Humidifying cup capable of quickly distributing oxygen

By designing a wettable cup that quickly divides oxygen, using separation and conveying mechanisms and monitoring mechanisms, the problem of oxygen bringing out liquid is solved, efficient separation of oxygen and water is achieved, and the working efficiency and stability of the oxygen generator are improved.

CN223041968UActive Publication Date: 2025-07-01ANHUI YAMEINA MEDICAL EQUIP CO LTD
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Patent Information

Application Number
CN202421481582.5
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-06-26
Publication Date
2025-07-01
Estimated Expiration
2034-06-26

AI Technical Summary

Technical Problem

During the separation of oxygen and water in the existing wettable cup, oxygen brings out liquid, resulting in the normal use of the oxygen generator.

Method used

A wettable cup for quickly dividing oxygen is designed, including a separation mechanism, a conveying mechanism and a monitoring mechanism. Using the characteristics and density differences of airflow, the rapid separation of oxygen and water is achieved through the coordination of adsorption spheres and gas pipelines, and the water level is monitored in real time through the monitoring mechanism.

Benefits of technology

It realizes efficient separation of oxygen and water, improves the working efficiency of the oxygen generator, and ensures the stable use of the humidified cup.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses a humidifying cup capable of quickly distributing oxygen, which belongs to the field of humidifying cups, solves the problem that part of water source is easily brought out by oxygen when the existing humidifying cup is used, and comprises a cup body, a top cover, an air outlet pipe and an air inlet pipe, the top cover is mounted at the top end of the cup body in a threaded manner, and the air outlet pipe is arranged at the top end of the top cover. According to the utility model, through the arrangement of the separation mechanism and the conveying mechanism, the oxygen outlet can be adjusted to the lowest end of the water level, so that enough water ions can be absorbed as much as possible; and when a part of water source is driven to be discharged together due to the fact that bubbles generated by oxygen under the water level are broken subsequently, the part of redundant water source can be separated through cooperation of the suction pipe and the internal structure, so that the purpose of rapidly separating the oxygen from the water source is achieved, and the working efficiency of the equipment is improved.
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Description

Technical Field

[0001] The utility model belongs to the field of humidifying cups, and particularly relates to a humidifying cup for quickly separating oxygen. Background Art

[0002] An oxygen generator is a kind of machine for producing oxygen. Its principle is to use air separation technology. First, air is compressed at high density and then, due to the different condensation points of the components in the air, it is subjected to gas-liquid separation at a certain temperature. Then, it is rectified to separate it into oxygen and nitrogen. Generally, since it is mostly used for producing oxygen, people are used to calling it an oxygen generator. A humidifying cup is a component installed on the side of the oxygen generator to humidify the oxygen produced by the oxygen generator. Generally, pure water is placed inside the cup body, and when oxygen enters the water source inside the humidifying cup, it brings out certain water ions to achieve the purpose of oxygen humidification.

[0003] Chinese Utility Model Patent CN219595543U discloses an oxygen generator humidifying cup and an oxygen generator, including: a hollow cup body; a cup cover covering the opening of the cup body; and an air inlet pipe, an air outlet pipe and a pressure relief valve provided on the cup cover and communicating the inside and outside of the cup body; wherein, the oxygen generator humidifying cup further includes: a hollow whistle tube located inside the cup body, one end of the whistle tube is connected to the air inlet pipe, and the other end of the whistle tube is a free end. The oxygen generator humidifying cup of the embodiment of the present application adopts a physical structure and utilizes the characteristics of air flow to realize the function of low water level alarm;

[0004] The above design realizes the function of low water level alarm through the cooperation of multiple groups of components and the utilization of the characteristics of air flow. However, during use, after oxygen enters the water source inside the humidifying cup, the rupture of bubbles will drive a certain amount of liquid to be discharged together with the oxygen, which will affect the separation of oxygen and liquid to a certain extent, and it is easy to have a certain amount of liquid in the subsequent conveying pipe of the oxygen generator, affecting the normal use of the oxygen generator itself. Summary of the Utility Model

[0005] The purpose of this part is to outline some aspects of the embodiments of the present utility model and briefly introduce some preferred embodiments. In this part, as well as in the abstract of the specification and the title of the utility model of this application, some simplifications or omissions may be made to avoid obscuring the purpose of this part, the abstract of the specification and the title of the utility model, and such simplifications or omissions cannot be used to limit the scope of the present utility model.

[0006] To solve the problems raised in the above background art, the present utility model adopts the following technical solutions.

[0007] A humidifying cup for quickly separating oxygen, comprising a cup body, a top cover, an air outlet pipe and an air inlet pipe. The top of the cup body is threadedly installed with the top cover. The top of the top cover is provided with the air outlet pipe. One side of the surface of the top cover is fixedly installed with the air inlet pipe. The bottom of the top cover is fixedly installed with a separation mechanism. The separation mechanism includes a mounting seat, a suction pipe, an air inlet, an adsorption sphere and a threaded end. The mounting seat is fixedly installed on the upper surface of the top cover. The suction pipe is slidably installed inside the mounting seat. The outer wall of the suction pipe is equidistantly and symmetrically provided with air inlets. An adsorption sphere is arranged inside the suction pipe. The threaded end is fixedly installed at the bottom end of the air outlet pipe. The threaded end is threadedly connected with the mounting seat. The bottom end of the air inlet pipe is fixedly installed with a conveying mechanism. A monitoring mechanism is arranged inside the cup body.

[0008] As a preferred technical solution of the present invention, the adsorption sphere is made of an adsorbent with good water absorption.

[0009] As a preferred technical solution of the present invention, the highest position of the adsorption sphere does not exceed the bottom end of the air inlet.

[0010] As a preferred technical solution of the present invention, the conveying mechanism includes a connecting block, an air delivery pipe, a counterweight column and an air outlet. The connecting block is fixedly installed at the bottom end of the air inlet pipe. The air delivery pipe is fixedly installed at the bottom end of the connecting block. The counterweight column is fixedly installed at the end of the air delivery pipe. The counterweight column is equidistantly provided with air outlets inside.

[0011] As a preferred technical solution of the present invention, the air delivery pipe is a delivery pipe made of a soft rubber material.

[0012] As a preferred technical solution of the present invention, the monitoring mechanism includes a floating plate, a fitting groove and a connecting groove. A floating plate is arranged inside the cup body. A fitting groove is opened inside the floating plate. A connecting groove is opened on one side inside the floating plate.

[0013] As a preferred technical solution of the present invention, the inner diameter of the fitting groove is larger than the outer diameter of the suction pipe.

[0014] As a preferred technical solution of the present invention, a scale is arranged on the outer surface of the cup body.

[0015] Compared with the prior art, the beneficial effects of the present invention are as follows:

[0016] (1) In the present invention, by setting the separation mechanism and the conveying mechanism, the oxygen outlet can be adjusted to the lowest water level, which can absorb enough water ions as much as possible. And when part of the water source is discharged together with the bubbles generated by the oxygen under the water level later, through the cooperation of the suction pipe and the internal structure, this part of the excess water source can be separated, so as to achieve the purpose of quickly separating oxygen and water source, thereby improving the working efficiency of the equipment itself;

[0017] (2) In the present utility model, by providing a monitoring mechanism, the water level inside the humidifying cup can be monitored in real time, facilitating subsequent staff to quickly identify the amount of water source inside the cup based on the comparison between the position of the floating plate itself and the scale line outside the cup body, facilitating timely replenishment of the water source inside the cup body, and ensuring the stability of the use of the humidifying cup itself. BRIEF DESCRIPTION OF THE DRAWINGS

[0018] Figure 1 is a three-dimensional view of the overall structure of the present utility model;

[0019] Figure 2 is a three-dimensional view of the internal structure of the cup body of the present utility model;

[0020] Figure 3 is a three-dimensional view of the external structure of the top cover of the present utility model;

[0021] Figure 4 is a schematic structural view of the separation mechanism in the present utility model;

[0022] Figure 5 is a schematic structural view of the conveying mechanism in the present utility model;

[0023] Figure 6 is a schematic structural view of the monitoring mechanism in the present utility model.

[0024] The corresponding relationship between the reference numerals and the component names in the drawings is as follows:

[0025] 1, cup body; 2, top cover; 3, air outlet pipe; 4, air inlet pipe; 5, separation mechanism; 51, mounting seat; 52, suction pipe; 53, air inlet; 54, adsorption sphere; 55, threaded end; 6, conveying mechanism; 61, connecting block; 62, air delivery pipe; 63, counterweight column; 64, air outlet; 7, monitoring mechanism; 71, floating plate; 72, mating groove; 73, connecting groove. DETAILED DESCRIPTION OF THE EMBODIMENTS

[0026] To make the above objects, features, and advantages of the present utility model more apparent and understandable, the following detailed description of the specific embodiments of the present utility model will be given in conjunction with the accompanying drawings of the specification.

[0027] In the following description, many specific details are set forth in order to fully understand the present utility model. However, the present utility model can also be implemented in other ways different from those described herein. Those skilled in the art can make similar extensions without departing from the connotation of the present utility model. Therefore, the present utility model is not limited by the specific embodiments disclosed below.

[0028] Secondly, the so-called "one embodiment" or "embodiment" herein refers to specific features, structures or characteristics that may be included in at least one implementation manner of the present utility model. The "in one embodiment" that appears in different places in this specification does not all refer to the same embodiment, nor is it an independent or alternative embodiment that is mutually exclusive with other embodiments. The present utility model provides the following embodiments.

[0029] As shown by Figure 1 , Figure 2 and Figure 3 , a humidifying cup for quickly separating oxygen includes a cup body 1, a top cover 2, an air outlet pipe 3 and an air inlet pipe 4. The top cover 2 is threadedly installed at the top end of the cup body 1. The air outlet pipe 3 is arranged at the top end of the top cover 2. An air inlet pipe 4 is fixedly installed on one side of the surface of the top cover 2. A separation mechanism 5 is fixedly installed at the bottom end of the top cover 2. The separation mechanism 5 includes a mounting seat 51, a suction pipe 52, an air inlet 53, an adsorption sphere 54 and a threaded end 55. The mounting seat 51 is fixedly installed on the upper surface of the top cover 2. The suction pipe 52 is slidably installed inside the mounting seat 51. The outer wall of the suction pipe 52 is equidistantly and symmetrically provided with air inlets 53. An adsorption sphere 54 is arranged inside the suction pipe 52. The threaded end 55 is fixedly installed at the bottom end of the air outlet pipe 3. The threaded end 55 is threadedly connected with the mounting seat 51. A conveying mechanism 6 is fixedly installed at the bottom end of the air inlet pipe 4. A monitoring mechanism 7 is arranged inside the cup body 1.

[0030] During use, sufficient water source is input into the cup body 1. Then, through the use of the monitoring mechanism 7, the water level in the cup body 1 is detected, which is convenient for subsequent users to observe the water level. After that, by installing the top cover 2 on the top end of the cup body 1, it is ensured that the inside of the cup body 1 is in a closed space to prevent gas leakage. Then, through the cooperation of the air inlet pipe 4 and the conveying mechanism 6, oxygen is conveyed into the water source in the cup body 1. Due to the existence of the separation mechanism 5, oxygen adsorbed with water ions and the water source flowing along with the oxygen due to the rupture of bubbles can be quickly separated. By installing the suction pipe 52 inside the mounting seat 51 and connecting the threaded end 55 with the mounting seat 51, the overall pipeline is closed, which is convenient for the oxygen with water ions to enter the air outlet pipe 3 subsequently. When the suction pipe 52 is inserted into the cup body 1, due to the different densities of oxygen and water source, the oxygen with water ions accumulates at the top part of the cup body 1. Then, through the use of the air inlet 53, the oxygen automatically enters the suction pipe 52. When the oxygen enters, because the suction pipe 52 is in a vertical state as a whole and multiple groups of adsorption spheres 54 are placed inside the suction pipe 52, the water source driven by the rupture of bubbles in the oxygen will be quickly separated from the oxygen under the dual cooperation of gravity and the adsorption of the adsorption spheres 54. On the premise of completing the humidification of oxygen, the excess liquid in the oxygen is separated, making the humidification effect of the device itself more efficient.

[0031] As shown in the attached Figure 4As shown, in this embodiment, the adsorption sphere 54 is made of an adsorbent with good water absorption, and can quickly adsorb and separate the water source driven by the bubble rupture during use.

[0032] By attachment Figure 4 As shown, in this embodiment, the highest position of the adsorption sphere 54 does not exceed the bottom end of the air inlet 53. During use, once the position of the adsorption sphere 54 exceeds the air inlet 53, the water ions carried in the oxygen will be adsorbed together, affecting the working effect of the humidifying cup itself.

[0033] By attachment Figure 5 As shown, in this embodiment, the conveying mechanism 6 includes a connecting block 61, a trachea 62, a counterweight column 63 and an air outlet 64. The connecting block 61 is fixedly installed at the bottom end of the intake pipe 4, the trachea 62 is fixedly installed at the bottom end of the connecting block 61, the counterweight column 63 is fixedly installed at the end of the trachea 62, and the air outlet 64 is equidistantly arranged inside the counterweight column 63.

[0034] During use, by installing the conveying pipeline on the side of the intake pipe 4, oxygen enters the trachea 62 through the intake pipe 4. At this time, through the cooperation of the trachea 62 and the counterweight column 63, the air outlet 64 is moved to the lowest water level position, so that oxygen can be fully absorbed inside the water source, and after adsorbing a certain amount of water ions, it is discharged from the subsequent separation mechanism 5.

[0035] By attachment Figure 5 As shown, in this embodiment, the trachea 62 is a conveying pipe made of soft rubber material, which is convenient to bend and twist the trachea 62 during use, so that the trachea 62 can better fit the bottom end position of the inner wall of the cup body 1.

[0036] By attachment Figure 6 As shown, in this embodiment, the monitoring mechanism 7 includes a floating plate 71, a mating groove 72 and a connecting groove 73. A floating plate 71 is arranged inside the cup body 1, a mating groove 72 is opened inside the floating plate 71, and a connecting groove 73 is opened on one side inside the floating plate 71.

[0037] During use, through the opening of the mating groove 72 and the connecting groove 73, when the floating plate 71 floats up and down inside the cup body 1, it can stably pass through the trachea 62 and the suction pipe 52 without being blocked by other components. Then, through the buoyancy of the floating plate 71 and the water source, the floating plate 71 stably floats on the water surface to monitor the water level of the water source in real time.

[0038] By attachment Figure 6 As shown, in this embodiment, the inner diameter of the mating groove 72 is larger than the outer diameter of the suction pipe 52, which is convenient for the mating groove 72 not to be blocked by the suction pipe 52 when moving up and down with the water level during use.

[0039] By attachmentFigure 1 As shown, in this embodiment, a scale is provided on the outer surface of the cup body 1. During use, through the cooperation of the floating plate 71 and the scale, the user can clearly observe the water level inside the cup body 1.

[0040] The above content is a further detailed description of the present utility model in combination with specific embodiments. It cannot be determined that the specific implementation of the present utility model is only limited to these descriptions. For those of ordinary skill in the technical field to which the present utility model belongs, without departing from the concept of the present utility model, several simple deductions or substitutions can still be made, which should all be regarded as falling within the protection scope determined by the claims submitted for the present utility model.

Claims

1. A humidification cup for rapid oxygen separation, comprising a cup body (1), a top cover (2), an air outlet pipe (3) and an air inlet pipe (4), wherein the top cover (2) is threadedly mounted on the top of the cup body (1), the top of the top cover (2) is provided with an air outlet pipe (3), and one side of the surface of the top cover (2) is fixedly mounted with an air inlet pipe (4), characterized in that: A separation mechanism (5) is fixedly mounted on the bottom end of the top cover (2), and the separation mechanism (5) comprises a mounting seat (51), a suction tube (52), an air inlet (53), an adsorption sphere (54) and a threaded end (55). The mounting seat (51) is fixedly mounted on the upper surface of the top cover (2), the suction tube (52) is slidably mounted inside the mounting seat (51), the outer wall of the suction tube (52) is symmetrically provided with air inlets (53), the suction tube (52) is provided with an adsorption sphere (54), the threaded end (55) is fixedly mounted on the bottom end of the air outlet pipe (3), and the threaded end (55) is threadedly connected to the mounting seat (51), the bottom end of the air inlet pipe (4) is fixedly mounted with a conveying mechanism (6), and a monitoring mechanism (7) is provided inside the cup body (1); The conveying mechanism (6) comprises a connecting block (61), an air delivery pipe (62), a counterweight column (63) and an air outlet (64); the connecting block (61) is fixedly mounted on the bottom end of the air inlet pipe (4); the air delivery pipe (62) is fixedly mounted on the bottom end of the connecting block (61); the counterweight column (63) is fixedly mounted on the end of the air delivery pipe (62); and the air outlets (64) are equidistantly provided inside the counterweight column (63).

2. A humidifying cup for rapid oxygen separation according to claim 1, characterized in that: The adsorption sphere (54) is made of an adsorbent with good water absorption.

3. A humidification cup for rapid oxygen separation according to claim 1, characterized in that: The highest position of the adsorption sphere (54) does not exceed the lowest end of the air inlet (53).

4. A humidification cup for rapid oxygen separation according to claim 1, characterized in that: The gas delivery pipe (62) is a delivery pipe made of soft rubber material.

5. A humidification cup for rapid oxygen separation according to claim 1, characterized in that: The monitoring mechanism (7) comprises a floating plate (71), a matching groove (72) and a connecting groove (73); the floating plate (71) is arranged inside the cup body (1); the matching groove (72) is provided inside the floating plate (71); and a connecting groove (73) is provided on one side inside the floating plate (71).

6. A humidification cup for rapid oxygen separation according to claim 5, characterized in that: The inner diameter of the matching groove (72) is greater than the outer diameter of the suction tube (52).

7. A humidification cup for rapid oxygen separation according to claim 1, characterized in that: The outer surface of the cup body (1) is provided with a scale.

Citation Information

Patent Citations

  • Oxygen generator humidifying cup and oxygen generator

    CN219595543U