit the present invention. Although the present invention has been described in detail with reference to the foregoing embodiments, for those skilled in the art, they can still modify the technical solutions described in the foregoing embodiments, or perform equivalent replacements for some of the technical features. Any modifications, equivalent replacements, improvements, etc. made within the spirit and principle of the present invention shall be included within the protection scope of the present invention.

Claims

1. A humidification and condensate collection device for a breathing tube set, comprising a fixed interception ball (1), characterized in that: The fixed intercepting ball (1) is provided with a blocking and draining assembly (2); The blocking and draining assembly (2) includes an air inlet fixed pipe (201); One outer end of the fixed intercepting ball (1) is connected to an air inlet fixed pipe (201) through an adapter, and the other outer end of the fixed intercepting ball (1) is connected to an exhaust fixed pipe (202) through an adapter. The bottom end of the outer side of the fixed intercepting ball (1) is connected through an externally threaded combined pipe (203). The inner sides of the air inlet fixed pipe (201) and the exhaust fixed pipe (202) are both clamped with a restricted exhaust hopper (204). A liquid drainage treatment port (205) is opened at the bottom of the side end of the restricted exhaust hopper (204). A liquid scraping treatment frame (206) is rotatably connected to the inner side of the fixed intercepting ball (1); The bottom of the side end of the externally threaded combined pipe (203) is threadedly connected to an internally threaded combined hopper (207). The bottom end of the internally threaded combined hopper (207) is welded with a storage fixed barrel (208). One inner end of the externally threaded combined pipe (203) is provided with a spring limit rod (209). A limit conical block (210) is installed at the top end of the spring limit rod (209). A downward pushing treatment frame (211) is welded to the bottom end of the limit conical block (210). An inclined drainage isolation ring (212) is fixed to the inner side of the externally threaded combined pipe (203); An operation connection frame (213) is welded to the inner top end of the storage fixed barrel (208). A plurality of limit springs (214) are equidistantly installed at the bottom end of the inner side of the operation connection frame (213). A limit sealing plate (215) is installed at the top ends of the plurality of limit springs (214).

2. The humidification and condensation water collection device for a breathing tube according to claim 1, characterized in that, The liquid scraping treatment frame (206) is rotatably installed inside the exhaust fixed pipe (202). The longitudinal section of the liquid scraping treatment frame (206) is L-shaped. The side end of the limit conical block (210) is sleeved and connected with the side end of the inclined drainage isolation ring (212).

3. The humidification and condensate collection device for a breathing tube according to claim 1, wherein The limit conical block (210) is slidably installed inside the externally threaded combined pipe (203). The bottom end of the downward pushing treatment frame (211) is in contact with the top end of the limit sealing plate (215).

4. A humidification and condensation water collection device for a breathing pipeline according to claim 1, characterized in that, The limit sealing plate (215) is placed inside the storage fixed barrel (208). The downward pushing treatment frame (211) is slidably installed inside the externally threaded combined pipe (203).

5. A humidification and condensate collection device for a breathing circuit according to claim 1, characterized in that, Combined permanent magnets (216) are installed at the bottom end of the downward pushing treatment frame (211) and the top end of the limit sealing plate (215). A plurality of linkage spring rods (217) are equidistantly installed at the bottom end of the inner side of the storage fixed barrel (208). An isolation integration frame (218) is installed at the top ends of the plurality of linkage spring rods (217); A treatment limit ring (219) is installed at the position corresponding to the isolation integration frame (218) inside the storage fixed barrel (208). Sealing gaskets (220) are installed at the inner top end of the storage fixed barrel (208) and the side end of the treatment limit ring (219). An operation fixed frame (221) is welded to the bottom of the side end of the isolation integration frame (218). A limit drainage pipe (222) penetrates through the bottom end of the storage fixed barrel (208).

6. The humidification and condensate collection device for a breathing pipeline according to claim 5, wherein, The side end of the limit sealing plate (215) and the top of the side end of the isolation integration frame (218) are respectively in contact with the inner side end of the sealing gasket (220), and the side end of the operation fixing frame (221) is slidably sleeved with the limit drain pipe (222).

7. A humidification and condensate collection device for a breathing tube according to claim 5, characterized in that, The side end of the isolation integration frame (218) is sleeved with the inner top of the limit drain pipe (222), and the longitudinal section of the operation connection frame (213) is in a U shape.

8. A humidification and condensate collection device for a breathing tube according to claim 1, characterized in that, The fixed intercepting ball (1) is provided with a combined heat exchange component (3); The combined heat exchange component (3) includes a heat exchange treatment sleeve (301); The outer side end of the fixed intercepting ball (1) is sleeved with a heat exchange treatment sleeve (301). The top of the side end of the heat exchange treatment sleeve (301) is connected through a combined threaded pipe (302). The side end of the combined threaded pipe (302) is threadedly connected with a closing treatment cover (303). An isolation limit pad (304) is installed inside the combined threaded pipe (302). One side of the bottom end of the heat exchange treatment sleeve (301) is connected through a drain treatment pipe (305). A flow regulator (306) is clamped on the side end of the drain treatment pipe (305); Sealing limit rings (307) are installed on the side ends of the air inlet fixed pipe (201) and the exhaust fixed pipe (202). The side ends of the sealing limit rings (307) are rotatably connected with internal threaded connection pipes (308). An anti-slip treatment pad (309) is bonded to the inner side end of the operation fixing frame (221). Water absorption isolation sponges (310) are installed inside both the external threaded combined pipe (203) and the operation connection frame (213).

9. The humidification and condensation water collection device for a breathing pipeline according to claim 8, characterized in that, The inner diameter of the heat exchange treatment sleeve (301) is equal to the outer diameter of the fixed intercepting ball (1), and the inner diameter of the isolation limit pad (304) is equal to the inner diameter of the combined threaded pipe (302).

10. A humidification and condensate collection device for a breathing circuit according to claim 8, characterized in that, The two internal threaded connection pipes (308) are respectively rotatably installed on the side ends of the air inlet fixed pipe (201) and the exhaust fixed pipe (202), and the side end of the anti-slip treatment pad (309) is in sliding contact with the outer side of the limit drain pipe (222).

Citation Information

Patent Citations

  • Breathing pipeline condensate water collecting device

    CN212817568U